The Experts below are selected from a list of 705 Experts worldwide ranked by ideXlab platform
David Dohan M Ehrenfest - One of the best experts on this subject based on the ideXlab platform.
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new biomaterials and regenerative medicine strategies in periodontology oral surgery esthetic and implant dentistry
BioMed Research International, 2015Co-Authors: David Dohan M Ehrenfest, Gilberto Sammartino, Adriano Piattelli, Homlay WangAbstract:Periodontology, Oral Surgery, Esthetic and Implant Dentistry (the POSEID disciplines) are strongly interconnected clinical and research fields, even if they are taught as separate disciplines in most academic environments. Depending on the professional organization of each country, Dental implants are often placed by periodontists or oral surgeons (and even sometimes prosthodontists), even if implant dentistry is today one of the most active independent fields of education and research by itself. Esthetic dentistry is also a general term that concerns in fact most of the Dental Arts: per definition, all Dental treatments are expected to lead to an esthetic result nowadays. The separation between these Dental disciplines appears sometimes quite artificial, even if each discipline has clearly its own themes and specificities. Behind this question of terminology and limits between the disciplines the question of transdisciplinarity in Dental Therapeutics and the need for a global conception of the Dental rehabilitations rises. However, when it is related to the development of new technologies, the borders between these disciplines vanish in front of the paradigm of translational transversal research. These POSEID Dental disciplines are currently very active and are the source of development of many new techniques and technologies. It is in their domains that the highest number of innovation and publications can be found in dentistry nowadays. Implantable biomaterials were particularly investigated and have significantly evolved in the recent years: new Dental implant design and surfaces [1], new bone biomaterials [2], new surgical adjuvants such as platelet concentrates [3], and so forth. The objectives of all these biomaterials and technologies are not only to replace missing or damaged tissues but also now to promote tissue regeneration [4]. This regenerative medicine approach and the many recent technological evolutions are associated with the development of new therapeutic strategies that still require to be duly evaluated and validated. We can cite, among the main current research biomaterial themes in the POSEID disciplines, the development of new biomaterials and techniques of bone grafting or bone regeneration and for periodontal and peri-implant soft tissue management [4], the development of new bone substitutes and healing membranes for periodontal and implant reconstructions [5], the development of new technologies and strategies in oral regenerative medicine and bioengineering (e.g., the use of growth factors or fibrin-based healing surgical adjuvants) [3], the development of new pharmacological technologies and strategies during periodontal treatments and oral surgery (e.g., mouthwash and oral gel), or new Dental implant surfaces and design for the improvement of osseointegration [1]. All these themes are very transdisciplinary/transversal, both in their clinical impact (it concerns almost all aspects of periodontology, oral surgery, implantology, and even dentistry in general) and in their research methods (it concerns physics/biophysics, pharmacology, biology, and material sciences). These themes are also very transversal, as they are concerning many clinical disciplines outside of dentistry, such as orthopedics/sports medicine or plastic surgery. For example, regenerative medicine strategies with platelets (Platelet-Rich Plasma (PRP) and Platelet-Rich Fibrin (PRF)) or advanced cell therapies (with various forms of stem cells) are a frequent theme in the POSEID field [4], but they are also widely developed in medical research [6]. If Leukocyte- and Platelet-Rich Fibrin (L-PRF) is sometimes perceived as a Dental biomaterial (due to historical reasons and its frequent use in oral surgery and implant dentistry) [4], it is also very promising in orthopedics, sports medicine [7, 8], and regenerative strategies of the chronic ulcer wounds [9]. Transdisciplinarity is very strong in most POSEID research themes. These research fields are also the most active translational research topics in orofacial sciences, as any research about new biomaterials or techniques requires basic sciences research, in vitro and in vivo. For example, the development of new healing growth factors based materials (such as Leukocyte- and Platelet-Rich Fibrin (L-PRF)) requires pharmacologic, biological, and tissue engineering concepts to be tested, validated, optimized, and finally redeveloped for extended applications in other fields [6, 9, 10]. On the other hand the development of new mouthwash solutions or healing gels implies biological and biophysical research (e.g., with microencapsulated bioactive molecules) for the production of new technologies and their final validation. Finally, the implantable materials are ideal examples of translational research (e.g., titanium implants or bone substitute materials) [1, 2] as they require very accurate engineering of the chemical and morphological characteristics of the materials (using physical instruments from surface and material science) [1, 11], its correlation and validation with biological behaviors and concepts [1, 12], its validation in vivo and in humans, and finally the understanding of its long-term clinical outcomes and eventual pathologies (such as associated peri-implantitis mechanisms). In this case, many parameters are integrated (surface, macrodesign, and biomechanics) [13] and have a strong impact in several domains (orthopedics particularly). It is a good example of translational transversal research. The quantity of new biomaterials and biotechnologies with direct clinical applications in the interconnected POSEID fields is considerable and reflects very strongly this need for transdisciplinarity and translational culture [4]. However, the borders between these disciplines are often artificially maintained and the conception of these themes is still frequently lacking this global approach. For example, it can be often observed in the Dental literature that teams working on implant materials (e.g., surfaces) are neglecting the material science expertise of other specialties (e.g., surface engineers) [1, 12, 14], leading sometimes to a very Dental simplification of some topics and to serious approximations and flaws in the literature [1]. The same could be described in all transversal fields, such as regenerative medicine [9], platelet concentrates for surgical use [3], or bone materials [2]. The specialty-centered culture is often a big limitation for the development of these sciences and a better integration of this transdisciplinarity has to be promoted. Finally, it is also important to notice that many review articles can be found in these fields about various aspects of these biomaterials and their clinical impact, but we are lacking specific review articles making the synthesis of new approaches in these fields and leading to international consensus. In many review articles, the conclusions are too often that data are missing. Concrete perspectives with new approaches are often lacking, while many data from other fields could allow drawing more perspectives and feeding the debates and discussions. This need for multidisciplinary debates and consensus is very strong [1, 3], but works promoting this transcollaborative culture are still scarce, even if officially promoted by most academic institutions. As a conclusion, it is a real need nowadays to consider the research about biomaterials and biotechnologies in the interconnected fields of periodontology, oral surgery, and esthetic and implant dentistry as a whole. It is the essence of the POSEIDO Academic Consortium (Periodontology, Oral Surgery, Esthetic & Implant Dentistry Organization) to promote this transdisciplinary philosophy [15]. First, these disciplines are so tightly interconnected that research in this domain deserves often to be regrouped under such an acronym (POSEID disciplines). Second, this transdisciplinarity has to be extended to all related medical, biological, and engineering disciplines able to collaborate on these topics. Finally, the culture of translational sciences is really needed to promote development in this domain. It is expected that this POSEIDO philosophy will continue to develop and become a standard in this field.
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new biomaterials and regenerative medicine strategies in periodontology oral surgery esthetic and implant dentistry
BioMed Research International, 2015Co-Authors: David Dohan M Ehrenfest, Gilberto Sammartino, Adriano Piattelli, Homlay WangAbstract:Periodontology, Oral Surgery, Esthetic and Implant Dentistry (the POSEID disciplines) are strongly interconnected clinical and research fields, even if they are taught as separate disciplines in most academic environments. Depending on the professional organization of each country, Dental implants are often placed by periodontists or oral surgeons (and even sometimes prosthodontists), even if implant dentistry is today one of the most active independent fields of education and research by itself. Esthetic dentistry is also a general term that concerns in fact most of the Dental Arts: per definition, all Dental treatments are expected to lead to an esthetic result nowadays. The separation between these Dental disciplines appears sometimes quite artificial, even if each discipline has clearly its own themes and specificities. Behind this question of terminology and limits between the disciplines the question of transdisciplinarity in Dental Therapeutics and the need for a global conception of the Dental rehabilitations rises. However, when it is related to the development of new technologies, the borders between these disciplines vanish in front of the paradigm of translational transversal research. These POSEID Dental disciplines are currently very active and are the source of development of many new techniques and technologies. It is in their domains that the highest number of innovation and publications can be found in dentistry nowadays. Implantable biomaterials were particularly investigated and have significantly evolved in the recent years: new Dental implant design and surfaces [1], new bone biomaterials [2], new surgical adjuvants such as platelet concentrates [3], and so forth. The objectives of all these biomaterials and technologies are not only to replace missing or damaged tissues but also now to promote tissue regeneration [4]. This regenerative medicine approach and the many recent technological evolutions are associated with the development of new therapeutic strategies that still require to be duly evaluated and validated. We can cite, among the main current research biomaterial themes in the POSEID disciplines, the development of new biomaterials and techniques of bone grafting or bone regeneration and for periodontal and peri-implant soft tissue management [4], the development of new bone substitutes and healing membranes for periodontal and implant reconstructions [5], the development of new technologies and strategies in oral regenerative medicine and bioengineering (e.g., the use of growth factors or fibrin-based healing surgical adjuvants) [3], the development of new pharmacological technologies and strategies during periodontal treatments and oral surgery (e.g., mouthwash and oral gel), or new Dental implant surfaces and design for the improvement of osseointegration [1]. All these themes are very transdisciplinary/transversal, both in their clinical impact (it concerns almost all aspects of periodontology, oral surgery, implantology, and even dentistry in general) and in their research methods (it concerns physics/biophysics, pharmacology, biology, and material sciences). These themes are also very transversal, as they are concerning many clinical disciplines outside of dentistry, such as orthopedics/sports medicine or plastic surgery. For example, regenerative medicine strategies with platelets (Platelet-Rich Plasma (PRP) and Platelet-Rich Fibrin (PRF)) or advanced cell therapies (with various forms of stem cells) are a frequent theme in the POSEID field [4], but they are also widely developed in medical research [6]. If Leukocyte- and Platelet-Rich Fibrin (L-PRF) is sometimes perceived as a Dental biomaterial (due to historical reasons and its frequent use in oral surgery and implant dentistry) [4], it is also very promising in orthopedics, sports medicine [7, 8], and regenerative strategies of the chronic ulcer wounds [9]. Transdisciplinarity is very strong in most POSEID research themes. These research fields are also the most active translational research topics in orofacial sciences, as any research about new biomaterials or techniques requires basic sciences research, in vitro and in vivo. For example, the development of new healing growth factors based materials (such as Leukocyte- and Platelet-Rich Fibrin (L-PRF)) requires pharmacologic, biological, and tissue engineering concepts to be tested, validated, optimized, and finally redeveloped for extended applications in other fields [6, 9, 10]. On the other hand the development of new mouthwash solutions or healing gels implies biological and biophysical research (e.g., with microencapsulated bioactive molecules) for the production of new technologies and their final validation. Finally, the implantable materials are ideal examples of translational research (e.g., titanium implants or bone substitute materials) [1, 2] as they require very accurate engineering of the chemical and morphological characteristics of the materials (using physical instruments from surface and material science) [1, 11], its correlation and validation with biological behaviors and concepts [1, 12], its validation in vivo and in humans, and finally the understanding of its long-term clinical outcomes and eventual pathologies (such as associated peri-implantitis mechanisms). In this case, many parameters are integrated (surface, macrodesign, and biomechanics) [13] and have a strong impact in several domains (orthopedics particularly). It is a good example of translational transversal research. The quantity of new biomaterials and biotechnologies with direct clinical applications in the interconnected POSEID fields is considerable and reflects very strongly this need for transdisciplinarity and translational culture [4]. However, the borders between these disciplines are often artificially maintained and the conception of these themes is still frequently lacking this global approach. For example, it can be often observed in the Dental literature that teams working on implant materials (e.g., surfaces) are neglecting the material science expertise of other specialties (e.g., surface engineers) [1, 12, 14], leading sometimes to a very Dental simplification of some topics and to serious approximations and flaws in the literature [1]. The same could be described in all transversal fields, such as regenerative medicine [9], platelet concentrates for surgical use [3], or bone materials [2]. The specialty-centered culture is often a big limitation for the development of these sciences and a better integration of this transdisciplinarity has to be promoted. Finally, it is also important to notice that many review articles can be found in these fields about various aspects of these biomaterials and their clinical impact, but we are lacking specific review articles making the synthesis of new approaches in these fields and leading to international consensus. In many review articles, the conclusions are too often that data are missing. Concrete perspectives with new approaches are often lacking, while many data from other fields could allow drawing more perspectives and feeding the debates and discussions. This need for multidisciplinary debates and consensus is very strong [1, 3], but works promoting this transcollaborative culture are still scarce, even if officially promoted by most academic institutions. As a conclusion, it is a real need nowadays to consider the research about biomaterials and biotechnologies in the interconnected fields of periodontology, oral surgery, and esthetic and implant dentistry as a whole. It is the essence of the POSEIDO Academic Consortium (Periodontology, Oral Surgery, Esthetic & Implant Dentistry Organization) to promote this transdisciplinary philosophy [15]. First, these disciplines are so tightly interconnected that research in this domain deserves often to be regrouped under such an acronym (POSEID disciplines). Second, this transdisciplinarity has to be extended to all related medical, biological, and engineering disciplines able to collaborate on these topics. Finally, the culture of translational sciences is really needed to promote development in this domain. It is expected that this POSEIDO philosophy will continue to develop and become a standard in this field.
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new biomaterials and regenerative medicine strategies in periodontology oral surgery esthetic and implant dentistry 2016
BioMed Research International, 2015Co-Authors: David Dohan M Ehrenfest, Gilberto Sammartino, Adriano Piattelli, Homlay WangAbstract:Periodontology, Oral Surgery, Esthetic and Implant Dentistry (the POSEID disciplines) are strongly interconnected clinical and research fields, even if they are taught as separate disciplines in most academic environments. Depending on the professional organization of each country, Dental implants are often placed by periodontists or oral surgeons (and even sometimes prosthodontists), even if implant dentistry is today one of the most active independent fields of education and research by itself. Esthetic dentistry is also a general term that concerns in fact most of the Dental Arts: per definition, all Dental treatments are expected to lead to an esthetic result nowadays. The separation between these Dental disciplines appears sometimes quite artificial, even if each discipline has clearly its own themes and specificities. Behind this question of terminology and limits between the disciplines the question of transdisciplinarity in Dental Therapeutics and the need for a global conception of the Dental rehabilitations rises. However, when it is related to the development of new technologies, the borders between these disciplines vanish in front of the paradigm of translational transversal research. These POSEID Dental disciplines are currently very active and are the source of development of many new techniques and technologies. It is in their domains that the highest number of innovation and publications can be found in dentistry nowadays. Implantable biomaterials were particularly investigated and have significantly evolved in the recent years: new Dental implant design and surfaces [1], new bone biomaterials [2], new surgical adjuvants such as platelet concentrates [3], and so forth. The objectives of all these biomaterials and technologies are not only to replace missing or damaged tissues but also now to promote tissue regeneration [4]. This regenerative medicine approach and the many recent technological evolutions are associated with the development of new therapeutic strategies that still require to be duly evaluated and validated. We can cite, among the main current research biomaterial themes in the POSEID disciplines, the development of new biomaterials and techniques of bone grafting or bone regeneration and for periodontal and peri-implant soft tissue management [4], the development of new bone substitutes and healing membranes for periodontal and implant reconstructions [5], the development of new technologies and strategies in oral regenerative medicine and bioengineering (e.g., the use of growth factors or fibrin-based healing surgical adjuvants) [3], the development of new pharmacological technologies and strategies during periodontal treatments and oral surgery (e.g., mouthwash and oral gel), or new Dental implant surfaces and design for the improvement of osseointegration [1]. All these themes are very transdisciplinary/transversal, both in their clinical impact (it concerns almost all aspects of periodontology, oral surgery, implantology, and even dentistry in general) and in their research methods (it concerns physics/biophysics, pharmacology, biology, and material sciences). These themes are also very transversal, as they are concerning many clinical disciplines outside of dentistry, such as orthopedics/sports medicine or plastic surgery. For example, regenerative medicine strategies with platelets (Platelet-Rich Plasma (PRP) and Platelet-Rich Fibrin (PRF)) or advanced cell therapies (with various forms of stem cells) are a frequent theme in the POSEID field [4], but they are also widely developed in medical research [6]. If Leukocyte- and Platelet-Rich Fibrin (L-PRF) is sometimes perceived as a Dental biomaterial (due to historical reasons and its frequent use in oral surgery and implant dentistry) [4], it is also very promising in orthopedics, sports medicine [7, 8], and regenerative strategies of the chronic ulcer wounds [9]. Transdisciplinarity is very strong in most POSEID research themes. These research fields are also the most active translational research topics in orofacial sciences, as any research about new biomaterials or techniques requires basic sciences research, in vitro and in vivo. For example, the development of new healing growth factors based materials (such as Leukocyte- and Platelet-Rich Fibrin (L-PRF)) requires pharmacologic, biological, and tissue engineering concepts to be tested, validated, optimized, and finally redeveloped for extended applications in other fields [6, 9, 10]. On the other hand the development of new mouthwash solutions or healing gels implies biological and biophysical research (e.g., with microencapsulated bioactive molecules) for the production of new technologies and their final validation. Finally, the implantable materials are ideal examples of translational research (e.g., titanium implants or bone substitute materials) [1, 2] as they require very accurate engineering of the chemical and morphological characteristics of the materials (using physical instruments from surface and material science) [1, 11], its correlation and validation with biological behaviors and concepts [1, 12], its validation in vivo and in humans, and finally the understanding of its long-term clinical outcomes and eventual pathologies (such as associated peri-implantitis mechanisms). In this case, many parameters are integrated (surface, macrodesign, and biomechanics) [13] and have a strong impact in several domains (orthopedics particularly). It is a good example of translational transversal research. The quantity of new biomaterials and biotechnologies with direct clinical applications in the interconnected POSEID fields is considerable and reflects very strongly this need for transdisciplinarity and translational culture [4]. However, the borders between these disciplines are often artificially maintained and the conception of these themes is still frequently lacking this global approach. For example, it can be often observed in the Dental literature that teams working on implant materials (e.g., surfaces) are neglecting the material science expertise of other specialties (e.g., surface engineers) [1, 12, 14], leading sometimes to a very Dental simplification of some topics and to serious approximations and flaws in the literature [1]. The same could be described in all transversal fields, such as regenerative medicine [9], platelet concentrates for surgical use [3], or bone materials [2]. The specialty-centered culture is often a big limitation for the development of these sciences and a better integration of this transdisciplinarity has to be promoted. Finally, it is also important to notice that many review articles can be found in these fields about various aspects of these biomaterials and their clinical impact, but we are lacking specific review articles making the synthesis of new approaches in these fields and leading to international consensus. In many review articles, the conclusions are too often that data are missing. Concrete perspectives with new approaches are often lacking, while many data from other fields could allow drawing more perspectives and feeding the debates and discussions. This need for multidisciplinary debates and consensus is very strong [1, 3], but works promoting this transcollaborative culture are still scarce, even if officially promoted by most academic institutions. As a conclusion, it is a real need nowadays to consider the research about biomaterials and biotechnologies in the interconnected fields of periodontology, oral surgery, and esthetic and implant dentistry as a whole. It is the essence of the POSEIDO Academic Consortium (Periodontology, Oral Surgery, Esthetic & Implant Dentistry Organization) to promote this transdisciplinary philosophy [15]. First, these disciplines are so tightly interconnected that research in this domain deserves often to be regrouped under such an acronym (POSEID disciplines). Second, this transdisciplinarity has to be extended to all related medical, biological, and engineering disciplines able to collaborate on these topics. Finally, the culture of translational sciences is really needed to promote development in this domain. It is expected that this POSEIDO philosophy will continue to develop and become a standard in this field.
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identification card and codification of the chemical and morphological characteristics of 62 Dental implant surfaces part 4 resorbable blasting media rbm dual acid etched dae subtractive impregnated micro nanotextured simn and related surfaces group
2014Co-Authors: David Dohan M Ehrenfest, Marco Del Corso, Byungsoo Kang, Philippe Leclercq, Ziv Mazor, Robert A Horowitz, Philippe Russe, Heekyun Oh, Jamil Awad Shibli, Homlay WangAbstract:Background and objectives. Dental implants are commonly used in Dental Therapeutics, but Dental practitioners only have limited information about the characteristics of the implant materials they take the responsibility to place in their patients. The objective of this work is to describe the chemical and morphological characteristics of 62 implant surfaces available on the market and establish their respective Identification (ID) Card, following the Implant Surface Identification Standard (ISIS). In this fourth part, surfaces produced through other subtractive processes (resorbable blasting media RBM, dual acid-etching DAE, subtractive impregnation micro/nanotexturization SIMN and others) were investigated.
Homlay Wang - One of the best experts on this subject based on the ideXlab platform.
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new biomaterials and regenerative medicine strategies in periodontology oral surgery esthetic and implant dentistry
BioMed Research International, 2015Co-Authors: David Dohan M Ehrenfest, Gilberto Sammartino, Adriano Piattelli, Homlay WangAbstract:Periodontology, Oral Surgery, Esthetic and Implant Dentistry (the POSEID disciplines) are strongly interconnected clinical and research fields, even if they are taught as separate disciplines in most academic environments. Depending on the professional organization of each country, Dental implants are often placed by periodontists or oral surgeons (and even sometimes prosthodontists), even if implant dentistry is today one of the most active independent fields of education and research by itself. Esthetic dentistry is also a general term that concerns in fact most of the Dental Arts: per definition, all Dental treatments are expected to lead to an esthetic result nowadays. The separation between these Dental disciplines appears sometimes quite artificial, even if each discipline has clearly its own themes and specificities. Behind this question of terminology and limits between the disciplines the question of transdisciplinarity in Dental Therapeutics and the need for a global conception of the Dental rehabilitations rises. However, when it is related to the development of new technologies, the borders between these disciplines vanish in front of the paradigm of translational transversal research. These POSEID Dental disciplines are currently very active and are the source of development of many new techniques and technologies. It is in their domains that the highest number of innovation and publications can be found in dentistry nowadays. Implantable biomaterials were particularly investigated and have significantly evolved in the recent years: new Dental implant design and surfaces [1], new bone biomaterials [2], new surgical adjuvants such as platelet concentrates [3], and so forth. The objectives of all these biomaterials and technologies are not only to replace missing or damaged tissues but also now to promote tissue regeneration [4]. This regenerative medicine approach and the many recent technological evolutions are associated with the development of new therapeutic strategies that still require to be duly evaluated and validated. We can cite, among the main current research biomaterial themes in the POSEID disciplines, the development of new biomaterials and techniques of bone grafting or bone regeneration and for periodontal and peri-implant soft tissue management [4], the development of new bone substitutes and healing membranes for periodontal and implant reconstructions [5], the development of new technologies and strategies in oral regenerative medicine and bioengineering (e.g., the use of growth factors or fibrin-based healing surgical adjuvants) [3], the development of new pharmacological technologies and strategies during periodontal treatments and oral surgery (e.g., mouthwash and oral gel), or new Dental implant surfaces and design for the improvement of osseointegration [1]. All these themes are very transdisciplinary/transversal, both in their clinical impact (it concerns almost all aspects of periodontology, oral surgery, implantology, and even dentistry in general) and in their research methods (it concerns physics/biophysics, pharmacology, biology, and material sciences). These themes are also very transversal, as they are concerning many clinical disciplines outside of dentistry, such as orthopedics/sports medicine or plastic surgery. For example, regenerative medicine strategies with platelets (Platelet-Rich Plasma (PRP) and Platelet-Rich Fibrin (PRF)) or advanced cell therapies (with various forms of stem cells) are a frequent theme in the POSEID field [4], but they are also widely developed in medical research [6]. If Leukocyte- and Platelet-Rich Fibrin (L-PRF) is sometimes perceived as a Dental biomaterial (due to historical reasons and its frequent use in oral surgery and implant dentistry) [4], it is also very promising in orthopedics, sports medicine [7, 8], and regenerative strategies of the chronic ulcer wounds [9]. Transdisciplinarity is very strong in most POSEID research themes. These research fields are also the most active translational research topics in orofacial sciences, as any research about new biomaterials or techniques requires basic sciences research, in vitro and in vivo. For example, the development of new healing growth factors based materials (such as Leukocyte- and Platelet-Rich Fibrin (L-PRF)) requires pharmacologic, biological, and tissue engineering concepts to be tested, validated, optimized, and finally redeveloped for extended applications in other fields [6, 9, 10]. On the other hand the development of new mouthwash solutions or healing gels implies biological and biophysical research (e.g., with microencapsulated bioactive molecules) for the production of new technologies and their final validation. Finally, the implantable materials are ideal examples of translational research (e.g., titanium implants or bone substitute materials) [1, 2] as they require very accurate engineering of the chemical and morphological characteristics of the materials (using physical instruments from surface and material science) [1, 11], its correlation and validation with biological behaviors and concepts [1, 12], its validation in vivo and in humans, and finally the understanding of its long-term clinical outcomes and eventual pathologies (such as associated peri-implantitis mechanisms). In this case, many parameters are integrated (surface, macrodesign, and biomechanics) [13] and have a strong impact in several domains (orthopedics particularly). It is a good example of translational transversal research. The quantity of new biomaterials and biotechnologies with direct clinical applications in the interconnected POSEID fields is considerable and reflects very strongly this need for transdisciplinarity and translational culture [4]. However, the borders between these disciplines are often artificially maintained and the conception of these themes is still frequently lacking this global approach. For example, it can be often observed in the Dental literature that teams working on implant materials (e.g., surfaces) are neglecting the material science expertise of other specialties (e.g., surface engineers) [1, 12, 14], leading sometimes to a very Dental simplification of some topics and to serious approximations and flaws in the literature [1]. The same could be described in all transversal fields, such as regenerative medicine [9], platelet concentrates for surgical use [3], or bone materials [2]. The specialty-centered culture is often a big limitation for the development of these sciences and a better integration of this transdisciplinarity has to be promoted. Finally, it is also important to notice that many review articles can be found in these fields about various aspects of these biomaterials and their clinical impact, but we are lacking specific review articles making the synthesis of new approaches in these fields and leading to international consensus. In many review articles, the conclusions are too often that data are missing. Concrete perspectives with new approaches are often lacking, while many data from other fields could allow drawing more perspectives and feeding the debates and discussions. This need for multidisciplinary debates and consensus is very strong [1, 3], but works promoting this transcollaborative culture are still scarce, even if officially promoted by most academic institutions. As a conclusion, it is a real need nowadays to consider the research about biomaterials and biotechnologies in the interconnected fields of periodontology, oral surgery, and esthetic and implant dentistry as a whole. It is the essence of the POSEIDO Academic Consortium (Periodontology, Oral Surgery, Esthetic & Implant Dentistry Organization) to promote this transdisciplinary philosophy [15]. First, these disciplines are so tightly interconnected that research in this domain deserves often to be regrouped under such an acronym (POSEID disciplines). Second, this transdisciplinarity has to be extended to all related medical, biological, and engineering disciplines able to collaborate on these topics. Finally, the culture of translational sciences is really needed to promote development in this domain. It is expected that this POSEIDO philosophy will continue to develop and become a standard in this field.
-
new biomaterials and regenerative medicine strategies in periodontology oral surgery esthetic and implant dentistry
BioMed Research International, 2015Co-Authors: David Dohan M Ehrenfest, Gilberto Sammartino, Adriano Piattelli, Homlay WangAbstract:Periodontology, Oral Surgery, Esthetic and Implant Dentistry (the POSEID disciplines) are strongly interconnected clinical and research fields, even if they are taught as separate disciplines in most academic environments. Depending on the professional organization of each country, Dental implants are often placed by periodontists or oral surgeons (and even sometimes prosthodontists), even if implant dentistry is today one of the most active independent fields of education and research by itself. Esthetic dentistry is also a general term that concerns in fact most of the Dental Arts: per definition, all Dental treatments are expected to lead to an esthetic result nowadays. The separation between these Dental disciplines appears sometimes quite artificial, even if each discipline has clearly its own themes and specificities. Behind this question of terminology and limits between the disciplines the question of transdisciplinarity in Dental Therapeutics and the need for a global conception of the Dental rehabilitations rises. However, when it is related to the development of new technologies, the borders between these disciplines vanish in front of the paradigm of translational transversal research. These POSEID Dental disciplines are currently very active and are the source of development of many new techniques and technologies. It is in their domains that the highest number of innovation and publications can be found in dentistry nowadays. Implantable biomaterials were particularly investigated and have significantly evolved in the recent years: new Dental implant design and surfaces [1], new bone biomaterials [2], new surgical adjuvants such as platelet concentrates [3], and so forth. The objectives of all these biomaterials and technologies are not only to replace missing or damaged tissues but also now to promote tissue regeneration [4]. This regenerative medicine approach and the many recent technological evolutions are associated with the development of new therapeutic strategies that still require to be duly evaluated and validated. We can cite, among the main current research biomaterial themes in the POSEID disciplines, the development of new biomaterials and techniques of bone grafting or bone regeneration and for periodontal and peri-implant soft tissue management [4], the development of new bone substitutes and healing membranes for periodontal and implant reconstructions [5], the development of new technologies and strategies in oral regenerative medicine and bioengineering (e.g., the use of growth factors or fibrin-based healing surgical adjuvants) [3], the development of new pharmacological technologies and strategies during periodontal treatments and oral surgery (e.g., mouthwash and oral gel), or new Dental implant surfaces and design for the improvement of osseointegration [1]. All these themes are very transdisciplinary/transversal, both in their clinical impact (it concerns almost all aspects of periodontology, oral surgery, implantology, and even dentistry in general) and in their research methods (it concerns physics/biophysics, pharmacology, biology, and material sciences). These themes are also very transversal, as they are concerning many clinical disciplines outside of dentistry, such as orthopedics/sports medicine or plastic surgery. For example, regenerative medicine strategies with platelets (Platelet-Rich Plasma (PRP) and Platelet-Rich Fibrin (PRF)) or advanced cell therapies (with various forms of stem cells) are a frequent theme in the POSEID field [4], but they are also widely developed in medical research [6]. If Leukocyte- and Platelet-Rich Fibrin (L-PRF) is sometimes perceived as a Dental biomaterial (due to historical reasons and its frequent use in oral surgery and implant dentistry) [4], it is also very promising in orthopedics, sports medicine [7, 8], and regenerative strategies of the chronic ulcer wounds [9]. Transdisciplinarity is very strong in most POSEID research themes. These research fields are also the most active translational research topics in orofacial sciences, as any research about new biomaterials or techniques requires basic sciences research, in vitro and in vivo. For example, the development of new healing growth factors based materials (such as Leukocyte- and Platelet-Rich Fibrin (L-PRF)) requires pharmacologic, biological, and tissue engineering concepts to be tested, validated, optimized, and finally redeveloped for extended applications in other fields [6, 9, 10]. On the other hand the development of new mouthwash solutions or healing gels implies biological and biophysical research (e.g., with microencapsulated bioactive molecules) for the production of new technologies and their final validation. Finally, the implantable materials are ideal examples of translational research (e.g., titanium implants or bone substitute materials) [1, 2] as they require very accurate engineering of the chemical and morphological characteristics of the materials (using physical instruments from surface and material science) [1, 11], its correlation and validation with biological behaviors and concepts [1, 12], its validation in vivo and in humans, and finally the understanding of its long-term clinical outcomes and eventual pathologies (such as associated peri-implantitis mechanisms). In this case, many parameters are integrated (surface, macrodesign, and biomechanics) [13] and have a strong impact in several domains (orthopedics particularly). It is a good example of translational transversal research. The quantity of new biomaterials and biotechnologies with direct clinical applications in the interconnected POSEID fields is considerable and reflects very strongly this need for transdisciplinarity and translational culture [4]. However, the borders between these disciplines are often artificially maintained and the conception of these themes is still frequently lacking this global approach. For example, it can be often observed in the Dental literature that teams working on implant materials (e.g., surfaces) are neglecting the material science expertise of other specialties (e.g., surface engineers) [1, 12, 14], leading sometimes to a very Dental simplification of some topics and to serious approximations and flaws in the literature [1]. The same could be described in all transversal fields, such as regenerative medicine [9], platelet concentrates for surgical use [3], or bone materials [2]. The specialty-centered culture is often a big limitation for the development of these sciences and a better integration of this transdisciplinarity has to be promoted. Finally, it is also important to notice that many review articles can be found in these fields about various aspects of these biomaterials and their clinical impact, but we are lacking specific review articles making the synthesis of new approaches in these fields and leading to international consensus. In many review articles, the conclusions are too often that data are missing. Concrete perspectives with new approaches are often lacking, while many data from other fields could allow drawing more perspectives and feeding the debates and discussions. This need for multidisciplinary debates and consensus is very strong [1, 3], but works promoting this transcollaborative culture are still scarce, even if officially promoted by most academic institutions. As a conclusion, it is a real need nowadays to consider the research about biomaterials and biotechnologies in the interconnected fields of periodontology, oral surgery, and esthetic and implant dentistry as a whole. It is the essence of the POSEIDO Academic Consortium (Periodontology, Oral Surgery, Esthetic & Implant Dentistry Organization) to promote this transdisciplinary philosophy [15]. First, these disciplines are so tightly interconnected that research in this domain deserves often to be regrouped under such an acronym (POSEID disciplines). Second, this transdisciplinarity has to be extended to all related medical, biological, and engineering disciplines able to collaborate on these topics. Finally, the culture of translational sciences is really needed to promote development in this domain. It is expected that this POSEIDO philosophy will continue to develop and become a standard in this field.
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new biomaterials and regenerative medicine strategies in periodontology oral surgery esthetic and implant dentistry 2016
BioMed Research International, 2015Co-Authors: David Dohan M Ehrenfest, Gilberto Sammartino, Adriano Piattelli, Homlay WangAbstract:Periodontology, Oral Surgery, Esthetic and Implant Dentistry (the POSEID disciplines) are strongly interconnected clinical and research fields, even if they are taught as separate disciplines in most academic environments. Depending on the professional organization of each country, Dental implants are often placed by periodontists or oral surgeons (and even sometimes prosthodontists), even if implant dentistry is today one of the most active independent fields of education and research by itself. Esthetic dentistry is also a general term that concerns in fact most of the Dental Arts: per definition, all Dental treatments are expected to lead to an esthetic result nowadays. The separation between these Dental disciplines appears sometimes quite artificial, even if each discipline has clearly its own themes and specificities. Behind this question of terminology and limits between the disciplines the question of transdisciplinarity in Dental Therapeutics and the need for a global conception of the Dental rehabilitations rises. However, when it is related to the development of new technologies, the borders between these disciplines vanish in front of the paradigm of translational transversal research. These POSEID Dental disciplines are currently very active and are the source of development of many new techniques and technologies. It is in their domains that the highest number of innovation and publications can be found in dentistry nowadays. Implantable biomaterials were particularly investigated and have significantly evolved in the recent years: new Dental implant design and surfaces [1], new bone biomaterials [2], new surgical adjuvants such as platelet concentrates [3], and so forth. The objectives of all these biomaterials and technologies are not only to replace missing or damaged tissues but also now to promote tissue regeneration [4]. This regenerative medicine approach and the many recent technological evolutions are associated with the development of new therapeutic strategies that still require to be duly evaluated and validated. We can cite, among the main current research biomaterial themes in the POSEID disciplines, the development of new biomaterials and techniques of bone grafting or bone regeneration and for periodontal and peri-implant soft tissue management [4], the development of new bone substitutes and healing membranes for periodontal and implant reconstructions [5], the development of new technologies and strategies in oral regenerative medicine and bioengineering (e.g., the use of growth factors or fibrin-based healing surgical adjuvants) [3], the development of new pharmacological technologies and strategies during periodontal treatments and oral surgery (e.g., mouthwash and oral gel), or new Dental implant surfaces and design for the improvement of osseointegration [1]. All these themes are very transdisciplinary/transversal, both in their clinical impact (it concerns almost all aspects of periodontology, oral surgery, implantology, and even dentistry in general) and in their research methods (it concerns physics/biophysics, pharmacology, biology, and material sciences). These themes are also very transversal, as they are concerning many clinical disciplines outside of dentistry, such as orthopedics/sports medicine or plastic surgery. For example, regenerative medicine strategies with platelets (Platelet-Rich Plasma (PRP) and Platelet-Rich Fibrin (PRF)) or advanced cell therapies (with various forms of stem cells) are a frequent theme in the POSEID field [4], but they are also widely developed in medical research [6]. If Leukocyte- and Platelet-Rich Fibrin (L-PRF) is sometimes perceived as a Dental biomaterial (due to historical reasons and its frequent use in oral surgery and implant dentistry) [4], it is also very promising in orthopedics, sports medicine [7, 8], and regenerative strategies of the chronic ulcer wounds [9]. Transdisciplinarity is very strong in most POSEID research themes. These research fields are also the most active translational research topics in orofacial sciences, as any research about new biomaterials or techniques requires basic sciences research, in vitro and in vivo. For example, the development of new healing growth factors based materials (such as Leukocyte- and Platelet-Rich Fibrin (L-PRF)) requires pharmacologic, biological, and tissue engineering concepts to be tested, validated, optimized, and finally redeveloped for extended applications in other fields [6, 9, 10]. On the other hand the development of new mouthwash solutions or healing gels implies biological and biophysical research (e.g., with microencapsulated bioactive molecules) for the production of new technologies and their final validation. Finally, the implantable materials are ideal examples of translational research (e.g., titanium implants or bone substitute materials) [1, 2] as they require very accurate engineering of the chemical and morphological characteristics of the materials (using physical instruments from surface and material science) [1, 11], its correlation and validation with biological behaviors and concepts [1, 12], its validation in vivo and in humans, and finally the understanding of its long-term clinical outcomes and eventual pathologies (such as associated peri-implantitis mechanisms). In this case, many parameters are integrated (surface, macrodesign, and biomechanics) [13] and have a strong impact in several domains (orthopedics particularly). It is a good example of translational transversal research. The quantity of new biomaterials and biotechnologies with direct clinical applications in the interconnected POSEID fields is considerable and reflects very strongly this need for transdisciplinarity and translational culture [4]. However, the borders between these disciplines are often artificially maintained and the conception of these themes is still frequently lacking this global approach. For example, it can be often observed in the Dental literature that teams working on implant materials (e.g., surfaces) are neglecting the material science expertise of other specialties (e.g., surface engineers) [1, 12, 14], leading sometimes to a very Dental simplification of some topics and to serious approximations and flaws in the literature [1]. The same could be described in all transversal fields, such as regenerative medicine [9], platelet concentrates for surgical use [3], or bone materials [2]. The specialty-centered culture is often a big limitation for the development of these sciences and a better integration of this transdisciplinarity has to be promoted. Finally, it is also important to notice that many review articles can be found in these fields about various aspects of these biomaterials and their clinical impact, but we are lacking specific review articles making the synthesis of new approaches in these fields and leading to international consensus. In many review articles, the conclusions are too often that data are missing. Concrete perspectives with new approaches are often lacking, while many data from other fields could allow drawing more perspectives and feeding the debates and discussions. This need for multidisciplinary debates and consensus is very strong [1, 3], but works promoting this transcollaborative culture are still scarce, even if officially promoted by most academic institutions. As a conclusion, it is a real need nowadays to consider the research about biomaterials and biotechnologies in the interconnected fields of periodontology, oral surgery, and esthetic and implant dentistry as a whole. It is the essence of the POSEIDO Academic Consortium (Periodontology, Oral Surgery, Esthetic & Implant Dentistry Organization) to promote this transdisciplinary philosophy [15]. First, these disciplines are so tightly interconnected that research in this domain deserves often to be regrouped under such an acronym (POSEID disciplines). Second, this transdisciplinarity has to be extended to all related medical, biological, and engineering disciplines able to collaborate on these topics. Finally, the culture of translational sciences is really needed to promote development in this domain. It is expected that this POSEIDO philosophy will continue to develop and become a standard in this field.
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identification card and codification of the chemical and morphological characteristics of 62 Dental implant surfaces part 4 resorbable blasting media rbm dual acid etched dae subtractive impregnated micro nanotextured simn and related surfaces group
2014Co-Authors: David Dohan M Ehrenfest, Marco Del Corso, Byungsoo Kang, Philippe Leclercq, Ziv Mazor, Robert A Horowitz, Philippe Russe, Heekyun Oh, Jamil Awad Shibli, Homlay WangAbstract:Background and objectives. Dental implants are commonly used in Dental Therapeutics, but Dental practitioners only have limited information about the characteristics of the implant materials they take the responsibility to place in their patients. The objective of this work is to describe the chemical and morphological characteristics of 62 implant surfaces available on the market and establish their respective Identification (ID) Card, following the Implant Surface Identification Standard (ISIS). In this fourth part, surfaces produced through other subtractive processes (resorbable blasting media RBM, dual acid-etching DAE, subtractive impregnation micro/nanotexturization SIMN and others) were investigated.
M Addy - One of the best experts on this subject based on the ideXlab platform.
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a 6 month home usage trial of 0 1 and 0 2 delmopinol mouthwashes i effects on plaque gingivitis supragingival calculus and tooth staining
Journal of Clinical Periodontology, 1996Co-Authors: Nicholas C A Claydon, L Hunter, J Moran, William G Wade, E Kelty, R Movert, M AddyAbstract:Delmopinol is a morpholinoethanol derivative which, in mouthrinses used in the absence of normal oral hygiene, has been shown effective in the inhibition of plaque and gingivitis. The aim of this study was to determine the adjunctive oral hygiene benefits and safety of delmopinol rinses when used alongside normal toothcleaning. This 6-month home use study was a placebo-controlled, double-blind, randomised parallel design evaluating 0.1% and 0.2% delmopinol rinses and structured to conform with the ADA Council of Dental Therapeutics guidelines. A total of 450 dentate male and female subjects were recruited who had no relevant medical or pharmacotherapy histories determined from a full medical examination, including haematological and biochemical tests. Subjects had moderate levels of plaque and gingivitis. At baseline, 3 and 6 months subjects were scored for plaque, gingivitis, tooth stain and supragingival calculus, with plaque sampled for microbiological analysis. Additionally, oral mucosal examinations were performed and subjects questioned for adverse symptoms. Baseline special tests were repeated at the end of the study. After baseline examinations, the subjects received a professional prophylaxis, provided with the allocated mouthwash and instructed to use 10-ml volumes for 60 s 2 x daily and where appropriate after toothbrushing and meals. Demographic features of the 3 groups were similar and losses to trial were small. Adverse signs and symptoms included transitory numbness of the tongue, tooth and tongue staining, taste disturbance and rarely mucosal soreness and erosion. All local side-effects were less commonly reported at 6 compared to 3 months and only 6 subjects were withdrawn because of adverse event. No systemic effects attributable to the agent were observed and no significant shifts in haematological or biochemical parameters occurred. All groups showed considerable improvements in oral hygiene and gingival health with some significant differences in favour of 0.2% delmopinol compared to placebo for gingivitis and more particularly plaque. Staining was also significantly increased in the delmopinol groups but not calculus. In the present study, a considerable Hawthorne effect occurred, which must in part explain why only a modestly significant effect was achieved.
Robert I. Lehrer - One of the best experts on this subject based on the ideXlab platform.
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Beta-sheet antibiotic peptides as potential Dental Therapeutics.
International journal of antimicrobial agents, 1998Co-Authors: Kenneth T. Miyasaki, Robert I. LehrerAbstract:Small, cysteine-rich, β-sheet peptide antibiotics are found throughout the Animalia. Though broad spectrum in potential, they may exert selective antimicrobial effects under certain conditions. We have explored the antimicrobial properties of two families of β-sheet peptide antibiotics, defensins and protegrins, against periodontopathic bacteria. The rabbit defensin NP-1 was active against facultative Gram-negative bacteria associated with early onset periodontitis, including Actinobacillus actinomycetemcomitans and the Capnocytophaga spp. Porcine protegrins showed even greater activity against those organisms, as well as against anaerobic bacteria associated with adult periodontitis, including Porphyromonas gingivalis Prevotella intermedia and Fusobacterium nucleatum. Based on these observations, we believe that protegrin-like β-sheet peptide antibiotics may be useful Dental Therapeutics.
Nicholas C A Claydon - One of the best experts on this subject based on the ideXlab platform.
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a 6 month home usage trial of 0 1 and 0 2 delmopinol mouthwashes i effects on plaque gingivitis supragingival calculus and tooth staining
Journal of Clinical Periodontology, 1996Co-Authors: Nicholas C A Claydon, L Hunter, J Moran, William G Wade, E Kelty, R Movert, M AddyAbstract:Delmopinol is a morpholinoethanol derivative which, in mouthrinses used in the absence of normal oral hygiene, has been shown effective in the inhibition of plaque and gingivitis. The aim of this study was to determine the adjunctive oral hygiene benefits and safety of delmopinol rinses when used alongside normal toothcleaning. This 6-month home use study was a placebo-controlled, double-blind, randomised parallel design evaluating 0.1% and 0.2% delmopinol rinses and structured to conform with the ADA Council of Dental Therapeutics guidelines. A total of 450 dentate male and female subjects were recruited who had no relevant medical or pharmacotherapy histories determined from a full medical examination, including haematological and biochemical tests. Subjects had moderate levels of plaque and gingivitis. At baseline, 3 and 6 months subjects were scored for plaque, gingivitis, tooth stain and supragingival calculus, with plaque sampled for microbiological analysis. Additionally, oral mucosal examinations were performed and subjects questioned for adverse symptoms. Baseline special tests were repeated at the end of the study. After baseline examinations, the subjects received a professional prophylaxis, provided with the allocated mouthwash and instructed to use 10-ml volumes for 60 s 2 x daily and where appropriate after toothbrushing and meals. Demographic features of the 3 groups were similar and losses to trial were small. Adverse signs and symptoms included transitory numbness of the tongue, tooth and tongue staining, taste disturbance and rarely mucosal soreness and erosion. All local side-effects were less commonly reported at 6 compared to 3 months and only 6 subjects were withdrawn because of adverse event. No systemic effects attributable to the agent were observed and no significant shifts in haematological or biochemical parameters occurred. All groups showed considerable improvements in oral hygiene and gingival health with some significant differences in favour of 0.2% delmopinol compared to placebo for gingivitis and more particularly plaque. Staining was also significantly increased in the delmopinol groups but not calculus. In the present study, a considerable Hawthorne effect occurred, which must in part explain why only a modestly significant effect was achieved.