The Experts below are selected from a list of 57 Experts worldwide ranked by ideXlab platform

Nasim Annabi - One of the best experts on this subject based on the ideXlab platform.

  • Engineering Adhesive and antimicrobial hyaluronic acid elastin like polypeptide hybrid hydrogels for tissue Engineering applications
    ACS Biomaterials Science & Engineering, 2018
    Co-Authors: Ehsan Shirzaei Sani, Roberto Portillolara, Andrew R Spencer, Wendy Yu, Benjamin M Geilich, Iman Noshadi, Thomas J Webster, Nasim Annabi
    Abstract:

    Hydrogel-based biomaterials have been widely used for tissue Engineering applications because of their high water content, swellability, and permeability, which facilitate transport and diffusion of essential nutrients, oxygen, and waste across the scaffold. These characteristics make hydrogels suitable for encapsulating cells and creating a cell supportive environment that promotes tissue regeneration when implanted in vivo. This is particularly important in the context of tissues whose intrinsic regenerative capacity is limited, such as cartilage. However, the clinical translation of hydrogels has been limited by their poor mechanical performance, low Adhesive strength, uncontrolled degradation rates, and their susceptibility to bacterial colonization. Here, we introduce an elastic, antimicrobial, and Adhesive hydrogel comprised of methacrylated hyaluronic acid (MeHA) and an elastin-like polypeptide (ELP), which can be rapidly photo-cross-linked in situ for the regeneration and repair of different tissu...

  • Engineering Adhesive and Antimicrobial Hyaluronic Acid/Elastin-like Polypeptide Hybrid Hydrogels for Tissue Engineering Applications
    ACS Biomaterials Science & Engineering, 2018
    Co-Authors: Ehsan Shirzaei Sani, Andrew R Spencer, Wendy Yu, Benjamin M Geilich, Iman Noshadi, Thomas J Webster, Roberto Portillo-lara, Nasim Annabi
    Abstract:

    Hydrogel-based biomaterials have been widely used for tissue Engineering applications because of their high water content, swellability, and permeability, which facilitate transport and diffusion of essential nutrients, oxygen, and waste across the scaffold. These characteristics make hydrogels suitable for encapsulating cells and creating a cell supportive environment that promotes tissue regeneration when implanted in vivo. This is particularly important in the context of tissues whose intrinsic regenerative capacity is limited, such as cartilage. However, the clinical translation of hydrogels has been limited by their poor mechanical performance, low Adhesive strength, uncontrolled degradation rates, and their susceptibility to bacterial colonization. Here, we introduce an elastic, antimicrobial, and Adhesive hydrogel comprised of methacrylated hyaluronic acid (MeHA) and an elastin-like polypeptide (ELP), which can be rapidly photo-cross-linked in situ for the regeneration and repair of different tissu...

Thomas J Webster - One of the best experts on this subject based on the ideXlab platform.

  • Engineering Adhesive and antimicrobial hyaluronic acid elastin like polypeptide hybrid hydrogels for tissue Engineering applications
    ACS Biomaterials Science & Engineering, 2018
    Co-Authors: Ehsan Shirzaei Sani, Roberto Portillolara, Andrew R Spencer, Wendy Yu, Benjamin M Geilich, Iman Noshadi, Thomas J Webster, Nasim Annabi
    Abstract:

    Hydrogel-based biomaterials have been widely used for tissue Engineering applications because of their high water content, swellability, and permeability, which facilitate transport and diffusion of essential nutrients, oxygen, and waste across the scaffold. These characteristics make hydrogels suitable for encapsulating cells and creating a cell supportive environment that promotes tissue regeneration when implanted in vivo. This is particularly important in the context of tissues whose intrinsic regenerative capacity is limited, such as cartilage. However, the clinical translation of hydrogels has been limited by their poor mechanical performance, low Adhesive strength, uncontrolled degradation rates, and their susceptibility to bacterial colonization. Here, we introduce an elastic, antimicrobial, and Adhesive hydrogel comprised of methacrylated hyaluronic acid (MeHA) and an elastin-like polypeptide (ELP), which can be rapidly photo-cross-linked in situ for the regeneration and repair of different tissu...

  • Engineering Adhesive and Antimicrobial Hyaluronic Acid/Elastin-like Polypeptide Hybrid Hydrogels for Tissue Engineering Applications
    ACS Biomaterials Science & Engineering, 2018
    Co-Authors: Ehsan Shirzaei Sani, Andrew R Spencer, Wendy Yu, Benjamin M Geilich, Iman Noshadi, Thomas J Webster, Roberto Portillo-lara, Nasim Annabi
    Abstract:

    Hydrogel-based biomaterials have been widely used for tissue Engineering applications because of their high water content, swellability, and permeability, which facilitate transport and diffusion of essential nutrients, oxygen, and waste across the scaffold. These characteristics make hydrogels suitable for encapsulating cells and creating a cell supportive environment that promotes tissue regeneration when implanted in vivo. This is particularly important in the context of tissues whose intrinsic regenerative capacity is limited, such as cartilage. However, the clinical translation of hydrogels has been limited by their poor mechanical performance, low Adhesive strength, uncontrolled degradation rates, and their susceptibility to bacterial colonization. Here, we introduce an elastic, antimicrobial, and Adhesive hydrogel comprised of methacrylated hyaluronic acid (MeHA) and an elastin-like polypeptide (ELP), which can be rapidly photo-cross-linked in situ for the regeneration and repair of different tissu...

Roberto Portillolara - One of the best experts on this subject based on the ideXlab platform.

  • Engineering Adhesive and antimicrobial hyaluronic acid elastin like polypeptide hybrid hydrogels for tissue Engineering applications
    ACS Biomaterials Science & Engineering, 2018
    Co-Authors: Ehsan Shirzaei Sani, Roberto Portillolara, Andrew R Spencer, Wendy Yu, Benjamin M Geilich, Iman Noshadi, Thomas J Webster, Nasim Annabi
    Abstract:

    Hydrogel-based biomaterials have been widely used for tissue Engineering applications because of their high water content, swellability, and permeability, which facilitate transport and diffusion of essential nutrients, oxygen, and waste across the scaffold. These characteristics make hydrogels suitable for encapsulating cells and creating a cell supportive environment that promotes tissue regeneration when implanted in vivo. This is particularly important in the context of tissues whose intrinsic regenerative capacity is limited, such as cartilage. However, the clinical translation of hydrogels has been limited by their poor mechanical performance, low Adhesive strength, uncontrolled degradation rates, and their susceptibility to bacterial colonization. Here, we introduce an elastic, antimicrobial, and Adhesive hydrogel comprised of methacrylated hyaluronic acid (MeHA) and an elastin-like polypeptide (ELP), which can be rapidly photo-cross-linked in situ for the regeneration and repair of different tissu...

Ehsan Shirzaei Sani - One of the best experts on this subject based on the ideXlab platform.

  • Engineering Adhesive and antimicrobial hyaluronic acid elastin like polypeptide hybrid hydrogels for tissue Engineering applications
    ACS Biomaterials Science & Engineering, 2018
    Co-Authors: Ehsan Shirzaei Sani, Roberto Portillolara, Andrew R Spencer, Wendy Yu, Benjamin M Geilich, Iman Noshadi, Thomas J Webster, Nasim Annabi
    Abstract:

    Hydrogel-based biomaterials have been widely used for tissue Engineering applications because of their high water content, swellability, and permeability, which facilitate transport and diffusion of essential nutrients, oxygen, and waste across the scaffold. These characteristics make hydrogels suitable for encapsulating cells and creating a cell supportive environment that promotes tissue regeneration when implanted in vivo. This is particularly important in the context of tissues whose intrinsic regenerative capacity is limited, such as cartilage. However, the clinical translation of hydrogels has been limited by their poor mechanical performance, low Adhesive strength, uncontrolled degradation rates, and their susceptibility to bacterial colonization. Here, we introduce an elastic, antimicrobial, and Adhesive hydrogel comprised of methacrylated hyaluronic acid (MeHA) and an elastin-like polypeptide (ELP), which can be rapidly photo-cross-linked in situ for the regeneration and repair of different tissu...

  • Engineering Adhesive and Antimicrobial Hyaluronic Acid/Elastin-like Polypeptide Hybrid Hydrogels for Tissue Engineering Applications
    ACS Biomaterials Science & Engineering, 2018
    Co-Authors: Ehsan Shirzaei Sani, Andrew R Spencer, Wendy Yu, Benjamin M Geilich, Iman Noshadi, Thomas J Webster, Roberto Portillo-lara, Nasim Annabi
    Abstract:

    Hydrogel-based biomaterials have been widely used for tissue Engineering applications because of their high water content, swellability, and permeability, which facilitate transport and diffusion of essential nutrients, oxygen, and waste across the scaffold. These characteristics make hydrogels suitable for encapsulating cells and creating a cell supportive environment that promotes tissue regeneration when implanted in vivo. This is particularly important in the context of tissues whose intrinsic regenerative capacity is limited, such as cartilage. However, the clinical translation of hydrogels has been limited by their poor mechanical performance, low Adhesive strength, uncontrolled degradation rates, and their susceptibility to bacterial colonization. Here, we introduce an elastic, antimicrobial, and Adhesive hydrogel comprised of methacrylated hyaluronic acid (MeHA) and an elastin-like polypeptide (ELP), which can be rapidly photo-cross-linked in situ for the regeneration and repair of different tissu...

Iman Noshadi - One of the best experts on this subject based on the ideXlab platform.

  • Engineering Adhesive and antimicrobial hyaluronic acid elastin like polypeptide hybrid hydrogels for tissue Engineering applications
    ACS Biomaterials Science & Engineering, 2018
    Co-Authors: Ehsan Shirzaei Sani, Roberto Portillolara, Andrew R Spencer, Wendy Yu, Benjamin M Geilich, Iman Noshadi, Thomas J Webster, Nasim Annabi
    Abstract:

    Hydrogel-based biomaterials have been widely used for tissue Engineering applications because of their high water content, swellability, and permeability, which facilitate transport and diffusion of essential nutrients, oxygen, and waste across the scaffold. These characteristics make hydrogels suitable for encapsulating cells and creating a cell supportive environment that promotes tissue regeneration when implanted in vivo. This is particularly important in the context of tissues whose intrinsic regenerative capacity is limited, such as cartilage. However, the clinical translation of hydrogels has been limited by their poor mechanical performance, low Adhesive strength, uncontrolled degradation rates, and their susceptibility to bacterial colonization. Here, we introduce an elastic, antimicrobial, and Adhesive hydrogel comprised of methacrylated hyaluronic acid (MeHA) and an elastin-like polypeptide (ELP), which can be rapidly photo-cross-linked in situ for the regeneration and repair of different tissu...

  • Engineering Adhesive and Antimicrobial Hyaluronic Acid/Elastin-like Polypeptide Hybrid Hydrogels for Tissue Engineering Applications
    ACS Biomaterials Science & Engineering, 2018
    Co-Authors: Ehsan Shirzaei Sani, Andrew R Spencer, Wendy Yu, Benjamin M Geilich, Iman Noshadi, Thomas J Webster, Roberto Portillo-lara, Nasim Annabi
    Abstract:

    Hydrogel-based biomaterials have been widely used for tissue Engineering applications because of their high water content, swellability, and permeability, which facilitate transport and diffusion of essential nutrients, oxygen, and waste across the scaffold. These characteristics make hydrogels suitable for encapsulating cells and creating a cell supportive environment that promotes tissue regeneration when implanted in vivo. This is particularly important in the context of tissues whose intrinsic regenerative capacity is limited, such as cartilage. However, the clinical translation of hydrogels has been limited by their poor mechanical performance, low Adhesive strength, uncontrolled degradation rates, and their susceptibility to bacterial colonization. Here, we introduce an elastic, antimicrobial, and Adhesive hydrogel comprised of methacrylated hyaluronic acid (MeHA) and an elastin-like polypeptide (ELP), which can be rapidly photo-cross-linked in situ for the regeneration and repair of different tissu...