The Experts below are selected from a list of 309 Experts worldwide ranked by ideXlab platform

D C Jagger - One of the best experts on this subject based on the ideXlab platform.

  • Chlorhexidine adsorption to anatase and rutile titanium dioxide
    Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2007
    Co-Authors: Michele E. Barbour, Dominic Sullivan, D C Jagger
    Abstract:

    Many dental and biomedical implants are composed primarily of titanium. Titanium metal is coated with a layer of titanium dioxide under ambient conditions. Crystalline titanium dioxide most commonly occurs in one of two crystal structures: anatase and rutile. Recently, there has been interest in functionalisation of implant surfaces with antimicrobials, to reduce the likelihood of bacterial infestation and colonisation of the surrounding tissues. In this study, the adsorption and subsequent desorption of a common antimicrobial, chlorhexidine digluconate, to anatase and rutile titanium dioxide was investigated in two different Buffers (MES, PBS). Chlorhexidine in MES Buffer adsorbed rapidly (

  • Chlorhexidine adsorption to anatase and rutile titanium dioxide
    Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2007
    Co-Authors: Michele E. Barbour, Dominic Sullivan, D C Jagger
    Abstract:

    Many dental and biomedical implants are composed primarily of titanium. Titanium metal is coated with a layer of titanium dioxide under ambient conditions. Crystalline titanium dioxide most commonly occurs in one of two crystal structures: anatase and rutile. Recently, there has been interest in functionalisation of implant surfaces with antimicrobials, to reduce the likelihood of bacterial infestation and colonisation of the surrounding tissues. In this study, the adsorption and subsequent desorption of a common antimicrobial, chlorhexidine digluconate, to anatase and rutile titanium dioxide was investigated in two different Buffers (MES, PBS). Chlorhexidine in MES Buffer adsorbed rapidly (

Nobuo Tanaka - One of the best experts on this subject based on the ideXlab platform.

  • Crystallization and preliminary X-ray studies of xylanase 10B from Thermotoga maritima.
    Acta Crystallographica Section D Biological Crystallography, 2003
    Co-Authors: Ihsanawati, Takashi Kumasaka, Tomonori Kaneko, Chihiro Morokuma, Satoshi Nakamura, Nobuo Tanaka
    Abstract:

    Xylanases catalyze the hydrolysis of the β-1,4-glycosidic bonds of xylan, which is the second most abundant component of plant cell walls after cellulose. The recombinant xylanase 10B from Thermotoga maritima MSB8 was prepared and crystallized by the sitting-drop vapour-diffusion method using 40 mM zinc acetate, 20 mM MES Buffer pH 6.0 and 3% ethanol. Intensity data were collected to 2.5 A resolution at beamline BL26B2 of SPring-8. Preliminary X-ray analysis showed that the crystal belongs to space group P21212, with unit-cell parameters a = 77.3, b = 80.6, c = 58.2 A and one molecule per asymmetric unit.

  • Crystallization and preliminary X-ray studies of xylanase 10B from Thermotoga maritima.
    Acta crystallographica. Section D Biological crystallography, 2003
    Co-Authors: Ihsanawati, Takashi Kumasaka, Tomonori Kaneko, Chihiro Morokuma, Satoshi Nakamura, Nobuo Tanaka
    Abstract:

    Xylanases catalyze the hydrolysis of the beta-1,4-glycosidic bonds of xylan, which is the second most abundant component of plant cell walls after cellulose. The recombinant xylanase 10B from Thermotoga maritima MSB8 was prepared and crystallized by the sitting-drop vapour-diffusion method using 40 mM zinc acetate, 20 mM MES Buffer pH 6.0 and 3% ethanol. Intensity data were collected to 2.5 A resolution at beamline BL26B2 of SPring-8. Preliminary X-ray analysis showed that the crystal belongs to space group P2(1)2(1)2, with unit-cell parameters a = 77.3, b = 80.6, c = 58.2 A and one molecule per asymmetric unit.

Michele E. Barbour - One of the best experts on this subject based on the ideXlab platform.

  • Chlorhexidine adsorption to anatase and rutile titanium dioxide
    Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2007
    Co-Authors: Michele E. Barbour, Dominic Sullivan, D C Jagger
    Abstract:

    Many dental and biomedical implants are composed primarily of titanium. Titanium metal is coated with a layer of titanium dioxide under ambient conditions. Crystalline titanium dioxide most commonly occurs in one of two crystal structures: anatase and rutile. Recently, there has been interest in functionalisation of implant surfaces with antimicrobials, to reduce the likelihood of bacterial infestation and colonisation of the surrounding tissues. In this study, the adsorption and subsequent desorption of a common antimicrobial, chlorhexidine digluconate, to anatase and rutile titanium dioxide was investigated in two different Buffers (MES, PBS). Chlorhexidine in MES Buffer adsorbed rapidly (

  • Chlorhexidine adsorption to anatase and rutile titanium dioxide
    Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2007
    Co-Authors: Michele E. Barbour, Dominic Sullivan, D C Jagger
    Abstract:

    Many dental and biomedical implants are composed primarily of titanium. Titanium metal is coated with a layer of titanium dioxide under ambient conditions. Crystalline titanium dioxide most commonly occurs in one of two crystal structures: anatase and rutile. Recently, there has been interest in functionalisation of implant surfaces with antimicrobials, to reduce the likelihood of bacterial infestation and colonisation of the surrounding tissues. In this study, the adsorption and subsequent desorption of a common antimicrobial, chlorhexidine digluconate, to anatase and rutile titanium dioxide was investigated in two different Buffers (MES, PBS). Chlorhexidine in MES Buffer adsorbed rapidly (

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

  • Crystallization and preliminary X-ray studies of xylanase 10B from Thermotoga maritima.
    Acta Crystallographica Section D Biological Crystallography, 2003
    Co-Authors: Ihsanawati, Takashi Kumasaka, Tomonori Kaneko, Chihiro Morokuma, Satoshi Nakamura, Nobuo Tanaka
    Abstract:

    Xylanases catalyze the hydrolysis of the β-1,4-glycosidic bonds of xylan, which is the second most abundant component of plant cell walls after cellulose. The recombinant xylanase 10B from Thermotoga maritima MSB8 was prepared and crystallized by the sitting-drop vapour-diffusion method using 40 mM zinc acetate, 20 mM MES Buffer pH 6.0 and 3% ethanol. Intensity data were collected to 2.5 A resolution at beamline BL26B2 of SPring-8. Preliminary X-ray analysis showed that the crystal belongs to space group P21212, with unit-cell parameters a = 77.3, b = 80.6, c = 58.2 A and one molecule per asymmetric unit.

  • Crystallization and preliminary X-ray studies of xylanase 10B from Thermotoga maritima.
    Acta crystallographica. Section D Biological crystallography, 2003
    Co-Authors: Ihsanawati, Takashi Kumasaka, Tomonori Kaneko, Chihiro Morokuma, Satoshi Nakamura, Nobuo Tanaka
    Abstract:

    Xylanases catalyze the hydrolysis of the beta-1,4-glycosidic bonds of xylan, which is the second most abundant component of plant cell walls after cellulose. The recombinant xylanase 10B from Thermotoga maritima MSB8 was prepared and crystallized by the sitting-drop vapour-diffusion method using 40 mM zinc acetate, 20 mM MES Buffer pH 6.0 and 3% ethanol. Intensity data were collected to 2.5 A resolution at beamline BL26B2 of SPring-8. Preliminary X-ray analysis showed that the crystal belongs to space group P2(1)2(1)2, with unit-cell parameters a = 77.3, b = 80.6, c = 58.2 A and one molecule per asymmetric unit.

Dominic Sullivan - One of the best experts on this subject based on the ideXlab platform.

  • Chlorhexidine adsorption to anatase and rutile titanium dioxide
    Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2007
    Co-Authors: Michele E. Barbour, Dominic Sullivan, D C Jagger
    Abstract:

    Many dental and biomedical implants are composed primarily of titanium. Titanium metal is coated with a layer of titanium dioxide under ambient conditions. Crystalline titanium dioxide most commonly occurs in one of two crystal structures: anatase and rutile. Recently, there has been interest in functionalisation of implant surfaces with antimicrobials, to reduce the likelihood of bacterial infestation and colonisation of the surrounding tissues. In this study, the adsorption and subsequent desorption of a common antimicrobial, chlorhexidine digluconate, to anatase and rutile titanium dioxide was investigated in two different Buffers (MES, PBS). Chlorhexidine in MES Buffer adsorbed rapidly (

  • Chlorhexidine adsorption to anatase and rutile titanium dioxide
    Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2007
    Co-Authors: Michele E. Barbour, Dominic Sullivan, D C Jagger
    Abstract:

    Many dental and biomedical implants are composed primarily of titanium. Titanium metal is coated with a layer of titanium dioxide under ambient conditions. Crystalline titanium dioxide most commonly occurs in one of two crystal structures: anatase and rutile. Recently, there has been interest in functionalisation of implant surfaces with antimicrobials, to reduce the likelihood of bacterial infestation and colonisation of the surrounding tissues. In this study, the adsorption and subsequent desorption of a common antimicrobial, chlorhexidine digluconate, to anatase and rutile titanium dioxide was investigated in two different Buffers (MES, PBS). Chlorhexidine in MES Buffer adsorbed rapidly (