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Characterization of Five Collagenous Biomaterials by SEM Observations, TG-DTA, Collagenase Dissolution Tests and Subcutaneous Implantation Tests
by
Taira, Masayuki
, Kihara, Hidemichi
, Takafuji, Kyoko
, Hoshi, Miki
, Hachinohe, Yuki
, Sawada, Tomofumi
, Takemoto, Shinji
, Kondo, Hisatomo
, Hatakeyama, Wataru
in
Amino acids
/ Biodegradation
/ Biomedical materials
/ Collagen
/ Contact angle
/ Dentistry
/ Differential thermal analysis
/ Differential thermogravimetric analysis
/ Dissolution
/ Extracellular matrix
/ Implantation
/ In vivo methods and tests
/ Manufacturing
/ Material properties
/ Membranes
/ Morphology
/ Photomicrographs
/ Porous materials
/ Proteins
/ Scanning electron microscopy
/ Skin
/ Soft tissues
/ Spectrum analysis
/ Stem cells
/ Surgical implants
/ Thermogravimetry
/ Tissue engineering
2022
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Characterization of Five Collagenous Biomaterials by SEM Observations, TG-DTA, Collagenase Dissolution Tests and Subcutaneous Implantation Tests
by
Taira, Masayuki
, Kihara, Hidemichi
, Takafuji, Kyoko
, Hoshi, Miki
, Hachinohe, Yuki
, Sawada, Tomofumi
, Takemoto, Shinji
, Kondo, Hisatomo
, Hatakeyama, Wataru
in
Amino acids
/ Biodegradation
/ Biomedical materials
/ Collagen
/ Contact angle
/ Dentistry
/ Differential thermal analysis
/ Differential thermogravimetric analysis
/ Dissolution
/ Extracellular matrix
/ Implantation
/ In vivo methods and tests
/ Manufacturing
/ Material properties
/ Membranes
/ Morphology
/ Photomicrographs
/ Porous materials
/ Proteins
/ Scanning electron microscopy
/ Skin
/ Soft tissues
/ Spectrum analysis
/ Stem cells
/ Surgical implants
/ Thermogravimetry
/ Tissue engineering
2022
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Characterization of Five Collagenous Biomaterials by SEM Observations, TG-DTA, Collagenase Dissolution Tests and Subcutaneous Implantation Tests
by
Taira, Masayuki
, Kihara, Hidemichi
, Takafuji, Kyoko
, Hoshi, Miki
, Hachinohe, Yuki
, Sawada, Tomofumi
, Takemoto, Shinji
, Kondo, Hisatomo
, Hatakeyama, Wataru
in
Amino acids
/ Biodegradation
/ Biomedical materials
/ Collagen
/ Contact angle
/ Dentistry
/ Differential thermal analysis
/ Differential thermogravimetric analysis
/ Dissolution
/ Extracellular matrix
/ Implantation
/ In vivo methods and tests
/ Manufacturing
/ Material properties
/ Membranes
/ Morphology
/ Photomicrographs
/ Porous materials
/ Proteins
/ Scanning electron microscopy
/ Skin
/ Soft tissues
/ Spectrum analysis
/ Stem cells
/ Surgical implants
/ Thermogravimetry
/ Tissue engineering
2022
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Characterization of Five Collagenous Biomaterials by SEM Observations, TG-DTA, Collagenase Dissolution Tests and Subcutaneous Implantation Tests
Journal Article
Characterization of Five Collagenous Biomaterials by SEM Observations, TG-DTA, Collagenase Dissolution Tests and Subcutaneous Implantation Tests
2022
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Overview
Collagenous biomaterials that are clinically applied in dentistry have dermis-type and membrane-type, both of which are materials for promoting bone and soft tissue formation. The properties of materials supplied with different types could affect their biodegradation periods. The purpose of this study was to characterize five of these products by four different methods: scanning electron microscopy (SEM) observation, thermogravimetry-differential thermal analysis (TG-DTA), 0.01 wt% collagenase dissolution test, and subcutaneous implantation test in vivo. SEM micrographs revealed that both dermis and membranous materials were fibrous and porous. The membranous materials had higher specific derivative thermal gravimetry (DTG) peak temperatures in TG-DTA at around 320 °C, longer collagenase dissolution time ranging from about 300 to 500 min, and more longevity in mice exceeding 9 weeks than the dermis materials. There existed a correlation between the peak temperature in TG-DTA and the collagenase dissolution time. It was considered that higher cross-link degree among collagen fibrils of the membrane-type collagenous materials might account for these phenomena. The experimental protocol and numerical results obtained could be helpful for selection and future development of fibrous collagenous biomaterials in clinical use.
Publisher
MDPI AG,MDPI
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