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    • 5. 发明申请
    • BIOMATERIAL
    • 生物材料
    • US20100248368A1
    • 2010-09-30
    • US12377221
    • 2007-08-10
    • Andrew LynnWilliam BonfieldZachary D. Wissner-GrossBrendan A. HarleyIoannis V. YannasLorna J. Gibson
    • Andrew LynnWilliam BonfieldZachary D. Wissner-GrossBrendan A. HarleyIoannis V. YannasLorna J. Gibson
    • C12N5/071
    • A61L27/46A61L27/48A61L27/56C08L89/06
    • A process for the preparation of a composite biomaterial comprising: providing a first substantially solid component comprising one or more of collagen, a glycosaminoglycan, albumin, hyaluronan, chitosan, and synthetic polypeptides comprising a portion of the polypeptide sequence of collagen, and optionally an inorganic material, said component having at least a surface portion that is porous; providing a fluid composition comprising one or more of collagen, a glycosaminoglycan, albumin, hyaluronan, chitosan, and synthetic polypeptides comprising a portion of the polypeptide sequence of collagen, and a liquid carrier, and optionally an inorganic material; contacting said fluid composition with said porous surface portion of said first component; cooling said fluid composition to a temperature at which the liquid carrier transforms into a plurality of solid crystals or particles; removing at least some of the plurality of solid crystals or particles by sublimation and/or evaporation.
    • 一种制备复合生物材料的方法,包括:提供包含胶原,糖胺聚糖,白蛋白,透明质酸,壳聚糖和包含胶原多肽序列的一部分的合成多肽中的一种或多种的第一基本上固体的组分,以及任选的无机 所述组分至少具有多孔的表面部分; 提供包含胶原,糖胺聚糖,白蛋白,透明质酸,壳聚糖和包含胶原多肽序列的一部分的合成多肽,液体载体和任选的无机材料中的一种或多种的流体组合物; 使所述流体组合物与所述第一组分的所述多孔表面部分接触; 将所述流体组合物冷却至液体载体转变成多个固体晶体或颗粒的温度; 通过升华和/或蒸发去除多个固体晶体或颗粒中的至少一些。
    • 9. 发明授权
    • Biomaterial
    • 生物材料
    • US08318902B2
    • 2012-11-27
    • US12377221
    • 2007-08-10
    • Andrew LynnWilliam BonfieldZachary D. Wissner-GrossBrendan A. HarleyIoannis V. YannasLorna J. Gibson
    • Andrew LynnWilliam BonfieldZachary D. Wissner-GrossBrendan A. HarleyIoannis V. YannasLorna J. Gibson
    • A61K38/17
    • A61L27/46A61L27/48A61L27/56C08L89/06
    • A process for the preparation of a composite biomaterial comprising: providing a first substantially solid component comprising one or more of collagen, a glycosaminoglycan, albumin, hyaluronan, chitosan, and synthetic polypeptides comprising a portion of the polypeptide sequence of collagen, and optionally an inorganic material, said component having at least a surface portion that is porous; providing a fluid composition comprising one or more of collagen, a glycosaminoglycan, albumin, hyaluronan, chitosan, and synthetic polypeptides comprising a portion of the polypeptide sequence of collagen, and a liquid carrier, and optionally an inorganic material; contacting said fluid composition with said porous surface portion of said first component; cooling said fluid composition to a temperature at which the liquid carrier transforms into a plurality of solid crystals or particles; removing at least some of the plurality of solid crystals or particles by sublimation and/or evaporation.
    • 一种制备复合生物材料的方法,包括:提供包含胶原,糖胺聚糖,白蛋白,透明质酸,壳聚糖和包含胶原多肽序列的一部分的合成多肽中的一种或多种的第一基本上固体的组分,以及任选的无机 所述组分至少具有多孔的表面部分; 提供包含胶原,糖胺聚糖,白蛋白,透明质酸,壳聚糖和包含胶原多肽序列的一部分的合成多肽,液体载体和任选的无机材料中的一种或多种的流体组合物; 使所述流体组合物与所述第一组分的所述多孔表面部分接触; 将所述流体组合物冷却至液体载体转变成多个固体晶体或颗粒的温度; 通过升华和/或蒸发去除多个固体晶体或颗粒中的至少一些。