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    • 1. 发明授权
    • Modified self-assembling peptides
    • 改良的自组装肽
    • US08022178B2
    • 2011-09-20
    • US11904278
    • 2007-09-26
    • Akihiro HoriiShuguang ZhangXiumei WangFabrizio Gelain
    • Akihiro HoriiShuguang ZhangXiumei WangFabrizio Gelain
    • C07K14/00
    • C07K14/001A61K47/66A61L27/227A61L27/54A61L2300/25A61L2300/414B82Y5/00C07K14/78
    • The present invention provides a self-assembling peptide comprising: (a) a first amino acid domain that mediates self-assembly, wherein the domain comprises alternating hydrophobic and hydrophilic amino acids that are complementary and structurally compatible and self-assemble into a macroscopic structure when present in unmodified form; and (b) a second amino acid domain that does not mediate self-assembly in isolated form, wherein the second amino acid domain comprises at least one minimal biologically active sequence. Such self-assembling peptides are described herein as “modified self-assemblingpeptides.” The present invention also provides pharmaceutical compositions, kits and matrices comprising a modified self-assembling peptide, and methods of using and making such compositions, kits and matrices.
    • 本发明提供了一种自组装肽,其包含:(a)介导自组装的第一氨基酸结构域,其中所述结构域包含互补和结构相容的交替疏水和亲水氨基酸,并且自组装成宏观结构,当 以未经修改的形式出现; 和(b)不以分离形式介导自组装的第二氨基酸结构域,其中第二氨基酸结构域包含至少一个最小生物活性序列。 这种自组装肽在本文中被描述为“修饰的自组装肽”。本发明还提供了包含修饰的自组装肽的药物组合物,试剂盒和基质,以及使用和制备这种组合物,试剂盒和基质的方法。
    • 3. 发明申请
    • NOVEL SELF-ASSEMBLING PEPTIDES AND THEIR USE IN THE FORMATION OF HYDROGELS
    • 新型自组装肽及其在形成水凝胶中的应用
    • US20130053324A1
    • 2013-02-28
    • US13642081
    • 2011-04-19
    • Angelo Luigi VescoviFabrizio Gelain
    • Angelo Luigi VescoviFabrizio Gelain
    • C07K7/06A61K47/42C07K14/00C12N5/071A61P25/00A61K38/08A61K38/10D02G3/22C07K7/08C12N5/0797B82Y5/00
    • B82Y5/00B82Y15/00C07K7/06C07K7/08C12N5/0068C12N2533/50
    • There is described a group of novel self-assembling peptides (SAPs), comprising biotinylated and unbiotinylated sequences, hybrid peptide-peptoid sequences, branched sequences for a total of 48 tested motifs, showing a heterogeneous ensemble of spontaneously self-assembled structures at the nano- and microscale, ranging from short tabular fibers to twisted ribbons, nanotubes and hierarchical self-assembled micrometer-long sheets. Specifically, the SAPs according to the present invention which initially spontaneous assemble, surprisingly form stable solid scaffolds upon exposure to neutral pH buffer. Further these SAPs allow adhesion, proliferation and differentiation of murine and human neural stem cells and have self-healing propensity. They also did not exert toxic effects in the central nervous system, can stop bleeding and foster nervous regeneration. Therefore, the SAPs according to the present invention are improved biomaterials, a highly valid and useful alternative which may replace the known SAPs, thus overcoming the disadvantages related thereto.
    • 描述了一组新的自组装肽(SAP),其包含生物素化和未生物素化的序列,杂合肽 - 肽类序列,总共48个测试的基序的支链序列,显示在纳米的自发自组装结构的异质组合 - 微尺度,从短片状纤维到扭曲带,纳米管和分级自组装千分尺长片。 具体地,根据本发明的初始自发组装的SAP在暴露于​​中性pH缓冲液时令人惊奇地形成稳定的固体支架。 此外,这些SAP允许鼠和人神经干细胞的粘附,增殖和分化,并具有自我修复倾向。 他们也没有在中枢神经系统发挥毒性作用,可以止血,促进神经再生。 因此,根据本发明的SAP是改进的生物材料,这是一种非常有效和有用的替代方案,其可以替代已知的SAP,从而克服与之相关的缺点。
    • 4. 发明授权
    • Self-assembling peptides and their use in the formation of hydrogels
    • 自组装肽及其在水凝胶形成中的应用
    • US08722850B2
    • 2014-05-13
    • US13642081
    • 2011-04-19
    • Angelo Luigi VescoviFabrizio Gelain
    • Angelo Luigi VescoviFabrizio Gelain
    • A61K38/00C07K2/00C07K4/00C07K5/00C07F7/00C07K14/00C12N5/00C12N5/07C12N5/071C12N5/073C12N5/077C12N5/0775
    • B82Y5/00B82Y15/00C07K7/06C07K7/08C12N5/0068C12N2533/50
    • There is described a group of novel self-assembling peptides (SAPs), comprising biotinylated and unbiotinylated sequences, hybrid peptide-peptoid sequences, branched sequences for a total of 48 tested motifs, showing a heterogeneous ensemble of spontaneously self-assembled structures at the nano- and microscale, ranging from short tabular fibers to twisted ribbons, nanotubes and hierarchical self-assembled micrometer-long sheets. Specifically, the SAPs according to the present invention which initially spontaneous assemble, surprisingly form stable solid scaffolds upon exposure to neutral pH buffer. Further these SAPs allow adhesion, proliferation and differentiation of murine and human neural stem cells and have self-healing propensity. They also did not exert toxic effects in the central nervous system, can stop bleeding and foster nervous regeneration. Therefore, the SAPs according to the present invention are improved biomaterials, a highly valid and useful alternative which may replace the known SAPs, thus overcoming the disadvantages related thereto.
    • 描述了一组新的自组装肽(SAP),其包含生物素化和未生物素化的序列,杂合肽 - 肽类序列,总共48个测试的基序的支链序列,显示在纳米的自发自组装结构的异质组合 - 微尺度,从短片状纤维到扭曲带,纳米管和分级自组装千分尺长片。 具体地,根据本发明的初始自发组装的SAP在暴露于​​中性pH缓冲液时令人惊奇地形成稳定的固体支架。 此外,这些SAP允许鼠和人神经干细胞的粘附,增殖和分化,并具有自我修复倾向。 他们也没有在中枢神经系统发挥毒性作用,可以止血,促进神经再生。 因此,根据本发明的SAP是改进的生物材料,这是一种非常有效和有用的替代方案,其可以替代已知的SAP,从而克服与之相关的缺点。