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Development of multifunctional collagen scaffolds directed by collagen mimetic peptides.

机译:由胶原蛋白模拟肽指导的多功能胶原蛋白支架的开发。

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摘要

Collagen is widely used for soft tissue replacement and tissue engineering scaffold. Functionalized collagen may offer new and improved applications for collagen-based biomaterials. But passively adsorbed molecules readily diffuse out from collagen matrix, and conventional chemical reactions on collagen are difficult to control and may compromise the biochemical feature of natural collagen. Hence, the aim of this dissertation is to develop a new physical collagen modification method through the non-covalent immobilization of collagen mimetic peptides (CMPs) and CMP derivatives on collagen scaffolds, thereby evading the drawbacks of passive and chemical modifications. Most of the research on CMPs over the past three decades has focused on synthesizing CMPs and understanding the effects of amino acid sequence on the peptide structural stability. Although few attempts have been made to develop biomaterials based on pure CMP, CMP has never used in complex with natural collagen.;We demonstrate that CMPs with varying chain lengths have strong propensity to associate with natural 2-D and 3-D collagen substrates. We also show that CMPs can recognize and bind to reconstituted type I collagen fibers as well as collagens of ex vivo human liver tissue. The practical use of CMPs conjugated with linear and multi-arm poly(ethylene glycol)s allows to control cell organization in 2-D collagen substrates. Our cell adhesion studies suggest that under certain conditions (e.g. high incubation temperature, small CMP size), the bound CMP derivatives can be released from the collagen matrix, which may provide new opportunities for manipulating cell behavior especially by dynamically controlling the amount of signaling molecules in the collagen matrix. Polyanionic charged CMP was synthesized to modulate tubulogenesis of endothelial cells by attracting VEGF with 3-D collagen gel and a new PEG hydrogel using bifunctional CMP conjugates was synthesized as physico-chemical crosslinkers for star-shaped PEG.
机译:胶原蛋白被广泛用于软组织置换和组织工程支架。功能化胶原蛋白可以为基于胶原蛋白的生物材料提供新的和改进的应用。但是被动吸附的分子很容易从胶原蛋白基质中扩散出来,传统的胶原蛋白化学反应难以控制,并且可能损害天然胶原蛋白的生化特性。因此,本文的目的是通过将胶原模拟肽(CMPs)和CMP衍生物非共价固定在胶原蛋白支架上来开发一种新的物理胶原蛋白修饰方法,从而避免了被动修饰和化学修饰的弊端。在过去的三十年中,大多数有关CMP的研究都集中在CMP的合成和了解氨基酸序列对肽结构稳定性的影响上。尽管很少有人尝试开发基于纯CMP的生物材料,但CMP从未与天然胶原蛋白复合使用。我们证明链长不同的CMP具有与天然2D和3D胶原蛋白底物缔合的强烈倾向。我们还表明,CMP可以识别并结合到重组的I型胶原纤维以及离体人类肝脏组织的胶原。与线性和多臂聚乙二醇偶联的CMP的实际使用可以控制二维胶原蛋白底物中的细胞组织。我们的细胞粘附研究表明,在某些条件下(例如,较高的孵育温度,较小的CMP尺寸),结合的CMP衍生物可以从胶原蛋白基质中释放出来,这可能为操纵细胞行为提供了新的机会,尤其是通过动态控制信号分子的数量在胶原蛋白基质中。合成了带聚阴离子的CMP,通过利用3-D胶原凝胶吸引VEGF来调节内皮细胞的微管生成,并使用双功能CMP偶联物合成了新的PEG水凝胶,作为星形PEG的物理化学交联剂。

著录项

  • 作者

    Wang, Yi-Lan (Allen).;

  • 作者单位

    The Johns Hopkins University.;

  • 授予单位 The Johns Hopkins University.;
  • 学科 Engineering Biomedical.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 146 p.
  • 总页数 146
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;工程材料学;
  • 关键词

  • 入库时间 2022-08-17 11:39:21

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