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首页> 外文期刊>Biomaterials Science >Controllably degradable β-sheet nanofibers and gels from self-assembling depsipeptides
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Controllably degradable β-sheet nanofibers and gels from self-assembling depsipeptides

机译:自组装二肽可控制降解的β-折叠纳米纤维和凝胶

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Self-assembled peptide materials have received considerable interest for a range of applications, including 3D cell culture, tissue engineering, and the delivery of cells and drugs. One challenge in applying such materials within these areas has been the extreme stability of β-sheet fibrillized peptides, which are resistant to proteolysis, degradation, and turnover in biological environments. In this study, we designed self-assembling depsipeptides containing ester bonds within the peptide backbone. Beta-sheet fibrillized nanofibers were formed in physiologic conditions, and two of these nanofiber-forming depsipeptides produced hydrogels that degraded controllably over the course of days-to-weeks via ester hydrolysis. With HPLC, TEM, and oscillating rheometry, we show that the rate of hydrolysis can be controlled in a straightforward manner by specifying the amino acid residues surrounding the ester bond. In 3D cell cultures, depsipeptide gels softened over the course of several days and permitted considerably more proliferation and spreading of C3H10T1/2 pluripotent stem cells than non-degradable analogs. This approach now provides a reliable and reproducible means to soften or clear β-sheet fibrillized peptide materials from biological environments.
机译:自组装肽材料已在包括3D细胞培养,组织工程以及细胞和药物输送在内的一系列应用中引起了广泛的兴趣。在这些领域中应用此类材料的挑战之一是β-片状原纤维化肽的极高稳定性,它在生物环境中具有抗蛋白水解,降解和周转的能力。在这项研究中,我们设计了在肽主链内含有酯键的自组装二肽。 β-片状原纤维化的纳米纤维是在生理条件下形成的,其中两种形成纳米纤维的二肽产生了水凝胶,这些水凝胶通过酯水解在数天至数周的时间内可控地降解。通过HPLC,TEM和振荡流变法,我们表明可以通过指定酯键周围的氨基酸残基以直接的方式控制水解速率。在3D细胞培养中,十肽肽凝胶在几天的过程中软化,并且与不可降解的类似物相比,C3H10T1 / 2多能干细胞具有更大的增殖和扩散能力。现在,该方法提供了一种可靠且可重现的方法,可以软化或清除生物环境中的β-折叠原纤维化的肽物质。

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