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Short-peptide-based molecular hydrogels: novel gelation strategies and applications for tissue engineering and drug delivery

机译:Short-peptide-based分子水凝胶:小说凝胶化战略和组织申请工程和药物输送

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Molecular hydrogels hold big potential for tissue engineering and controlled drug delivery. Our lab focuses on short-peptide-based molecular hydrogels formed by biocompatible methods and their applications in tissue engineering (especially, 3D cell culture) and controlled drug delivery. This feature article firstly describes our recent progresses of the development of novel methods to form hydrogels, including the strategy of disulfide bond reduction and assistance with specific protein-peptide interactions. We then introduce the applications of our hydrogels in fields of controlled stem cell differentiation, cell culture, surface modifications of polyester materials by molecular self-assembly, and anti-degradation of recombinant complex proteins. A novel molecular hydrogel system of hydrophobic compounds that are only formed by hydrolysis processes was also included in this article. The hydrogels of hydrophobic compounds, especially those of hydrophobic therapeutic agents, may be developed into a carrier-free delivery system for long term delivery of therapeutic agents. With the efforts in this field, we believe that molecular hydrogels formed by short peptides and hydrophobic therapeutic agents can be practically applied for 3D cell culture and long term drug delivery in near future, respectively.
机译:分子水凝胶组织潜力大工程和药物传输控制。关注short-peptide-based分子水凝胶生物相容性的方法和形成的他们在组织工程的应用(尤其是三维细胞培养)和药物控制交付。我们最近的进步发展的小说形成水凝胶的方法,包括策略二硫键的还原和援助特定的蛋白质肽的相互作用。介绍了水凝胶的应用控制干细胞分化、细胞培养,表面聚酯的修改通过分子自组装材料,anti-degradation重组复杂的蛋白质。一种新型分子水凝胶的疏水系统化合物只是由水解过程也包含在这篇文章。水凝胶的疏水性化合物,特别是疏水性药物的可能发展成为一个无载体交付系统长期的治疗药物。在这个领域的努力,我们相信分子水凝胶形成的短肽疏水性药物可以几乎申请3 d细胞培养和长期的药物分别交付在不久的将来。

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