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Macroporous Hydrogels Composed Entirely of Synthetic Polypeptides: Biocompatible and Enzyme Biodegradable 3D Cellular Scaffolds

机译:大孔水凝胶完全由合成多肽组成:生物相容性和酶可生物降解的3D细胞支架。

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摘要

Synthetic polypeptides are a class of bioinspired polymers with well demonstrated biocompatibility, enzyme biodegradability, and cell adhesive properties, making them promising materials for the preparation of macroporous hydrogels as 3D cellular scaffolds. Three-dimensional Macro porous hydrogels composed entirely of biocompatible and enzyme biodegradable synthetic polypeptides have thus been prepared. Under cryoconditions, macroporous hydrogels in the form of macroporous cryogels were prepared using a single copolymer component through direct EDC/sulfo-NHS zero-length cross-linking between poly(L-glutamic acid) (PLG) and poly(L-lysine) (PLL) residues on a PLG-r-PLL random copolypeptide chain.:The resulting macroporous cryogels were found to contain large interconnected pores (>= 100 mu m) highly suitable for tissue engineering applications. Toning the relative ratios of the amino acid components could result in cryogels with very different pore structures, swelling, and mechanical properties, suitable for developing gels for a range,of possible soft tissue engineering applications. These cryogels were shown to be enzymatically biodegradable and demonstrated excellent biocompatibility, cell attachment and cell proliferation profiles with mammalian fibroblast (NIH-3T3) cells, demonstrating the appeal of these novel cryogels as highly suitable cellular scaffolds.
机译:合成多肽是一类具有生物启发性的聚合物,具有良好的生物相容性,酶生物降解性和细胞粘附特性,使其成为制备3D细胞支架大孔水凝胶的有前途的材料。由此制备了完全由生物相容性和酶可生物降解的合成多肽组成的三维宏观多孔水凝胶。在低温条件下,使用单一共聚物组分通过聚(L-谷氨酸)(PLG)与聚(L-赖氨酸)之间的直接EDC /磺基-NHS零长度交联制备大孔冰凝胶形式的大孔水凝胶( PLG-r-PLL无规共聚多肽链上的PLL)残基:发现所形成的大孔冷冻凝胶包含大的互连孔(> = 100μm),非常适合组织工程应用。调整氨基酸成分的相对比例可能会导致冻凝胶具有非常不同的孔结构,溶胀和机械性能,适用于开发一系列可能的软组织工程应用的凝胶。这些冷冻凝胶被证明是酶可生物降解的,并与哺乳动物成纤维细胞(NIH-3T3)细胞表现出优异的生物相容性,细胞附着和细胞增殖特性,证明了这些新型冷冻凝胶作为高度合适的细胞支架的吸引力。

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