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Minimalistic supramolecular proteoglycan mimics by co-assembly of aromatic peptide and carbohydrate amphiphiles

机译:通过共同组装芳族肽和碳水化合物两亲型微粥样硬化蛋白多糖模拟

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We report the co-assembly of aromatic carbohydrate and dipeptide amphiphiles under physiological conditions as a strategy to generate minimalistic proteoglycan mimics. The resulting nanofibers present a structural, fluorenylmethoxycarbonyl-diphenylalanine (Fmoc-FF) core and a functional carbohydrate (Fmoc-glucosamine-6-sulfate or -phosphate) shell. The size, degree of bundling and mechanical properties of the assembled structures depend on the chemical nature of the carbohydrate amphiphile used. In cell culture medium, these nanofibers can further organize into supramolecular hydrogels. We demonstrate that, similar to proteoglycans, the assembled gels prolong the stability of growth factors and preserve the viability of cultured cells. Our results demonstrate that this approach can be applied to the design of extracellular matrix (ECM) substitutes for future regenerative therapies.
机译:我们在生理条件下报道了芳香碳水化合物和二肽两亲的共同组装作为产生极简主义蛋白多糖模拟的策略。所得纳米纤维具有结构,芴基甲氧基羰基 - 二苯基丙氨酸(FMOC-FF)核和官能碳水化合物(FMOC-葡糖胺-6-硫酸盐或磷酸)壳。组装结构的尺寸,捆绑程度和机械性能取决于所用碳水化合物两亲物的化学性质。在细胞培养基中,这些纳米纤维可以进一步组织成超分子水凝胶。我们证明,类似于蛋白花糖,组装的凝胶延长了生长因子的稳定性并保持了培养细胞的可行性。我们的结果表明,这种方法可以应用于细胞外基质(ECM)替代品的设计,以便进行未来的再生疗法。

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