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Synthesis and Characterization of Enzymatically Biodegradable PEG and Peptide-Based Hydrogels Prepared by Click Chemistry

机译:点击化学制备可酶降解的PEG和基于肽的水凝胶的合成与表征

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摘要

Herein we describe the synthesis and rheological characterization of a series of enzymatically sensitive PEG and peptide-based hydrogels by the Cu(I)-catalyzed 1,3-dipolar cycloaddition reaction. The hydrogels were synthesized by a combination of alkyne-functionalized star-shaped PEG molecules (two 4-armed PBGs with M_w 10 and 20 kDa, respectively, and one 8-armed PEG of 20 kDa) and the protease-sensitive bis-azido peptide, N~α-(azido)-D-alanyl-phenylalanyl-lysyl-(2-azidoethyl)-amide (6) in the presence of CuSO4 and sodium ascorbate in aqueous solution. The swelling ratio and the storage modulus (G') of the hydrogels could be tailored by several parameters, for example, the initial solid content of the hydrogel, the molecular weight of the PEG derivative, and by the architecture of the PEG molecule (4- versus 8-armed PEG derivative). The peptide sequence, D-Ala-Phe-Lys, was sensitive toward the proteases plasmin and trypsin to render the hydrogels biodegradable.
机译:本文中,我们描述了通过Cu(I)催化的1,3-偶极环加成反应,合成了一系列酶敏性PEG和基于肽的水凝胶,并对其进行了流变学表征。水凝胶是由炔烃官能化的星形PEG分子(分别具有M_w 10和20 kDa的两个4臂PBG和一个20 kDa的8臂PEG)与蛋白酶敏感的双叠氮基肽组合而成的。 ,在水溶液中有CuSO4和抗坏血酸钠存在下的N-α-(叠氮基)-D-丙氨酰基-苯丙氨酰基-赖氨酰基-(2-叠氮基乙基)-酰胺(6)。水凝胶的溶胀率和储能模量(G')可以通过几个参数进行调整,例如,水凝胶的初始固体含量,PEG衍生物的分子量以及PEG分子的结构(4 -与8臂PEG衍生物相比)。肽序列D-Ala-Phe-Lys对蛋白酶纤溶酶和胰蛋白酶敏感,从而使水凝胶可生物降解。

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