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Degradable, click poly(vinyl alcohol) hydrogels: Characterization of degradation and cellular compatibility

机译:可降解的单击聚乙烯醇水凝胶:降解和细胞相容性的表征

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The aim of this research was to understand the influence of functional group density on degradation and cell survival within injectable poly(vinyl alcohol) (PVA) hydrogels crosslinked through hydrazone bonds. For this purpose, PVA was modified with aldehyde and hydrazide functional groups. The click reaction between these two macromers, performed under physiologic conditions, led to hydrogel formation in less than 3 min. The influence of the crosslinking density on the gelation time, volumetric swelling ratio and mass loss of the hydrogels was investigated. These systems were slowly degradable as they maintained their gel-like state for more than 120 days. However, these networks also exhibited unusual degradation behaviour that could be the result of a breaking-forming bond phenomenon, attributable to the reversible nature of the hydrazone bond. This study also demonstrated that these networks maintained their mechanical strength while degrading, and cell encapsulation revealed the cytocompatibility of these systems.
机译:这项研究的目的是了解官能团密度对通过键交联的可注射聚乙烯醇(PVA)水凝胶降解和细胞存活的影响。为此,用醛和酰肼官能团修饰PVA。在生理条件下进行的这两个大分子单体之间的点击反应导致在不到3分钟的时间内形成了水凝胶。研究了交联密度对水凝胶的凝胶化时间,体积溶胀率和质量损失的影响。这些系统在保持超过120天的凝胶状状态时可缓慢降解。但是,这些网络也表现出不寻常的降解行为,这可能是由于bond键的可逆性质导致的断裂键现象。这项研究还表明,这些网络在降解的同时仍保持其机械强度,而细胞封装则揭示了这些系统的细胞相容性。

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