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Poly(ethylene glycol) Hydrogels with Adaptable Mechanical and Degradation Properties for Use in Biomedical Applications

机译:具有适应性的机械和降解特性的聚乙二醇水凝胶用于生物医学应用

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摘要

Requirements of hydrogels for drug delivery, wound dressings, and surgical implantation can be extensive, including suitable mechanical properties and tailorable degradation time frames. Herein, an adaptable PEG-based hydrogel, whose mechanical properties and degradation rate can be systematically adjusted to meet these criteria by altering simple variables such as the PEG molecular weight, is described. The performance of these hydrogels in three physical manipulations (pushing, pulling, and folding), representative of manipulations that they may undergo during typical biomedical use, is also assessed. While not all of these formulations can withstand these manipulations, a subset did, and it is intended to further optimize these formulations for specific clinical applications. Additionally, the outcomes of the physical manipulation tests indicate that simply having a high modulus does not correlate with biomedical applicability.
机译:水凝胶对药物输送,伤口敷料和外科植入的要求可能很广泛,包括合适的机械性能和可定制的降解时间框架。在此,描述了一种适应性的基于PEG的水凝胶,其机械性能和降解速率可以通过改变简单的变量例如PEG分子量而被系统地调节以满足这些标准。还评估了这些水凝胶在三种物理操作(推,拉和折叠)中的性能,这些物理操作代表了它们在典型生物医学使用过程中可能进行的操作。尽管并非所有这些制剂都能承受这些操作,但有一部分可以耐受,并且旨在针对特定的临床应用进一步优化这些制剂。另外,物理操作测试的结果表明,仅具有高模量与生物医学适用性无关。

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