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Influence of polymer structure and biodegradation on DNA release from silk-elastinlike protein polymer hydrogels

机译:聚合物结构和生物降解对丝弹性蛋白蛋白质聚合物水凝胶中DNA释放的影响

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摘要

Silk-elastinlike protein polymers (SELPs) of varying ratios and lengths of silk and elastin blocks capable of hydrogel formation were evaluated as matrices for controlled delivery of plasmid DNA. Influence of polymer structure, ionic strength of the media and gelation time on DNA release from two structurally related hydrogels, SELP-47K and SELP-415K, was evaluated. The influence of elastase-induced degradation on the swelling behavior and DNA release from these hydrogels was investigated. Results indicate that release is a function of polymer structure, concentration and cure time. SELP-415K which has twice the number of elastin units as that of SELP-47K demonstrated higher release than that of SELP-47K. DNA release from these hydrogels is an inverse function of polymer concentration and cure time, with higher release observed at lower polymer concentration and shorter cure time. Results indicate that ionic strength of the media governs the rate of release. An increase in swelling ratio was observed in the presence of elastase at 12wt% composition for both SELP analogs. Release in the presence of elastase was enhanced due to increased swelling ratio and loss of hydrogel integrity. These studies allude to the utility of recombinant techniques to control plasmid DNA release and biodegradation in SELP hydrogels.
机译:评估能够改变水凝胶形成的丝绸和弹性蛋白嵌段的比例和长度的丝绸-弹性蛋白蛋白聚合物(SELP),作为控制质粒DNA传递的基质。评估了聚合物结构,介质的离子强度和胶凝时间对从两种结构相关的水凝胶SELP-47K和SELP-415K释放DNA的影响。研究了弹性蛋白酶诱导的降解对这些水凝胶的溶胀行为和DNA释放的影响。结果表明释放是聚合物结构,浓度和固化时间的函数。 SELP-415K的弹性蛋白单元数是SELP-47K的两倍,证明其释放高于SELP-47K。从这些水凝胶中释放的DNA与聚合物浓度和固化时间成反比,在较低的聚合物浓度和较短的固化时间中观察到较高的释放。结果表明,介质的离子强度决定了释放速率。对于两种SELP类似物,在存在弹性蛋白酶的情况下,在组成为12wt%的弹性蛋白酶的情况下,观察到溶胀率的增加。由于增加的溶胀率和水凝胶完整性的丧失,增强了在弹性蛋白酶存在下的释放。这些研究暗示了重组技术在控制SELP水凝胶中质粒DNA释放和生物降解中的实用性。

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