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Processing and characterisation of a novel electropolymerized silk fibroin hydrogel membrane

机译:新型电聚合丝纤维素水凝胶膜的加工与表征

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摘要

Silk fibroin can be made into various forms of biocompatible medical materials, including hydrogel due to its excellent properties. Here, we report a novel method for the preparation of electropolymerized silk fibroin hydrogel membrane (ESFHM), which is formed on a nanoporous film as a barrier using a homemade device at a higher DC voltage. Regenerated silk fibroin solution in Tris buffer (pH 6.55–7.55) was added into a reservoir with a negative charge, and the silk molecules migrated toward the positive charge at 80VDC, resulting in the formation of the ESFHM on the barrier film. Barrier film with a MWCO of 10?kDa is favourable to the formation of the ESFHM. Semi-transparent ESFHM with a swelling ratio of 1056.4% predominantly consisted of a mixture of β-sheets and α-helix crystalline structures. SEM studies revealed that the ESFHM consisted of a 3D mesh structure woven by a chain of silk fibroin nanoparticles with a size of approximately 30 nanometres, similar to a pearl necklace. In vitro studies indicated that the ESFHM was degradable and was sufficient for cell adhesion and growth. Thus, ESFHM is a promising candidate for loading bioactive protein and appropriate cells, as artificial skin or for use in transplantation.
机译:丝素蛋白可以制成各种形式的生物相容性医疗材料,包括由于其优异的性能而产生的水凝胶。在此,我们报告了一种新的用于制备电聚合的丝素素水凝胶膜(ESFHM)的新方法,其在纳米多孔膜上形成为在更高的DC电压下的自制装置的屏障。将Ris缓冲液(pH6.55-7.55)中的再生丝素蛋白溶液加入储存器中,具有负电荷,并且丝分子朝向80V DC 的正电荷迁移,导致ESFHM的形成在阻挡膜上。 MWCO为10?KDA的阻挡膜有利于ESFHM的形成。半透明ESFHM具有1056.4%的溶胀比,主要由β-片和α-螺旋晶体结构的混合物组成。 SEM研究表明,ESFHM由一根丝素蛋白纳米粒子链编织的3D网状结构组成,其尺寸约为30纳米,类似于珍珠项链。体外研究表明,ESFHM可降解并且足以用于细胞粘附和生长。因此,ESFHM是将生物活性蛋白质和适当细胞加载的有希望的候选者,作为人造皮肤或用于移植。

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