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Sodium dodecyl sulfate-induced rapid gelation of silk fibroin

机译:十二烷基硫酸钠诱导的丝素蛋白快速凝胶化

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摘要

The in situ formation of injectable silk fibroin (SF) hydrogels have potential advantages over various other biomaterials due to the minimal invasiveness during application. Biomaterials need to gel rapidly under physiological conditions after injection. In the current paper, a novel way to accelerate SF gelation using an anionic surfactant, sodium dodecyl sulfate (SDS), as a gelling agent is reported. The mechanism of SDS-induced rapid gelation was determined. At low surfactant concentrations, hydrophobic interactions among the SF chains played a dominant role in the association, leading to decreased gelation time. At higher concentrations of surfactant, electrostatic repulsive forces among micellar aggregates gradually became dominant and gelation was hindered. Gel formation involves the connection of clusters formed by the accumulation of nanoparticles. This process is accompanied by the rapid formation of β-sheet structures due to hydrophobic and electrostatic interactions. It is expected that the silk hydrogel with short gelation time will be used as an injectable hydrogel in drug delivery or cartilage tissue engineering.
机译:可注射的丝素蛋白(SF)水凝胶的原位形成具有比各种其他生物材料潜在的优势,这是由于在应用过程中具有最小的侵入性。注射后,生物材料需要在生理条件下迅速凝胶化。在当前的论文中,报道了一种使用阴离子表面活性剂十二烷基硫酸钠(SDS)作为胶凝剂来加速SF胶凝的新方法。确定了SDS诱导的快速胶凝的机制。在低表面活性剂浓度下,SF链之间的疏水性相互作用在缔合中起主要作用,从而缩短了胶凝时间。在较高浓度的表面活性剂下,胶束聚集体之间的静电排斥力逐渐占主导地位,并阻碍了胶凝作用。凝胶形成涉及由纳米颗粒的积累形成的簇的连接。由于疏水和静电相互作用,该过程伴随着β-折叠结构的快速形成。预计凝胶时间短的丝绸水凝胶将用作药物输送或软骨组织工程中的可注射水凝胶。

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