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A New Crosslinker for the Preparation of Silk Fibroin Hydrogels

机译:一种新的交联剂,用于制备丝纤维素水凝胶

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Silk fibroin (SF) hydrogels has recently been explored as promising matrices for biomedical applications due to their excellent biodegradability, biocompatibility and hydrophilicity. Despite these, native SF hydrogels showed poor water resistance with typical uncontrollable gelation kinetics. To overcome these drawbacks, a new method of chemical crosslinking using O’O-bis[2-(N-succinimidyl succinylamino) ethyl]polyethylene glycol (NHSP) as a homobifunctional protein crosslinker was employed. A crosslinking reaction, performed under physiological conditions, was completed within 24 hours, producing a hybrid interconnected porous architecture. This network formation contributed to the shortened gelation kinetics and was confirmed by the appearance of a new IR absorption peak of the ether linkage (1102-1104 cm ). A new thermal degradation temperature found at 430°C also reconfirmed the presence of such newly-formed covalent network within the samples. In addition, NHSP could induce a silk phase transformation from the a-helices into the b-sheets, as convinced by the shifts of the amide absorption bands (Amide I, Amide II and Amide III), illustrating their strong intermolecular interactions. The new proposed method has thus, proven its potential use to render the silk-based materials for controlled drug delivery applications.
机译:由于其优异的生物降解性,生物相容性和亲水性,丝纤维素(SF)水凝胶最近被探索为生物医学应用的有前途的基质。尽管如此,天然的SF水凝胶显示出耐水性差,典型的无法控制的凝胶化动力学。为了克服这些缺点,使用使用O'-BIS [2-(N-(N-琥珀酰亚胺琥珀酰氨基)乙基]聚乙二醇(NHSP)作为同型蛋白交联剂的新型化学交联的新方法。在生理条件下进行的交联反应在24小时内完成,产生混合互连的多孔结构。该网络形成有助于缩短的胶凝动力学,并通过醚键(1102-1104cm)的新IR吸收峰的外观确认。在430℃下发现的新的热降解温度还重新确认了在样品中存在这种新形成的共价网络。此外,NHSP可以从A螺旋中诱导丝相变化到B片中,通过酰胺吸收带(酰胺I,酰胺II和酰胺III)的偏移来相信,示出其强分子间相互作用。因此,新的方法已经证明其潜在用途,以使丝绸基材料用于受控药物递送应用。

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