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Synthesis and Characterization of Covalently Crosslinked pH-Responsive Hyaluronic Acid Nanogels: Effect of Synthesis Parameters

机译:共价交联的pH响应透明质酸纳米凝胶的合成与表征:合成参数的影响

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Stable hyaluronic acid nanogels were obtained following the water-in-oil microemulsion method by covalent crosslinking with three biocompatible crosslinking agents: Divinyl sulfone, 1,4-butanediol diglycidyl ether (BDDE), and poly(ethylene glycol) bis(amine). All nanoparticles showed a pH-sensitive swelling behavior, according to the pKa value of hyaluronic acid, as a consequence of the ionization of the carboxylic moieties, as it was corroborated by zeta potential measurements. QELS studies were carried out to study the influence of the chemical structure of the crosslinking agents on the particle size of the obtained nanogels. In addition, the effect of the molecular weight of the biopolymer and the degree of crosslinking on the nanogels dimensions was also evaluated for BDDE crosslinked nanoparticles, which showed the highest pH-responsive response.
机译:遵循油包水微乳液方法,通过与三种生物相容性交联剂共价交联获得稳定的透明质酸纳米凝胶:二乙烯基砜,1,4-丁二醇二缩水甘油醚(BDDE)和聚(乙二醇)双(胺)。由于透明质酸的pKa值,所有纳米颗粒均表现出pH敏感的溶胀行为,这是羧基部分电离的结果,这是通过Zeta电位测量得到证实的。进行QELS研究以研究交联剂的化学结构对获得的纳米凝胶的粒径的影响。另外,还针对显示出最高pH响应性的BDDE交联纳米颗粒评估了生物聚合物的分子量和交联度对纳米凝胶尺寸的影响。

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