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How hydrophobically modified chitosans are stabilized by biocompatible lipid aggregates

机译:如何通过生物相容性脂质聚集体稳定疏水改性的壳聚糖

摘要

Nanostructured hydrogels composed by biocompatible molecules are formulated and characterized. They are based on a polymer network formed by hydrophobically modified chitosans (HMCHIT or CnCHIT) in which vesicles of monoolein (MO) and oleic acid or sodium oleate (NaO), depending on pH, are embedded. The best conditions for gel formation, in terms of pH, length of the hydrophobic moieties of chitosan, and weight proportion among the three components were estimated by visual inspection of a large number of samples. Among all possible combinations, the system C12CHIT-MO-NaO in the weight proportion (1:1:1) is optimal for the formation of a well-structured gel-like system, which is also confirmed by rhelogical experiments. Electron paramagnetic resonance (EPR) measurements unambiguously show the presence of lipid bilayers in this mixture, indicating that MO-NaO vesicles are stabilized by C12CHIT even at acid pH. ududA wide small angle neutron scattering investigation performed on several ternary systems of general formula CnCHIT-MO-NaO shows that the length of the hydrophobic tail Cn is a crucial parameter in stabilizing the polymer network in which lipid vesicles are embedded. Structural parameters for the vesicles are determined by using a multilamellar model that admits the possibility of displacement of the center of each shell. The number of shells tends to be reduced by increasing the polymer content. The thickness and the distance between consecutive lamellae are not influenced by either the polymer or MO-NaO concentration. ududThe hydrogel presented in this work, being fully biocompatible and nanostructured, is well-suited for possible application in drug delivery.
机译:配制和表征由生物相容性分子组成的纳米结构水凝胶。它们基于由疏水改性的壳聚糖(HMCHIT或CnCHIT)形成的聚合物网络,其中嵌入了单油精(MO)和油酸或油酸钠(NaO)的囊泡(取决于pH)。通过目视检查大量样品,可以估算出形成凝胶的最佳条件,包括pH值,壳聚糖疏水部分的长度以及三组分之间的重量比。在所有可能的组合中,重量比为1:1:1的C12CHIT-MO-NaO系统是形成结构良好的凝胶状系统的最佳选择,流变实验也证实了这一点。电子顺磁共振(EPR)测量明确显示该混合物中存在脂质双层,这表明即使在酸性pH下,MO-NaO囊泡也可被C12CHIT稳定。对几种通式为CnCHIT-MO-NaO的三元体系进行的广角小中子散射研究表明,疏水尾Cn的长度是稳定嵌入脂质囊泡的聚合物网络的关键参数。通过使用多层模型确定囊泡的结构参数,该模型允许每个壳的中心发生位移。壳的数量倾向于通过增加聚合物含量而减少。连续薄片之间的厚度和距离不受聚合物或MO-NaO浓度的影响。 ud ud这项工作中介绍的水凝胶具有完全的生物相容性和纳米结构,非常适合可能在药物输送中的应用。

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