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Drug delivery systems based on biocompatible imino-chitosan hydrogels for local anticancer therapy

机译:基于生物相容性亚氨基-壳聚糖水凝胶的药物递送系统用于局部抗癌治疗

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摘要

A series of drug delivery systems were prepared by chitosan hydrogelation with citral in the presence of an antineoplastic drug: 5-fluorouracil. The dynamic covalent chemistry of the imine linkage allowed the obtaining of supramolecular tridimensional architectures in which the drug has been homogenously dispersed. Fourier-transform infrared spectroscopy (FTIR), wide-angle X-ray diffraction (WXRD) and polarized light microscopy (POM) measurements were used in order to follow the hydrogelation and drug encapsulation processes. The ability of the prepared systems to release the drug has been investigated by UV–Vis spectroscopy using a calibration curve and by fitting the results with different mathematic models. To mimic the behavior of the hydrogel matrix in bio-environmental conditions in view of applications, their enzymatic degradability was monitored in the presence of lysozyme. The in vivo side effects of the systems, in terms of their influence on the blood elements, biochemical and immune parameters were monitored on white Swiss mice by intraperitoneal administration of the injectable obtained hydrogels. All the characteristics of the obtained systems, such as micro-porous morphology, uniform drug encapsulation, enzymatic degradability, lack of side effects, other than the one of the drug itself, along with their ability to release the drug in a sustained manner proved that these material meet the requirements for the development of drug delivery systems, making them suitable for being applied in intraperitoneal chemotherapy.
机译:在抗肿瘤药:5-氟尿嘧啶的存在下,通过壳聚糖与柠檬醛的水凝胶化制备了一系列药物递送系统。亚胺键的动态共价化学允许获得药物已均匀分散在其中的超分子三维结构。为了跟踪水凝胶化和药物封装过程,使用了傅里叶变换红外光谱(FTIR),广角X射线衍射(WXRD)和偏振光显微镜(POM)测量。通过使用标定曲线的UV-Vis光谱和通过将结果与不同的数学模型拟合来研究准备好的系统释放药物的能力。为了模拟应用中水凝胶基质在生物环境条件下的行为,在溶菌酶的存在下监测其酶促降解性。通过腹膜内施用可注射获得的水凝胶,在白瑞士小鼠上监测了该系统在体内对血液成分,生化和免疫参数的影响方面的副作用。获得的系统的所有特征,例如微孔形态,均匀的药物包封,酶促降解性,无副作用(除药物本身之一以外)以及它们以持续方式释放药物的能力证明这些材料符合开发药物输送系统的要求,使其适合用于腹膜内化疗。

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