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Investigation of dual-sensitive nanogels based on chitosan and N-isopropylacrylamide and its intelligent drug delivery of 10-hydroxycamptothecine

机译:基于壳聚糖和N-异丙基丙烯酰胺的双敏纳米凝胶的研究及其对10-羟基喜树碱的智能给药

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摘要

The work was to prepare and characterize a responsive drug delivery system built of chitosan-g-poly (N-isopropylacrylamide) (CTS-g-PNIPAAm) nanogels and to evaluate the effects of CTS molecular weight (Mw) on the loading and in vitro release of insoluble drug 10-hydroxycamptothecine (HCPT). The CTS-g-PNIPAAm copolymers were synthesized by radical polymerization. The Mw and physical chemistry properties such as diameter, second virial coefficient of grafted PNIPAAm were investigated by dynamic and static laser light scattering method. A series of cross-linked CTS-g-PNIPAAm nanogels were prepared with N, N'-methylenebisacrylamide initially added as a cross-linker. The thermal and pH-sensitive features of cross-linked CTS-g-PNIPAAm nanogels were studied by determining the variance of transmittance, changeable size and reversed zeta potential. The critical aggregation concentrations (CAC) of resultant nanogels decreased from 0.045 to 0.036 mg/mL with CTS Mw increased from 50 kDa to 700 kDa. The loading efficiency of the HCPT encapsulated into CTS-g-PNIPAAm nanogels increased in parallel with CTS Mw, while the cumulative release percentage of HCPT-loaded nanogels decreased with CTS Mw increasing at both 25 degrees C and 37 degrees C. Fitting results of HCPT release data to different mathematical models suggested a diffusion-controlled mechanism at 25 degrees C. However, the release behaviors were dominated by combined effects of polymer erosion and osmotic pressure driven at 37 degrees C. The cytotoxicity study of the CTS-g-PNIPAAm nanogels against hepatic L02 cells indicated that the resultant nanogels did not exhibit apparent cytotoxicity.
机译:该工作旨在制备和表征由壳聚糖-g-聚(N-异丙基丙烯酰胺)(CTS-g-PNIPAAm)纳米凝胶构建的响应药物递送系统,并评估CTS分子量(Mw)对载量和体外的影响释放不溶性药物10-羟基喜树碱(HCPT)。通过自由基聚合合成了CTS-g-PNIPAAm共聚物。采用动态和静态激光散射方法研究了接枝PNIPAAm的分子量和物理化学性质,如直径,第二维里系数。制备了一系列交联的CTS-g-PNIPAAm纳米凝胶,其中最初添加了N,N'-亚甲基双丙烯酰胺作为交联剂。通过确定透射率,可变尺寸和反向ζ电势的变化,研究了交联的CTS-g-PNIPAAm纳米凝胶的热和pH敏感特性。随着CTS Mw从50 kDa增加到700 kDa,所得纳米凝胶的临界聚集浓度(CAC)从0.045降低至0.036 mg / mL。封装在CTS-g-PNIPAAm纳米凝胶中的HCPT的负载效率与CTS Mw平行增加,而HCPT负载的纳米凝胶的累积释放百分比在25°C和37°C时都随着CTS Mw的增加而降低.HCPT的拟合结果释放数据到不同的数学模型表明在25摄氏度下存在扩散控制机制。然而,释放行为受聚合物侵蚀和在37摄氏度下驱动的渗透压的综合影响所支配。CTS-g-PNIPAAm纳米凝胶的细胞毒性研究针对肝L02细胞的抗性表明,所得纳米凝胶没有表现出明显的细胞毒性。

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