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Paclitaxel Delivery by Cationic Gelatin Nanoparticles

机译:阳离子明胶纳米颗粒的紫杉醇递送

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Biodegradable polymeric nanoparticles have gained importance since they improve the therapeutic value of various water insoluble drugs and bioactive molecules by improving bioavailability,solubility and retention time.Nanosized drug delivery systems provide enhanced pharmacokinetic and pharmacodynamic control compared to free drugs.In this study,cationic gelatin nanoparticles were first prepared by the two step desolvation method and then their in vitro Paclitaxel(Ptx)delivery ability was evaluated.Resulting nanoparticles were analyzed for their in vitro cytotoxic effect in two different cell lines.The experimental results showed that spherical gelatin nanoparticles had a zeta potential of approximately +15.5 mV and the average size of the particles was 10.3±0.42 nm.Ptx release from gelatin nanoparticles exhibited an initial burst release followed by diffusion of the drug in a sustained manner and finally polymer erosion occured up to 38 days.In vitro cell viabilitiy analysis showed that Ptx loaded gelatin nanoparticles inhibited the growth of A549 and HT29 cells more effectively than the free drug.Based on these findings,it can be stated that cationic gelatin nanoparticles may be a promising therapeutic strategy for the treatment of many cancers.
机译:可生物降解的聚合物纳米颗粒已经获得了重要性,因为它们通过改善生物可利用度,溶解度和保留时间来提高各种水不溶性药物和生物活性分子的治疗价值。纳米化药物递送系统提供了增强的药物动力学和药物控制,与此研究相比。首先通过两个步骤脱染方法制备纳米颗粒,然后评估其体外紫杉醇(PTX)递送能力。对两种不同细胞系中的体外细胞毒性作用进行了分析。 ZETA的电位约为+15.5 mV,颗粒的平均大小为10.3±0.42 nm.pTX从明胶纳米颗粒中释放出最初的突发释放,然后以持续的方式扩散该药物,最后发生聚合物侵蚀,最高为38天。体外细胞的活化分析表明在PTX上加载明胶纳米颗粒比游离药物更有效地抑制A549和HT29细胞的生长。基于这些发现,可以说阳离子明胶纳米颗粒可能是许多癌症治疗的有前途的治疗策略。

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