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Comparative studies of salinomycin-loaded nanoparticles prepared by nanoprecipitation and single emulsion method

机译:纳米沉淀-单乳液法制备的载有盐霉素的纳米粒的比较研究

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摘要

To establish a satisfactory delivery system for the delivery of salinomycin (Sal), a novel, selective cancer stem cell inhibitor with prominent toxicity, gelatinase-responsive core-shell nanoparticles (NPs), were prepared by nanoprecipitation method (NR-NPs) and single emulsion method (SE-NPs). The gelatinase-responsive copolymer was prepared by carboxylation and double amination method. We studied the stability of NPs prepared by nanoprecipitation method with different proportions of F68 in aqueous phase to determine the best proportion used in our study. Then, the NPs were prepared by nanoprecipitation method with the best proportion of F68 and single emulsion method, and their physiochemical traits including morphology, particle size, zeta potential, drug loading content, stability, and in vitro release profiles were studied. The SE-NPs showed significant differences in particle size, drug loading content, stability, and in vitro release profiles compared to NR-NPs. The SE-NPs presented higher drug entrapment efficiency and superior stability than the NR-NPs. The drug release rate of SE-NPs was more sustainable than that of the NR-NPs, and in vivo experiment indicated that NPs could prominently reduce the toxicity of Sal. Our study demonstrates that the SE-NPs could be a satisfactory method for the preparation of gelatinase-responsive NPs for intelligent delivery of Sal.
机译:为了建立令人满意的盐霉素(Sal)递送系统,通过纳米沉淀法(NR-NPs)制备了一种明胶酶反应性核壳纳米颗粒(NPs),该药物具有显着的毒性,是一种选择性的新型癌症干细胞抑制剂。乳液法(SE-NPs)。通过羧化和双重胺化方法制备明胶酶反应性共聚物。我们研究了纳米沉淀法制备的NPs在水相中不同比例的F68的稳定性,以确定用于本研究的最佳比例。然后,以F68的最佳比例和单乳液法,通过纳米沉淀法制备了NPs,研究了其形态,粒径,ζ电位,载药量,稳定性和体外释放曲线等理化特性。与NR-NPs相比,SE-NPs在粒径,载药量,稳定性和体外释放曲线上显示出显着差异。 SE-NPs比NR-NPs具有更高的药物截留效率和优异的稳定性。 SE-NPs的药物释放速率比NR-NPs更可持续,体内实验表明NPs可以显着降低Sal的毒性。我们的研究表明,SE-NPs可能是制备明胶酶反应性NPs来智能递送Sal的令人满意的方法。

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