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重新审视喜树碱稳定形式有效递送的纳米制剂设计方法:对其体外行为和肿瘤改善潜力的评估。

Revisiting the nanoformulation design approach for effective delivery of topotecan in its stable form: an appraisal of its in vitro Behavior and tumor amelioration potential.

作者信息

Padhi Santwana, Mirza Mohd Aamir, Verma Devina, Khuroo Tahir, Panda Amulya K, Talegaonkar Sushama, Khar Roop Krishen, Iqbal Zeenat

机构信息

a Department of Pharmaceutics , Faculty of pharmacy Jamia Hamdard , New Delhi , India.

b Product Development Cell-II, National Institute of Immunology , New Delhi , India.

出版信息

Drug Deliv. 2016 Oct;23(8):2827-2837. doi: 10.3109/10717544.2015.1105323. Epub 2015 Nov 7.

Abstract

Topotecan (TPT) is indicated against a variety of solid tumors, but has restricted clinical use owing to associated pharmaceutical caveats. This study is focused at formulating a successful TPT PLGA nanosystem which ameliorates the rapid conversion of active lactone form of drug to its inactive carboxylate form and consequently improvises its efficacy. TPT PLGA nanoparticles were formulated by a double emulsion-solvent evaporation technique with sequential optimization to obtain desired particle size, PDI, zeta potential, and entrapment efficiency. Stability of TPT was ensured by maintaining an acidic pH in the drug-containing phase and the system was evaluated for in vitro-in vivo performance including cytotoxic potency. The optimized nanosystem had a particle size of 187.33 ± 7.50 nm, a PDI of 0.179 ± 0.05, and an entrapment efficiency of 56 ± 1.2%. Low pH in the interior of nanoparticles stabilized the drug to remain in its active lactone form and revealed a biphasic release pattern till 15 d. Additionally, an in vitro cytotoxicity testing as well as in vivo antitumor efficacy demonstrated a significant potential of higher proliferation inhibition as compared with neat drug (TPT). Thus, the investigation summarized an innovative simple tool for developing stable TPT NPs for effective delivery for treating solid tumors.

摘要

拓扑替康(TPT)可用于治疗多种实体瘤,但由于相关的药物限制,其临床应用受到限制。本研究旨在制备一种成功的TPT聚乳酸-羟基乙酸共聚物(PLGA)纳米系统,该系统可改善药物活性内酯形式向无活性羧酸盐形式的快速转化,从而提高其疗效。采用复乳-溶剂蒸发技术制备TPT PLGA纳米粒,并进行顺序优化,以获得所需的粒径、多分散指数(PDI)、zeta电位和包封率。通过在含药相中保持酸性pH值来确保TPT的稳定性,并对该系统的体外-体内性能进行评估,包括细胞毒性。优化后的纳米系统粒径为187.33±7.50nm,PDI为0.179±0.05,包封率为56±1.2%。纳米粒内部的低pH值使药物稳定地保持其活性内酯形式,并呈现出双相释放模式,直至15天。此外,体外细胞毒性测试以及体内抗肿瘤疗效表明,与纯药物(TPT)相比,其具有更高的增殖抑制潜力。因此,本研究总结出一种创新的简单工具,用于开发稳定的TPT纳米粒,以有效递送用于治疗实体瘤。

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