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通过 PLGA 聚合物纳米粒共递送吉西他滨和辛伐他汀治疗胰腺癌:体外特性、细胞摄取和药代动力学研究。

Co-delivery of gemcitabine and simvastatin through PLGA polymeric nanoparticles for the treatment of pancreatic cancer: in-vitro characterization, cellular uptake, and pharmacokinetic studies.

机构信息

a Nanomedicine Laboratory , School of Pharmaceutical Education and Research , Jamia Hamdard , New Delhi , India.

b Pharmaceutics Department , College of Pharmacy, Prince Sattam Bin Abdulaziz University , Al-Kharj , Saudi Arabia.

出版信息

Drug Dev Ind Pharm. 2019 May;45(5):745-753. doi: 10.1080/03639045.2019.1569040. Epub 2019 Jan 30.

Abstract

Despite the ongoing extensive research, cancer therapeutics still remains an area with unmet needs which is hampered by shortfall in the development of newer medicines. The present study discusses a nano-based combinational approach for treating solid tumor. Dual-loaded nanoparticles encapsulating gemcitabine HCl (GM) and simvastatin (SV) were fabricated by double emulsion solvent evaporation method and optimized. Optimized nanoparticles showed a particle size of 258 ± 2.4 nm, polydispersity index of 0.32 ± 0.052, and zeta potential of -12.5 mV. The size and the morphology of the particles wee further confirmed by transmission electron microscopy (TEM) and scanning electron microscopy, respectively of the particles. The entrapment efficiency of GM and SV in the nanoparticles was 38.5 ± 4.5% and 72.2 ± 5.6%, respectively. The in vitro release profile was studied for 60 h and showed Higuchi release pattern. The cell toxicity was done using MTT assay and lower IC was obtained with the nanoparticles as compared to the pure drug. The bioavailability of GM and SV in PLGA nanoparticles was enhanced by 1.4-fold and 1.3-fold respectively, compared to drug solution. The results revealed that co-delivery of GM and SV could be used for its oral delivery for the effective treatment of pancreatic cancer.

摘要

尽管目前正在进行广泛的研究,但癌症治疗仍然是一个未满足需求的领域,这是由于新药开发不足所致。本研究讨论了一种用于治疗实体瘤的基于纳米的联合治疗方法。采用双乳液溶剂蒸发法制备并优化了载盐酸吉西他滨(GM)和辛伐他汀(SV)的双载纳米粒。优化后的纳米粒粒径为 258±2.4nm,多分散指数为 0.32±0.052,zeta 电位为-12.5mV。通过透射电子显微镜(TEM)和扫描电子显微镜分别对颗粒的大小和形态进行了进一步确认。GM 和 SV 在纳米粒中的包封效率分别为 38.5±4.5%和 72.2±5.6%。体外释放研究进行了 60 小时,呈现 Higuchi 释放模式。采用 MTT 法进行细胞毒性试验,结果表明纳米粒的 IC 较纯药物低。与药物溶液相比,GM 和 SV 在 PLGA 纳米粒中的生物利用度分别提高了 1.4 倍和 1.3 倍。结果表明,GM 和 SV 的共递释系统可用于其口服给药,以有效治疗胰腺癌。

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