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载五倍子酸脂质和聚合物纳米载体作为可调式抗癌药物输送系统。

Pentamidine-Loaded Lipid and Polymer Nanocarriers as Tunable Anticancer Drug Delivery Systems.

机构信息

Dipartimento di Scienza e Tecnologia del Farmaco, Università degli Studi di Torino, Via P. Giuria 9, 10125, Torino, Italy.

Dipartimento di Scienza e Tecnologia del Farmaco, Università degli Studi di Torino, Via P. Giuria 9, 10125, Torino, Italy.

出版信息

J Pharm Sci. 2020 Mar;109(3):1297-1302. doi: 10.1016/j.xphs.2019.11.011. Epub 2019 Nov 18.

Abstract

Initially developed as a synthetic analogue of insulin, pentamidine (PTM) is an antimicrobial drug that has recently shown in vitro and in vivo anticancer activity. Nevertheless, systemic administration of PTM causes severe side effects, especially nephrotoxicity. Here we propose the association of PTM to different biocompatible nanosystems in order to compare the physicochemical characteristics of the loaded nanocarriers and their influence on the drug cytotoxicity toward cancer cells. In particular, PTM (as free base or with different counterions) was encapsulated into liposomes and poly(lactide-co-glycolide) (PLGA) nanoparticles and all the formulations have been deeply characterized concerning mean diameter, polydispersity index, zeta potential, stability, morphology, PTM loading, and drug release profile. The anticancer activity was evaluated on a human ovarian cancer cell line over 72 h. Results showed that PTM is efficiently loaded into liposomes with a transmembrane citrate or sulfate gradient; concerning PLGA nanoparticles, important association occurred, thanks to ionic interactions between the drug and the polymer. The in vitro studies confirmed the anticancer activity of PTM, which was gradually released with different profiles depending on the drug form and the nanocarrier structure.

摘要

最初作为胰岛素的合成类似物开发,戊二脒(PTM)是一种抗菌药物,最近已显示出体外和体内的抗癌活性。然而,PTM 的全身给药会引起严重的副作用,特别是肾毒性。在这里,我们提出将 PTM 与不同的生物相容性纳米系统联合使用,以比较负载纳米载体的物理化学特性及其对癌细胞的药物细胞毒性的影响。具体而言,将 PTM(作为游离碱或具有不同抗衡离子)封装到脂质体和聚(乳酸-共-乙醇酸)(PLGA)纳米粒子中,并且所有制剂都在关于平均直径、多分散指数、Zeta 电位、稳定性、形态、PTM 载药量和药物释放特性方面进行了深入表征。在 72 小时内,对人卵巢癌细胞系进行了抗癌活性评估。结果表明,PTM 能够有效地装载到具有跨膜柠檬酸或硫酸盐梯度的脂质体中;对于 PLGA 纳米粒子,由于药物和聚合物之间的离子相互作用,发生了重要的结合。体外研究证实了 PTM 的抗癌活性,其释放情况随药物形式和纳米载体结构的不同而呈现出不同的释放曲线。

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