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双嵌段聚己内酯丙交酯和三嵌段聚己内酯丙交酯-乙交酯基质聚合物纳米颗粒增强了负载的5-氟尿嘧啶的抗癌活性。

Di-Block PLCL and Tri-Block PLCLG Matrix Polymeric Nanoparticles Enhanced the Anticancer Activity of Loaded 5-Fluorouracil.

作者信息

Ashour Abdelkader E, Badran Mohammad M, Kumar Ashok, Rishi Arun K, Yassin Alaa Eldeen

出版信息

IEEE Trans Nanobioscience. 2016 Oct;15(7):739-747. doi: 10.1109/TNB.2016.2612340.

DOI:10.1109/TNB.2016.2612340
PMID:28029617
Abstract

In the current study, 5-FU-loaded nanoparticles (NPs) were prepared using polylactic-co-glycolic acid (PLGA), polycaprolactone (PCL), di-block poly lactide-co-caprolactone (PLCL) and tri-block poly L-lactide-co-caprolactone-co-glycolide (PLCLG). The influence of these polymers on the particle sizes, morphology, drug loading, and in vitro drug release was investigated. The anticancer activity was assessed utilizing MTT assay in three human cancer cell lines of different tissue origin; brain (Daoy), liver (HepG2), and colorectal (HT29) using suitable negative and positive controls. The prepared NPs showed a uniform spherical shape with an average size range of 193.5± 6.3 to 303.5± 3.3 nm with negative zeta potential. The entrapment efficiency achieved with F4-F6 (block copolymer NPs) was 78-79% and significantly higher compared with F1 PLGA (31%) and F2; PCL (37%). An initial rapid 5-FU release followed by a slow release ranging from 35% to 81% after 72 h was observed. All the prepared NPs formulations showed enhancement in the cytotoxicity of 5-FU towards all the three cancer cell lines. Generally, block copolymer NPs (F4-F6) showed higher % cell death over PLGA (F1) and PCL (F2) NPs after 48 and 72 h incubation in the case of HepG2 and HT-29. The incorporation of PEG with the tri-block (F6) caused a significant increase in the cytotoxicity of NPs in all of the three cancer cell lines. Block copolymer-based NPs can be considered as promising carriers for enhancing the efficacy of 5-FU in cancer therapy.

摘要

在本研究中,使用聚乳酸 - 乙醇酸共聚物(PLGA)、聚己内酯(PCL)、二嵌段聚丙交酯 - 己内酯(PLCL)和三嵌段聚L - 丙交酯 - 己内酯 - 乙醇酸共聚物(PLCLG)制备了负载5 - 氟尿嘧啶的纳米颗粒(NPs)。研究了这些聚合物对粒径、形态、载药量和体外药物释放的影响。利用MTT法,在三种不同组织来源的人类癌细胞系(脑癌(道氏细胞系,Daoy)、肝癌(HepG2)和结直肠癌(HT29))中评估抗癌活性,并设置了合适的阴性和阳性对照。制备的纳米颗粒呈现均匀的球形,平均粒径范围为193.5±6.3至303.5±3.3 nm,zeta电位为负。F4 - F6(嵌段共聚物纳米颗粒)的包封率达到78 - 79%,与F1 PLGA(31%)和F2 PCL(37%)相比显著更高。观察到最初有快速的5 - 氟尿嘧啶释放,随后在72小时后缓慢释放,释放量在35%至81%之间。所有制备的纳米颗粒制剂均显示5 - 氟尿嘧啶对所有三种癌细胞系的细胞毒性增强。一般来说,在HepG2和HT - 29细胞系中培养48和72小时后,嵌段共聚物纳米颗粒(F4 - F6)比PLGA(F1)和PCL(F2)纳米颗粒表现出更高的细胞死亡率。三嵌段(F6)与聚乙二醇的结合导致纳米颗粒在所有三种癌细胞系中的细胞毒性显著增加。基于嵌段共聚物的纳米颗粒可被视为增强5 - 氟尿嘧啶在癌症治疗中疗效的有前景的载体。

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