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评价聚乙二醇单甲醚-聚乳酸-羟基乙酸共聚物包被的氧化铁纳米颗粒作为泽兰苦素载体对DU-145和LNCaP人前列腺癌细胞系的凋亡作用。

Evaluation of apoptotic effects of mPEG-b-PLGA coated iron oxide nanoparticles as a eupatorin carrier on DU-145 and LNCaP human prostate cancer cell lines.

作者信息

Tousi Marziyeh Shalchi, Sepehri Houri, Khoee Sepideh, Farimani Mahdi Moridi, Delphi Ladan, Mansourizadeh Fariba

机构信息

Department of Animal Biology, School of Biology, College of Science, University of Tehran, Tehran, Iran.

Polymer Chemistry Department, School of Science, University of Tehran, Tehran, Iran.

出版信息

J Pharm Anal. 2021 Feb;11(1):108-121. doi: 10.1016/j.jpha.2020.04.002. Epub 2020 Apr 18.

Abstract

Many studies have so far confirmed the efficiency of phytochemicals in the treatment of prostate cancer. Eupatorin, a flavonoid with a wide range of phytomedical activities, suppresses proliferation of and induces apoptosis of multiple cancer cell lines. However, low solubility, poor bioavailability, and rapid degradation limit its efficacy. The aim of our study was to evaluate whether the use of mPEG-b-poly (lactic-co-glycolic) acid (PLGA) coated iron oxide nanoparticles as a carrier could enhance the therapeutic efficacy of eupatorin in DU-145 and LNcaP human prostate cancer cell lines. Nanoparticles were prepared by the co-precipitation method and were fully characterized for morphology, surface charge, particle size, drug loading, encapsulation efficiency and in vitro drug-release profile. The inhibitory effect of nanoparticles on cell viability was evaluated by MTT test. Apoptosis was then determined by Hoechest staining, cell cycle analysis, NO production, annexin/propidium iodide (PI) assay, and Western blotting. The results indicated that eupatorin was successfully entrapped in FeO@mPEG-b-PLGA nanoparticles with an efficacy of (90.99 ± 2.1)%. The nanoparticle's size was around (58.5 ± 4) nm with a negative surface charge [(-34.16 ± 1.3) mV]. In vitro release investigation showed a 30% initial burst release of eupatorin in 24 h, followed by sustained release over 200 h. The MTT assay indicated that eupatorin-loaded FeO@mPEG-b-PLGA nanoparticles exhibited a significant decrease in the growth rate of DU-145 and LNcaP cells and their IC50 concentrations were 100 μM and 75 μM, respectively. Next, apoptosis was confirmed by nuclear condensation, enhancement of cell population in the sub-G1 phase and increased NO level. Annexin/PI analysis demonstrated that eupatorin-loaded FeO@mPEG-b-PLGA nanoparticles could increase apoptosis and decrease necrosis frequency. Finally, Western blotting analysis confirmed these results and showed that Bax/Bcl-2 ratio and the cleaved caspase-3 level were up-regulated by the designing nanoparticles. Encapsulation of eupatorin in FeO@mPEG-b-PLGA nanoparticles increased its anticancer effects in prostate cancer cell lines as compared to free eupatorin. Based on these results, this formulation can provide a sustained eupatorin-delivery system for cancer treatment with the drug remaining active at a significantly lower dose, making it a suitable candidate for pharmacological uses.

摘要

迄今为止,许多研究已证实植物化学物质在前列腺癌治疗中的有效性。灯盏乙素是一种具有广泛植物医学活性的黄酮类化合物,可抑制多种癌细胞系的增殖并诱导其凋亡。然而,其低溶解度、低生物利用度和快速降解限制了它的疗效。我们研究的目的是评估使用甲氧基聚乙二醇-聚(乳酸-乙醇酸)共聚物(PLGA)包覆的氧化铁纳米颗粒作为载体是否能够增强灯盏乙素对DU-145和LNcaP人前列腺癌细胞系的治疗效果。纳米颗粒通过共沉淀法制备,并对其形态、表面电荷、粒径、载药量、包封率和体外药物释放曲线进行了全面表征。通过MTT试验评估纳米颗粒对细胞活力的抑制作用。然后通过Hoechest染色、细胞周期分析、一氧化氮(NO)生成量检测、膜联蛋白/碘化丙啶(PI)检测和蛋白质免疫印迹法确定细胞凋亡情况。结果表明,灯盏乙素成功包封于FeO@mPEG-b-PLGA纳米颗粒中,包封率为(90.99±2.1)%。纳米颗粒的粒径约为(58.5±4)nm,表面带负电荷[(-34.16±1.3)mV]。体外释放研究表明,灯盏乙素在24小时内有30%的初始突释,随后在200小时内持续释放。MTT试验表明,负载灯盏乙素的FeO@mPEG-b-PLGA纳米颗粒使DU-145和LNcaP细胞的生长速率显著降低,其半数抑制浓度(IC50)分别为100μM和75μM。接下来,通过细胞核凝聚、亚G1期细胞群体增加和NO水平升高证实了细胞凋亡。膜联蛋白/PI分析表明,负载灯盏乙素的FeO@mPEG-b-PLGA纳米颗粒可增加细胞凋亡并降低坏死频率。最后,蛋白质免疫印迹分析证实了这些结果,并表明所设计的纳米颗粒上调了Bax/Bcl-2比值和裂解的半胱天冬酶-3水平。与游离灯盏乙素相比,将灯盏乙素包封于FeO@mPEG-b-PLGA纳米颗粒中可增强其对前列腺癌细胞系的抗癌作用。基于这些结果,该制剂可为癌症治疗提供一种灯盏乙素持续释放系统,使药物在显著更低剂量下仍保持活性状态,使其成为药理学应用的合适候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b292/7930876/802932748f6b/fx1.jpg

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