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载阿霉素的可生物降解自组装玉米醇溶蛋白纳米颗粒及其抗癌作用:制备、体外评价和细胞摄取

Doxorubicin-loaded biodegradable self-assembly zein nanoparticle and its anti-cancer effect: Preparation, in vitro evaluation, and cellular uptake.

作者信息

Dong Fangyuan, Dong Xiaoli, Zhou Liping, Xiao Huihui, Ho Pui-Yu, Wong Man-Sau, Wang Yi

机构信息

Shenzhen Key Laboratory of Food Biological Safety Control, Shenzhen, PRC; Department of Applied Biology and Chemical Technology, The Hong Kong Polytechnic University, Hong Hum, Kowloon, Hong Kong Special Administrative Region.

Department of Applied Biology and Chemical Technology, The Hong Kong Polytechnic University, Hong Hum, Kowloon, Hong Kong Special Administrative Region.

出版信息

Colloids Surf B Biointerfaces. 2016 Apr 1;140:324-331. doi: 10.1016/j.colsurfb.2015.12.048. Epub 2015 Dec 29.

Abstract

Cancer is one top leading cause of the deaths worldwide. Various anticancer drugs, which can effectively kill cancer cells, have been developed in the last decade. However, the problem is still about the low therapeutic index of the drugs, which means that the effective dose of drugs will cause cytotoxicity to normal cells. A strategy based on drug nano-encapsulation is applied to achieve an effective anti-cancer therapy. In this study, we use zein, which is an amphiphilic protein, to make the anti-cancer drug nano-encapsulation. Doxorubicin (DOX), a popular anti-cancer drug, is selected as the core drug. The results show that DOX could be successfully encapsulated into zein to form spherical nanoparticles. The encapsulation efficiency and loading efficiency could reach as high as 90.06% and 15.01 mg/g, respectively. The cumulative release result showed a desired pH-responsible release behavior: DOX could be released faster in acidic buffer solutions (pH 5.0 and 6.5) than neutral one (pH 7.4). The effects of the nano-encapsulation on the anti-proliferation of HeLa cells were also examined. It indicated that, compared with free DOX, the DOX-loaded zein nanoparticles (DOX-zein-NPs) had a better effect on cancer cell killing at low DOX concentrations. We also investigated the cellular uptake of DOX-zein-NPs using confocal laser scanning microscopy (CLSM), flow cytometry, and transmission electron microscopy (TEM). And the endocytosis mechanism of DOX-zein-NPs entering into HeLa cells was studied using various endocytosis pathway inhibitors.

摘要

癌症是全球主要的致死原因之一。在过去十年中,已经研发出了各种能够有效杀死癌细胞的抗癌药物。然而,问题仍然在于这些药物的治疗指数较低,这意味着药物的有效剂量会对正常细胞产生细胞毒性。一种基于药物纳米封装的策略被应用于实现有效的抗癌治疗。在本研究中,我们使用玉米醇溶蛋白(一种两亲性蛋白质)来制备抗癌药物纳米封装体。选择一种常用的抗癌药物阿霉素(DOX)作为核心药物。结果表明,DOX能够成功封装到玉米醇溶蛋白中形成球形纳米颗粒。包封率和载药量分别可高达90.06%和15.01 mg/g。累积释放结果显示出理想的pH响应释放行为:DOX在酸性缓冲溶液(pH 5.0和6.5)中的释放速度比中性缓冲溶液(pH 7.4)中更快。还研究了纳米封装体对HeLa细胞抗增殖的影响。结果表明,与游离DOX相比,载有DOX的玉米醇溶蛋白纳米颗粒(DOX-zein-NPs)在低DOX浓度下对癌细胞的杀伤效果更好。我们还使用共聚焦激光扫描显微镜(CLSM)、流式细胞术和透射电子显微镜(TEM)研究了DOX-zein-NPs的细胞摄取情况。并且使用各种内吞途径抑制剂研究了DOX-zein-NPs进入HeLa细胞的内吞机制。

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