School of Pharmaceutical Sciences, Zhengzhou University, Zhengzhou, China; Key Laboratory of Targeting Therapy and Diagnosis for Critical Diseases, Henan Province; Collaborative Innovation Center of New Drug Research and Safety Evaluation, Henan Province, Zhengzhou, China.
School of Pharmaceutical Sciences, Zhengzhou University, Zhengzhou, China; Modern Analysis and Computer Center of Zhengzhou University.
Eur J Pharm Sci. 2019 Dec 1;140:105071. doi: 10.1016/j.ejps.2019.105071. Epub 2019 Sep 13.
Multidrug resistance (MDR) is a major reason for anticancer chemotherapy failure, and P-glycoprotein (P-gp) over-expressing on tumor cells is considered as the important target to overcome MDR. Emerging reports have showed that vitamin E (VE) can cause significant reversal of MDR due to inhibition of ATPase activity. Accordingly, we synthesized hyaluronic acid (HA) conjugated vitamin E succinate (VES) polymer, which can self-assemble into micelles and thus achieve high drug (paclitaxel (PTX) used as model drug) encapsulation as well as tumor accumulation owing to the enhanced permeability and retention (EPR) effect and HA active targeting ability. In addition, the linker between HA and VES utilized in this work was disulfide bond with reduction-sensitive property, which would respond to high glutathione (GSH) concentration in tumor cytoplasmic environment and trigger HA-CYS-VES polymer disassociation and drug release. In vitro, PTX loaded HA-CYS-VES demonstrated enhanced cytotoxicity, high apoptosis-inducing activities and reversal effects of PTX on MCF-7/Adr cells, compared to PTX. Also, cellular uptake and intracellular PTX accumulation tests displayed that PTX loaded HA-CYS-VES could more efficiently enter tumor cells and selectively release drug in cytosol so as to facilitate its function on microtubule. More importantly, PTX loaded HA-CYS-VES showed better tumor targeting ability, improved antitumor efficacy and low adverse effects on tumor-bearing mice. In conclusion, PTX loaded HA-CYS-VES exhibited a great potential for reversing MDR in anticancer chemotherapeutics.
多药耐药性(MDR)是癌症化疗失败的主要原因,肿瘤细胞上的 P 糖蛋白(P-gp)过度表达被认为是克服 MDR 的重要靶点。新的研究报告表明,维生素 E(VE)可以通过抑制 ATP 酶活性而导致 MDR 的显著逆转。因此,我们合成了透明质酸(HA)偶联的维生素 E 琥珀酸酯(VES)聚合物,由于增强的渗透性和保留(EPR)效应以及 HA 的主动靶向能力,它可以自组装成胶束,从而实现高药物(以紫杉醇(PTX)为模型药物)包封和肿瘤积累。此外,本工作中使用的 HA 和 VES 之间的连接体是具有还原敏感性的二硫键,它会响应肿瘤细胞质环境中高谷胱甘肽(GSH)浓度,并触发 HA-CYS-VES 聚合物解离和药物释放。在体外,与 PTX 相比,负载 PTX 的 HA-CYS-VES 表现出增强的细胞毒性、高凋亡诱导活性和对 MCF-7/Adr 细胞的 PTX 逆转作用。此外,细胞摄取和细胞内 PTX 积累测试表明,负载 PTX 的 HA-CYS-VES 能够更有效地进入肿瘤细胞,并在细胞质中选择性释放药物,从而促进其对微管的作用。更重要的是,负载 PTX 的 HA-CYS-VES 对荷瘤小鼠具有更好的肿瘤靶向能力、提高的抗肿瘤疗效和低毒副作用。总之,负载 PTX 的 HA-CYS-VES 在抗癌化疗中具有逆转 MDR 的巨大潜力。