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用于增强细胞内药物自递送和靶向癌症治疗的氧化还原敏感型透明质酸聚合物前药纳米颗粒。

Redox-Sensitive Hyaluronic Acid Polymer Prodrug Nanoparticles for Enhancing Intracellular Drug Self-Delivery and Targeted Cancer Therapy.

作者信息

Lu Beibei, Xiao Fan, Wang Zhenyuan, Wang Binshen, Pan Zuchen, Zhao Weiwei, Zhu Zhenye, Zhang Jiaheng

机构信息

State Key Laboratory of Advanced Welding and Joining, Harbin Institute of Technology, Shenzhen 518055, China.

Research Centre of Printed Flexible Electronics, School of Materials Science and Engineering, Harbin Institute of Technology, Shenzhen 518055, China.

出版信息

ACS Biomater Sci Eng. 2020 Jul 13;6(7):4106-4115. doi: 10.1021/acsbiomaterials.0c00762. Epub 2020 Jun 16.

Abstract

Currently, available nanoscale anticancer drug delivery systems have low targeting and release efficiency, limiting their therapeutic effects. Thus, tumor-targeting nanocarriers for self-assembly of amphiphilic polymer-drug conjugates are urgently needed to improve drug targeting and treatment efficacy. Here, we report the construction of a stable, reduction-sensitive prodrug conjugate based on hyaluronic acid-grafted pH-sensitive doxorubicin (DOX). The amphiphilic prodrug copolymer self-assembled into spherical nanoparticles in aqueous solution and exhibited an average diameter of 150 nm. Prodrug micelles were stable in a normal physiological environment and achieve selective and rapid release under acidic pH and/or high reduction conditions. Cell Counting Kit-8, flow cytometry, and live cell imaging assays showed that the prodrug had high targeting and antitumor activity against CD44 receptors. Moreover, pharmacokinetics and biodistribution studies showed that the prodrug had a longer circulation time in BALB/c mice and higher accumulation in 4T1 tumors. Interestingly, the prodrug could effectively treat tumors with few side effects. These results showed that the DOX prodrug micelles developed in this study may have great potential in targeted therapy.

摘要

目前,现有的纳米级抗癌药物递送系统靶向性和释放效率较低,限制了它们的治疗效果。因此,迫切需要用于两亲性聚合物 - 药物共轭物自组装的肿瘤靶向纳米载体,以提高药物靶向性和治疗效果。在此,我们报道了基于透明质酸接枝的pH敏感阿霉素(DOX)构建一种稳定的、还原敏感的前药共轭物。两亲性前药共聚物在水溶液中自组装成球形纳米颗粒,平均直径为150 nm。前药胶束在正常生理环境中稳定,并在酸性pH和/或高还原条件下实现选择性快速释放。细胞计数试剂盒 - 8、流式细胞术和活细胞成像分析表明,该前药对CD44受体具有高靶向性和抗肿瘤活性。此外,药代动力学和生物分布研究表明,该前药在BALB/c小鼠体内循环时间更长,在4T1肿瘤中积累更高。有趣的是,该前药能有效治疗肿瘤且副作用较少。这些结果表明,本研究中开发的DOX前药胶束在靶向治疗中可能具有巨大潜力。

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