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两亲性树枝状大分子组装的两性离子靶向阿霉素负载胶束具有增强的抗肿瘤性能。

Zwitterionic Targeting Doxorubicin -Loaded Micelles Assembled by Amphiphilic Dendrimers with Enhanced Antitumor Performance.

作者信息

Zhang Lu, Guo Quanling, Zheng Ruixue, Yu Qingyu, Liang Ying, Ma Guanglong, Li Qiurong, Zhang Xiaoyu, Xiao Haiyan, Wang Longgang

机构信息

State Key Laboratory of Metastable Materials Science and Technology, Hebei Key Laboratory of Nano-Biotechnology, Hebei Key Laboratory of Applied Chemistry, Yanshan University, Qinhuangdao 066004, China.

School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China.

出版信息

Langmuir. 2023 Apr 4;39(13):4766-4776. doi: 10.1021/acs.langmuir.3c00159. Epub 2023 Mar 20.

Abstract

Chemotherapy is the main method of treating malignant tumors in clinical treatment. However, the commonly used chemotherapeutic drugs have the disadvantages of high biological toxicity, poor water solubility, low targeting ability, and high side effects. Zwitterionic micelles assembled by amphiphilic dendrimers modified with zwitterionic groups and targeting ligand should largely overcome these shortcomings. Herein, the zwitterionic group and targeting peptide c(RGDfC) were modified on the surface of generation 2 poly(propylene imine) dendrimers (G2 PPI), which was conjugated with hydrophobic -(2-mercaptoethyl) oleamide to form amphiphilic dendrimers (PPIMYRC). PPIMYRC self-assembled into micelles with doxorubicin (DOX) loaded in the interior of micelles to prepare DOX-loaded micelles (PPIMYRC-DOX micelles). The PPIMYRC-DOX micelles had great stability in fibrinogen and pH-responsive drug release. Furthermore, PPIMYRC-DOX micelles had higher cellular uptake rates than free DOX, resulting in higher cytotoxicity of PPIMYRC-DOX micelles than that of free DOX. More importantly, PPIMYRC-DOX micelles inhibited tumors much better than free DOX. The tumor inhibition rate of PPIMYRC-DOX micelles was as high as 93%. Taken together, PPIMYRC-DOX micelles were assembled by amphiphilic dendrimers with the zwitterionic and targeting groups, which enhanced the therapeutic effect of DOX and reduced its side effects. The prepared targeting nanodrug has great potential for further application in antitumor therapy.

摘要

化疗是临床治疗恶性肿瘤的主要方法。然而,常用的化疗药物具有生物毒性高、水溶性差、靶向能力低和副作用大等缺点。由两性离子基团和靶向配体修饰的两亲性树枝状大分子组装而成的两性离子胶束应能在很大程度上克服这些缺点。在此,在第二代聚(丙烯亚胺)树枝状大分子(G2 PPI)表面修饰两性离子基团和靶向肽c(RGDfC),并将其与疏水性的-(2-巯基乙基)油酰胺偶联形成两亲性树枝状大分子(PPIMYRC)。PPIMYRC自组装成胶束,阿霉素(DOX)负载在胶束内部,制备了载DOX胶束(PPIMYRC-DOX胶束)。PPIMYRC-DOX胶束在纤维蛋白原中具有良好的稳定性和pH响应性药物释放。此外,PPIMYRC-DOX胶束的细胞摄取率高于游离DOX,导致PPIMYRC-DOX胶束的细胞毒性高于游离DOX。更重要的是,PPIMYRC-DOX胶束对肿瘤的抑制作用比游离DOX好得多。PPIMYRC-DOX胶束的肿瘤抑制率高达93%。综上所述,PPIMYRC-DOX胶束是由具有两性离子和靶向基团的两亲性树枝状大分子组装而成,增强了DOX的治疗效果并降低了其副作用。所制备的靶向纳米药物在抗肿瘤治疗中具有巨大的进一步应用潜力。

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