针对 GLUT1 的聚合物-药物偶联物靶向和缺氧激活胶束用于肿瘤化学-热治疗。

GLUT1 targeting and hypoxia-activating polymer-drug conjugate-based micelle for tumor chemo-thermal therapy.

机构信息

School of Chinese Materia Medica, Beijing University of Chinese Medicine, Beijing, China.

Division of Interventional Radiology, Department of Geriatric Medicine & National Clinical Research Center of Geriatric Disease, the 2nd Medical Center of Chinese PLA General Hospital, Beijing, China.

出版信息

Drug Deliv. 2021 Dec;28(1):2256-2267. doi: 10.1080/10717544.2021.1992039.

Abstract

PURPOSE

Mitochondria are closely correlated with the proliferation and metastasis of tumor for providing suitable micro-environment and energy supply. Herein, we construct a glucose transporter 1 (GLUT1) targeting and hypoxia activating polyprodrug-based micelle (Glu-PEG-Azo-IR808-S-S-PTX) for mitochondria-specific drug delivery and tumor chemo-thermal therapy.

RESULTS

The micelle was characterized by hypoxia-sensitive PEG outer layer detachment, high photo-thermal conversion efficiency, and glutathione (GSH)-sensitive paclitaxel (PTX) release. It showed GLUT1 specifically cellular uptake and hypoxia-sensitive mitochondria targeting on A549 cell. fluorescence imaging confirmed the micelle also could selectively accumulate in tumor and its mitochondria on A549 tumor-bearing nude mice. Consequently, it not only exhibited higher cytotoxicity, apoptosis rate, and metastasis inhibition rate on A549 cells, but also better tumor growth and metastasis inhibition rate on tumor-bearing nude mice and lower whole-body toxicity. The mechanism might be caused by destroying mitochondria and down-regulating ATP production.

CONCLUSION

This study provided a GLUT1 targeting, hypoxia, and reductive responsive nanomedicine that hold the potential to be exploited for tumor therapy.

摘要

目的

线粒体与肿瘤的增殖和转移密切相关,为其提供适宜的微环境和能量供应。在此,我们构建了一种葡萄糖转运蛋白 1(GLUT1)靶向、缺氧激活的多前药基胶束(Glu-PEG-Azo-IR808-S-S-PTX),用于线粒体特异性药物传递和肿瘤化疗-热疗。

结果

胶束具有缺氧敏感的聚乙二醇外层脱落、高光热转换效率和谷胱甘肽(GSH)敏感的紫杉醇(PTX)释放特性。它在 A549 细胞上表现出 GLUT1 特异性细胞摄取和缺氧敏感的线粒体靶向。荧光成像证实,胶束还可以选择性地在 A549 荷瘤裸鼠肿瘤及其线粒体中积累。因此,它不仅在 A549 细胞上表现出更高的细胞毒性、凋亡率和转移抑制率,而且在荷瘤裸鼠上表现出更好的肿瘤生长和转移抑制率,并且全身毒性更低。其机制可能是破坏线粒体和下调 ATP 产生。

结论

本研究提供了一种 GLUT1 靶向、缺氧和还原响应的纳米医学,具有用于肿瘤治疗的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b85/8530487/28cc0c76fef1/IDRD_A_1992039_F0001_C.jpg

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