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首页> 外文期刊>Nanoscale >Development of GLUT1-targeting alkyl glucoside-modified dihydroartemisinin liposomes for cancer therapy
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Development of GLUT1-targeting alkyl glucoside-modified dihydroartemisinin liposomes for cancer therapy

机译:发展GLUT1-targeting烷基双氢青蒿素含量测定glucoside-modified脂质体对癌症治疗

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The antitumor activity of artemisinin derivatives has attracted much attention. However, lack of tumor targeting limits the anti-tumor activity of artemisinin derivatives. It is reported that tumor cells acquire energy through the glycolysis pathway. To meet their elevated glucose requirements, high expressions of glucose transporters (GLUTs) are observed in many malignant cells. On this basis, novel alkyl glycoside-modified dihydroartemisinin liposomes were successfully prepared with GLUT1 as the target and the glucose segment of an alkyl glycoside as the targeting head on the surface of liposomes. The particle size of the liposomes was 100.67 +/- 1.25 nm, zeta potential was -22.93 +/- 0.92 mV and encapsulation efficiency was 75.28 +/- 0.73%, meanwhile the liposomes had good stability. In vitro targeting of liposomes was evaluated by fluorescence microscopy and flow cytometry. Compared with human L02 hepatocyte cells, the liposomes showed better targeting ability to human liver carcinoma cells HepG2 with the help of the glucose segment modified on the liposomes. In vivo targeting evaluation also showed that the tumor targeting of alkyl glycoside-modified liposomes was significantly improved, as well as the anti-tumor activity. These findings provide a research and theoretical basis for the development of artemisinin derivatives and other drug targeted antitumor nano-agents.
机译:青蒿素衍生物的抗肿瘤活性吸引了大量关注。肿瘤靶向限制的抗肿瘤活性青蒿素衍生物。肿瘤细胞通过糖酵解获得能量途径。要求,高表达的葡萄糖转运蛋白(大规模)中观察到的很多恶性细胞。双氢青蒿素含量测定glycoside-modified脂质体成功与GLUT1做好准备了吗目标和烷基葡萄糖段配糖体表面瞄准头部脂质体。100.67 + / - 1.25 nm,电动电势为-22.93 + / -0.92 mV和封装效率为75.28+ / - 0.73%,与此同时,脂质体有很好的稳定。评估通过荧光显微镜和流血细胞计数。细胞、脂质体显示更好的目标人类肝癌细胞HepG2的能力葡萄糖的帮助部分的修改脂质体。显示,肿瘤靶向的烷基glycoside-modified脂质体显著改善,以及抗肿瘤活性。这些发现提供了一个研究和理论青蒿素的发展的基础衍生品及其它药物靶向抗肿瘤nano-agents。

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