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RGD-modified lipid disks as drug carriers for tumor targeted drug delivery

机译:RGD-modified脂质磁盘作为药物载体肿瘤靶向药物输送

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摘要

Melittin, the major component of the European bee venom, is a potential anticancer candidate due to its lytic properties. However, in vivo applications of melittin are limited due to its main side effect, hemolysis, especially when applied through intravenous administration. The polyethylene glycol-stabilized lipid disk is a novel type of nanocarrier, and the rim of lipid disks has a high affinity to amphiphilic peptides. In our study, a c(RGDyK) modified lipid disk was developed as a tumor targeted drug delivery system for melittin. Cryo-TEM was used to confirm the shape and size of lipid disks with or without c(RGDyK) modification. In vitro and in vivo hemolysis analyses revealed that the hemolysis effect significantly decreased after melittin associated with lipid disks. Importantly, the results of our in vivo biodistribution and tumor growth inhibitory experiments showed that c(RGDyK) modification increased the distribution of lipid disks in the tumor and the anticancer efficacy of melittin loaded lipid disks. Thus, we successfully achieved a targeted drug delivery system for melittin and other amphiphilic peptides with a good therapeutic effect and low side effects.
机译:欧洲蜜蜂蜂毒肽,主要的组成部分由于毒液,是一个潜在的抗癌候选人其溶解特性。由于它的蜂毒肽的应用是有限的主要副作用,溶血,尤其是当通过静脉注射的管理应用。磁盘是一个聚乙烯glycol-stabilized脂质小说类型的nanocarrier, rim的脂质两亲性磁盘具有高度的亲和力肽。磁盘是作为肿瘤靶向药物开发的蜂毒肽的交付系统。确认形状和大小的脂质磁盘或没有c (RGDyK)修改。体内溶血分析显示溶血效应显著下降蜂毒肽与脂质相关的磁盘。重要的是,我们体内的结果biodistribution和肿瘤生长抑制实验表明,c (RGDyK)修改增加了脂质磁盘的分配肿瘤和蜂毒肽的抗癌功效脂质磁盘加载。靶向药物输送系统来实现蜂毒肽和其他两亲性肽治疗效果好,副作用低。

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