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首页> 外文期刊>International Journal of Pharmaceutics >RGD-fatty alcohol-modified docetaxel liposomes improve tumor selectivity in vivo
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RGD-fatty alcohol-modified docetaxel liposomes improve tumor selectivity in vivo

机译:RGD-脂肪醇修饰的多西他赛脂质体可提高体内肿瘤选择性

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The tripeptide arginine-glycine-aspartate (RGD) was conjugated with various fatty alcohols to obtain RGDOCnH2n + 1 (n = 8, 10, 12, 14, 16, 18), which were incorporated into the bilayer of docetaxel liposomes to improve their tumor specificity. The fatty alcohols were accepted as linking groups to insert the tetrapeptide RGDX (X = amino acid) into the bilayer of liposomes. RGDX was previously shown to be a potent ligand to target tumor cell-surface integrin receptors, whereas RGD was not shown to have this ability. We hypothesized that RGD-fatty alcohol conjugates lacking the fourth amine X can guide liposomes to tumors without reducing their binding affinity to integrins. Antitumor activity, pharmacokinetics and biodistribution studies were evaluated in mice inoculated with S180 sarcoma. Compared with unmodified liposomes, RGD-fatty alcohol-modified liposomes successfully delivered significantly more docetaxel to tumors, which led to significant tumor weight loss and increased tumor docetaxel concentrations accompanied by reduced liver accumulation. Improved affinity of RGD-fatty alcohols to integrins was also confirmed on A375 cell model. Further comparisons among the tumor-targeting capacities of liposomes containing RGD-fatty alcohols, RGDF-fatty alcohols and RGDV-fatty acids demonstrated that RGD-fatty alcohols were as effective as the other two tetrapeptide derivatives. Therefore, a simplified tumor-targeting delivery system using RGD-fatty alcohols was developed.
机译:将三肽精氨酸-甘氨酸-天冬氨酸(RGD)与各种脂肪醇缀合以获得RGDOCnH2n + 1(n = 8、10、12、14、16、18),将其掺入多西他赛脂质体双层中以改善其肿瘤特异性。脂肪醇被认为是将四肽RGDX(X =氨基酸)插入脂质体双层的连接基团。先前已证明RGDX是靶向肿瘤细胞表面整联蛋白受体的有效配体,而RGD没有显示出具有这种能力。我们假设缺少第四胺X的RGD-脂肪醇缀合物可以将脂质体引导至肿瘤,而不会降低其与整联蛋白的结合亲和力。在接种S180肉瘤的小鼠中评估了抗肿瘤活性,药代动力学和生物分布研究。与未修饰的脂质体相比,RGD-脂肪醇修饰的脂质体成功地将多西他赛传递给肿瘤,这导致明显的肿瘤体重减轻和肿瘤多西他赛浓度的增加,同时肝堆积减少。在A375细胞模型中也证实了RGD-脂肪醇对整合素的亲和力有所提高。包含RGD-脂肪醇,RGDF-脂肪醇和RGDV-脂肪酸的脂质体的肿瘤靶向能力之间的进一步比较表明,RGD-脂肪醇与其他两种四肽衍生物一样有效。因此,开发了使用RGD-脂肪醇的简化的靶向肿瘤的递送系统。

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