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PEG-Farnesylthiosalicylate Conjugate as a Nanomicellar Carrier for Delivery of Paclitaxel

机译:PEG-十八烷基硫代水杨酸酯结合物是紫杉醇递送的纳米级载体

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摘要

S-trans, trans-farnesylthiosalicylic acid (FTS) is a synthetic small molecule that acts as a potent and especially nontoxic Ras antagonist. It inhibits both oncogenically activated Ras and growth factor receptor-mediated Ras activation, resulting in the inhibition of Ras-dependent tumor growth. In this work, an FTS conjugate with poly(ethylene glycol) (PEG) through a labile ester linkage, PEG_(5K)-FTS2(L), was developed. PEG_(5K)-FTS2 conjugate readily forms micelles in aqueous solutions with a critical micelle concentration of 0.68 μM, and hydrophobic drugs such as paclitaxei (PTX) could be effectively loaded into these particles. Both drug-free and PTX-loaded micelles were spherical in shape with a uniform size of 20-30 nm. The release of PTX from PTX-loaded PEG_(5K)-FTS2 micelles was significantly slower than that from Taxol formulation. In vitro cytotoxicity studies with several tumor cell lines showed that PEG_(5K)-FTS2(L) was comparable to FTS in antitumor activity. Western immunoblotting showed that total Ras levels were downregulated in several cancer cell lines treated with FTS or PEG_(5K)-FTS2(L). The micellar formulation of PTX exhibited more in vitro cytotoxic activity against several tumor cell lines compared with free PTX, suggesting a possible synergistic effect between the carrier and the codelivered drug. The antitumor activity of the PTX loaded PEG_(5K)-FTS2(L) micelles in a syngeneic murine breast cancer model was found to be significantly higher than that of Taxol, which may be attributed to their preferential tumor accumulation and a possible synergistic effect between PEG_(5K)-FTS2 carrier and loaded PTX.
机译:S-反式,反式法呢基硫代水杨酸(FTS)是一种合成的小分子,可作为有效且特别无毒的Ras拮抗剂。它抑制致癌激活的Ras和生长因子受体介导的Ras激活,从而抑制了Ras依赖性肿瘤的生长。在这项工作中,开发了通过不稳定的酯键PEG_(5K)-FTS2(L)与聚乙二醇(PEG)形成的FTS共轭物。 PEG_(5K)-FTS2共轭物在临界胶束浓度为0.68μM的水溶液中容易形成胶束,并且疏水药物(例如紫杉醇(PTX))可以有效地装载到这些颗粒中。不含药物和载有PTX的胶束均为球形,均一尺寸为20-30 nm。从载有PTX的PEG_(5K)-FTS2胶束中释放PTX的速度明显比从紫杉醇制剂中释放的速度慢。对几种肿瘤细胞系的体外细胞毒性研究表明,PEG_(5K)-FTS2(L)的抗肿瘤活性与FTS相当。 Western免疫印迹表明,在用FTS或PEG_(5K)-FTS2(L)处理的几种癌细胞系中,总Ras水平下调。与游离PTX相比,PTX的胶束制剂对几种肿瘤细胞系表现出更多的体外细胞毒性活性,表明载体和编码传递的药物之间可能存在协同作用。发现在同系鼠乳腺癌模型中,载有PTX的PEG_(5K)-FTS2(L)胶束的抗肿瘤活性明显高于紫杉醇,这可能归因于它们优先积累的肿瘤以及两者之间可能的协同作用。 PEG_(5K)-FTS2载体和负载的PTX。

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