首页> 外文期刊>Journal of Medicinal Chemistry >Chemical modification of paclitaxel (Taxol) reduces P-glycoprotein interactions and increases permeation across the blood-brain barrier in vitro and in situ
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Chemical modification of paclitaxel (Taxol) reduces P-glycoprotein interactions and increases permeation across the blood-brain barrier in vitro and in situ

机译:紫杉醇(Taxol)的化学修饰可降低P-糖蛋白的相互作用,并增加体外和原位穿过血脑屏障的渗透

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摘要

The purpose of this work was to introduce a chemical modification into the paclitaxel (Taxol) structure to reduce interactions with the product of the multidrug resistant type 1 (MDR1) gene, P-glycoprotein (Pgp), resulting in improved blood-brain barrier (BBB) permeability. Specifically, a taxane analogue, Tx-67, with a succinate group added at the C10 position of Taxol, was synthesized and identified as such a candidate. In comparison studies, Tx-67 had no apparent interactions with Pgp, as demonstrated by the lack of enhanced uptake of rhodamine 123 by brain microvessel endothelial cells (BMECs) in the presence of the agent. By contrast, Taxol exposure substantially enhanced rhodamine 123 uptake by BMECs through inhibition of Pgp. The transport across BMEC monolayers was polarized for both Tx-67 and Taxol with permeation in the apical to basolateral direction greater for Tx-67 and substantially reduced for Taxol relative to basolateral. to apical permeation. Taxol and cyclosporin A treatments also did not enhance Tx-67 permeation across BMEC monolayers. In an in situ rat brain perfusion study, Tx-67 was demonstrated to permeate across the BBB at a greater rate than Taxol. These results demonstrate that the Taxol analogue Tx-67 had a reduced interaction with Pgp and, as a consequence, enhanced permeation across the blood-brain barrier in vitro and in situ.
机译:这项工作的目的是将化学修饰引入紫杉醇(Taxol)结构中,以减少与耐多药1型(MDR1)基因P-糖蛋白(Pgp)产物的相互作用,从而改善血脑屏障( BBB)渗透性。具体而言,合成并鉴定了紫杉烷类似物Tx-67,其在紫杉醇的C10位添加了琥珀酸酯基团,并被鉴定为此类候选物。在比较研究中,Tx-67与Pgp没有明显的相互作用,如在存在该剂的情况下脑微血管内皮细胞(BMEC)缺乏罗丹明123的摄取增强所证明。相比之下,紫杉醇暴露通过抑制Pgp大大增强了BMEC的若丹明123吸收。跨BMEC单层的转运对于Tx-67和紫杉醇都是极化的,对于Tx-67,其在顶至基底外侧的渗透更大,而相对于基底外侧的紫杉醇则明显减少。顶端渗透。紫杉醇和环孢菌素A处理也不能增强BMEC单层的Tx-67渗透。在原位大鼠脑灌注研究中,证明Tx-67以比紫杉醇更大的速率透过BBB。这些结果表明,紫杉醇类似物Tx-67与Pgp的相互作用降低,因此,体外和原位穿过血脑屏障的渗透性增强。

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