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智能 pH 敏感和时控聚合物胶束用于多柔比星和双硫仑的有效联合治疗。

Smart pH-sensitive and temporal-controlled polymeric micelles for effective combination therapy of doxorubicin and disulfiram.

机构信息

Center of Pharmaceutics, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai 201203, China.

出版信息

ACS Nano. 2013 Jul 23;7(7):5858-69. doi: 10.1021/nn4010796. Epub 2013 Jun 10.

Abstract

The combination of a chemotherapeutic drug with a multidrug resistance (MDR) modulator has emerged as a promising strategy for treating MDR cancer. To ensure two drugs could be simultaneously delivered to tumor region at the optimum ratio, and the MDR modulator could be released earlier and faster than the chemotherapeutic drug to inactivate P-glycoprotein (P-gp) and subsequently inhibit the pumping out of the chemotherapeutic drug, a smart pH-sensitive polymeric micelles system with high drug loading and precise drug ratio was designed and prepared by conjugating doxorubicin (DOX) to poly(styrene-co-maleic anhydride) (SMA) derivative with adipic dihydrazide (ADH) through a acid-cleavable hydrazone bond, and then encapsulating disulfiram (DSF), a P-gp inhibitor as well as an apoptosis inducer, into the micelles formed by the self-assembly of SMA-ADH-DOX (SAD) conjugate. The pH-sensitive polymeric micelles system enabled a temporal release of two drugs: encapsulated DSF was released fast to inhibit the activity of P-gp and restore cell apoptotic signaling pathways, while conjugated DOX was released in a sustained and pH-dependent manner and highly accumulated in drug resistant cells to exert therapeutic effect, due to the inactivation of P-gp by DSF. The smart co-delivery system was very effective in enhancing the cytotoxicity by increasing the intracellular accumulation of DOX and promoting the apoptotic response, and showed the most effective inhibitory effect on the growth of drug-resistant breast cancer xenografts as compared to other combinations of both drugs. In a word, this smart co-delivery system has significant promise for the clinical therapy of MDR cancer.

摘要

化疗药物与多药耐药(MDR)调节剂的联合应用已成为治疗 MDR 癌症的一种有前途的策略。为了确保两种药物能够以最佳比例同时递送到肿瘤区域,并且 MDR 调节剂能够比化疗药物更早、更快地释放,以失活 P-糖蛋白(P-gp)并随后抑制化疗药物的泵出,设计并制备了一种智能 pH 敏感的聚合物胶束系统,该系统具有高载药量和精确的药物比例,通过酸裂解腙键将阿霉素(DOX)与聚(苯乙烯-co-马来酸酐)(SMA)衍生物偶联,然后将双硫仑(DSF)包封到 SMA-ADH-DOX(SAD)缀合物自组装形成的胶束中,DSF 是一种 P-gp 抑制剂和凋亡诱导剂。该 pH 敏感聚合物胶束系统能够实现两种药物的时控释放:包封的 DSF 快速释放以抑制 P-gp 的活性并恢复细胞凋亡信号通路,而共轭 DOX 则以持续且 pH 依赖性的方式释放,并高度积聚在耐药细胞中发挥治疗作用,这是由于 DSF 失活了 P-gp。该智能共递药系统通过增加 DOX 的细胞内积累和促进凋亡反应,非常有效地增强了细胞毒性,并与两种药物的其他组合相比,对耐药乳腺癌异种移植瘤的生长表现出最有效的抑制作用。总之,这种智能共递药系统在 MDR 癌症的临床治疗中具有很大的应用前景。

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