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Novel Pt(IV) complexes to overcome multidrug resistance in gastric cancer by targeting P-glycoprotein

机译:通过靶向p-糖蛋白来克服胃癌多药耐药的新型Pt(iv)复合物

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摘要

Systematic toxicity and drug resistance significantly limited FDA-approved platinum drugs for further clinical applications. In order to reverse the resistance (MDR) and enhance their anticancer efficiency, four Pt(IV) complexes (12-15) conjugating with P-glycoprotein (P-gp) inhibitors were designed and synthesized. Among them, complex 14 (IC50 = 3.37 mu M) efficiently reversed cisplatin resistance in SGC-7901/CDDP cell line and increased selectivity index (6.9) against normal HL-7702 cell line. Detailed mechanisms in SGC-7901/CDDP cells assays revealed that complex 14 efficiently induced apoptosis via down-regulating expression of P-gp for enhanced intracellular uptake of platinum, arrested cells at G2/M phase, induced DNA damage and initiated mitochondrial apoptosis pathway. Further in vivo studies demonstrated that the enhanced accumulation of complex 14 contributed to tumor inhibition of 75.6% in SGC-7901/CDDP xenografts, which was much higher than cisplatin (25.9%) and oxaliplatin (43%). Moreover, the low systematic toxicity made 14 a potential novel P-gp-mediated MDR modulator. (C) 2021 Elsevier Masson SAS. All rights reserved.
机译:系统毒性和耐药性严重限制了FDA批准的铂类药物的进一步临床应用。为了逆转耐药(MDR)并提高其抗癌效率,设计并合成了四种与P-糖蛋白(P-gp)抑制剂偶联的Pt(IV)配合物(12-15)。其中,复合物14(IC50=3.37μM)有效逆转了SGC-7901/CDDP细胞系对顺铂的耐药性,并提高了对正常HL-7702细胞系的选择性指数(6.9)。SGC-7901/CDDP细胞分析中的详细机制表明,复合物14通过下调P-gp的表达来促进细胞内铂的摄取,有效诱导细胞凋亡,将细胞阻滞在G2/M期,诱导DNA损伤并启动线粒体凋亡途径。进一步的体内研究表明,在SGC-7901/CDDP异种移植物中,复合物14的累积增强有助于75.6%的肿瘤抑制率,远远高于顺铂(25.9%)和奥沙利铂(43%)。此外,低系统毒性使14成为一种潜在的新型P-gp介导的MDR调节剂。(c)2021爱思唯尔马松SAS。版权所有。

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