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Synthesis and evaluation of Strychnos alkaloids as MDR reversal agents for cancer cell eradication

机译:马兜铃生物碱作为MDR逆转剂用于癌细胞消除的合成与评价

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Natural products represent the fourth generation of multidrug resistance (MDR) reversal agents that resensitize MDR cancer cells overexpressing P-glycoprotein (Pgp) to cytotoxic agents We have developed an effective synthetic route to prepare various Strychnos alkaloids and their derivatives Molecular modeling of these alkaloids docked to a homology model of Pgp was employed to optimize ligand-protein interactions and design analogues with increased affinity to Pgp Moreover, the compounds were evaluated for their (1) binding affinity to Pgp by fluorescence quenching, and (2) MDR reversal activity using a panel of in vitro and cell-based assays and compared to verapamil, a known inhibitor of Pgp activity Compound 7 revealed the highest affinity to Pgp of all Strychnos congeners (Kd = 4.4 μM), the strongest inhibition of Pgp ATPase activity, and the strongest MDR reversal effect in two Pgp-expressing cell lines Altogether, our findings suggest the clinical potential of these synthesized compounds as viable Pgp modulators justifies further investigation
机译:天然产物代表第四代多药耐药性(MDR)逆转剂,可使过度表达P-糖蛋白(Pgp)的MDR癌细胞对细胞毒性剂重新敏感。我们已经开发出一种有效的合成途径,以制备多种马兜铃生物碱及其衍生物,对接于这些生物碱的分子模型与Pgp的同源性模型进行比较以优化配体-蛋白质相互作用并设计对Pgp具有增加的亲和力的类似物。此外,评价了化合物的(1)通过荧光淬灭对Pgp的结合亲和力,和(2)使用一组体外和基于细胞的测定,并且与维拉帕米(一种已知的Pgp活性抑制剂)进行比较,化合物7显示了所有马钱子属植物同源物对Pgp的亲和力最高(Kd = 4.4μM),对Pgp ATPase活性的抑制作用最强,并且最强在两种表达Pgp的细胞系中,MDR逆转作用合在一起,我们的发现表明这些合成的临床潜力化合物作为可行的Pgp调节剂值得进一步研究

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