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钒药物的稳定性和生物活性:活性物种的本质是什么?

Stabilities and Biological Activities of Vanadium Drugs: What is the Nature of the Active Species?

作者信息

Levina Aviva, Lay Peter A

机构信息

School of Chemistry, University of Sydney, Sydney, 2006 NSW, Australia.

出版信息

Chem Asian J. 2017 Jul 18;12(14):1692-1699. doi: 10.1002/asia.201700463. Epub 2017 Jun 13.

Abstract

Diverse biological activities of vanadium(V) drugs mainly arise from their abilities to inhibit phosphatase enzymes and to alter cell signaling. Initial interest focused on anti-diabetic activities but has shifted to anti-cancer and anti-parasitic drugs. V-based anti-diabetics are pro-drugs that release active components (e.g., H VO ) in biological media. By contrast, V anti-cancer drugs are generally assumed to enter cells intact; however, speciation studies indicate that nearly all drugs are likely to react in cell culture media during in vitro assays and the same would apply in vivo. The biological activities are due to V and/or V reaction products with cell culture media, or the release of ligands (e.g., aromatic diimines, 8-hydroxyquinolines or thiosemicarbazones) that bind to essential metal ions in the media. Careful consideration of the stability and speciation of V complexes in cell culture media and in biological fluids is essential to design targeted V-based anti-cancer therapies.

摘要

钒(V)类药物的多种生物活性主要源于其抑制磷酸酶和改变细胞信号传导的能力。最初的研究兴趣集中在抗糖尿病活性上,但现在已转向抗癌和抗寄生虫药物。基于钒的抗糖尿病药物是前体药物,在生物介质中释放活性成分(例如HVO)。相比之下,钒抗癌药物通常被认为是完整进入细胞的;然而,形态研究表明,几乎所有药物在体外测定期间都可能在细胞培养基中发生反应,体内情况也会如此。其生物活性归因于钒和/或钒与细胞培养基的反应产物,或者是与培养基中必需金属离子结合的配体(例如芳族二亚胺、8-羟基喹啉或硫代氨基脲)的释放。仔细考虑钒配合物在细胞培养基和生物流体中的稳定性和形态对于设计有针对性的钒基抗癌疗法至关重要。

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