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Assembly of Fully Substituted 2H-Indazoles Catalyzed by Cu2O Rhombic Dodecahedra and Evaluation of Anticancer Activity

机译:通过Cu2O菱形十二章催化的完全取代的2H-吲唑组合和抗癌活性评估

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摘要

Simultaneous C-N, and N-N bond-forming methods for onepot transformations are highly challenging in synthetic organic chemistry. In this study, the Cu2O rhombic dodecahedra-catalyzed synthesis of 2H-indazoles is demonstrated with good to excellent yields from readily available chemicals. This one-pot procedure involves Cu2O nanoparticle-catalyzed consecutive C-N, and N-N bond formation followed by cyclization to yield 2H-indazoles with broad substrate scope and high functional group tolerance. Various cell-based bioassay studies demonstrated that 2H-indazoles inhibit the growth of cancer cells, typically through induction of apoptosis in a dose-dependent manner. Moreover, 2H-indazoles tested in the MDA-MB-468 cell line were capable of inhibiting cancer cell migration and invasion. Thus, it is shown that 2H-indazoles have potent in vitro anticancer activity that warrant further investigation of this compound class.
机译:同时C-N和OnPot转化的N-N键形成方法在合成有机化学中具有高度挑战性。 在这项研究中,Cu2O菱形十二次催化合成2H-吲唑的合成,良好地与易于获得的化学品的优异产率良好。 该单罐方法涉及Cu 2 O纳米颗粒催化的连续C-N,N-N键形成,然后环化,得到具有宽底物范围和高官能团耐受性的2H-吲唑。 各种基于细胞的生物测定研究表明,2H-吲唑抑制癌细胞的生长,通常通过诱导剂量依赖性方式诱导细胞凋亡。 此外,在MDA-MB-468细胞系中测试的2H-吲唑能够抑制癌细胞迁移和侵袭。 因此,表明2H-吲唑具有有效的体外抗癌活动,可进一步调查该复合类。

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