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探索具有 N-酰腙结构的新型 3-氰基吡啶衍生物的抗癌潜力:合成、DFT 计算、细胞毒性评价、分子模拟和抗氧化性能。

Exploring the anticancer potential of new 3-cyanopyridine derivatives bearing N-acylhydrazone motif: Synthesis, DFT calculations, cytotoxic evaluation, molecular modeling, and antioxidant properties.

机构信息

Laboratory of Synthesis of Molecules with Biological Interest, University of Constantine 1, Constantine, Algeria.

Physiology Department, Faculty of Medicine, Malatya Turgut Özal University, Malatya, Turkey.

出版信息

J Biochem Mol Toxicol. 2024 Sep;38(9):e23819. doi: 10.1002/jbt.23819.

Abstract

3-Cyanopyridine derivatives are known for exhibiting excellent anticancer activity due to their strong capability to inhibit various biological targets, including Pim-1 kinase, survivin, and tubulin polymerization. On the other hand, N-acylhydrazones (NAH) are known to be a very versatile motif in medicinal chemistry and drug design. Based on these data, we report in this paper, the synthesis of novel 3-cyanopyridines incorporating N-acyl hydrazine scaffold, the evaluation of their cytotoxicity on the breast (MCF-7) and ovarian (A-2780) cancer cell lines and their antioxidant properties. Excluding 4a and 4d, all tested molecules exhibited high cytotoxicity against A-2780, with IC values ranging from 1.14 to 1.76 µM. Conversely, only four molecules 3d, 4b, 4c, and 4d demonstrated cytotoxicity against MCF-7, with IC values ranging from 1.14 to 3.38 µM. On the other hand, all the tested molecules exhibited a moderate antioxidant capacity in both the DPPH and metal chelation assays. Docking and molecular dynamics studies revealed that 2d, 3d, and 4d are potential inhibitors of tubulin and the œstrogen receptor, which may explain their high cytotoxicity. These results are promising to study these newly synthesized 3-cyanopyridine-N-acylhydrazones in depth for use as potential anticancer candidates.

摘要

3-氰基吡啶衍生物由于其能够强烈抑制多种生物靶标,包括 Pim-1 激酶、survivin 和微管蛋白聚合,而被公认为具有优异的抗癌活性。另一方面,N-酰腙(NAH)在药物化学和药物设计中被认为是一种非常通用的结构基序。基于这些数据,我们在本文中报告了新型 3-氰基吡啶与 N-酰腙支架的合成,评估了它们对乳腺癌(MCF-7)和卵巢癌(A-2780)癌细胞系的细胞毒性及其抗氧化特性。除了 4a 和 4d,所有测试的分子对 A-2780 均表现出高细胞毒性,IC 值范围为 1.14 至 1.76 μM。相反,只有四个分子 3d、4b、4c 和 4d 对 MCF-7 表现出细胞毒性,IC 值范围为 1.14 至 3.38 μM。另一方面,所有测试的分子在 DPPH 和金属螯合测定中均表现出中等的抗氧化能力。对接和分子动力学研究表明,2d、3d 和 4d 可能是微管蛋白和雌激素受体的潜在抑制剂,这可能解释了它们的高细胞毒性。这些结果为深入研究这些新合成的 3-氰基吡啶-N-酰腙作为潜在的抗癌候选物提供了希望。

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