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设计并合成新型色胺酮类衍生物,靶向细胞周期检查点通路,作为潜在的抗癌药物。

Design and synthesis of novel isatin-based derivatives targeting cell cycle checkpoint pathways as potential anticancer agents.

机构信息

Department of Medicinal Chemistry, Faculty of Pharmacy, Assuit University, Assuit 71526, Egypt.

Department of Zoology, Faculty of Science, Ain Shams University, Abbassia 11566, Cairo, Egypt.

出版信息

Bioorg Chem. 2020 Dec;105:104366. doi: 10.1016/j.bioorg.2020.104366. Epub 2020 Oct 15.

Abstract

In recent years, cell cycle and checkpoint pathways regulation are offering new therapeutic approaches against cancer. Isatin, is a well exploited scaffold in the anticancer domain. Accordingly, the current work describes the design and synthesis of two series of (Z)-3-substituted-2-(((E/Z)-5-substituted-2-oxo-1-substituted-indolin-3-ylidene)hydrazinylidene)-thiazolidin-4-ones, 4(a-s) and (E/Z)-1-substituted-3-(((Z)-3-substituted-4-methylthiazol-2(3H)-ylidene)hydrazineylidene)-5-substituted-indolin-2-ones, 5(a-s). The structures of the synthesized molecules were confirmed by spectral and elemental methods of analyses. Pure diastereomers were further identified with H-H-NOESY and confirmed with X-ray crystallography. The target compounds were tested in vitro for their cytotoxicity against three human epithelial cell lines, liver (HepG2), breast (MCF-7), and colon (HT-29) in addition to the diploid human normal cells (WI-38) compared to doxorubicin as a reference drug. Variable cytotoxic effects (IC 3.29-100 µmol) were reported on the three cancer cell lines with pronounced selectivity compared to the normal one WI-38. The potency of the most active compounds, 4o, 4s, 5e, 5f, 5l, 5m and 5o (IC 3.29-9.92 µmol), in both series associated with the (Z) configurations of N = thiazolidin/ene or one, however, the configuration of the N = isatin moiety seemed to be of no importance to the activity. The tested compounds were grouped for their possible mechanism of action into 4 categories. Compound 4o with no apparent effect on all genes examined. Compounds 4s and 5o affected all genes investigated and seem to have multiple cellular targets; induced the expression of p53 and caspases, and downregulated that of CDK1. Compounds 5l and 5m directly elevated the expression of initiator and effector caspases without going through p53 pathway. Finally, compounds 5e and 5f elevated the expression of p53 and inhibited CDK1. Compounds 4s, 5e, 5f, 5l, 5m, and 5o caused a significant elevation in the activity of cleaved caspase 3 as well. Docking studies on CDK1 revealed that the active molecules bind to the tested enzyme by the same manner of the co-crystallized ligands and the isatin-thiazoldinone/ene scaffold is essential for binding of these molecules.

摘要

近年来,细胞周期和检验点通路的调控为癌症治疗提供了新的方法。靛红是抗癌领域中应用广泛的结构骨架。因此,本工作设计并合成了两个系列的(Z)-3-取代-2-((E/Z)-5-取代-2-氧代-1-取代-吲哚啉-3-亚基)肼基)噻唑烷-4-酮,4(a-s)和(E/Z)-1-取代-3-((Z)-3-取代-4-甲基噻唑-2(3H)-亚基)肼基)-5-取代吲哚啉-2-酮,5(a-s)。通过光谱和元素分析方法确认了合成分子的结构。通过 H-H-NOESY 进一步鉴定了纯非对映异构体,并通过 X 射线晶体学进行了确认。目标化合物在体外对三种人上皮细胞系(肝(HepG2)、乳腺(MCF-7)和结肠(HT-29))进行了细胞毒性测试,并与二倍体人正常细胞(WI-38)进行了比较,以阿霉素作为参考药物。与正常细胞 WI-38 相比,在三种癌细胞系中报告了可变的细胞毒性作用(IC 3.29-100 µmol),表现出明显的选择性。最活跃的化合物 4o、4s、5e、5f、5l、5m 和 5o(IC 3.29-9.92 µmol)在两个系列中都具有较高的活性,其 N=噻唑烷/烯或 N=靛红部分的(Z)构型与活性相关,然而,N=靛红部分的构型似乎对活性没有影响。根据可能的作用机制,对测试化合物进行了分组,分为 4 类。化合物 4o 对所有检测的基因均无明显影响。化合物 4s 和 5o 影响所有研究的基因,似乎具有多种细胞靶标;诱导 p53 和胱天蛋白酶的表达,并下调 CDK1 的表达。化合物 5l 和 5m 直接上调起始和效应胱天蛋白酶的表达,而不经过 p53 途径。最后,化合物 5e 和 5f 上调 p53 的表达并抑制 CDK1。化合物 4s、5e、5f、5l、5m 和 5o 也显著提高了 cleaved caspase 3 的活性。对 CDK1 的对接研究表明,活性分子通过与共结晶配体相同的方式与测试酶结合,并且靛红-噻唑烷/烯骨架对于这些分子的结合是必需的。

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