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天然三烯酸作为抗癌剂:首次立体选择性合成、细胞周期分析、细胞凋亡诱导、细胞信号传导及线粒体靶向研究

Natural Trienoic Acids as Anticancer Agents: First Stereoselective Synthesis, Cell Cycle Analysis, Induction of Apoptosis, Cell Signaling and Mitochondrial Targeting Studies.

作者信息

D'yakonov Vladimir A, Makarov Alexey A, Dzhemileva Lilya U, Ramazanov Ilfir R, Makarova Elina Kh, Dzhemilev Usein M

机构信息

Institute of Petrochemistry and Catalysis, Russian Academy of Sciences pr. Oktyabrya 141, 450075 Ufa, Russia.

出版信息

Cancers (Basel). 2021 Apr 10;13(8):1808. doi: 10.3390/cancers13081808.

Abstract

The first Z-stereoselective method was developed for the synthesis of unsaturated acids containing a 1Z,5Z,9Z-triene moiety in 61-64% yields using the new Ti-catalyzed cross-coupling of oxygen-containing and aliphatic 1,2-dienes as the key synthetic step. It was shown for the first time that trienoic acids with non-methylene-interrupted Z-double bonds show moderate cytotoxic activities against tumor cell lines (Jurkat, K562, U937, HL60, HeLa), human embryonic kidney cells (Hek293), normal fibroblasts and human topoisomerase I (hTop1) inhibitory activity in vitro. The synthesized acids efficiently initiate apoptosis of Jurkat tumor cells, with the cell death mechanism being activated by the mitochondrial pathway. A probable mechanism of topoisomerase I inhibition was also hypothesized on the basis of in silico studies resorting to docking. The activation and inhibition of the most versatile intracellular signaling pathways (CREB, JNK, NFkB, p38, ERK1/2, Akt, p70S6K, STAT3 and STAT5 tyrosine kinases) responsible for cell proliferation and for initiation of apoptosis were studied by multiplex assay technology (Luminex xMAP).

摘要

首个Z-立体选择性方法被开发用于合成含有1Z,5Z,9Z-三烯部分的不饱和酸,该方法以含氧和脂肪族1,2-二烯的新型钛催化交叉偶联作为关键合成步骤,产率为61-64%。首次表明,具有非亚甲基间隔Z-双键的三烯酸对肿瘤细胞系(Jurkat、K562、U937、HL60、HeLa)、人胚胎肾细胞(Hek293)、正常成纤维细胞具有中等细胞毒性活性,并在体外具有人拓扑异构酶I(hTop1)抑制活性。合成的酸能有效引发Jurkat肿瘤细胞的凋亡,细胞死亡机制由线粒体途径激活。还基于计算机对接研究推测了拓扑异构酶I抑制的可能机制。通过多重检测技术(Luminex xMAP)研究了负责细胞增殖和凋亡起始的最通用细胞内信号通路(CREB、JNK、NFkB、p38、ERK1/2、Akt、p70S6K、STAT3和STAT5酪氨酸激酶)的激活和抑制情况。

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