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基于喹啉的噻唑基腙通过抑制自噬作用靶向癌细胞。

Quinoline-based thiazolyl-hydrazones target cancer cells through autophagy inhibition.

机构信息

Faculty of Chemistry, University of Belgrade, Belgrade, Serbia.

Department of Pharmaceutical Technology and Biochemistry, Faculty of Chemistry, Gdansk University of Technology, Gdansk, Poland.

出版信息

Arch Pharm (Weinheim). 2024 Feb;357(2):e2300426. doi: 10.1002/ardp.202300426. Epub 2023 Nov 22.

DOI:10.1002/ardp.202300426
PMID:37991233
Abstract

Heterocyclic pharmacophores such as thiazole and quinoline rings have a significant role in medicinal chemistry. They are considered privileged structures since they constitute several Food and Drug Administration (FDA)-approved drugs for cancer treatment. Herein, we report the synthesis, in silico evaluation of the ADMET profiles, and in vitro investigation of the anticancer activity of a series of novel thiazolyl-hydrazones based on the 8-quinoline (1a-c), 2-quinoline (2a-c), and 8-hydroxy-2-quinolyl moiety (3a-c). The panel of several human cancer cell lines and the nontumorigenic human embryonic kidney cell line HEK-293 were used to evaluate the compound-mediated in vitro anticancer activities, leading to [2-(2-(quinolyl-8-ol-2-ylmethylene)hydrazinyl)]-4-(4-methoxyphenyl)-1,3-thiazole (3c) as the most promising compound. The study revealed that 3c blocks the cell-cycle progression of a human colon cancer cell line (HCT-116) in the S phase and induces DNA double-strand breaks. Also, our findings demonstrate that 3c accumulates in lysosomes, ultimately leading to the cell death of the hepatocellular carcinoma cell line (Hep-G2) and HCT-116 cells, by the mechanism of autophagy inhibition.

摘要

杂环药效团,如噻唑环和喹啉环,在药物化学中具有重要作用。它们被认为是特权结构,因为它们构成了几种美国食品和药物管理局 (FDA) 批准的用于癌症治疗的药物。在此,我们报告了一系列基于 8-喹啉 (1a-c)、2-喹啉 (2a-c) 和 8-羟基-2-喹啉部分 (3a-c) 的新型噻唑基腙的合成、ADMET 谱的计算评估以及体外抗癌活性的研究。使用多种人类癌细胞系和非致瘤性人胚肾细胞系 HEK-293 来评估化合物介导的体外抗癌活性,导致 [2-(2-(喹啉-8-醇-2-基亚甲基)腙基)]-4-(4-甲氧基苯基)-1,3-噻唑 (3c) 作为最有前途的化合物。该研究表明,3c 阻止人类结肠癌细胞系 (HCT-116) 在 S 期的细胞周期进展并诱导 DNA 双链断裂。此外,我们的研究结果表明,3c 通过抑制自噬机制,在溶酶体中积累,最终导致肝癌细胞系 (Hep-G2) 和 HCT-116 细胞死亡。

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