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抗乳腺癌药物,喹啉类,作用于缝隙连接。

Anti-breast cancer agents, quinolines, targeting gap junction.

机构信息

Department of Diagnostic Medicine/Pathobiology, Kansas State University, Manhattan, KS 66506, USA.

出版信息

Med Chem. 2011 Sep;7(5):448-53. doi: 10.2174/157340611796799131.

Abstract

Cancer cells exhibit many defects in cell communication that contribute to the loss of tissue homeostasis (excess cell proliferation, invasion, and metastasis). The process of cancer formation causes a disruption in cell homeostasis, affecting the ability to respond to extracellular signals, as well as triggering some intracellular events which alter gap junctional intercellular communication (GJIC). Previous research has shown that the first two generations of substituted quinolines have anti-cancer effects in human breast cancer cells. This report presents the synthesis and bioactivities of third generation substituted quinolines. Scrape load/dye transfer studies showed that 100 nM of PQ15, a third generation substituted quinoline, causes a 4.5-fold increase of gap junction activity in T47D breast cancer cells. Furthermore, a significant decrease of cell proliferation and viability was observed in the presence of 200 nM PQ15 compared to control. The expression of α-survivin was reduced to <40% in the treatment of 200 nM PQ15 compared to solvent alone. Alpha-survivin expression is upregulated in human cancers and associated with resistance to chemotherapy, suggesting that α-survivin prolongs the survival of cancer cells. Thus, it has been shown that substituted quinolines stimulate gap junction activity, decrease alpha survivin expression, and subsequently inhibit cancer cell growth. Our findings demonstrate that PQ15 has a promising role in exerting anti-cancer activity in human breast cancer cells.

摘要

癌细胞在细胞通讯方面表现出许多缺陷,导致组织稳态丧失(细胞过度增殖、侵袭和转移)。癌症的形成过程导致细胞稳态紊乱,影响细胞对外界信号的反应能力,并引发一些改变间隙连接细胞间通讯(GJIC)的细胞内事件。先前的研究表明,第一代和第二代取代喹啉在人类乳腺癌细胞中具有抗癌作用。本报告介绍了第三代取代喹啉的合成和生物活性。刮擦负载/染料转移研究表明,第三代取代喹啉 PQ15 在浓度为 100 nM 时可使 T47D 乳腺癌细胞的间隙连接活性增加 4.5 倍。此外,与对照组相比,在存在 200 nM PQ15 的情况下观察到细胞增殖和活力显著下降。与单独溶剂处理相比,200 nM PQ15 处理可将α-存活素的表达降低至<40%。α-存活素在人类癌症中表达上调,与对化疗的耐药性相关,表明α-存活素延长了癌细胞的存活时间。因此,研究表明取代喹啉可刺激间隙连接活性,降低α-存活素的表达,从而抑制癌细胞生长。我们的研究结果表明,PQ15 在发挥人类乳腺癌细胞抗癌活性方面具有广阔的应用前景。

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