Multimodal 4-arylchromene derivatives with microtubule-destabilizing, anti-angiogenic, and MYB-inhibitory activities.

IF 4.6 Q1 ONCOLOGY 癌症耐药(英文) Pub Date : 2023-01-01 DOI:10.20517/cdr.2022.90
Leonhard H F Köhler, Sebastian Reich, Maria Yusenko, Karl-Heinz Klempnauer, Gerrit Begemann, Rainer Schobert, Bernhard Biersack
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引用次数: 1

Abstract

Aim: Efficient and readily available anticancer drugs are sought as treatment options. For this reason, chromene derivatives were prepared using the one-pot reaction and tested for their anticancer and anti-angiogenic properties. Methods: 2-Amino-3-cyano-4-(aryl)-7-methoxy-4H-chromene compounds (2A-R) were repurposed or newly synthesized via a three-component reaction of 3-methoxyphenol, various aryl aldehydes, and malononitrile. We performed assays to study the inhibition of tumor cell growth [3-(4, 5-dimethylthiazol-2-yl)-2, 5-diphenyl tetrazolium bromid (MTT) assay], effects on microtubules (immunofluorescence), cell cycle (flow-activated cell sorting analysis), angiogenesis (zebrafish model), and MYB activity (luciferase reporter assay). Fluorescence microscopy was applied for localization studies via copper-catalyzed azide-alkyne click reaction of an alkyne-tagged drug derivative. Results: Compounds 2A-C and 2F exhibited robust antiproliferative activities against several human cancer cell lines (50% inhibitory concentrations in the low nanomolar range) and showed potent MYB inhibition. The alkyne derivative 3 was localized in the cytoplasm after only 10 min of incubation. Substantial microtubule disruption and G2/M cell-cycle arrest were observed, where compound 2F stood out as a promising microtubule-disrupting agent. The study of anti-angiogenic properties showed that 2A was the only candidate with a high potential to inhibit blood vessel formation in vivo. Conclusion: The close interplay of various mechanisms, including cell-cycle arrest, MYB inhibition, and anti-angiogenic activity, led to identifying promising multimodal anticancer drug candidates.

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具有微管不稳定、抗血管生成和myb抑制活性的多模态4-芳基铬衍生物。
目的:寻求有效和容易获得的抗癌药物作为治疗选择。为此,采用一锅反应法制备了铬胺衍生物,并对其抗癌和抗血管生成性能进行了测试。方法:以3-甲氧基苯酚、各种芳基醛和丙二腈为原料,经三组分反应,重新利用或合成2-氨基-3-氰-4-(芳基)-7-甲氧基- 4h -铬化合物(2A-R)。我们进行了实验来研究肿瘤细胞生长的抑制[3-(4,5 -二甲基噻唑-2-基)- 2,5 -二苯基溴化四唑(MTT)试验],对微管(免疫荧光)、细胞周期(流动激活细胞分选分析)、血管生成(斑马鱼模型)和MYB活性(荧光素酶报告细胞试验)的影响。利用荧光显微镜对一种炔标记药物衍生物的铜催化叠氮-炔咔嗒反应进行了定位研究。结果:化合物2A-C和2F对几种人类癌细胞系表现出强大的抗增殖活性(在低纳摩尔范围内抑制浓度为50%),并表现出有效的MYB抑制作用。10分钟后,炔衍生物3在细胞质中定位。观察到大量的微管破坏和G2/M细胞周期阻滞,其中化合物2F作为一种有前途的微管破坏剂而突出。抗血管生成特性的研究表明,2A是体内唯一具有高抑制血管形成潜力的候选药物。结论:多种机制的密切相互作用,包括细胞周期阻滞、MYB抑制和抗血管生成活性,导致了有希望的多模式抗癌候选药物的确定。
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