Dankasterone A induces prostate cancer cell death by inducing oxidative stress

氧化应激 前列腺癌 细胞凋亡 癌症研究 癌细胞 细胞生长 流式细胞术 化学 活性氧 癌症 MTT法 程序性细胞死亡 生物 分子生物学 生物化学 遗传学
作者
Xia Gan,Min Nie,Siying Cai,Yonghong Liu,Fan Zhang,Xiaobing Feng,Yunqiu Li,Bin Yang,Xueni Wang
出处
期刊:European Journal of Pharmacology [Elsevier]
卷期号:957: 175988-175988 被引量:1
标识
DOI:10.1016/j.ejphar.2023.175988
摘要

Oxidative stress plays a dual role in tumor survival, either promoting tumor development or killing tumor cells under different conditions. Dankasterone A is a secondary metabolite derived from the fungus Talaromyces purpurogenu. It showed good potential in a screen for anti-prostate cancer compounds. In this study, MTT results showed dankasterone A was cytotoxic to prostate cancer cells, with an IC50 of 5.10 μM for PC-3 cells and 3.41 μM for 22Rv1 cells. Further studies, plate cloning assays and real-time cell analysis monitoring showed that dankasterone A significantly inhibited clonal colony formation and cell migration in 22Rv1 and PC-3 cells. In addition, flow cytometry results showed that dankasterone A induced apoptosis in prostate cancer cells while having no impact on cell cycle distribution. At the molecular level, Protein microarray experiments and western blot assays revealed that dankasterone A specifically and dramatically upregulated HO-1 protein expression; and the results of cell fluorescence staining showed that dankasterone A induced overexpression of reactive oxygen species in 22Rv1 and PC-3 cells. Taken together, dankasterone A induced prostate cancer cells to undergo intense oxidative stress, which resulted in the production of large amounts of HO-1 and the release of large amounts of reactive oxygen species, leading to apoptosis of prostate cancer cells, ultimately resulting in the inhibition of both cell proliferation and migration. We also validated the anti-prostate cancer effects of dankasterone A in vivo in a zebrafish xenograft tumor model. In conclusion, dankasterone A has the potential to be developed as an anti-prostate cancer drug.
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