Salidroside suppresses proliferation and migration in prostate cancer via the PI3K/AKT pathway

Author:

Liu Ru-Han11,Ma Teng-Fei231,Yang Qin34,Xiao Wen-Chang34,Yin Lu3,Yin Miao3,Zhang Jin-Song5,Wang Chi-Hua6

Affiliation:

1. Department of combine traditional Chinese and Western Medicine, Huanggang Central Hospital, Huanggang, Hubei, China

2. Department of Neurology, Huanggang Central Hospital, Huanggang, China

3. Huanggang Institute of Translational Medicine, Huanggang, Hubei, China

4. Department of Cardiovascular Surgery, Huanggang Central Hospital, Huanggang, Hubei, China

5. Department of Urology, Huanggang Central Hospital, Huanggang, China

6. Huanggang Disease Control Center, Huanggang, Hubei, China

Abstract

BACKGROUND: Prostate cancer (PCa) is one of the most common malignancies in men. PCa is difficult to detect in its early stages, and most patients are diagnosed in the middle to late stages. At present, drug therapy for advanced PCa is still insufficient. Some patients develop drug resistance in the later stage of therapy, which leads to tumor recurrence, metastasis and even treatment failure. Therefore, it is crucial to find new and effective drugs to treat prostate cancer. OBJECTIVE: The aim of this study was to investigate the anti-cancer effect of salidroside, an active ingredient in a traditional Chinese herbal medicine, on PCa. METHODS: Two human PCa cell lines, PC3 and DU145, were cultured and treated with salidroside. Cell viability and proliferation ability were analyzed through CCK-8 and colony assays, and cell migration ability was detected by Transwell and Scratch assays. RT-PCR and WB were used to detected the expression levels of moleculars related to cell proliferation, apoptosis, migration, and AKT signaling pathway. Forthmore, we performed rescue experiments with agonist to verify the affected signaling pathway. RESULTS: Salidroside inhibited the proliferation, colony formation, and migration of PCa cells. Meanwhile, apoptosis of PCa cells was enhanced. Moreover, salidroside inhibited PI3K/AKT pathway in PCa cells. The treatment of AKT agonist 740Y-P abrogated the inhibitory effect of salidroside on the PI3K/AKT signaling pathway. CONCLUSIONS: Our study demonstrated that in PCa cells, salidroside inhibites proliferation and migration and promots apoptosis via inhibiting PI3K/AKT pathway.

Publisher

IOS Press

Subject

Cancer Research,Genetics,Oncology,General Medicine

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