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首页> 外文期刊>Cellular Oncology: Analytical Cellular Pathology >Kaempferol Promotes Apoptosis While Inhibiting Cell Proliferation via Androgen-Dependent Pathway and Suppressing Vasculogenic Mimicry and Invasion in Prostate Cancer
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Kaempferol Promotes Apoptosis While Inhibiting Cell Proliferation via Androgen-Dependent Pathway and Suppressing Vasculogenic Mimicry and Invasion in Prostate Cancer

机译:Kaempferol促进细胞凋亡,同时通过雄激素依赖性途径抑制细胞增殖,抑制血管原性模拟和侵袭前列腺癌

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摘要

Kaempferol is a well-known natural flavonol reported to be a potential treatment for multiple cancers. In this study, we demonstrated that cell growth of androgen-sensitive LNCaP cells could be inhibited 33% by 5?μM kaempferol, around 60% by 10?μM kaempferol, and almost 100% by 15?μM kaempferol. Also, kaempferol showed relatively limited effect on PC-3 cells and nonmalignant RWPE-1 cells. In the presence of DHT, the IC50 for kaempferol was in LNCaP cells, in PC-3 cells, and in RWPE-1 cells, respectively. Kaempferol promotes apoptosis of LNCaP cells in a dose-dependent manner in the presence of dihydrotestosterone (DHT). Then, luciferase assay data showed that kaempferol could inhibit the activation of androgen receptors induced by DHT significantly. The downstream targets of androgen receptors, such as PSA, TMPRSS2, and TMEPA1, were found decreased in the presence of kaempferol in qPCR data. It was then confirmed that the protein level of PSA was decreased. Kaempferol inhibits AR protein expression and nuclear accumulation. Kaempferol suppressed vasculogenic mimicry of PC-3 cells in an in vitro study. In conclusion, kaempferol is a promising therapeutic candidate for treatment of prostate cancer, where the androgen signaling pathway as well as vasculogenic mimicry are involved.
机译:Kaempferol是一种众所周知的天然黄酮,报告是对多种癌症的潜在治疗方法。在这项研究中,我们证明了雄激素敏感的LNCAP细胞的细胞生长可以抑制33%(kaempferol,约60%〜6×kaempferol,近100%〜15°Kaempferol)。此外,Kaempferol对PC-3细胞和非正射性RWPE-1细胞显示出相对有限的影响。在DHT的存在下,用于Kaempferol的IC50分别在LNCAP细胞中,分别在PC-3细胞中和RWPE-1细胞中。 Kaempferol在二氢睾酮(DHT)存在下以剂量依赖性方式促进LNCAP细胞的凋亡。然后,荧光素酶测定数据显示Kaempferol可以抑制DHT显着诱导的雄激素受体的激活。在QPCR数据中,发现在Kaempferol的存在下,发现雄激素受体的下游靶标,例如PSA,TMPRSS2和TMEPA1。然后证实,PSA的蛋白质水平降低。 Kaempferol抑制Ar蛋白表达和核积累。 Kaempferol在体外研究中抑制了PC-3细胞的血管原性模拟。总之,Kaempferol是一种有助于治疗前列腺癌的治疗候选者,其中涉及雄激素信号通路以及血管生成的途径。

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