PO.EN01.01 · 内分泌肿瘤
检测第二代抗雄激素药物对雄激素受体过表达前列腺癌细胞的影响
Examining the effect of second-generation antiandrogens in androgen receptor-overexpressing prostate cancer cells
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
抗雄激素药物抑制雄激素受体(AR)信号传导,AR是前列腺癌(PCa)生长和存活的关键驱动因素。虽然这些药物起初有效,但长期治疗常导致耐药,通常与AR过表达或组成型活性剪接变体的出现相关。为更好地理解AR过表达如何影响抗雄激素药物疗效,我们检测了AR高表达PCa细胞在第二代抗雄激素药物治疗下的细胞增殖和AR靶基因表达。
在本研究中,我们使用达罗他胺(darolutamide)、恩扎卢胺(enzalutamide)和阿帕他胺(apalutamide),采用相同的实验设置系统地比较了它们对细胞增殖和AR介导的基因表达的影响。LNCaP-ARhi细胞的AR表达比其亲本细胞系LNCaP-pcDNA3.1高4-6倍,经激素剥夺后用递增浓度(0.001 nM-10 nM)的合成雄激素R1881处理。用Incucyte相差成像监测细胞增殖和形态7天。通过qPCR量化直接AR靶基因表达(KLK3和FKBP5)。对于联合处理,我们使用两种R1881浓度(0.01 nM和0.1 nM):较低浓度促进增殖,较高浓度抑制增殖,两者均显著增加AR过表达细胞中的KLK3表达。细胞经激素剥夺后,用DMSO、0.01 nM或0.1 nM R1881及抗雄激素药物(1 μM、10 μM和25 μM)处理。监测细胞增殖和形态5天,并如前所述测量AR靶基因表达。
我们的结果支持先前的发现,即AR过表达增强雄激素反应性,即使在低雄激素浓度(0.01 nM R1881)下也维持细胞生长。我们还发现LNCaP-ARhi细胞在R1881 0.03 nM-10 nM时从细长的纺锤形细胞转变为扁平的多边形形态。R1881与抗雄激素药物联合处理恢复了原始形态。
所有受试的第二代抗雄激素药物在两种细胞系中均以剂量依赖性方式降低了R1881刺激的生长和KLK3/FKBP5基因表达,提示对AR信号传导的有效抑制。然而,在LNCaP-ARhi细胞中,即使在高抗雄激素药物浓度下,KLK3表达仍高于DMSO对照。总体而言,第二代抗雄激素药物抑制PCa细胞中的AR信号传导和生长,但AR过表达可能限制其抑制效力,凸显了针对AR高表达情况制定策略的必要性。
查看英文原文 English abstract
Antiandrogens inhibit androgen receptor (AR) signaling, a critical driver of prostate cancer (PCa) growth and survival. While these agents are initially effective, prolonged therapy frequently results in resistance, often associated with AR overexpression or the emergence of constitutively active splice variants. To better understand how AR overexpression influences antiandrogen efficacy, we examined cell proliferation and AR target gene expression under second-generation antiandrogen treatment in AR-high PCa cells.
In this study, we used darolutamide, enzalutamide, and apalutamide and systematically compared their effects on cell proliferation and AR-mediated gene expression using identical experimental setups. LNCaP-ARhi cells, expressing 4-6-fold higher AR than their parental cell line LNCaP-pcDNA3.1, were hormone-deprived and treated with increasing concentrations (0.001 nM-10 nM) of the synthetic androgen, R1881. Cell proliferation and morphology were monitored with Incucyte phase-contrast imaging for 7 days. Direct AR target gene expression (KLK3 and FKBP5) was quantified by qPCR. For co-treatment, we used two R1881 concentrations (0.01 nM and 0.1 nM): the lower promoted proliferation, the higher suppressed it, and both significantly increased KLK3 expression in AR-overexpressing cells. The cells were hormone-deprived, then treated with DMSO, 0.01 nM or 0.1 nM R1881, and antiandrogens (1 μM, 10 μM, and 25 μM). Cell proliferation and morphology were monitored for 5 days, and AR target gene expression was measured as previously described.
Our results support previous findings that AR overexpression enhances androgen responsiveness and sustains cell growth even under low androgen concentrations (0.01 nM R1881). We also found that LNCaP-ARhi cells shifted from elongated, spindle-shaped cells to a flattened, polygonal morphology at R1881 0.03 nM-10 nM. Co-treatment with R1881 and antiandrogens restored the original morphology.
All tested second-generation antiandrogens reduced R1881-stimulated growth and KLK3/FKBP5 gene expression in both cell lines, suggesting effective AR signaling inhibition in a dose-dependent manner. However, in LNCaP-ARhi cells, KLK3 expression remained elevated compared to DMSO control even at high antiandrogen concentrations. Overall, second-generation antiandrogens suppress AR signaling and growth in PCa cells, but AR overexpression may limit inhibitory efficacy, highlighting the need for strategies targeting AR-high conditions.
利益披露 Disclosure
K. Vaalavirta, None..
H. Rauhala, None..
T. Visakorpi, None.