PO.TB03.06 · 肿瘤生物学
TRPV6/CXCR4信号复合物作为预防去势抵抗性前列腺癌成骨性骨转移的治疗靶点
TRPV6/CXCR4 signaling complexes as therapeutic targets to prevent osteoblastic bone metastasis in castration-resistant prostate cancer
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:骨转移是晚期前列腺癌致残和致死的主要原因,累及高达90%的去势抵抗性前列腺癌(CRPC)患者。这些病灶中约85%为成骨性病变。钙通道TRPV6在健康前列腺组织中不表达,但在恶性转化过程中从头产生,在晚期和去势抵抗阶段表达更高。TRPV6调控钙内流及其下游信号通路,促进增殖、侵袭和存活。既往研究表明,TRPV6促进上皮-间质转化(EMT)、迁移、侵袭和转移播散,尤其是向骨的转移,并与趋化因子受体CXCR4形成功能性复合物,后者是肿瘤细胞归巢至骨的关键介导因子。在此,我们研究了TRPV6-CXCR4轴如何促进成骨性骨转移,以及其药理学抑制是否可能具有治疗益处。
方法:在人前列腺癌组织和骨转移灶中分析TRPV6和CXCR4的表达及共定位。使用TRPV6过表达或TRPV6敲除细胞进行功能实验,评估成骨细胞介导的迁移、侵袭和活化。体内研究评估以单克隆抗体单独或联合靶向TRPV6和CXCR4对转移负荷和骨病灶表型的影响。
结果:在临床样本中,TRPV6表达与肿瘤侵袭性和转移进展密切相关。TRPV6活化触发CaMK2磷酸化、NF-κB核转位以及EMT相关转录因子(Twist、Snail、Slug)的上调,增强迁移和侵袭表型。同时,TRPV6促进稳定的CXCR4-TRPV6复合物形成,放大促转移信号。在共培养实验中,表达TRPV6的细胞显著增加成骨细胞活化标志物(ALP、RUNX2、OPN)和基质矿化,提示存在驱动成骨性微环境形成的功能性肿瘤-成骨细胞互作。在体内,TRPV6阳性肿瘤主要产生成骨性骨病灶,双重靶向TRPV6和CXCR4可降低转移发生率、减轻病理性骨重塑并延长总生存期。
结论:这些结果凸显TRPV6-CXCR4复合物作为CRPC成骨性骨转移关键调控因子的作用。双重靶向TRPV6和CXCR4为预防或限制前列腺癌骨转移提供了一种概念验证性治疗策略。
查看英文原文 English abstract
Background: Bone metastasis is a leading cause of morbidity and mortality in advanced prostate cancer, affecting up to 90% of patients with castration-resistant prostate cancer (CRPC). Around 85% of these lesions are osteoblastic. The calcium channel TRPV6 is absent in healthy prostate tissue but produced de novo during malignant transformation, with higher expression in advanced and castration-resistant stages. TRPV6 regulates calcium influx and downstream signalling pathways that promote proliferation, invasion and survival. Previous studies have shown that TRPV6 promotes epithelial-mesenchymal transition (EMT), migration, invasion and metastatic dissemination, particularly to bone, and forms functional complexes with the chemokine receptor CXCR4, a key mediator of tumour cell homing to bone. Here, we investigated how the TRPV6-CXCR4 axis contributes to osteoblastic bone metastases and whether its pharmacological inhibition could be therapeutically beneficial.
Methods: TRPV6 and CXCR4 expression and co-localization were analyzed in human prostate cancer tissues and bone metastases. Functional assays using TRPV6-overexpressing or TRPV6-knockout cells evaluated osteoblast-mediated migration, invasion and activation. In vivo studies assessed the effect of targeting TRPV6 and CXCR4, individually or in combination, with monoclonal antibodies on metastatic burden and bone lesion phenotype.
Results: TRPV6 expression strongly correlated with tumor aggressiveness and metastatic progression in clinical samples. TRPV6 activation triggered CaMK2 phosphorylation, NF-κB nuclear translocation and upregulation of EMT-associated transcription factors (Twist, Snail, Slug), enhancing migratory and invasive phenotypes. Concurrently, TRPV6 promoted stable CXCR4-TRPV6 complex formation, amplifying pro-metastatic signalling. In co-culture assays, TRPV6-expressing cells markedly increased osteoblast activation markers (ALP, RUNX2, OPN) and matrix mineralisation, indicating functional tumour-osteoblast crosstalk driving osteoblastic niche formation. In vivo, TRPV6-positive tumors primarily produced osteoblastic bone lesions, and dual targeting of TRPV6 and CXCR4 reduced the incidence of metastases, attenuated pathological bone remodeling, and prolonged overall survival.
Conclusions: These results highlight the TRPV6-CXCR4 complex as a key regulator of osteoblastic bone metastasis in CRPC. Dual targeting of TRPV6 and CXCR4 provides a proof-of-concept therapeutic strategy to prevent or limit bone metastasis in prostate cancer.
利益披露 Disclosure
C. Cordier, None..
A. Haustrate, None..
A. Mihalache, None..
E. Duval, None..
E. Desruelles, None..
C. Spriet, None..
L. Slimani, None..
B. Casel, None..
L. Allart, None..
P. Gosset, None..
N. Prevarskaya, None..
V. Lehen'kyi, None.