首页> 美国卫生研究院文献>Journal of Extracellular Vesicles >Prostate cancer extracellular vesicles mediate intercellular communication with bone marrow cells and promote metastasis in a cholesterol‐dependent manner
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Prostate cancer extracellular vesicles mediate intercellular communication with bone marrow cells and promote metastasis in a cholesterol‐dependent manner

机译:前列腺癌细胞外囊介导与骨髓细胞的细胞间连通以胆固醇依赖的方式促进转移

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摘要

Primary tumours can establish long‐range communication with distantorgans to transform them into fertile soil for circulating tumour cells toimplant and proliferate, a process called pre‐metastatic niche (PMN) formation. Tumour‐derived extracellular vesicles (EV) are potent mediators of PMN formation due to their diverse complement of pro‐malignant molecular cargo and their propensity to target specific cell types (Costa‐Silva et al., 2015; Hoshino et al., 2015; Peinado et al., 2012; Peinado et al., 2017). While significant progress has been made to understand the mechanisms by which pro‐metastatic EVs create tumour‐favouring microenvironments at pre‐metastatic organ sites, comparatively little attention has been paid to the factors intrinsic to recipient cells that may modify the extent to which pro‐metastatic EV signalling is received and transduced. Here, we investigated the role of recipient cell cholesterol homeostasis in prostate cancer (PCa) EV‐mediated signalling and metastasis. Using a bone metastatic model of enzalutamide‐resistant PCa, we first characterized an axis of EV‐mediated communication between PCa cells and bone marrow that is marked by in vitro and in vivo PCa EV uptake by bone marrow myeloid cells, activation of NF‐κB signalling, enhanced osteoclast differentiation, and reduced myeloid thrombospondin‐1 expression. We then employed a targeted, biomimetic approach to reduce myeloid cell cholesterol in vitro and in vivo prior to conditioning with PCa EVs. Reducing myeloid cell cholesterol prevented the uptake of PCa EVs by recipient myeloid cells, abolished NF‐κB activity and osteoclast differentiation, stabilized thrombospondin‐1 expression, and reduced metastatic burden by 77%. These results demonstrate that cholesterol homeostasis in bone marrow myeloid cells regulates pro‐metastatic EV signalling and metastasis by acting as a gatekeeper for EV signal transduction.
机译:原发性肿瘤可以与遥远的态度建立远程沟通器官将它们转化为肥沃的土壤以循环肿瘤细胞植入和增殖,一种称为预转移性Niche(PMN)的过程。由于它们不同的促苦参分子货物的多种补蛋白和靶向特异性细胞类型的倾向(Costa-Silva等,2015; Hoshino等,2015; Hoshino等,2015; Peinado等人。,2012; Peinado等,2017)。虽然已经提出了重大进展,了解Pro-Metapative EV在预转移器官网站上产生肿瘤有利的微环境的机制,相对较少地对受体细胞的因子进行了额度,这些因素可以修改Pro的程度接收转移性EV信令并转换。在这里,我们研究了受体细胞胆固醇稳态在前列腺癌(PCA)EV介导的信号和转移中的作用。利用烯甲醛抗性PCA的骨转移模型,首先表征了通过体外和体内骨髓骨髓细胞的体外和体内PCA EV的PCA细胞和骨髓之间的EV介导的通信轴的轴线,NF-κB活化信号传导,增强的骨壳分化,降低骨髓血压素-1表达。然后,我们在用PCA EVS调节之前,使用靶向的仿生方法在体外和体内减少骨髓细胞胆固醇。减少骨髓细胞胆固醇通过受体骨髓细胞阻止PCA EV的摄取,废除NF-κB活性和骨壳分化,稳定的血压回素-1表达,并降低了转移负荷为77%。这些结果表明,骨髓骨髓细胞中的胆固醇稳态通过作为EV信号转导的门守来调节Pro-MeLastatic EV信号和转移。

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