Department of Urology Feinberg School of Medicine Northwestern University Chicago Illinois USA.
Simpson Querrey Institute for BioNanotechnology Northwestern University Chicago Illinois USA.
J Extracell Vesicles. 2020 Dec;10(2):e12042. doi: 10.1002/jev2.12042. Epub 2020 Dec 31.
Primary tumours can establish long-range communication with distant organs to transform them into fertile soil for circulating tumour cells to implant 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.
原发肿瘤可以与远处器官建立长距离通讯,将其转化为循环肿瘤细胞植入和增殖的肥沃土壤,这一过程称为转移前生态位(PMN)形成。由于其多样化的促恶性分子货物和靶向特定细胞类型的倾向,肿瘤衍生的细胞外囊泡(EV)是PMN 形成的有力介质(Costa-Silva 等人,2015 年;Hoshino 等人,2015 年;Peinado 等人,2012 年;Peinado 等人,2017 年)。虽然在理解促转移 EV 如何在转移前器官部位创建有利于肿瘤的微环境的机制方面已经取得了重大进展,但相对较少关注受体内固有因素可能会改变接收到促转移 EV 信号并转导的程度。在这里,我们研究了受体内源性胆固醇稳态在前列腺癌(PCa)EV 介导的信号转导和转移中的作用。我们使用恩杂鲁胺耐药 PCa 的骨转移模型,首先描述了 PCa 细胞和骨髓之间 EV 介导的通讯轴,该轴的特征是体外和体内 PCa EV 被骨髓髓样细胞摄取、NF-κB 信号激活、增强破骨细胞分化和减少骨髓血小板反应蛋白-1 表达。然后,我们在使用 PCa EV 预处理之前,采用靶向、仿生方法减少体外和体内髓样细胞胆固醇。降低髓样细胞胆固醇可防止受体制备细胞摄取 PCa EV,消除 NF-κB 活性和破骨细胞分化,稳定血小板反应蛋白-1 表达,并使转移负担减少 77%。这些结果表明,骨髓髓样细胞中的胆固醇稳态通过作为 EV 信号转导的守门员来调节促转移 EV 信号转导和转移。
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