PO.CL05.10 · 临床研究
细胞外囊泡介导的皮质醇诱导miR-143-3p从巨噬细胞转移促进血管生成
Extracellular vesicle-mediated transfer of cortisol-induced miR-143-3p from macrophages promotes angiogenesis
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
慢性应激可导致激素失衡,并促进癌症风险和进展。我们此前报道,乳腺癌(BC)患者的血清皮质醇水平高于无癌症诊断者。此外,我们观察到黑人患者的血清皮质醇水平相对高于白人患者。另外,我们发现皮质醇处理通过诱导miR-143-3p的表达促进巨噬细胞M2极化,而miR-143-3p也被释放到细胞外囊泡(EV)中。在此,考虑到黑人患者乳腺肿瘤中微血管密度较高这一事实,我们研究了EV包裹的miR-143-3p在血管生成中的作用。用来自皮质醇处理巨噬细胞的EV(Corti-Mφ-EV)处理内皮细胞可增加其增殖、迁移、侵袭和管腔形成。基于荧光的成像证实了内皮细胞对EV的有效摄取,这与Corti-Mφ-EV处理的内皮细胞内miR-143-3p水平升高相关。用miR-143-3p抑制剂预处理内皮细胞可消除Corti-Mφ-EV诱导的增殖和管腔形成,而转染miR-143-3p模拟物则促进这些效应。使用基于网络的平台(Targetscan和miRDB)进行的计算分析确定IGFBP5为miR-143-3p的潜在靶点。在Corti-Mφ-EV或miR-143-3p模拟物处理的内皮细胞中,观察到IGFBP5表达降低。siRNA介导的IGFBP5敲低也增加了内皮细胞生长和管腔形成。有趣的是,对TCGA数据集的分析显示,M2巨噬细胞标志物(CD163)与内皮细胞标志物(PECAM1和CDH5)之间存在显著正相关。总之,这些发现揭示了皮质醇促进血管生成的一种新机制,进一步确立了慢性应激与癌症风险增加之间的病理生物学联系。
查看英文原文 English abstract
Chronic stress can lead to hormonal imbalance and contribute to cancer risk and progression. We previously reported higher levels of serum cortisol in breast cancer (BC) patients compared to those without a cancer diagnosis. Furthermore, we observed relatively higher levels of serum cortisol in Black patients than their White counterparts. Additionally, we found that cortisol treatment promoted M2 polarization of macrophages by inducing the expression of miR-143-3p, which was also released in extracellular vesicles (EV). Here, we investigated the role of EV-encapsulated miR-143-3p in angiogenesis, considering the fact that Black patients exhibit a higher microvessel density in their breast tumors. Treatment of endothelial cells with EV from cortisol-treated macrophages (Corti-Mφ-EV) increased their proliferation, migration, invasion, and tube formation. Efficient uptake of EV by endothelial cells was confirmed by fluorescence-based imaging, which correlated with an increase in the intracellular levels of miR-143-3p in Corti-Mφ-EV treated endothelial cells. Pre-treatment of endothelial cells with a miR-143-3p inhibitor abrogated Corti-Mφ-EV-induced proliferation and tube formation, whereas transfection with a miR-143-3p mimic promoted these effects. Computational analysis using the web-based platforms (Targetscan and miRDB) identified IGFBP5 as a potential miR-143-3p target. A reduction in IGFBP5 expression was reported in Corti-Mφ-EV or miR-143-3p mimic-treated endothelial cells. siRNA-mediated knockdown of IGFBP5 also increased endothelial cell growth and tube formation. Interestingly, surveying of the TCGA dataset showed a significant positive correlation between the M2 macrophage marker (CD163) and endothelial cell markers (PECAM1 and CDH5). Altogether, these findings reveal a novel mechanism by which cortisol may promote angiogenesis, establishing an additional pathobiological connection of chronic stress with increased cancer risk.
利益披露 Disclosure
A. Sharma, None..
S. Sudan, None..
A. P. Singh, None..
S. Singh, None.