Department of Medical Sciences, University of Torino, Torino, Italy.
Department of Surgical, Medical, Molecular, and Critical Area Pathology, University of Pisa, Pisa, Italy.
Diabetes. 2018 Apr;67(4):704-716. doi: 10.2337/db17-0371. Epub 2018 Jan 31.
Endothelial cell-derived extracellular vesicles (CD31EVs) constitute a new entity for therapeutic/prognostic purposes. The roles of CD31EVs as mediators of vascular smooth muscle cell (VSMC) dysfunction in type 2 diabetes (T2D) are investigated herein. We demonstrated that, unlike serum-derived extracellular vesicles in individuals without diabetes, those in individuals with diabetes (D CD31EVs) boosted apoptosis resistance of VSMCs cultured in hyperglycemic condition. Biochemical analysis revealed that this effect relies on changes in the balance between antiapoptotic and proapoptotic signals: increase of bcl-2 and decrease of bak/bax. D CD31EV cargo analysis demonstrated that D CD31EVs are enriched in membrane-bound platelet-derived growth factor-BB (mbPDGF-BB). Thus, we postulated that mbPDGF-BB transfer by D CD31EVs could account for VSMC resistance to apoptosis. By depleting CD31EVs of platelet-derived growth factor-BB (PDGF-BB) or blocking the PDGF receptor β on VSMCs, we demonstrated that mbPDGF-BB contributes to D CD31EV-mediated bak/bax and bcl-2 levels. Moreover, we found that bak expression is under the control of PDGF-BB-mediated microRNA (miR)-296-5p expression. In fact, while PDGF-BB treatment recapitulated D CD31EV-mediated antiapoptotic program and VSMC resistance to apoptosis, PDGF-BB-depleted CD31EVs failed. D CD31EVs also increased VSMC migration and recruitment to neovessels by means of PDGF-BB. Finally, we found that VSMCs, from human atherosclerotic arteries of individuals with T2D, express low bak/bax and high bcl-2 and miR-296-5p levels. This study identifies the mbPDGF-BB in D CD31EVs as a relevant mediator of diabetes-associated VSMC resistance to apoptosis.
内皮细胞衍生的细胞外囊泡 (CD31EVs) 构成了一种新的实体,可用于治疗/预后目的。本文研究了 CD31EVs 作为 2 型糖尿病 (T2D) 中血管平滑肌细胞 (VSMC) 功能障碍的介质的作用。我们证明,与糖尿病个体血清来源的细胞外囊泡不同,糖尿病个体 (D CD31EVs) 可增强高糖条件下培养的 VSMC 的抗凋亡能力。生化分析表明,这种作用依赖于抗凋亡和促凋亡信号之间平衡的变化:bcl-2 增加和 bak/bax 减少。D CD31EV 货物分析表明,D CD31EVs 富含膜结合血小板衍生生长因子-BB (mbPDGF-BB)。因此,我们推测 D CD31EV 介导的 mbPDGF-BB 转移可以解释 VSMC 对凋亡的抵抗。通过耗尽 CD31EVs 中的血小板衍生生长因子-BB (PDGF-BB) 或阻断 VSMCs 上的 PDGF 受体 β,我们证明 mbPDGF-BB 有助于 D CD31EV 介导的 bak/bax 和 bcl-2 水平。此外,我们发现 bak 表达受 PDGF-BB 介导的 microRNA (miR)-296-5p 表达的控制。事实上,虽然 PDGF-BB 处理可再现 D CD31EV 介导的抗凋亡程序和 VSMC 对凋亡的抵抗,但 PDGF-BB 耗尽的 CD31EVs 则不能。D CD31EVs 还通过 PDGF-BB 增加 VSMC 迁移和募集到新血管。最后,我们发现来自 T2D 个体的人动脉粥样硬化动脉中的 VSMCs 表达低 bak/bax 和高 bcl-2 和 miR-296-5p 水平。这项研究确定了 D CD31EVs 中的 mbPDGF-BB 是与糖尿病相关的 VSMC 抗凋亡的相关介质。