首页> 美国卫生研究院文献>Cell Transplantation >Inflammatory Smooth Muscle Cells Induce Endothelial Cell Alterations to Influence Cerebral Aneurysm Progression via Regulation of Integrin and VEGF Expression
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Inflammatory Smooth Muscle Cells Induce Endothelial Cell Alterations to Influence Cerebral Aneurysm Progression via Regulation of Integrin and VEGF Expression

机译:炎性平滑肌细胞通过调节整联蛋白和VEGF的表达诱导内皮细胞改变从而影响脑动脉瘤的进展。

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摘要

Cerebral aneurysm growth is characterized by vessel wall frailness, although the underlying cellular mechanisms are unclear. Here, we examined the relationship between inflammatory smooth muscle cells (SMCs) and endothelial cells (ECs) in cerebral aneurysms, including the mechanisms underlying inflammatory SMC-induced changes in ECs. Five saccular cerebral aneurysms were collected and five temporal artery samples were used as controls. Cells and cytokines were detected by immunohistochemistry and TUNEL (transferase dUTP nick end labeling) assays performed to evaluate apoptosis. Human umbilical vein endothelial cells (HUVECs) were seeded on collagen I, IV, and VI-coated plates for cell adhesion assays and inflammatory SMCs (iSMCs) were established by culture in flexible silicone chambers subjected to cyclic mechanical stretch. HUVECs were cultured in iSMC-conditioned medium, followed by evaluation of their viability, apoptosis, and function, and determination of VEGF (vascular endothelial growth factor) -A and integrin levels by western blotting. Aneurysm tissue contained fewer SMCs and lacked ECs. In aneurysm walls, more matrix metalloproteinase (MMP) -1, MMP-3, and apoptotic cells were detected, accompanied by decreased collagen IV and VI levels. Cell adhesion assays revealed that more HUVECs were attached in collagen IV and VI-coated plates compared with controls. iSMC-conditioned medium significantly reduced HUVEC viability and apoptosis showed an increased trend; however, the difference was not significant. iSMC medium also reduced tube formation and migration of HUVECs. Moreover, iSMC medium reduced HUVEC expression of VEGF-A, integrin α1, integrin α2, and integrin β. Our data demonstrate a lack of SMCs and ECs in aneurysm walls, accompanied by elevated MMP and decreased collagen levels. In vitro assays showed that iSMCs induced reduction in EC adhesion, and caused EC dysfunction. Understanding of the relationships among SMC, EC, and collagens during aneurysm progression provides an additional therapeutic option for prevention of cerebral aneurysm progression.
机译:尽管潜在的细胞机制尚不清楚,但脑动脉瘤的生长特征是血管壁脆弱。在这里,我们检查了脑动脉瘤中炎症平滑肌细胞(SMCs)与内皮细胞(ECs)之间的关系,包括炎症SMC诱导的ECs变化的机制。收集了五个囊状脑动脉瘤,并将五个颞动脉样本用作对照。通过免疫组织化学和TUNEL(转移酶dUTP缺口末端标记)测定来检测细胞和细胞因子,以评估细胞凋亡。将人脐静脉内皮细胞(HUVEC)播种在I型,IV型和VI型胶原涂层平板上进行细胞粘附测定,并通过在经受周期性机械拉伸的柔性硅胶腔中培养来建立炎症SMC(iSMC)。 HUVEC在iSMC条件培养基中培养,然后评估其生存力,凋亡和功能,并通过Western印迹法测定VEGF(血管内皮生长因子)-A和整联蛋白水平。动脉瘤组织包含较少的SMC,缺乏EC。在动脉瘤壁中,检测到更多的基质金属蛋白酶(MMP)-1,MMP-3和凋亡细胞,同时胶原IV和VI水平降低。细胞粘附试验显示,与对照组相比,更多的HUVECs附着在IV和VI胶原蛋白包被的板上。 iSMC条件培养基显着降低了HUVEC的活力,并显示凋亡增加的趋势;但是,差异不明显。 iSMC培养基还可减少HUVEC的管形成和迁移。此外,iSMC培养基可降低HUVEC表达的VEGF-A,整合素α1,整合素α2和整合素β。我们的数据表明,动脉瘤壁中缺乏SMC和EC,并伴有MMP升高和胶原蛋白水平降低。体外试验表明,iSMCs诱导EC粘附减少,并引起EC功能障碍。对动脉瘤进展过程中SMC,EC和胶原蛋白之间关系的了解为预防脑动脉瘤进展提供了另一种治疗选择。

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