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机械应力会改变血管间质细胞和内皮细胞中钙化相关基因的表达。

Mechanical stress alters the expression of calcification-related genes in vascular interstitial and endothelial cells.

作者信息

Rutkovskiy Arkady, Lund Maria, Siamansour Tanja Saman, Reine Trine Marita, Kolset Svein Olav, Sand Kristin Larsen, Ignatieva Elena, Gordeev Mikhail L, Stensløkken Kåre-Olav, Valen Guro, Vaage Jarle, Malashicheva Anna

机构信息

Division of Physiology, Department of Molecular Medicine, Institute of Basic Medical Sciences, University of Oslo, Oslo, Norway.

Department of Cardiology, Akershus University Hospital, Lørenskog, Norway.

出版信息

Interact Cardiovasc Thorac Surg. 2019 May 1;28(5):803-811. doi: 10.1093/icvts/ivy339.

Abstract

OBJECTIVES

Vascular wall calcification is a major pathophysiological component of atherosclerotic disease with many similarities to osteogenesis. Mechanical stress of the vascular wall may theoretically contribute to the proliferative processes by endothelial and interstitial cells. The aim of the study was to investigate the effect of mechanical stress on the expression of some calcification-related genes in primary human endothelial and interstitial cells, and how endothelial cells may stimulate the fibroblast and smooth muscle cells.

METHODS

Human umbilical vein endothelial and interstitial cells were subjected to cyclic stretch using a FlexCell® bioreactor, and interstitial cells were also subjected to tensile strain in cultures embedded in 3-dimensional collagen gels. The medium from endothelial cells was used to stimulate the gel-cultured interstitial cells, or the endothelium was sown directly on top. For comparison, human endothelial and smooth muscle cells were isolated from aortic wall fragments of patients with and without the aortic aneurysm. The expression of genes was measured using quantitative PCR.

RESULTS

Four hours of cyclic stretch applied to cultured endothelial cells upregulated the mRNA expression of bone morphogenetic protein 2 (BMP-2), a major procalcific growth factor. When applied to a 3-dimensional culture of vascular interstitial cells, the medium from prestretched endothelial cells decreased the expression of BMP-2 and periostin mRNA in the fibroblasts. The static tension in gel-cultured interstitial cells upregulated BMP-2 mRNA expression. The addition of endothelial cells on the top of this culture also reduced mRNA of anticalcific genes, periostin and osteopontin. Similar changes were observed in smooth muscle cells from human aortic aneurysms compared to cells from the healthy aorta. Aortic aneurysm endothelial cells also showed an increased expression of BMP-2 mRNA.

CONCLUSIONS

Endothelial cells respond to mechanical stress by upregulation of pro-osteogenic factor BMP-2 mRNA and modulate the expression of other osteogenic factors in vascular interstitial cells. Endothelial cells may, thus, contribute to vascular calcification when exposed to mechanical stress.

摘要

目的

血管壁钙化是动脉粥样硬化疾病的主要病理生理组成部分,与骨生成有许多相似之处。理论上,血管壁的机械应力可能有助于内皮细胞和间质细胞的增殖过程。本研究的目的是探讨机械应力对原代人内皮细胞和间质细胞中一些钙化相关基因表达的影响,以及内皮细胞如何刺激成纤维细胞和平滑肌细胞。

方法

使用FlexCell®生物反应器对人脐静脉内皮细胞和间质细胞进行循环拉伸,间质细胞也在嵌入三维胶原凝胶的培养物中承受拉伸应变。用内皮细胞的培养基刺激凝胶培养的间质细胞,或将内皮细胞直接接种在其上方。为作比较,从有和没有主动脉瘤的患者的主动脉壁碎片中分离出人内皮细胞和平滑肌细胞。使用定量PCR测量基因表达。

结果

对培养的内皮细胞施加4小时的循环拉伸可上调骨形态发生蛋白2(BMP-2)的mRNA表达,BMP-2是一种主要的促钙化生长因子。当应用于血管间质细胞的三维培养时,预拉伸内皮细胞的培养基可降低成纤维细胞中BMP-2和骨膜蛋白mRNA的表达。凝胶培养的间质细胞中的静态张力上调了BMP-2 mRNA的表达。在此培养物上方添加内皮细胞也降低了抗钙化基因骨膜蛋白和骨桥蛋白的mRNA水平。与健康主动脉的细胞相比,在人主动脉瘤的平滑肌细胞中观察到了类似的变化。主动脉瘤内皮细胞的BMP-2 mRNA表达也增加。

结论

内皮细胞通过上调促骨生成因子BMP-2 mRNA对机械应力作出反应,并调节血管间质细胞中其他成骨因子的表达。因此,当暴露于机械应力时,内皮细胞可能会导致血管钙化。

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