VIII型胶原蛋白的缺失降低血压,增加颈动脉功能性扩张,促进弹性蛋白沉积

Q1 Medicine
Amanda L. Mohabeer , Jeffrey T. Kroetsch , Meghan McFadden , Negin Khosraviani , Thomas J. Broekelmann , Guangpei Hou , Hangjun Zhang , Yu-Qing Zhou , Minyao Wang , Anthony O. Gramolini , Robert P. Mecham , Scott P. Heximer , Steffen-Sebastian Bolz , Michelle P. Bendeck
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引用次数: 5

摘要

动脉硬化是心血管疾病发展和死亡率的重要预测因子。在弹性动脉中,硬化是指弹性纤维的丢失和断裂,胶原纤维的逐渐增加。VIII型胶原蛋白(Col-8)在发育过程中高度表达,然后在以动脉硬化为特征的衰老和病变血管中再次急剧上调。然而,其对血管壁的生物物理影响尚不清楚。本研究的目的是验证在细胞外基质(ECM)发育过程中,Col-8作为基质支架维持血管完整性的假设。这些变化预计会持续到成人的血管系统中,我们已经在我们的研究中对此进行了测试。通过我们的体内和体外研究,我们已经确定了col8和弹性蛋白之间的一种新的相互作用。缺乏Col8 (Col8−/−)的小鼠降低了基线血压,增加了动脉顺应性,表明传导动脉中的Windkessel效应增强。ECM组成和VSMC活性的差异导致Col8 - / -颈动脉显示交联弹性蛋白和功能性扩张增加,但儿茶酚胺诱导的VSMC收缩性增强。体外研究表明,缺乏Col-8可显著增加ECM中的对流层弹性蛋白mRNA和弹性纤维沉积,而外源Col-8处理则会减少这一现象。这些发现表明,Col-8在降低基质中对流层弹性蛋白mRNA水平和弹性纤维的存在中起着致病作用。此外,我们还发现col8和弹性蛋白对VSMC表型具有相反的作用,前者促进合成表型,而后者则使其静止。这些研究进一步加深了我们对col8功能的认识,并为弹性蛋白生物学开辟了一个新的研究领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Deletion of type VIII collagen reduces blood pressure, increases carotid artery functional distensibility and promotes elastin deposition

Deletion of type VIII collagen reduces blood pressure, increases carotid artery functional distensibility and promotes elastin deposition

Deletion of type VIII collagen reduces blood pressure, increases carotid artery functional distensibility and promotes elastin deposition

Deletion of type VIII collagen reduces blood pressure, increases carotid artery functional distensibility and promotes elastin deposition

Arterial stiffening is a significant predictor of cardiovascular disease development and mortality. In elastic arteries, stiffening refers to the loss and fragmentation of elastic fibers, with a progressive increase in collagen fibers. Type VIII collagen (Col-8) is highly expressed developmentally, and then once again dramatically upregulated in aged and diseased vessels characterized by arterial stiffening. Yet its biophysical impact on the vessel wall remains unknown. The purpose of this study was to test the hypothesis that Col-8 functions as a matrix scaffold to maintain vessel integrity during extracellular matrix (ECM) development. These changes are predicted to persist into the adult vasculature, and we have tested this in our investigation. Through our in vivo and in vitro studies, we have determined a novel interaction between Col-8 and elastin. Mice deficient in Col-8 (Col8−/−) had reduced baseline blood pressure and increased arterial compliance, indicating an enhanced Windkessel effect in conducting arteries. Differences in both the ECM composition and VSMC activity resulted in Col8−/− carotid arteries that displayed increased crosslinked elastin and functional distensibility, but enhanced catecholamine-induced VSMC contractility. In vitro studies revealed that the absence of Col-8 dramatically increased tropoelastin mRNA and elastic fiber deposition in the ECM, which was decreased with exogenous Col-8 treatment. These findings suggest a causative role for Col-8 in reducing mRNA levels of tropoelastin and the presence of elastic fibers in the matrix. Moreover, we also found that Col-8 and elastin have opposing effects on VSMC phenotype, the former promoting a synthetic phenotype, whereas the latter confers quiescence. These studies further our understanding of Col-8 function and open a promising new area of investigation related to elastin biology.

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来源期刊
Matrix Biology Plus
Matrix Biology Plus Medicine-Histology
CiteScore
9.00
自引率
0.00%
发文量
25
审稿时长
105 days
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