Extracellular matrix remodeling associated with bleomycin-induced lung injury supports pericyte-to-myofibroblast transition

Q1 Medicine Matrix Biology Plus Pub Date : 2021-06-01 DOI:10.1016/j.mbplus.2020.100056
Riley T. Hannan , Andrew E. Miller , Ruei-Chun Hung , Catherine Sano , Shayn M. Peirce , Thomas H. Barker
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引用次数: 12

Abstract

Of the many origins of pulmonary myofibroblasts, microvascular pericytes are a known source. Prior literature has established the ability of pericytes to transition into myofibroblasts, but provide limited insight into molecular cues that drive this process during lung injury repair and fibrosis. Fibronectin and RGD-binding integrins have long been considered pro-fibrotic factors in myofibroblast biology, and here we test the hypothesis that these known myofibroblast cues coordinate pericyte-to-myofibroblast transitions. Specifically, we hypothesized that αvβ3 integrin engagement on fibronectin induces pericyte transition into myofibroblastic phenotypes in the murine bleomycin lung injury model. Myosin Heavy Chain 11 (Myh11)-CreERT2 lineage tracing in transgenic mice allows identification of cells of pericyte origin and provides a robust tool for isolating pericytes from tissues for further evaluation. We used this murine model to track and characterize pericyte behaviors during tissue repair. The majority of Myh11 lineage-positive cells are positive for the pericyte surface markers, PDGFRβ (55%) and CD146 (69%), and display typical pericyte morphology with spatial apposition to microvascular networks. After intratracheal bleomycin treatment of mice, Myh11 lineage-positive cells showed significantly increased contractile and secretory markers, as well as αv integrin expression. According to RNASeq measurements, many disease and tissue-remodeling genesets were upregulated in Myh11 lineage-positive cells in response to bleomycin-induced lung injury. In vitro, blocking αvβ3 binding through cycloRGDfK prevented expression of the myofibroblastic marker αSMA relative to controls. In response to RGD-containing provisional matrix proteins present in lung injury, pericytes may alter their integrin profile.

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与博莱霉素诱导的肺损伤相关的细胞外基质重塑支持周细胞向肌成纤维细胞的转变
在肺肌成纤维细胞的许多来源中,微血管周细胞是一个已知的来源。先前的文献已经证实了周细胞向肌成纤维细胞转变的能力,但对肺损伤修复和纤维化过程中驱动这一过程的分子线索的了解有限。纤维连接蛋白和rgd结合整合素长期以来被认为是肌成纤维细胞生物学中的促纤维化因子,在这里,我们验证了这些已知的肌成纤维细胞线索协调周细胞向肌成纤维细胞转变的假设。具体来说,我们假设αvβ3整合素与纤维连接蛋白的结合诱导了小鼠博来霉素肺损伤模型的周细胞向肌成纤维细胞表型的转变。在转基因小鼠中追踪肌球蛋白重链11 (Myh11)-CreERT2谱系可以鉴定周细胞来源的细胞,并为从组织中分离周细胞进行进一步评估提供了一个强大的工具。我们使用这种小鼠模型来跟踪和表征组织修复过程中周细胞的行为。大多数Myh11谱系阳性细胞对周细胞表面标记物PDGFRβ(55%)和CD146(69%)呈阳性,并表现出典型的周细胞形态,与微血管网络空间相关。经气管内博来霉素处理小鼠后,Myh11谱系阳性细胞的收缩和分泌标记物以及αv整合素的表达显著增加。根据RNASeq测量,许多疾病和组织重塑基因在Myh11谱系阳性细胞中上调,以响应博莱霉素诱导的肺损伤。体外,与对照组相比,通过cycloRGDfK阻断αvβ3结合可阻止肌成纤维细胞标志物αSMA的表达。作为对肺损伤中含有rgd的临时基质蛋白的反应,周细胞可能改变其整合素谱。
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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
期刊最新文献
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