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远端肺部微环境触发潜在的特发性肺纤维化系统性生物标志物的释放。

Distal Lung Microenvironment Triggers Release of Mediators Recognized as Potential Systemic Biomarkers for Idiopathic Pulmonary Fibrosis.

机构信息

Respiratory Medicine Unit, Department of Medicine Solna and Center for Molecular Medicine, Karolinska Institutet, SE-171 76 Stockholm, Sweden.

Department of Experimental Medical Science, Lung Biology, Lund University, SE-221 84 Lund, Sweden.

出版信息

Int J Mol Sci. 2021 Dec 14;22(24):13421. doi: 10.3390/ijms222413421.

Abstract

Idiopathic pulmonary fibrosis (IPF) is a progressive fibrotic lung disease with an unmet need of biomarkers that can aid in the diagnostic and prognostic assessment of the disease and response to treatment. In this two-part explorative proteomic study, we demonstrate how proteins associated with tissue remodeling, inflammation and chemotaxis such as MMP7, CXCL13 and CCL19 are released in response to aberrant extracellular matrix (ECM) in IPF lung. We used a novel ex vivo model where decellularized lung tissue from IPF patients and healthy donors were repopulated with healthy fibroblasts to monitor locally released mediators. Results were validated in longitudinally collected serum samples from 38 IPF patients and from 77 healthy controls. We demonstrate how proteins elevated in the ex vivo model (e.g., MMP7), and other serum proteins found elevated in IPF patients such as HGF, VEGFA, MCP-3, IL-6 and TNFRSF12A, are associated with disease severity and progression and their response to antifibrotic treatment. Our study supports the model's applicability in studying mechanisms involved in IPF and provides additional evidence for both established and potentially new biomarkers in IPF.

摘要

特发性肺纤维化 (IPF) 是一种进行性肺纤维化疾病,目前仍缺乏能够辅助诊断、评估疾病严重程度和治疗反应的生物标志物。在这项探索性的蛋白质组学研究中,我们展示了与组织重塑、炎症和趋化相关的蛋白(如 MMP7、CXCL13 和 CCL19)如何在 IPF 肺部异常细胞外基质 (ECM) 作用下被释放。我们使用了一种新型的离体模型,将来自 IPF 患者和健康供体的去细胞化肺组织重新植入健康成纤维细胞,以监测局部释放的介质。结果在 38 名 IPF 患者和 77 名健康对照者的纵向采集血清样本中得到了验证。我们展示了在离体模型中升高的蛋白(如 MMP7),以及在 IPF 患者中发现升高的其他血清蛋白(如 HGF、VEGFA、MCP-3、IL-6 和 TNFRSF12A),与疾病严重程度和进展及其对抗纤维化治疗的反应有关。我们的研究支持该模型在研究 IPF 相关机制中的适用性,并为 IPF 中已建立和潜在的新生物标志物提供了更多证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/572a/8704101/3d29029c328b/ijms-22-13421-g001.jpg

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