Department of Molecular Pathology, Faculty of Pharmaceutical Science, Doshisha Women's College of Liberal Arts, 97-1 Kodo Kyo-tanabe, Kyoto, 610-0395, Japan.
Department of Dermatology, Gifu University Graduate School of Medicine, 1-1 Yanagido, Gifu, 501-1194, Japan.
Mol Biol Rep. 2021 Apr;48(4):3431-3437. doi: 10.1007/s11033-021-06368-z. Epub 2021 Apr 28.
Systemic sclerosis (SSc) is characterized by peripheral circulatory disturbance and fibrosis in skin and visceral organs. We recently demonstrated that α2-antiplasmin (α2AP) is elevated in SSc dermal fibroblasts and SSc model mice, and is associated with fibrosis progression and vascular dysfunction. In the present study, we predicted that α2AP could be a target of microRNA-30c (miR-30c) using TargetScan online database, and investigated the effect of miR-30c on the pathogenesis of SSc using a bleomycin-induced SSc model mice. miR-30c attenuated α2AP expression, and prevented the pro-fibrotic changes (increased dermal thickness, collagen deposition, myofibroblast accmulation) and the vascular dysfunction (the reduction of vascular endothelial cells (ECs) and blood flow) in the skin of SSc model mice. Furthermore, miR-30c suppressed pulmonary fibrosis progression in the SSc model mice. miR-30c exerts the anti-fibrotic and anti-angiopathy effects on SSc model mice, and might provide a basis for clinical strategies for SSc.
系统性硬化症(SSc)的特征是外周循环障碍和皮肤及内脏器官纤维化。我们最近表明,α2-抗纤溶酶(α2AP)在 SSc 真皮成纤维细胞和 SSc 模型小鼠中升高,并与纤维化进展和血管功能障碍有关。在本研究中,我们使用 TargetScan 在线数据库预测α2AP 可能是 microRNA-30c(miR-30c)的靶标,并使用博来霉素诱导的 SSc 模型小鼠研究 miR-30c 对 SSc 发病机制的影响。miR-30c 可减弱α2AP 的表达,并预防 SSc 模型小鼠皮肤中的促纤维化变化(真皮厚度增加、胶原沉积、肌成纤维细胞聚集)和血管功能障碍(血管内皮细胞(EC)减少和血流减少)。此外,miR-30c 可抑制 SSc 模型小鼠的肺纤维化进展。miR-30c 对 SSc 模型小鼠具有抗纤维化和抗血管病变作用,可为 SSc 的临床治疗策略提供依据。