肌成纤维细胞
周细胞
血小板源性生长因子受体
癌症研究
血小板衍生生长因子
纤维化
生长因子受体
细胞生物学
生长因子
病理
生物
信号转导
医学
受体
内科学
内皮干细胞
体外
生物化学
作者
Yi‐Ting Chen,Fan‐Chi Chang,Ching-Fang Wu,Yu‐Hsiang Chou,Huan–Lun Hsu,Wen‐Chih Chiang,Juqun Shen,Yung‐Ming Chen,Kwan‐Dun Wu,Tun‐Jun Tsai,Jeremy S. Duffield,Shuei‐Liong Lin
摘要
Pericytes are the major source of scar-producing myofibroblasts following kidney injury; however, the mechanisms of this transition are unclear. To clarify this, we examined Collagen 1 (α1)-green fluorescent protein (GFP) reporter mice (pericytes and myofibroblasts express GFP) following ureteral obstruction or ischemia-reperfusion injury and focused on the role of platelet-derived growth factor (PDGF)-receptor (PDGFR) signaling in these two different injury models. Pericyte proliferation was noted after injury with reactivation of α-smooth muscle actin expression, a marker of the myofibroblast phenotype. PDGF expression increased in injured tubules, endothelium, and macrophages after injury, whereas PDGFR subunits α and β were expressed exclusively in interstitial GFP-labeled pericytes and myofibroblasts. When PDGFRα or PDGFRβ activation was inhibited by receptor-specific antibody following injury, proliferation and differentiation of pericytes decreased. The antibodies also blunted the injury-induced transcription of PDGF, transforming growth factor β1, and chemokine CCL2. They also reduced macrophage infiltration and fibrosis. Imatinib, a PDGFR tyrosine kinase inhibitor, attenuated pericyte proliferation and kidney fibrosis in both fibrogenic models. Thus, PDGFR signaling is involved in pericyte activation, proliferation, and differentiation into myofibroblasts during progressive kidney injury. Hence, pericytes may be a novel target to prevent kidney fibrosis by means of PDGFR signaling blockade.
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