Laboratory for Regenerative Tissue Repair, Division of Pediatric Surgery, Department of Surgery, Texas Children's Hospital/Baylor College of Medicine, Houston, Texas, USA.
Matrix Biology Program, Benaroya Research Institute, Seattle, Washington, USA.
JCI Insight. 2020 Jun 18;5(12):136345. doi: 10.1172/jci.insight.136345.
Renal fibrosis features exaggerated inflammation, extracellular matrix (ECM) deposition, and peritubular capillary loss. We previously showed that IL-10 stimulates high-molecular weight hyaluronan (HMW-HA) expression by fibroblasts, and we hypothesize that HMW-HA attenuates renal fibrosis by reducing inflammation and ECM remodeling. We studied the effects of IL-10 overexpression on HA production and scarring in mouse models of unilateral ureteral obstruction (UUO) and ischemia/reperfusion (I/R) to investigate whether IL-10 antifibrotic effects are HA dependent. C57BL/6J mice were fed with the HA synthesis inhibitor, 4-methylumbelliferone (4-MU), before UUO. We observed that in vivo injury increased intratubular spaces, ECM deposition, and HA expression at day 7 and onward. IL-10 overexpression reduced renal fibrosis in both models, promoted HMW-HA synthesis and stability in UUO, and regulated cell proliferation in I/R. 4-MU inhibited IL-10-driven antifibrotic effects, indicating that HMW-HA is necessary for cytokine-mediated reduction of fibrosis. We also found that IL-10 induces in vitro HMW-HA production by renal fibroblasts via STAT3-dependent upregulation of HA synthase 2. We propose that IL-10-induced HMW-HA synthesis plays cytoprotective and antifibrotic roles in kidney injury, thereby revealing an effective strategy to attenuate renal fibrosis in obstructive and ischemic pathologies.
肾纤维化的特征是炎症反应过度、细胞外基质(ECM)沉积和肾小管周围毛细血管丧失。我们之前曾表明,IL-10 可刺激成纤维细胞表达高分子量透明质酸(HMW-HA),我们假设 HMW-HA 通过减少炎症和 ECM 重塑来减轻肾纤维化。我们研究了 IL-10 过表达对单侧输尿管梗阻(UUO)和缺血/再灌注(I/R)小鼠模型中 HA 产生和瘢痕形成的影响,以研究 IL-10 的抗纤维化作用是否依赖于 HA。在 UUO 之前,C57BL/6J 小鼠用 HA 合成抑制剂 4-甲基伞形酮(4-MU)喂养。我们观察到,在体内损伤后,第 7 天及以后,管腔内空间增加、ECM 沉积和 HA 表达增加。IL-10 过表达减轻了两种模型中的肾纤维化,促进了 UUO 中 HMW-HA 的合成和稳定性,并调节了 I/R 中的细胞增殖。4-MU 抑制了 IL-10 驱动的抗纤维化作用,表明 HMW-HA 是细胞因子介导的纤维化减少所必需的。我们还发现,IL-10 通过 STAT3 依赖性上调透明质酸合酶 2 诱导体外肾成纤维细胞产生 HMW-HA。我们提出,IL-10 诱导的 HMW-HA 合成在肾损伤中发挥细胞保护和抗纤维化作用,从而揭示了一种减轻梗阻性和缺血性病理中肾纤维化的有效策略。