Ding Chenguang, Wang Bo, Lai Xiang Feng, Guo Yingcong, Tesch Greg, Ding Xiaoming, Zheng Jin, Tian PuXun, Ricardo Sharon, Shen Hsin-Hui, Xue Wujun
Department of Kidney Transplantation, Nephropathy Hospital, The First Affiliated Hospital of Xi'an Jiaotong University, Xi'an, Shaanxi, 710061, PR China.
Institute of Organ Transplantation, Xi'an Jiaotong University, Xi'an, 710061, China.
Mater Today Bio. 2023 Jun 27;21:100716. doi: 10.1016/j.mtbio.2023.100716. eCollection 2023 Aug.
Renal fibrosis is a pathological feature of chronic kidney disease and its progression correlates with kidney function impairment. Since there are currently no specific therapies for renal fibrosis, we explored whether inducing local production of the anti-fibrotic molecule relaxin-2 in kidney cells has potential as a strategy for suppressing the development of renal fibrosis. Our study examined whether delivery of relaxin-2 mRNA to kidney cells in vitro and in vivo could inhibit mechanisms leading to renal fibrosis. Transfecting relaxin-2 mRNA into cultured kidney cells inhibited fibrotic responses to TGF-β1 in an autocrine or paracrine manner by reducing fibrotic gene expression in kidney tubules, and reducing proliferation in kidney fibroblasts and mesangial cells. Similarly, cubosomes assisted delivery of relaxin-2 mRNA to mouse kidneys alleviated the fibrosis and inflammation associated with renal injury following unilateral ureter obstruction (UUO). Therefore, relaxin-2 mRNA exhibits potential as a novel therapy for inhibiting fibrosis and inflammation in chronic kidney disease.
肾纤维化是慢性肾脏病的一个病理特征,其进展与肾功能损害相关。由于目前尚无针对肾纤维化的特异性治疗方法,我们探讨了在肾细胞中诱导抗纤维化分子松弛素-2的局部产生是否有可能作为一种抑制肾纤维化发展的策略。我们的研究检测了在体外和体内将松弛素-2 mRNA递送至肾细胞是否能抑制导致肾纤维化的机制。将松弛素-2 mRNA转染至培养的肾细胞中,通过降低肾小管中的纤维化基因表达以及减少肾成纤维细胞和系膜细胞的增殖,以自分泌或旁分泌方式抑制了对转化生长因子-β1的纤维化反应。同样,立方液晶纳米粒辅助将松弛素-2 mRNA递送至小鼠肾脏减轻了单侧输尿管梗阻(UUO)后与肾损伤相关的纤维化和炎症。因此,松弛素-2 mRNA作为一种抑制慢性肾脏病纤维化和炎症的新型疗法具有潜力。