Lv Xianhui, Yu Zhenzhen, Xie Chunfeng, Dai Xiuliang, Li Qing, Miao Dengshun, Jin Jianliang
Research Centre for Bone and Stem Cells, Department of Human Anatomy, Histology and Embryology, Nanjing Medical University, Nanjing, Jiangsu, 211166, China.
Department of Science and Technology, Jiangsu Jiankang Vocational College, Nanjing, Jiangsu, 210029, China.
Biochem Biophys Res Commun. 2017 Jan 22;482(4):742-749. doi: 10.1016/j.bbrc.2016.11.105. Epub 2016 Nov 18.
The regeneration of injured tubular cell occurs primarily from intrinsic renal stem/progenitor cells (RSCs) labeled with CD24 and CD133 after acute tubular necrosis (ATN). Bmi-1 plays a crucial role in regulating self-renewal, differentiation and aging of multiple adult stem cells and progenitor cells. Bmi-1 was rapidly elevated in the induction of adult kidney regeneration by renal injury. To determine whether Bmi-1 maintained mobilization of RSCs in the protection from ATN, glycerol-rhabdomyolysis-induced ATN were performed in wild type (WT) and Bmi-1-deficient (Bmi-1) mice. Their ATN phenotypes were analyzed; CD24 and CD133 double positive (CD24CD133) cells were measured; and the levels of serum urea nitrogen (SUN) and serum creatinine (SCr) were detected. We found that CD24CD133 RSCs were mobilized in WT ATN mice with the increased expression of Bmi-1; Bmi-1 deficiency led to increased tubular cast formation and necrosis, elevated levels of SUN and SCr, decreased tubular proliferation, and immobilized ratio of RSCs in ATN. These findings indicated that Bmi-1 played a critical role in the protection from ATN by maintaining mobilization of RSCs and would be a novel therapeutic target for preventing the progression of ATN.
急性肾小管坏死(ATN)后,受损肾小管细胞的再生主要源于标记有CD24和CD133的肾内固有干/祖细胞(RSCs)。Bmi-1在调节多种成体干细胞和祖细胞的自我更新、分化及衰老过程中发挥关键作用。在肾损伤诱导的成体肾再生过程中,Bmi-1迅速升高。为确定Bmi-1在保护免受ATN影响时是否维持RSCs的动员,在野生型(WT)和Bmi-1缺陷型(Bmi-1-/-)小鼠中进行了甘油横纹肌溶解诱导的ATN实验。分析了它们的ATN表型;检测了CD24和CD133双阳性(CD24+CD133+)细胞;并检测了血清尿素氮(SUN)和血清肌酐(SCr)水平。我们发现,在Bmi-1表达增加的WT ATN小鼠中,CD24+CD133+ RSCs被动员;Bmi-1缺陷导致肾小管铸型形成和坏死增加、SUN和SCr水平升高、肾小管增殖减少以及ATN中RSCs的固定比例增加。这些发现表明,Bmi-1通过维持RSCs的动员在保护免受ATN影响中起关键作用,并且可能成为预防ATN进展的新型治疗靶点。