Role of SIRT1 and associated microRNAs in dexmedetomidine-induced alleviation of renal injury in diabetic mice
10.3760/cma.j.cn131073.20220119.00718
- VernacularTitle:SIRT1及其相关miRNAs在右美托咪定减轻糖尿病小鼠肾损伤中的作用
- Author:
Jialu YU
1
;
Shengzhao WANG
;
Yuanyao LI
;
Li AN
;
Yongqiang YIN
;
Yi ZHONG
Author Information
1. 贵州医科大学附属医院麻醉科,贵阳 550004
- Keywords:
Dexmedetomidine;
Diabetic nephropathies;
MicroRNAs;
Sirtuin 1
- From:
Chinese Journal of Anesthesiology
2022;42(7):872-877
- CountryChina
- Language:Chinese
-
Abstract:
Objective:To evaluate the role of silencing regulatory protein (SIRT1) and its associated microRNAs (miRNAs) in dexmedetomidine-induced attenuation of renal damage in diabetic mice.Methods:SPF grade C57 male mice, aged 8 weeks, in which diabetes mellitus model was developed by intraperitoneal injection of 1% streptozotocin, were used.Thirty mice in which the model was successfully developed were divided into 5 groups ( n=6 each) using the random number table method: diabetes mellitus group (D group), diabetes mellitus + dexmedetomidine group (DD group), diabetes mellitus + dexmedetomidine + EX527 group (DDE group), diabetes mellitus + dexmedetomidine + miR-34a-3p-agomir group (DDH group), and diabetes mellitus + dexmedetomidine + miR-34a-3p-agomirNC group (DDC group). Six normal mice were selected as control group (C group). Dexmedetomidine 40 μg/kg was intraperitoneally injected once every 2 h, 3 times in total in DD, DDE, DDH and DDC groups.miR-34a-3p-agomir and miR-34a-3p-agomirNC 2.5 mmol were intraperitoneally injected via the tail vein at 72 h before dexmedetomidine administration once every 3 days, 2 times in total in DDH and DDC groups, respectively.SIRT1 inhibitor EX527 10 mg/kg was intraperitoneally injected at 1 h before dexmedetomidine administration in group DDE.At 24 h after the end of administration, serum concentrations of IL-6, IL-18, Cr and BUN, contents of nitric oxide (NO) and total antioxidant capacity (T-AOC), ROS activity, and expression of SIRT1, FoxO3a and P53 protein and mRNA, and expression of miR-217, miR-138 and miR-34a in renal tissues were determined. Results:Compared with group C, the serum IL-6, IL-18, Cr and BUN concentrations, contents of T-AOC and NO, and ROS activity were significantly increased, the expression of P53 protein and mRNA, miR-34a, miR-217 and miR-138 was up-regulated, and the expression of SIRT1 and FoxO3a protein and mRNA was down-regulated in group D ( P<0.05). Compared with group D, serum IL-6, IL-18, Cr and BUN concentrations, ROS activity and NO content were significantly decreased, T-AOC content was increased, the expression of SIRT1 and FoxO3a protein and mRNA was up-regulated, and the expression of miR-34a was down-regulated in group DD ( P<0.05). Compared with group DD, the serum IL-6, IL-18, Cr and BUN concentrations, NO content and ROS activity were significantly increased, T-AOC content was decreased, and the expression of SIRT1 and FoxO3a protein and mRNA was down-regulated in group DDE and group DDH ( P<0.05), no significant change was found in the expression of P53 protein and mRNA, miR-217, miR-34a and miR-138 in group DDE ( P>0.05), and the expression of P53 protein and mRNA and miR-34a was significantly up-regulated in group DDH ( P<0.05). Conclusions:The mechanism by which dexmedetomidine attenuates renal injury may be related to down-regulation of miR-34a expression, which further up-regulates SIRT1/FoxO3 expression and decreases oxidative stress in diabetic mice.