[1] Levin A,Tonelli M,Bonventre J,et al. Global kidney health 2017 and beyond: a roadmap for closing gaps in care,research,and policy[J]. Lancet,2017,390(10105):1888
[2] Zhang Z,Shao X,Jiang N,et al. Caspase-11-mediated tubular epithelial pyroptosis underlies contrast-induced acute kidney injury[J].Cell Death Dis,2018,9(10):983
[3] Yuan S,Liu X,Zhu X,et al. The role of TLR4 on PGC-1α-mediated oxidative stress in tubular cell in diabetic kidney disease[J]. Oxid Med Cell Longev,2018,2018:6296802
[4] Burlaka I,Nilsson L M,Scott L,et al. Prevention of apoptosis averts glomerular tubular disconnection and podocyte loss in proteinuric kidney disease[J]. Kidney Int,2016,90(1):135
[5] Cao X,Fan Q. LncRNA MIR503HG promotes high-glucose-induced proximal tubular cell apoptosis by targeting miR-503-5p/Bcl-2 pathway[J]. Diabetes Metab Syndr Obes,2020,13:4507
[6] Rojas J,Bermudez V,Palmar J,et al. Pancreatic beta cell death: novel potential mechanisms in diabetes therapy[J]. J Diabetes Res,2018,2018:9601801
[7] Qiu Z,Lei S,Zhao B,et al. NLRP3 inflammasome activation-mediated pyroptosis aggravates myocardial ischemia/reperfusion injury in diabetic rats[J]. Oxid Med Cell Longev,2017,2017:9743280
[8] Wang Y,Shi Y,Huang Y,et al. Resveratrol mediates mechanical allodynia through modulating inflammatory response via the TREM2-autophagy axis in SNI rat model[J]. J Neuroinflammation,2020, 17(1):311
[9] Pan H,Zhou X,Ma Y,et al. Resveratrol alleviates intestinal mucosal barrier dysfunction in dextran sulfate sodium-induced colitis mice by enhancing autophagy[J]. World J Gastroenterol,2020,26(33):4945
[10] Nie Q,Zhang J,He B,et al. A novel mechanism of protection against isoproterenol-induced cardiac inflammation via regulation of the SIRT1/NRF2 signaling pathway with a natural SIRT1 agonist[J]. Eur J Pharmacol,2020,886:173398
[11] Xu G,Zhao X,Fu J,et al. Resveratrol increase myocardial Nrf2 expression in type 2 diabetic rats and alleviate myocardial ischemia/reperfusion injury (MIRI)[J]. Ann Palliat Med,2019,8(5):565
[12] Qiao Y,Gao K,Wang Y,et al. Resveratrol ameliorates diabetic nephropathy in rats through negative regulation of the p38 MAPK/TGF-β1 pathway[J]. Exp Ther Med,2017,13(6):3223
[13] Wang F,Li R,Zhao L,et al. Resveratrol ameliorates renal damage by inhibiting oxidative stress-mediated apoptosis of podocytes in diabetic nephropathy[J]. Eur J Pharmacol,2020,885:173387
[14] Wang X,Meng L,Zhao L,et al. Resveratrol ameliorates hyperglycemia- induced renal tubular oxidative stress damage via modulating the SIRT1/FOXO3a pathway[J]. Diabetes Res Clin Pract,2017,126:172
[15] Young B A,Johnson R J,Alpers C E,et al. Cellular events in the evolution of experimental diabetic nephropathy[J]. Kidney Int,1995,47(3):935
[16] Qiao Y,Tian X,Men L,et al. Spleen tyrosine kinase promotes NLR family pyrin domain containing 3 inflammasome-mediated IL-1β secretion via c-Jun N-terminal kinase activation and cell apoptosis during diabetic nephropathy[J]. Mol Med Rep,2018,18(2):1995
[17] Miao N,Wang B,Xu D,et al. Caspase-11 promotes cisplatin-induced renal tubular apoptosis through a caspase-3-dependent pathway[J]. Am J Physiol Renal Physiol,2018,314(2):F269
[18] Qiu X,Zhuang M,Lu Z,et al. RIPK1 suppresses apoptosis mediated by TNF and caspase-3 in intervertebral discs[J]. J Transl Med,2019,17(1):135
[19] Zhang Z,Zhang Y,Xia S,et al. Gasdermin E suppresses tumour growth by activating anti-tumour immunity[J]. Nature,2020,579(7799):415
[20] Wang Y,Yin B,Li D,et al. GSDME mediates caspase-3-dependent pyroptosis in gastric cancer[J]. Biochem Biophys Res Commun,2018,
495(1):1418
[1]单立新,高 越,王学菊.血清Cys C、RBP、尿mALb/ Cr检测在糖尿病肾病早期诊断中的价值[J].天津医科大学学报,2014,20(03):241.
[2]何广辉,孙丰源.白藜芦醇对淋巴瘤BJAB细胞体外增殖及细胞周期作用的研究[J].天津医科大学学报,2014,20(05):360.
HE Guang-hui,SUN Feng-yuan.Effects of resveratrol on the proliferation and cell cycle of lymphoma BJAB cell in vitro[J].Journal of Tianjin Medical University,2014,20(04):360.
[3]陈河清,郭秀梅,金力里.2型糖尿病患者牙周病与糖尿病肾病的相关性分析[J].天津医科大学学报,2014,20(06):469.
CHEN He-qing,GUO Xiu-mei,JIN Li-li. Correlation between diabetic nephropathy and periodontal disease[J].Journal of Tianjin Medical University,2014,20(04):469.
[4]王玉华,蔡春友,李卫东,等. 全外显子组测序发现FUT6基因在1例糖尿病肾病中的终止突变[J].天津医科大学学报,2015,21(03):18.
[5]马 静,赵立华,谢 云.血浆纤维蛋白原与糖尿病肾病的相关性研究[J].天津医科大学学报,2015,21(03):60.
Ma Jing,ZHAO Li-hua,XIE Yun.Relationship between plasma fibrinogen concentration and diabetic nephropathy [J].Journal of Tianjin Medical University,2015,21(04):60.
[6]王玉华,蔡春友,李卫东,等. 全外显子组测序发现FUT6基因在1例糖尿病肾病中的终止突变 [J].天津医科大学学报,2015,21(01):18.
WANG Yu-hua,CAI Chun-you,LI Wei-dong,et al. Exome sequencing identified a FUT6 nonsense mutation in one diabetic nephropathy patient[J].Journal of Tianjin Medical University,2015,21(04):18.
[7]马 静,赵立华,谢 云. 血浆纤维蛋白原与糖尿病肾病的相关性研究[J].天津医科大学学报,2015,21(01):60.
MA Jing,ZHAO Li-hua,XIE Yun.Relationship between plasma fibrinogen concentration and diabetic nephropathy[J].Journal of Tianjin Medical University,2015,21(04):60.
[8]姚 旻,赵爱源,张晓会,等.人体肥胖指数与2型糖尿病肾病的相关性研究[J].天津医科大学学报,2016,22(03):230.
YAO Min,ZHAO Ai-yuan,ZHANG Xiao-hui,et al.Study on the relationship between body adiposity index and diabetic nephropathy in patients with type 2 diabetes mellitus[J].Journal of Tianjin Medical University,2016,22(04):230.
[9]刘建广,王新.随机尿微量白蛋白与肌酐比值对2型糖尿病肾病的早期诊断价值[J].天津医科大学学报,2018,24(03):224.
LIU Jian-guang,WANG Xin.Value of random urinary albumin to creatinine ratio for early diagnosis of type 2 diabetic nephropathy[J].Journal of Tianjin Medical University,2018,24(04):224.
[10]姚晶瑞,姜埃利,王立华,等.雷公藤甲素上调PRDX2抑制2型糖尿病肾病的氧化应激状态[J].天津医科大学学报,2019,25(05):466.
YAO Jing-rui,JIANG Ai-li,WANG Li-hua,et al.Inhibition of Triptolide on oxidase stress via PRDX2 expression in diabetic nephropathy[J].Journal of Tianjin Medical University,2019,25(04):466.