[8] VIKRAM, RAO, A/L, et al. Diabetic nephropathy:An update on pathogenesis and drug development.[J]. Diabetes & Metabolic Syndrome, 2019.
[9] MENG X M,NIKOLIC-PATERSON D J,LAN H Y. TGF-β:the master regulator of fibrosis.[J]. Nature Reviews Nephrology, 2016.
[10] LU A ,PALLERO M A ,OWUSU B Y , et al. Calreticulin is important for the development of renal fibrosis and dysfunction in diabetic nephropathy[J]. Matrix Biology Plus, 2020.
[11] WANG YANHUI. FoxM1 inhibition ameliorates renal interstitial fibrosis by decreasing extracellular matrix and epithelial-mesenchymal transition[J]. Journal of Pharmacological Sciences, 2020, 143(prepublish) :281-289.
[12] FINTHA ATTILA. Therapeutic Targeting of Fibrotic Epithelial-Mesenchymal Transition-An Outstanding Challenge.[J]. Frontiers in pharmacology, 2019, 10 :388.
[13] SU HUA. Oxidative Stress and Renal Fibrosis:Mechanisms and Therapies.[J]. Advances in experimental medicine and biology, 2019, 1165 :585-604.
[14] XIN X,ZHI L,YU Z,et al. Effects of connective tissue growth factor (CTGF/CCN2) on condylar chondrocyte proliferation, migration, maturation, differentiation and signalling pathway[J]. Biochemical & Biophysical Research Communications, 2018, 495(1).
[15] LIU YIPING. Stem cells in the treatment of renal fibrosis:a review of preclinical and clinical studies of renal fibrosis pathogenesis[J]. Stem Cell Research & Therapy, 2021, 12(1) :333-333.
[23] SUN X , YI L , CHENG L , et al. Recent Advances of Curcumin in the Prevention and Treatment of Renal Fibrosis[J]. BioMed Research International,2017,(2017-5-4), 2017, 2017:2418671.
[39] HASSAN Z K , AL-OLAYAN E M . Curcumin Reorganizes miRNA Expression in a Mouse Model of Liver Fibrosis[J]. Asian Pacific journal of cancer prevention:APJCP, 2012, 13(11):5405-5408.