Dioscorea zingiberensis ameliorates diabetic nephropathy by inhibiting NLRP3 inflammasome and curbing the expression of p66Shc in high-fat diet/streptozotocin-induced diabetic mice

Author:

Ren Chaoxing1,Zhou Xiaowei1,Bao Xiaowen1,Zhang Jie1,Tang Jun2,Zhu Zhiming1,Zhang Nan13,Bai Yu4,Xi Youli5,Zhang Qi1,Ma Bo1

Affiliation:

1. School of Pharmaceutical Sciences, Nanjing Tech University, Nanjing, People’s Republic of China

2. Jiangsu Huanghe Pharmaceutical Co., Ltd, Yancheng, People’s Republic of China

3. School of Chemical and Molecular Engineering, Nanjing Tech University, Nanjing, People’s Republic of China

4. Department of Biological Sciences, University of Toronto Scarborough, ON, Canada

5. Department of Pharmacy, Nanjing Drum Tower Hospital, Nanjing, People’s Republic of China

Abstract

Abstract Objectives Diabetic nephropathy (DN) is a severe diabetic complication. Dioscorea zingiberensis (DZ) possesses excellent pharmacological properties with lower toxicity. The purpose of this study was to investigate the efficacy and mechanism of DZ in DN. Methods DN was established by the high-fat diet combining intraperitoneal injection of streptozotocin in mice. The DZ (125 and 250 mg/kg/day) were intragastrical administered for 8 consecutive weeks. After treatment, blood, urine and kidney tissue were collected for biological detection, renal morphology, fibrosis and molecular mechanism research, respectively. Key findings This study has shown that DZ significantly ameliorated kidney hypertrophy, renal structural damage and abnormal function of the kidney indicators (creatinine, urinary protein and blood urea nitrogen). Further molecular mechanism data suggested that the NLRP3/Cleaved-caspase-1 signal pathway was remarkably activated in DN, and DZ treatment reversed these changes, which indicated that it effectively attenuated inflammatory response caused by hyperglycaemia. In addition, DN inhibits hyperglycaemia-induced activation of oxidative stress by suppressing the expression of p66Shc proteins. Conclusions DZ could efficiently suppress oxidative stress and inflammatory responses to postpone the development of DN, and its mechanism might be related to inhibition of NLRP3 and p66Shc activities. Thus, DZ could be developed into a new therapeutic agent for DN.

Funder

National Natural Science Foundation of China

Postgraduate Research & Practice Innovation Program of Jiangsu Province

Jiangsu Synergetic Innovation Center for Advanced Bio-Manufacture

Publisher

Oxford University Press (OUP)

Subject

Pharmaceutical Science,Pharmacology

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