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1.
Chinese Pharmacological Bulletin ; (12): 396-403, 2021.
Article in Chinese | WPRIM | ID: wpr-1014349

ABSTRACT

Aim To explore the regulatory mechanism of berberine in the high glucose (HG) -induced podocyte ferroptosis. Methods Western blot and R T - qPCR were used to detect the changes of G P X 4, PTGS2, ACSL4, podocin, and desmin at different time (0 h, 6 h, 12 h, 24 h, 36 h) of HG stimulation, and the relative expression of Nrf2, HO-1, GPX4 and podocin under HG after treated with berberine. The proliferation of podocytes stimulated by HG at different time points was observed by EdU staining. The therapeutic effect of berberine on podocyte damage was screened by CCK-8, and the effect of berberine on the level of oxidative stress in HG-induced podocytes were measured by fluorescence inverted microscope, GSH and GSSG kits. In addition, transmission electron microscopy was employed to observe the ultrastructural characteristics of podocytes in each group. Results The expression of podocin and GPX4 was significantly reduced at 24 h, and the mRNA levels of ACSL4 and PTGS2 were significantly up-regulated. Berberine could notably increase the expression of Nrf2, HO-1, GPX4 and podocin, and reduce the levels of PTGS2 and ACSL4. Moreover, berberine significantly improved the levels of ROS and GSH in podocytes under HG conditions, thereby alleviating membrane blistering, mitochondrial shrinkage and other morphological changes of HG-induced podocytes. Conclusions In this study, the number of podocytes decreases, which is a death mode different from autophagy and apoptosis, that is, ferroptosis. Berberine can alleviate the occurrence of this phenomenon by mediating the Nrf2/ H0-1/GPX4.

2.
Pakistan Journal of Pharmaceutical Sciences. 2016; 29 (6): 2047-2051
in English | IMEMR | ID: emr-184147

ABSTRACT

Madecassoside is one of increasingly used constituent of Centella asiatica, a frequently prescribed crude drug in South eastern Asia and China for wound healing. In the present experiment, it exposes the neuroprotective nature of Madecassoside in GT1-7 cell lines, further, which the antioxidant activities are performed. The cellular toxicity was assessed using 3-[4,5-Dimethylthiazol-2-Yl]-2,5-Diphenyltetrazolium Bromide [MTT] assay with increased cell viability with IC[50] 2.5 micro g/ml. the regulation of antioxidant levels showed changes in madecassoside treated cell lysate viz., SOD assay. Also, the antioxidative assays confirmed the negligible cellular damage caused to the GT1-7 cell lines. Hence, the results advocate that the current antioxidant and antitumor activity be justified by the high concentration of phenolic constituents, primarily the triterpene present in the C. asiatica

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