Protective and therapeutic role of mango pulp and eprosartan drug and their anti-synergistic effects against thioacetamide-induced hepatotoxicity in male rats

Author:

Shaban Nadia ZakiORCID,Zaki Mohammad Mohammad,Koutb Fayed,Abdul-Aziz Ahmed Alaa,Elshehawy Ashraf Abdul-Hamid,Mehany Hany

Abstract

AbstractThe present study was done to evaluate the protective and therapeutic role of mango pulp (M), eprosartan drug (E), and their co-administration (EM) against hepatotoxicity induced by thioacetamide (T). Seven groups of rats were prepared as follows: the control(C)group (normal rats),Tgroup (the rats were injected with T),T-Mgroup (the rats were injected with T, and then treated with M),T-Egroup (the rats were injected with T, and then treated with E),T-EMgroup (the rats were injected with T, and then treated with E and M),M-TM-Mgroup (the rats were administered with M before, during, and after T injection), andMgroup (the healthy rats were administered with M only). Firstly, the characterizations ofMwere determined. Also, the markers of hepatic oxidative stress [malondialdehyde (MDA) and glutathione (GSH) levels and the activities of superoxide dismutase (SOD), glutathione peroxidase (GPx), and glutathione reductase (GSR)], inflammation and fibrosis [(tumor necrosis factor-α (TNF-α) and platelet-derived growth factor-BB (PDGF-BB) levels and gene expression of transforming growth factor-beta1(TGF-β1)], and liver functions and microscopic examination were evaluated. The present results revealed that M contains 419 ± 1.04 μg total phenolics as gallic acid equivalent and 6.8 ± 0.05 μg total flavonoids as quercetin equivalent. The analysis of phenolics and flavonoids showed the presence of chlorogenic, caffeic, 2,5-dihydroxy benzoic, 3,5-dicaffeoylquinic, 4,5-dicaffeoylquinic, tannic, cinnamic acidS, and catechin, phloridzin, and quercetin with different concentrations. Also, M contains various minerals with different concentrations involving potassium, calcium, magnesium, sodium, iron, copper, zinc, and manganese. The current results showed that the total antioxidant capacity of 1 g of M was 117.2 ± 1.16 as μg ascorbic acid equivalent. Our biochemical studies showed that all treatments significantly reduced T-induced hepatotoxicity and liver injuries, as the oxidative stress and inflammatory and fibrotic markers were diminished where MDA level and the activities of GST, GSSG, and GR were decreased when compared with T group. In contrast, GSH level and the activities of SOD and GPx and GSH/GSSG ratio were increased. In addition, TNF-α and PDGF-BB levels were reduced, and the gene expression of TGF-β1 was down-regulated. Consequently, the liver functions were significantly improved.In conclusion, eachE,M, andEMhas a therapeutic effect against T-induced hepatotoxicity via the reduction of the OS, inflammation, and fibrosis. Unfortunately, treatment withMandEsimultaneously revealed the less effectiveness than the treatment withMorEdemonstrates the presence of anti-synergistic effect between them. Additionally,M-TM-Mtreatment showed a better effect thanT-Mtreatment against T-induced hepatotoxicity revealing the prophylactic role ofM. The administration of healthy rats withMfor 12 weeks has no side effect.Graphical abstract

Publisher

Springer Science and Business Media LLC

Subject

Health, Toxicology and Mutagenesis,Pollution,Environmental Chemistry,General Medicine

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