Physiological roles of propolis and red ginseng nanoplatforms in alleviating dexamethasone-induced male reproductive challenges in a rat model

Author:

Aziz Rabie L. Abdel,Abdel-Wahab Ahmed,Abdel-Razik Abdel-Razik H.,Kamel Shaimaa,Farghali Ahmed A.,Saleh Romaissaa,Mahmoud Rehab,Ibrahim Marwa A.,Nabil Taghred M.,El-Ela Fatma I. Abo

Abstract

Abstract Background Red ginseng and propolis are well-known antioxidants that have been related to a reduction in oxidative stress. Objective This study evaluated the efficiency of red ginseng and propolis, either in powder or as nano-forms against dexamethasone—induced testicular oxidative challenges in adult male albino rats. Methods Forty rats were divided into 8 equal groups including control negative group that was given vehicle (DMSO), control positive group that was administered dexamethasone in addition to the nano-propolis, nano-ginseng, nano-propolis + dexamethasone, nano ginseng+dexamethasone, propolis+dexamethasone and ginseng + dexamethasone groups. Serum, semen and tissue samples were obtained. Results Lower testosterone levels, higher levels of MDA, and lower levels of total antioxidant capacity in serum, as well as impaired semen quality and a disturbed histopathological picture of both the testis and seminal glands, were all observed as significant negative effects of dexamethasone. These findings were confirmed by lower gene expression profiles of CYP11A1, StAR, HSD-3b, Nrf-2 and ACTB-3b in testicular and seminal gland tissues. The most powerful anti-dexamethasone effects were obtained with either propolis in nanoform or conventional ginseng. Conclusion Propolis nano-formulation and ginseng in conventional form could be considered excellent candidates to ameliorate the oxidative stress provoked by dexamethasone, however, neither nano-ginseng nor conventional propolis showed such effects.

Funder

Cairo University

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Molecular Biology,General Medicine

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