Department of Theriogenology, Faculty of Veterinary Medicine, Beni-Suef University, Beni-Suef, 62511, Egypt.
Physiology Department, Faculty of Veterinary Medicine, Minia University, El-Minia, 61519, Egypt.
Mol Biol Rep. 2024 Jan 4;51(1):72. doi: 10.1007/s11033-023-08991-4.
Red ginseng and propolis are well-known antioxidants that have been related to a reduction in oxidative stress.
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.
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.
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.
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.
红参和蜂胶是众所周知的抗氧化剂,与减少氧化应激有关。
本研究评估了红参和蜂胶粉末或纳米形式对成年雄性白化大鼠睾丸氧化应激的功效,以对抗地塞米松的诱导。
将 40 只大鼠分为 8 组,包括对照组(给予 DMSO)、对照组(给予地塞米松)、纳米蜂胶组、纳米红参组、纳米蜂胶+地塞米松组、纳米红参+地塞米松组、蜂胶+地塞米松组和红参+地塞米松组。收集血清、精液和组织样本。
与对照组相比,地塞米松显著降低了血清中的睾酮水平,增加了 MDA 水平,降低了总抗氧化能力,同时还损害了精液质量,改变了睾丸和精囊的组织病理学特征。这些发现得到了睾丸和精囊组织中 CYP11A1、StAR、HSD-3b、Nrf-2 和 ACTB-3b 基因表达谱降低的证实。纳米蜂胶和常规红参的抗地塞米松作用最强。
纳米蜂胶和常规红参可被认为是改善地塞米松诱导的氧化应激的优秀候选物,但纳米红参和常规蜂胶均未显示出这种作用。