Arjunolic acid reverses fluoxetine-induced alterations in testicular steroidogenic enzymes and membrane bound ionic pump imbalance through suppression of oxido-inflammatory stress and apoptosis.

IF 1.8 Q3 OBSTETRICS & GYNECOLOGY Jornal Brasileiro de Reproducao Assistida Pub Date : 2024-02-26 DOI:10.5935/1518-0557.20230062
Edozie Ojochem Lynda, Nwangwa Eze Kingsley, Oyovwi Mega Obukohwo, Ben-Azu Benneth, Emojevvwe Victor, Ovuakporaye I Simon, Ejime Agbonifo-Chijiokwu, Onome B Oghenetega
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Abstract

Objective: The impact of the anti-depressant therapy on gonadal function has been recognized and discussed over the years. However, data to supplement our understanding of the impact of arjunolic acid (AA) therapies in protecting against FXT-induced gonadal dysfunction is lacking clear scientific evidence. Hence, this study aimed to investigate the possible effect of AA on fluoxetine-induced altered testicular function in rats.

Methods: After 14 days acclimatization, Thirty-six (36) adult male rats were randomly divided into 6 groups (n=6). Rats in groups 1 received normal saline (10mL/kg); groups 2 & 3 were given AA (1.0mg/kg body weight) and AA (2.0mg/kg body weight), respectively; whereas, rats in group 4 were given FXT (10mg/kg/p.o/day), and groups 5 & 6 were given a combination of FXT (10mg/kg) + AA (1.0mg/kg body weight); and FXT (10mg/kg) + AA (2.0mg/kg body weight), respectively.

Results: The results shows that FXT significantly altered testicular steroidogenic enzymes (3ß-HSD and 17ß-HSD) and proton pump ATPase (Na+/K+ ATPase, Ca2+ ATPase and H+ ATPase) activities, as well as testicular architecture when compared with controls. More so, FXT caused oxido-inflammation and apoptosis, as evidence by increases in MDA, MPO, TNF-α, IL-1ß, Caspase 3 and p53. However, AA at a different dose significantly ameliorated the destructive impacts of FXT on steroidogenic enzymes, proton pump ATPase as well as increased Bcl-2, SOD, CAT, GSH and improved testicular architecture in rats.

Conclusions: AA reverses fluoxetine-induced alterations in testicular steroidogenic enzymes and membrane-bound ionic pump through suppression of oxido-inflammatory stress and apoptosis.

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Arjunolic acid Arjunolic Arjunolic Arjunolic Arjunolic Arjunolic Arjunolic Arjunolic Arjunolic Arjunolic Arjunolic Arjunolic Arjunolic Arjunolic Arjunolic Arjunolic Arjunolic Arjunolic Arjunolic通过抑制氧化炎症应激和细胞凋亡逆转氟西汀诱导的睾丸甾体生成酶和膜结合离子泵失衡的改变。
目的:抗抑郁治疗对性腺功能的影响已被认识和讨论多年。然而,关于arjunolic acid (AA)疗法对fxt诱导性腺功能障碍的保护作用的补充数据缺乏明确的科学证据。因此,本研究旨在探讨AA对氟西汀致大鼠睾丸功能改变的可能影响。方法:驯化14 d后,将36只成年雄性大鼠随机分为6组(n=6)。1组大鼠灌胃生理盐水(10mL/kg);2、3组分别给予AA (1.0mg/kg体重)和AA (2.0mg/kg体重);第4组大鼠给予FXT (10mg/kg/p.o/d),第5、6组大鼠给予FXT (10mg/kg) + AA (1.0mg/kg体重)的组合;FXT (10mg/kg) + AA (2.0mg/kg体重)。结果:结果显示,与对照组相比,FXT显著改变睾丸甾体生成酶(3ß-HSD和17ß-HSD)和质子泵atp酶(Na+/K+ atp酶、Ca2+ atp酶和H+ atp酶)活性以及睾丸结构。更重要的是,FXT引起氧化炎症和凋亡,如MDA, MPO, TNF-α, IL-1ß, Caspase 3和p53的增加。然而,不同剂量的AA显著改善了FXT对大鼠甾体生成酶、质子泵atp酶的破坏作用,并增加了Bcl-2、SOD、CAT、GSH和睾丸结构的改善。结论:AA通过抑制氧化炎症应激和细胞凋亡逆转氟西汀诱导的睾丸甾体原酶和膜结合离子泵的改变。
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来源期刊
CiteScore
3.30
自引率
6.70%
发文量
56
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