Ali Fares E M, Badran Khalid S A, Baraka Mohammad A, Althagafy Hanan S, Hassanein Emad H M
Department of Pharmacology and Toxicology, Faculty of Pharmacy, Al-Azhar University, Assiut Branch, Assiut 71524, Egypt.
Faculty of Pharmacy, Al-Azhar University, Assiut Branch, Assiut 71524, Egypt.
Life Sci. 2024 Mar 1;340:122461. doi: 10.1016/j.lfs.2024.122461. Epub 2024 Jan 27.
Heavy metals are ubiquitous environmental toxicants that have been known to have a serious effect on human and animal health. Aluminum (Al) is a widely distributed metal in nature. Al exposure has a detrimental impact on human fertility. This review focused on Al-induced male reproductive toxicity and the potential therapeutic approaches with some phytochemicals. Data from the literature showed that Al exposure is accompanied by a drastic decline in blood levels of FSH, LH, and testosterone, reduced sperm count, and affected sperm quality. Al exposure at high levels can cause oxidative stress by increasing ROS and RNS production, mediated mainly by downregulating Nrf2 signaling. Moreover, several investigations demonstrated that Al exposure evoked inflammation, evidenced by increased TNF-α and IL-6 levels. Additionally, substantial evidence concluded the key role of apoptosis in Al-induced testicular toxicity mediated by upregulating caspase-3 and downregulating Bcl2 protein. The damaging effects of Al on mitochondrial bioenergetics are thought to be due to the excessive generation of free radicals. This review helps to clarify the main mechanism involved in Al-associated testicular intoxication and the treatment strategy to attenuate the notable harmful effects on the male reproductive system. It will encourage clinical efforts to target the pathway involved in Al-associated testicular intoxication.
重金属是普遍存在的环境毒物,已知会对人类和动物健康产生严重影响。铝(Al)是自然界中分布广泛的金属。铝暴露对人类生育能力有不利影响。本综述聚焦于铝诱导的雄性生殖毒性以及一些植物化学物质的潜在治疗方法。文献数据表明,铝暴露伴随着促卵泡生成素(FSH)、促黄体生成素(LH)和睾酮的血液水平急剧下降、精子数量减少以及精子质量受影响。高水平的铝暴露可通过增加活性氧(ROS)和活性氮(RNS)的产生导致氧化应激,主要由下调核因子E2相关因子2(Nrf2)信号介导。此外,多项研究表明铝暴露引发炎症,肿瘤坏死因子-α(TNF-α)和白细胞介素-6(IL-6)水平升高证明了这一点。此外,大量证据表明凋亡在铝诱导的睾丸毒性中起关键作用,这是通过上调半胱天冬酶-3(caspase-3)和下调Bcl2蛋白介导的。铝对线粒体生物能量学的破坏作用被认为是由于自由基的过度产生。本综述有助于阐明铝相关睾丸中毒的主要机制以及减轻对男性生殖系统显著有害影响的治疗策略。它将鼓励针对铝相关睾丸中毒所涉及途径的临床研究。