Archibong Anthony E, Rideout Meredith L, Harris Kenneth J, Ramesh Aramandla
Department of Physiology, Meharry Medical College, Nashville TN 37208.
Department of Biochemistry & Cancer Biology, Meharry Medical College, Nashville TN 37208.
Curr Opin Toxicol. 2018 Feb;7:95-101. doi: 10.1016/j.cotox.2017.10.004. Epub 2017 Oct 12.
Oxidative stress (OS) has been implicated in the causation of environmentally-induced diseases. However, the role of toxicants in the pathophysiology of disorders and diseases affecting the reproductive system are less understood. This review focuses on some of the mechanisms that underlie OS-induced reproductive toxicity at the cellular- and organ levels (germ cell damage and perturbed organ responses to endocrine stimuli). While most of the reproductive and developmental studies conducted in adult animals and transgenerational adult animals point to the involvement of genotoxicity, the part played by epigenetic alterations is accorded a recent recognition, thus warranting more studies in this area. Additionally, metabolomic, proteomic and transcriptomic approaches need to be employed to advance our understanding of key metabolites formed and the expression of anti-OS genes at the molecular level that are necessary for combating reactive oxygen species formation. The resulting data could be analyzed using bioinformatics tools to identify the pathways linked to disease causation and as a consequence, the adoption of therapeutic strategies, including but not limited to administering phytochemicals (many of which possess antioxidant properties) to improve disease outcomes.
氧化应激(OS)与环境诱导疾病的发生有关。然而,人们对毒物在影响生殖系统的疾病和病症病理生理学中的作用了解较少。本综述聚焦于OS在细胞和器官水平诱导生殖毒性的一些潜在机制(生殖细胞损伤以及器官对内分泌刺激的反应紊乱)。虽然在成年动物和跨代成年动物中进行的大多数生殖与发育研究都表明存在遗传毒性,但表观遗传改变所起的作用最近才得到认可,因此该领域需要更多研究。此外,需要采用代谢组学、蛋白质组学和转录组学方法,以增进我们对所形成的关键代谢物以及在分子水平对抗活性氧生成所必需的抗OS基因表达的理解。可以使用生物信息学工具分析所得数据,以识别与疾病病因相关的途径,从而采用治疗策略,包括但不限于施用植物化学物质(其中许多具有抗氧化特性)来改善疾病预后。