Meli Rosaria, Monnolo Anna, Annunziata Chiara, Pirozzi Claudio, Ferrante Maria Carmela
Department of Pharmacy, University of Naples Federico II, Via Domenico Montesano 49, 80131 Naples, Italy.
Department of Veterinary Medicine and Animal Productions, Federico II University of Naples, Via Delpino 1, 80137 Naples, Italy.
Antioxidants (Basel). 2020 May 10;9(5):405. doi: 10.3390/antiox9050405.
Bisphenol A (BPA) is a non-persistent anthropic and environmentally ubiquitous compound widely employed and detected in many consumer products and food items; thus, human exposure is prolonged. Over the last ten years, many studies have examined the underlying molecular mechanisms of BPA toxicity and revealed links among BPA-induced oxidative stress, male and female reproductive defects, and human disease. Because of its hormone-like feature, BPA shows tissue effects on specific hormone receptors in target cells, triggering noxious cellular responses associated with oxidative stress and inflammation. As a metabolic and endocrine disruptor, BPA impairs redox homeostasis via the increase of oxidative mediators and the reduction of antioxidant enzymes, causing mitochondrial dysfunction, alteration in cell signaling pathways, and induction of apoptosis. This review aims to examine the scenery of the current BPA literature on understanding how the induction of oxidative stress can be considered the "fil rouge" of BPA's toxic mechanisms of action with pleiotropic outcomes on reproduction. Here, we focus on the protective effects of five classes of antioxidants-vitamins and co-factors, natural products (herbals and phytochemicals), melatonin, selenium, and methyl donors (used alone or in combination)-that have been found useful to counteract BPA toxicity in male and female reproductive functions.
双酚A(BPA)是一种非持久性的人为合成且在环境中普遍存在的化合物,在许多消费品和食品中广泛使用并被检测到;因此,人类接触BPA的时间很长。在过去十年中,许多研究探讨了BPA毒性的潜在分子机制,并揭示了BPA诱导的氧化应激、男性和女性生殖缺陷以及人类疾病之间的联系。由于其类似激素的特性,BPA对靶细胞中的特定激素受体产生组织效应,引发与氧化应激和炎症相关的有害细胞反应。作为一种代谢和内分泌干扰物,BPA通过增加氧化介质和减少抗氧化酶来损害氧化还原稳态,导致线粒体功能障碍、细胞信号通路改变以及细胞凋亡的诱导。本综述旨在审视当前关于BPA的文献情况,以了解如何将氧化应激的诱导视为BPA具有多效性生殖作用的毒性作用机制的“主线”。在此,我们重点关注五类抗氧化剂——维生素和辅助因子、天然产物(草药和植物化学物质)、褪黑素、硒以及甲基供体(单独使用或联合使用)——已发现它们在对抗BPA对男性和女性生殖功能的毒性方面很有用。