Adverse outcome pathways of PBDEs inducing male reproductive toxicity

不良结局途径 生殖毒性 多溴联苯醚 毒性 人口 生物 不利影响 环境毒理学 活性氧 生殖系统 氧化应激 精子发生 睾酮(贴片) 内分泌学 药理学 内科学 细胞生物学 医学 生态学 环境卫生 污染物 计算生物学
作者
Yue Zhang,Junhong Xie,Yixin Ouyang,Shuang Li,Yulin Sun,Weilun Tan,Lihua Ren,Xianqing Zhou
出处
期刊:Environmental Research [Elsevier BV]
卷期号:240: 117598-117598 被引量:15
标识
DOI:10.1016/j.envres.2023.117598
摘要

Polybrominated diphenyl ethers (PBDEs) are widely used brominated flame retardants, they are easily released into environment and causing adverse effects to the ecosystem and human health. This review aims to summarize the research status of PBDEs-induced male reproductive toxicity and its mechanisms at various levels such as molecular/cellular, tissue/organ and individual/population. The Adverse Outcome Pathways (AOPs) diagram showed that PBDEs-induced reactive oxygen species (ROS) production, disruptions of estrogen receptor-α (ERα) and antagonism of androgen receptor (AR) were defined as critical molecular initiating events (MIEs). They caused key events (KEs) at the molecular and cellular levels, including oxidative stress, increased DNA damage, damaging mitochondria, increased glycolipid levels and apoptosis, depletion of ectoplasmic specialization and decreased Leydig cells numbers. These in turn lead to followed KEs at the tissue or organ levels, such as the impaired spermatogenesis, impaired blood-testis barrier and reduced testosterone synthesis and function. As a result, reproductive system-related adverse outcomes (AOs) were reported, such as the decreased sperm quantity or quality, shorten male anogenital distance and cryptorchidism in individual and reduced reproduction of the population. This review assembled information on the mechanisms of male reproductive toxicity induced by PBDEs, and constructed a causal mechanism relationship diagram from different levels using the an AOP framework to provide theoretical basis for ecological risk assessment and environmental management of PBDEs. The AOP framework makes it possible to develop risk management strategies based on toxicity mechanisms and support for development of Integrated Approach to Testing and Assessment (IATA) which are available for regulatory purposes.
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