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EDC 暴露的细胞和分子特征:对 GnRH 网络的影响。

Cellular and molecular features of EDC exposure: consequences for the GnRH network.

机构信息

Neuroendocrinology Unit, GIGA Neurosciences, University of Liège, Liège, Belgium.

Division of Neuroscience, Oregon National Primate Research Center (ONPRC), OHSU, OR, USA.

出版信息

Nat Rev Endocrinol. 2021 Feb;17(2):83-96. doi: 10.1038/s41574-020-00436-3. Epub 2020 Dec 7.

Abstract

The onset of puberty and the female ovulatory cycle are important developmental milestones of the reproductive system. These processes are controlled by a tightly organized network of neurotransmitters and neuropeptides, as well as genetic, epigenetic and hormonal factors, which ultimately drive the pulsatile secretion of gonadotropin-releasing hormone. They also strongly depend on organizational processes that take place during fetal and early postnatal life. Therefore, exposure to environmental pollutants such as endocrine-disrupting chemicals (EDCs) during critical periods of development can result in altered brain development, delayed or advanced puberty and long-term reproductive consequences, such as impaired fertility. The gonads and peripheral organs are targets of EDCs, and research from the past few years suggests that the organization of the neuroendocrine control of reproduction is also sensitive to environmental cues and disruption. Among other mechanisms, EDCs interfere with the action of steroidal and non-steroidal receptors, and alter enzymatic, metabolic and epigenetic pathways during development. In this Review, we discuss the cellular and molecular consequences of perinatal exposure (mostly in rodents) to representative EDCs with a focus on the neuroendocrine control of reproduction, pubertal timing and the female ovulatory cycle.

摘要

青春期的开始和女性排卵周期是生殖系统的重要发育里程碑。这些过程受到神经递质和神经肽以及遗传、表观遗传和激素因素的严格调控网络的控制,这些因素最终驱动促性腺激素释放激素的脉冲分泌。它们还强烈依赖于胎儿和出生后早期发生的组织过程。因此,在发育的关键时期暴露于环境污染物(如内分泌干扰化学物质)会导致大脑发育改变、青春期延迟或提前以及长期的生殖后果,如生育能力受损。性腺和外周器官是内分泌干扰物的靶标,过去几年的研究表明,生殖的神经内分泌控制的组织也对环境线索和破坏敏感。在其他机制中,内分泌干扰物会干扰甾体和非甾体受体的作用,并在发育过程中改变酶、代谢和表观遗传途径。在这篇综述中,我们讨论了围产期暴露(主要在啮齿动物中)于代表性内分泌干扰物对生殖的神经内分泌控制、青春期时间和女性排卵周期的细胞和分子后果。

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