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微塑料:对胎儿-胎盘单位及生殖系统的一种威胁。

Microplastics: A threat to Fetoplacental unit and Reproductive systems.

作者信息

Anifowoshe Abass Toba, Akhtar Md Noor, Majeed Abisola, Singh Asem Sanjit, Ismail Toyyibah Funmilayo, Nongthomba Upendra

机构信息

Department of Developmental Biology and Genetics, Indian Institute of Science, Bangalore, India.

Cell Biology and Genetics Unit, Department of Zoology, Faculty of Life Sciences, University of Ilorin, Ilorin, Nigeria.

出版信息

Toxicol Rep. 2025 Jan 30;14:101938. doi: 10.1016/j.toxrep.2025.101938. eCollection 2025 Jun.

Abstract

Plastic pollution has become a pressing global environmental and public health challenge, raising significant concerns about its potential effects on human health. While extensive research has been conducted on micro- and nanoplastics (MNPs), there remains a critical gap in understanding how these plastic particles traverse the maternal-fetal interface and contribute to reproductive anomalies. This review aims to address this knowledge gap by examining the effects of MNPs on the fetoplacental unit, a vital structure that serves as the interface between the mother and fetus during pregnancy, as well as on the broader reproductive system. Traditionally viewed as a protective barrier safeguarding the fetus, emerging evidence suggests that the placenta may also act as a site for the accumulation of plastic particles, thereby compromising its function. A literature search was conducted using a combination of keywords on Google Scholar and PubMed including 'plastic particles affect the fetoplacental unit', 'how plastic particles traverse the maternal-fetal contact', and reproductive abnormalities induced by micro/nano-plastics'. Key studies show that plastic particles can traverse the maternal-fetal interface, potentially exposing developing fetuses to various harmful chemicals present in plastics, such as endocrine disruptors and persistent organic pollutants. Once in contact with the fetoplacental unit, these particles may trigger inflammatory responses, oxidative stress, and even epigenetic modifications. They also bioaccumulate in testes, altering spermatogenesis, spermatozoa morphology, testosterone production, body weights, and inflammation as reported in mice. Such disruptions can increase the risk of developmental and reproductive disorders in the fetus, suggesting that exposure to plastic particles may carry long-term health implications. Further studies highlight the particular vulnerability of the fetoplacental unit to plastic particles. The placenta has limited detoxifying capabilities and unique immunological regulation, making it especially sensitive to foreign particles. Identifying critical windows of susceptibility during pregnancy is germane, as exposure to plastic particles during these periods could have heightened effects on fetal development. This growing concern underscores the urgent need for comprehensive research into the mechanisms through which plastic particles impact the fetoplacental unit. Additionally, this review calls for stronger measures to mitigate plastic pollution and recommends health strategies aimed at protecting future generations from potential harm. It synthesizes recent findings on the ways in which these particles influence the fetoplacental unit and the broader reproductive system.

摘要

塑料污染已成为一个紧迫的全球环境和公共卫生挑战,引发了人们对其对人类健康潜在影响的重大担忧。虽然已经对微塑料和纳米塑料(MNPs)进行了广泛研究,但在理解这些塑料颗粒如何穿过母胎界面并导致生殖异常方面仍存在关键差距。本综述旨在通过研究MNPs对胎儿 - 胎盘单位(孕期母亲与胎儿之间的重要界面结构)以及更广泛生殖系统的影响来填补这一知识空白。传统上认为胎盘是保护胎儿的屏障,但新出现的证据表明,胎盘也可能成为塑料颗粒积累的场所,从而损害其功能。我们在谷歌学术和PubMed上使用包括“塑料颗粒影响胎儿 - 胎盘单位”、“塑料颗粒如何穿过母胎接触界面”以及“微/纳米塑料引起的生殖异常”等关键词组合进行了文献检索。关键研究表明,塑料颗粒可以穿过母胎界面,可能使发育中的胎儿接触到塑料中存在的各种有害化学物质,如内分泌干扰物和持久性有机污染物。一旦与胎儿 - 胎盘单位接触,这些颗粒可能引发炎症反应、氧化应激,甚至表观遗传修饰。如在小鼠实验中所报道的,它们还会在睾丸中生物蓄积,改变精子发生、精子形态、睾酮产生、体重和炎症。这种干扰会增加胎儿发育和生殖障碍的风险,表明接触塑料颗粒可能具有长期健康影响。进一步的研究突出了胎儿 - 胎盘单位对塑料颗粒的特殊易感性。胎盘的解毒能力有限且具有独特的免疫调节功能,使其对异物颗粒特别敏感。确定孕期的关键易感窗口至关重要,因为在这些时期接触塑料颗粒可能对胎儿发育产生更大影响。这种日益增加的担忧凸显了对塑料颗粒影响胎儿 - 胎盘单位机制进行全面研究的迫切需求。此外,本综述呼吁采取更强有力的措施来减轻塑料污染,并建议采取健康策略以保护后代免受潜在危害。它综合了关于这些颗粒影响胎儿 - 胎盘单位及更广泛生殖系统方式的最新研究结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c145/12223432/754b79ef615c/ga1.jpg

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