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电离辐射暴露对胎盘功能的影响及其对胎儿编程的影响。

Impact of Ionizing Radiation Exposure on Placental Function and Implications for Fetal Programming.

机构信息

Medical Sciences Division, NOSM University, 935 Ramsey Lake Rd., Sudbury, ON P3E 2C6, Canada.

School of Natural Sciences, Laurentian University, 935 Ramsey Lake Rd., Sudbury, ON P3E 2C6, Canada.

出版信息

Int J Mol Sci. 2024 Sep 12;25(18):9862. doi: 10.3390/ijms25189862.

Abstract

Accidental exposure to high-dose radiation while pregnant has shown significant negative effects on the developing fetus. One fetal organ which has been studied is the placenta. The placenta performs all essential functions for fetal development, including nutrition, respiration, waste excretion, endocrine communication, and immunological functions. Improper placental development can lead to complications during pregnancy, as well as the occurrence of intrauterine growth-restricted (IUGR) offspring. IUGR is one of the leading indicators of fetal programming, classified as an improper uterine environment leading to the predisposition of diseases within the offspring. With numerous studies examining fetal programming, there remains a significant gap in understanding the placenta's role in irradiation-induced fetal programming. This review aims to synthesize current knowledge on how irradiation affects placental function to guide future research directions. This review provides a comprehensive overview of placental biology, including its development, structure, and function, and summarizes the placenta's role in fetal programming, with a focus on the impact of radiation on placental biology. Taken together, this review demonstrates that fetal radiation exposure causes placental degradation and immune function dysregulation. Given the placenta's crucial role in fetal development, understanding its impact on irradiation-induced IUGR is essential.

摘要

孕妇意外暴露于高剂量辐射会对发育中的胎儿产生显著的负面影响。已经研究过的一种胎儿器官是胎盘。胎盘为胎儿发育执行所有必需的功能,包括营养、呼吸、废物排泄、内分泌通讯和免疫功能。胎盘发育不当可能导致妊娠并发症,以及宫内生长受限(IUGR)胎儿的发生。IUGR 是胎儿编程的主要指标之一,被归类为子宫内环境不当导致后代易患疾病。尽管有大量研究检查胎儿编程,但对于胎盘在辐射诱导的胎儿编程中的作用仍存在理解上的重大差距。本综述旨在综合当前关于辐射如何影响胎盘功能的知识,以指导未来的研究方向。本综述全面概述了胎盘生物学,包括其发育、结构和功能,并总结了胎盘在胎儿编程中的作用,重点介绍了辐射对胎盘生物学的影响。总之,本综述表明胎儿辐射暴露会导致胎盘退化和免疫功能失调。鉴于胎盘在胎儿发育中的关键作用,了解其对辐射诱导的 IUGR 的影响至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21f5/11432287/c953fbb3b696/ijms-25-09862-g001.jpg

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