Maternal–Fetal Exposure to Antibiotics: Levels, Mother-to-Child Transmission, and Potential Health Risks

抗生素 后代 医学 胎儿 怀孕 传输(电信) 环境卫生 药方 不利影响 产科 生理学 儿科 生物 内科学 药理学 微生物学 电气工程 遗传学 工程类
作者
Shiyu Miao,Jia Yin,Shuang Liu,Qingqing Zhu,Chunyang Liao,Guibin Jiang
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:58 (19): 8117-8134 被引量:4
标识
DOI:10.1021/acs.est.4c02018
摘要

Due to its widespread applications in various fields, antibiotics are continuously released into the environment and ultimately enter the human body through diverse routes. Meanwhile, the unreasonable use of antibiotics can also lead to a series of adverse outcomes. Pregnant women and developing fetuses are more susceptible to the influence of external chemicals than adults. The evaluation of antibiotic exposure levels through questionnaire surveys or prescriptions in medical records and biomonitoring-based data shows that antibiotics are frequently prescribed and used by pregnant women around the world. Antibiotics may be transmitted from mothers to their offspring through different pathways, which then adversely affect the health of offspring. However, there has been no comprehensive review on antibiotic exposure and mother-to-child transmission in pregnant women so far. Herein, we summarized the exposure levels of antibiotics in pregnant women and fetuses, the exposure routes of antibiotics to pregnant women, and related influencing factors. In addition, we scrutinized the potential mechanisms and factors influencing the transfer of antibiotics from mother to fetus through placental transmission, and explored the adverse effects of maternal antibiotic exposure on fetal growth and development, neonatal gut microbiota, and subsequent childhood health. Given the widespread use of antibiotics and the health threats posed by their exposure, it is necessary to comprehensively track antibiotics in pregnant women and fetuses in the future, and more in-depth biological studies are needed to reveal and verify the mechanisms of mother-to-child transmission, which is crucial for accurately quantifying and evaluating fetal health status.
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