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双代研究:三氯生暴露雄性大鼠的发育和生殖结局。

Developmental and Reproductive Outcomes in Male Rats Exposed to Triclosan: Two-Generation Study.

机构信息

Laboratory of Pharmacology of Reproduction, Biological Sciences Center, Department of Physiological Sciences, State University of Londrina, Londrina, Brazil.

Department of Morphology, Stomatology and Physiology, Dental School of Ribeirão Preto, University of São Paulo, São Paulo, Brazil.

出版信息

Front Endocrinol (Lausanne). 2021 Oct 13;12:738980. doi: 10.3389/fendo.2021.738980. eCollection 2021.

Abstract

Triclosan (TCS) is a phenolic compound with broad-spectrum antimicrobial action that has been incorporated into a variety of personal care products and other industry segments such as toys, textiles, and plastics. Due to its widespread use, TCS and its derivatives have been detected in several environmental compartments, with potential bioaccumulation and persistence. Indeed, some studies have demonstrated that TCS may act as a potential endocrine disruptor for the reproductive system. In the current study, we are reporting on the results obtained for male rats after a two-generation reproduction toxicity study conducted with TCS. Female and male Wistar rats were treated daily by gavage with TCS at doses of 0.8, 2.4, and 8.0 mg/kg/day or corn oil (control group) over 10 weeks (F0) and over 14 weeks (F1) before mating and then throughout mating, until weaning F2 generations, respectively. TCS exposure decreased sperm viability and motility of F1 rats at the dose of 2.4 mg/kg. The effects of TCS on sperm quality may be related to the exposure window, which includes the programming of reproductive cells that occurs during fetal/neonatal development.

摘要

三氯生(TCS)是一种具有广谱抗菌作用的酚类化合物,已被纳入多种个人护理产品和其他行业领域,如玩具、纺织品和塑料。由于其广泛使用,TCS 及其衍生物已在多个环境隔室中被检测到,具有潜在的生物蓄积和持久性。事实上,一些研究表明,TCS 可能对生殖系统起到潜在的内分泌干扰物的作用。在目前的研究中,我们报告了雄性大鼠在进行了两代生殖毒性研究后得到的结果,这些大鼠用 TCS 以 0.8、2.4 和 8.0 mg/kg/天的剂量或玉米油(对照组)经灌胃处理,持续 10 周(F0)和 14 周(F1),在交配前和交配期间以及直到 F2 代断奶。TCS 暴露使 F1 大鼠的精子活力和活力降低至 2.4mg/kg。TCS 对精子质量的影响可能与暴露窗口有关,其中包括胎儿/新生儿发育过程中生殖细胞的编程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f48/8548666/9997d49e08bf/fendo-12-738980-g001.jpg

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