PPARγ Regulates Triclosan Induced Placental Dysfunction

Li, Jing and Quan, Xiaojie and Zhang, Yue and Yu, Ting and Lei, Saifei and Huang, Zhenyao and Wang, Qi and Song, Weiyi and Yang, Xinxin and Xu, Pengfei (2021) PPARγ Regulates Triclosan Induced Placental Dysfunction. Cells, 11 (1). p. 86. ISSN 2073-4409

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Abstract

Exposure to the antibacterial agent triclosan (TCS) is associated with abnormal placenta growth and fetal development during pregnancy. Peroxisome proliferator-activated receptor γ (PPARγ) is crucial in placenta development. However, the mechanism of PPARγ in placenta injury induced by TCS remains unknown. Herein, we demonstrated that PPARγ worked as a protector against TCS-induced toxicity. TCS inhibited cell viability, migration, and angiogenesis dose-dependently in HTR-8/SVneo and JEG-3 cells. Furthermore, TCS downregulated expression of PPARγ and its downstream viability, migration, angiogenesis-related genes HMOX1, ANGPTL4, VEGFA, MMP-2, MMP-9, and upregulated inflammatory genes p65, IL-6, IL-1β, and TNF-α in vitro and in vivo. Further investigation showed that overexpression or activation (rosiglitazone) alleviated cell viability, migration, angiogenesis inhibition, and inflammatory response caused by TCS, while knockdown or inhibition (GW9662) of PPARγ had the opposite effect. Moreover, TCS caused placenta dysfunction characterized by the significant decrease in weight and size of the placenta and fetus, while PPARγ agonist rosiglitazone alleviated this damage in mice. Taken together, our results illustrated that TCS-induced placenta dysfunction, which was mediated by the PPARγ pathway. Our findings reveal that activation of PPARγ might be a promising strategy against the adverse effects of TCS exposure on the placenta and fetus.

Item Type: Article
Subjects: East Asian Archive > Biological Science
Depositing User: Unnamed user with email support@eastasianarchive.com
Date Deposited: 23 Jan 2023 09:36
Last Modified: 29 Apr 2024 07:53
URI: http://library.eprintdigipress.com/id/eprint/10

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