Chronic low-dose deltamethrin exposure impairs placental development through endoplasmic reticulum stress-associated trophoblast dysfunction in mice

Deltamethrin (DLM) is a widely used pyrethroid insecticide with potential reproductive and developmental toxicity. Here, we investigated whether chronic low-dose maternal DLM exposure impairs fetal and placental development through endoplasmic reticulum (ER) stress-associated trophoblast dysfunction. Female C57BL/6 mice were exposed to DLM before and during pregnancy, while HTR-8/SVneo cells were used for in vitro validation. DLM exposure reduced fetal size and weight and impaired placental development, accompanied by decreased placental MMP2 and MMP9 expression. In HTR-8/SVneo cells, DLM inhibited proliferation, clonogenic capacity, viability, migration, and wound closure, while inducing cell-cycle disturbance and apoptosis. Placental RNA sequencing revealed alterations in inflammatory response, apoptosis, protein processing, and unfolded protein response-related pathways. Consistently, ATF6 and GRP78 expression was increased in DLM-exposed placentas. The ER stress inhibitor 4-phenylbutyric acid partially restored trophoblast function, reduced apoptosis, suppressed placental ER stress markers, and restored MMP2/MMP9 expression. Moreover, offspring from DLM-exposed dams exhibited increased intestinal ATF6 and IRE1α expression. These findings indicate that chronic low-dose DLM exposure induces fetal growth restriction, at least partly through placental ER stress-associated trophoblast dysfunction.

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Journal
Scientific Reports
Published
2026-09-04
DOI
https://doi.org/10.1038/s41598-026-70069-5
Primary Topic
Pesticide Exposure and Toxicity
Type
article
Field-Weighted Citation Impact
0.00

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article

Chronic low-dose deltamethrin exposure impairs placental development through endoplasmic reticulum stress-associated trophoblast dysfunction in mice

Lu Zong, Xuelan Li, Tianhao Min, Yanglong Nan et al.
Scientific Reports
Pesticide Exposure and Toxicity
article

Chronic low-dose deltamethrin exposure impairs placental development through endoplasmic reticulum stress-associated trophoblast dysfunction in mice

Lu Zong, Xuelan Li, Tianhao Min, Yanglong Nan, Kaijie Ren, Tuanhe Sun, Rulan Ma, Shiyao Tong, Yuyi Ma, Yuanchang Peng, Yuanyuan Liu, Xiaoyuan Deng, Ruoxi Zhong, Wei Wang, Chengxue Dang, Yihuan Hou
article en

Abstract

Deltamethrin (DLM) is a widely used pyrethroid insecticide with potential reproductive and developmental toxicity. Here, we investigated whether chronic low-dose maternal DLM exposure impairs fetal and placental development through endoplasmic reticulum (ER) stress-associated trophoblast dysfunction. Female C57BL/6 mice were exposed to DLM before and during pregnancy, while HTR-8/SVneo cells were used for in vitro validation. DLM exposure reduced fetal size and weight and impaired placental development, accompanied by decreased placental MMP2 and MMP9 expression. In HTR-8/SVneo cells, DLM inhibited proliferation, clonogenic capacity, viability, migration, and wound closure, while inducing cell-cycle disturbance and apoptosis. Placental RNA sequencing revealed alterations in inflammatory response, apoptosis, protein processing, and unfolded protein response-related pathways. Consistently, ATF6 and GRP78 expression was increased in DLM-exposed placentas. The ER stress inhibitor 4-phenylbutyric acid partially restored trophoblast function, reduced apoptosis, suppressed placental ER stress markers, and restored MMP2/MMP9 expression. Moreover, offspring from DLM-exposed dams exhibited increased intestinal ATF6 and IRE1α expression. These findings indicate that chronic low-dose DLM exposure induces fetal growth restriction, at least partly through placental ER stress-associated trophoblast dysfunction.

Scientific Reports
First Affiliated Hospital of Xi'an Jiaotong University (CN), Xi'an Jiaotong University (CN)
Yakult Bio-Science Foundation, Key Research and Development Projects of Shaanxi Province, Natural Science Basic Research Program of Shaanxi Province
Openalex Percentile: Top 13%
Pesticide Exposure and Toxicity
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