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8 September 2020 Acetylcholine ameliorated TNF-α-induced primary trophoblast malfunction via muscarinic receptors
Zheng Wang, Adoulaye Issotina Zibrila, Shuhua Liu, Gongxiao Zhao, Yubei Li, Jingning Xu, Dan Liu, Chunfang Li, Weiyi Feng, Jinjun Liu
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Abstract

Oxidative stress and apoptosis of trophoblasts are involved in preeclampsia (PE). Numerous studies have shown that acetylcholine (ACh), the principal vagal neurotransmitter, plays a crucial role in attenuating oxidative stress, inflammation, and apoptosis in a variety of human diseases. However, the role of ACh in PE management remains unclear. Here, we aimed to determine the effects of ACh on TNF-α-treated human primary trophoblast cells. Western blotting, CCK-8, DHE, TUNEL immunofluorescence staining, transwell assays, and wound-healing assays were performed to evaluate the role of ACh in vitro. We found that both TNF-α expression and the apoptotic index were higher in placentas from preeclamptic women than in normal placentas. TNF-α enhanced oxidative stress and increased the number of TUNEL-positive nuclei, Bax/Bcl-2 ratio, and the cleaved caspase-3/caspase-3 ratio while decreasing cell viability in primary human trophoblast cells. TNF-α promoted cell migration and invasion. PDTC, a selective NF-κB inhibitor, significantly blunted TNF-α-induced effects. ACh treatment attenuated oxidative stress and apoptosis while further promoting migration and invasion of TNF-α-treated primary trophoblast cells. The effects of ACh could be reversed by the muscarinic receptor antagonist atropine. Overall, our findings indicate that ACh significantly ameliorates TNF-α-induced oxidative stress and apoptosis of human primary trophoblast cells via muscarinic receptors. This is the first time that the improvement of vagal activity served as a therapeutic strategy for PE-like trophoblasts, suggesting its potential value in clinical practice.

Summary Sentence: TNF-α is increased in the placentas from preeclamptic women and acetylcholine significantly ameliorates TNF-α-induced oxidative stress and apoptosis of human primary trophoblast cells via muscarinic receptors.

Graphical Abstract

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© The Author(s) 2020. Published by Oxford University Press on behalf of Society for the Study of Reproduction. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com
Zheng Wang, Adoulaye Issotina Zibrila, Shuhua Liu, Gongxiao Zhao, Yubei Li, Jingning Xu, Dan Liu, Chunfang Li, Weiyi Feng, and Jinjun Liu "Acetylcholine ameliorated TNF-α-induced primary trophoblast malfunction via muscarinic receptors," Biology of Reproduction 103(6), 1238-1248, (8 September 2020). https://doi.org/10.1093/biolre/ioaa158
Received: 16 May 2020; Accepted: 4 September 2020; Published: 8 September 2020
KEYWORDS
Acetylcholine
preeclampsia
primary trophoblast cell
TNF-α
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