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Sevoflurane Represses the Self-renewal Ability by Regulating MiR-7a,7b/Klf4 Signalling Pathway in Mouse Embryonic Stem Cells

Overview
Journal Cell Prolif
Date 2016 Aug 19
PMID 27535693
Citations 7
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Abstract

Sevoflurane is a frequently-used clinical inhalational anaesthetic and can cause toxicity to embryos during foetal development. Embryonic stem cells (ESCs) are derived from the inner cell mass of blastospheres and can be used as a useful model of early development. Here, we found that sevoflurane significantly influenced self-renewal ability of mESCs on stemness maintenance and cell proliferation. The cell cycle was arrested via G1 phase delay. We further found that sevoflurane upregulated expression of miR-7a,7b to repress self-renewal. Next we performed rescue experiments and found that after adding miR-7a,7b inhibitor into mESCs treated with sevoflurane, its influence on self-renewal could be blocked. Further we identified stemness factor Klf4 as the direct target of miR-7a,7b. Overexpression of Klf4 restored self-renewal ability repressed by miR-7a,7b or sevoflurane. In this work, we determined that sevoflurane repressed self-renewal ability by regulating the miR-7a,7b/Klf4 signalling pathway in mESCs. Our study demonstrated molecular mechanism underlying the side effects of sevoflurane during early development, laying the foundation for studies on safe usage of inhalational anaesthetic during non-obstetric surgery.

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References
1.
Ai Z, Shao J, Wu Y, Yu M, Du J, Shi X . CHIR99021 enhances Klf4 Expression through β-Catenin Signaling and miR-7a Regulation in J1 Mouse Embryonic Stem Cells. PLoS One. 2016; 11(3):e0150936. PMC: 4777400. DOI: 10.1371/journal.pone.0150936. View

2.
Aksoy I, Giudice V, Delahaye E, Wianny F, Aubry M, Mure M . Klf4 and Klf5 differentially inhibit mesoderm and endoderm differentiation in embryonic stem cells. Nat Commun. 2014; 5:3719. DOI: 10.1038/ncomms4719. View

3.
Oka M, Moriyama T, Asally M, Kawakami K, Yoneda Y . Differential role for transcription factor Oct4 nucleocytoplasmic dynamics in somatic cell reprogramming and self-renewal of embryonic stem cells. J Biol Chem. 2013; 288(21):15085-97. PMC: 3663529. DOI: 10.1074/jbc.M112.448837. View

4.
Shen X, Dong Y, Xu Z, Wang H, Miao C, Soriano S . Selective anesthesia-induced neuroinflammation in developing mouse brain and cognitive impairment. Anesthesiology. 2013; 118(3):502-15. PMC: 3580002. DOI: 10.1097/ALN.0b013e3182834d77. View

5.
Zhang P, Andrianakos R, Yang Y, Liu C, Lu W . Kruppel-like factor 4 (Klf4) prevents embryonic stem (ES) cell differentiation by regulating Nanog gene expression. J Biol Chem. 2010; 285(12):9180-9. PMC: 2838337. DOI: 10.1074/jbc.M109.077958. View