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维甲酸信号在过量咖啡因摄入扰乱的生肌祖细胞凋亡和分化中起关键作用。

Retinoic Acid Signaling Plays a Crucial Role in Excessive Caffeine Intake-Disturbed Apoptosis and Differentiation of Myogenic Progenitors.

作者信息

Wu Nian, Li Yingshi, He Xiangyue, Lin Jiayi, Long Denglu, Cheng Xin, Brand-Saberi Beate, Wang Guang, Yang Xuesong

机构信息

Division of Histology and Embryology, International Joint Laboratory for Embryonic Development and Prenatal Medicine, Medical College, Jinan University, Guangzhou, China.

Key Laboratory for Regenerative Medicine of the Ministry of Education, Jinan University, Guangzhou, China.

出版信息

Front Cell Dev Biol. 2021 Mar 9;9:586767. doi: 10.3389/fcell.2021.586767. eCollection 2021.

Abstract

Whether or not the process of somitogenesis and myogenesis is affected by excessive caffeine intake still remains ambiguous. In this study, we first showed that caffeine treatment results in chest wall deformities and simultaneously reduced mRNA expressions of genes involved in myogenesis in the developing chicken embryos. We then used embryo cultures to assess in further detail how caffeine exposure affects the earliest steps of myogenesis, and we demonstrated that the caffeine treatment suppressed somitogenesis of chicken embryos by interfering with the expressions of crucial genes modulating apoptosis, proliferation, and differentiation of myogenic progenitors in differentiating somites. These phenotypes were abrogated by a retinoic acid (RA) antagonist in embryo cultures, even at low caffeine doses in C2C12 cells, implying that excess RA levels are responsible for these phenotypes in cells and possibly . These findings highlight that excessive caffeine exposure is negatively involved in regulating the development of myogenic progenitors through interfering with RA signaling. The RA somitogenesis/myogenesis pathway might be directly impacted by caffeine signaling rather than reflecting an indirect effect of the toxicity of excess caffeine dosage.

摘要

somitogenesis(体节发生)和myogenesis(肌发生)过程是否会受到过量咖啡因摄入的影响仍不明确。在本研究中,我们首先表明咖啡因处理会导致胸壁畸形,同时降低发育中的鸡胚中参与肌发生的基因的mRNA表达。然后,我们使用胚胎培养来更详细地评估咖啡因暴露如何影响肌发生的最早步骤,并且我们证明咖啡因处理通过干扰调节分化体节中肌源性祖细胞凋亡、增殖和分化的关键基因的表达来抑制鸡胚的体节发生。即使在C2C12细胞中低剂量咖啡因的情况下,胚胎培养中的视黄酸(RA)拮抗剂也消除了这些表型,这意味着过量的RA水平是细胞中这些表型的原因,并且可能……这些发现突出表明,过量咖啡因暴露通过干扰RA信号通路对肌源性祖细胞的发育产生负面影响。RA体节发生/肌发生途径可能直接受到咖啡因信号的影响,而不是反映过量咖啡因剂量毒性的间接作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11a7/8006404/e940f5f02337/fcell-09-586767-g0001.jpg

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