Glucose and fatty acids catabolism during in vitro decidualization of human endometrial stromal cells

被引:0
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作者
Ana Cecilia Mestre Citrinovitz
Jana Hauke
Julia Jauckus
Claus-Dieter Langhans
Kathrin Schwarz
Markus Zorn
Thomas Strowitzki
Juergen G. Okun
Ariane Germeyer
机构
[1] Ruprecht-Karls University of Heidelberg,Department of Gynecological Endocrinology and Fertility Disorders, Women’s Hospital
[2] Universidad Nacional del Comahue,Centro de Investigaciones en Toxicología Ambiental y Agrobiotecnología del Comahue (CITAAC), Consejo Nacional de Investigaciones Científicas y Tecnológicas (CONICET)
[3] Heidelberg University Hospital,Metabolic Laboratory and Newborn Screening, Dietmar
[4] Ruprecht-Karls University of Heidelberg,Hopp
来源
Journal of Assisted Reproduction and Genetics | 2022年 / 39卷
关键词
Human endometrial stromal cells; Decidualization; Glucose; Fatty acids; β-Oxidation pathway; TCA cycle;
D O I
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中图分类号
学科分类号
摘要
The differentiation of endometrial stromal cells, named decidualization, is essential for the proper formation of the materno-fetal interphase. One important feature of decidualization is the increased glucose consumption and its utilization by endometrial cells to produce energy. Besides glucose, fatty acids are another important energy source for living cells and it has been described that endometrial stromal cells rely on the proper function of the oxidation of fatty acids for the correct decidualization. It is, however, unknown whether the turn-over of fatty acid degradation is modified during decidualization. Furthermore, it is also unknown how the final products of glucose and fatty acid catabolism are related to the function of the tricarboxylic acid cycle for the efficient ATP production. In this study, we evaluated the content levels of different intermediate metabolites and the expression of the key enzymes related to the degradation of glucose and fatty acids during the in vitro decidualization of human endometrial stromal cells. Our results suggest that human endometrial stromal cells undergo energetic metabolic changes during decidualization and that decidualizing and non-decidualizing cells differ in the level of activation of different metabolic pathways and, probably, in the use of intermediate metabolites.
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页码:2689 / 2697
页数:8
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