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高血糖对 BeWo 滋养层细胞代谢功能的影响:多组学和功能代谢分析。

The impact of hyperglycemia upon BeWo trophoblast cell metabolic function: A multi-OMICS and functional metabolic analysis.

机构信息

Department of Physiology and Pharmacology, Western University, London, Ontario, Canada.

The Metabolomics Innovation Centre, University of Alberta, Edmonton, Alberta, Canada.

出版信息

PLoS One. 2023 Mar 17;18(3):e0283118. doi: 10.1371/journal.pone.0283118. eCollection 2023.

Abstract

Pre-existing and gestationally-developed diabetes mellitus have been linked with impairments in placental villous trophoblast cell metabolic function, that are thought to underlie the development of metabolic diseases early in the lives of the exposed offspring. Previous research using placental cell lines and ex vivo trophoblast preparations have highlighted hyperglycemia is an important independent regulator of placental function. However, it is poorly understood if hyperglycemia directly influences aspects of placental metabolic function, including nutrient storage and mitochondrial respiration, that are altered in term diabetic placentae. The current study examined metabolic and mitochondrial function as well as nutrient storage in both undifferentiated cytotrophoblast and differentiated syncytiotrophoblast BeWo cells cultured under hyperglycemia conditions (25 mM glucose) for 72 hours to further characterize the direct impacts of placental hyperglycemic exposure. Hyperglycemic-exposed BeWo trophoblasts displayed increased glycogen and triglyceride nutrient stores, but real-time functional readouts of metabolic enzyme activity and mitochondrial respiratory activity were not altered. However, specific investigation into mitochondrial dynamics highlighted increased expression of markers associated with mitochondrial fission that could indicate high glucose-exposed trophoblasts are transitioning towards mitochondrial dysfunction. To further characterize the impacts of independent hyperglycemia, the current study subsequently utilized a multi-omics approach and evaluated the transcriptomic and metabolomic signatures of BeWo cytotrophoblasts. BeWo cytotrophoblasts exposed to hyperglycemia displayed increased mRNA expression of ACSL1, HSD11B2, RPS6KA5, and LAP3 and reduced mRNA expression of CYP2F1, and HK2, concomitant with increased levels of: lactate, malonate, and riboflavin metabolites. These changes highlighted important underlying alterations to glucose, glutathione, fatty acid, and glucocorticoid metabolism in BeWo trophoblasts exposed to hyperglycemia. Overall, these results demonstrate that hyperglycemia is an important independent regulator of key areas of placental metabolism, nutrient storage, and mitochondrial function, and these data continue to expand our knowledge on mechanisms governing the development of placental dysfunction.

摘要

先前存在的和妊娠期间发生的糖尿病已被证明与胎盘绒毛滋养细胞代谢功能受损有关,这些功能障碍被认为是导致暴露后代生命早期代谢疾病发生的基础。先前的研究使用胎盘细胞系和离体滋养层制备物强调了高血糖是调节胎盘功能的一个重要独立因素。然而,人们对高血糖是否直接影响胎盘代谢功能的各个方面,包括营养物质储存和线粒体呼吸,知之甚少,这些方面在糖尿病胎盘中有改变。本研究检测了在高血糖条件(25mM 葡萄糖)下培养的未分化绒毛滋养细胞和分化的合体滋养细胞 BeWo 细胞中的代谢和线粒体功能以及营养物质储存,以进一步描述胎盘高血糖暴露的直接影响。高血糖暴露的 BeWo 滋养细胞显示出增加的糖原和甘油三酯营养物质储存,但实时代谢酶活性和线粒体呼吸活性的功能读数没有改变。然而,对线粒体动力学的具体研究强调了与线粒体分裂相关的标志物的表达增加,这可能表明高血糖暴露的滋养细胞正在向线粒体功能障碍转变。为了进一步描述独立高血糖的影响,本研究随后采用多组学方法评估了 BeWo 绒毛滋养细胞的转录组和代谢组特征。暴露于高血糖的 BeWo 绒毛滋养细胞显示 ACSL1、HSD11B2、RPS6KA5 和 LAP3 的 mRNA 表达增加,CYP2F1 和 HK2 的 mRNA 表达减少,同时伴有:乳酸盐、丙二酸盐和核黄素代谢物水平增加。这些变化突出了葡萄糖、谷胱甘肽、脂肪酸和糖皮质激素代谢在暴露于高血糖的 BeWo 滋养细胞中的重要潜在改变。总的来说,这些结果表明高血糖是胎盘代谢、营养物质储存和线粒体功能的关键领域的一个重要独立调节因素,这些数据继续扩展了我们对调节胎盘功能障碍发生的机制的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eaf3/10022812/9e31c424fc7f/pone.0283118.g001.jpg

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