Intrauterine growth restriction alters kidney metabolism at the end of nephrogenesis.

IF 3.9 2区 医学 Q2 NUTRITION & DIETETICS Nutrition & Metabolism Pub Date : 2023-11-21 DOI:10.1186/s12986-023-00769-6
Sheng-Yuan Ho, Merryl Esther Yuliana, Hsiu-Chu Chou, Chung-Ming Chen
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Abstract

Background: This study investigated the effect of uteroplacental insufficiency (UPI) on renal development by detecting metabolic alterations in the kidneys of rats with intrauterine growth restriction (IUGR).

Methods: On gestational day 17, pregnant Sprague Dawley rats were selected and allocated randomly to either the IUGR group or the control group. The IUGR group received a protocol involving the closure of bilateral uterine vessels, while the control group underwent a sham surgery. The rat pups were delivered on gestational day 22 by natural means. Pups were randomly recruited from both the control and IUGR groups on the seventh day after birth. The kidneys were surgically removed to conduct Western blot and metabolomic analyses.

Results: IUGR was produced by UPI, as evidenced by the significantly lower body weights of the pups with IUGR compared to the control pups on postnatal day 7. UPI significantly increased the levels of cleaved caspase-3 (p < 0.05) and BAX/Bcl-2 (p < 0.01) in the pups with IUGR. Ten metabolites exhibited statistically significant differences between the groups (q < 0.05). Metabolic pathway enrichment analysis demonstrated statistically significant variations between the groups in the metabolism related to fructose and mannose, amino and nucleotide sugars, and inositol phosphate.

Conclusions: UPI alters kidney metabolism in growth-restricted newborn rats and induces renal apoptosis. The results of our study have the potential to provide new insights into biomarkers and metabolic pathways that are involved in the kidney changes generated by IUGR.

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在肾脏发生末期,宫内生长限制改变肾脏代谢。
背景:本研究通过检测宫内生长受限(IUGR)大鼠肾脏代谢变化,探讨子宫胎盘功能不全(UPI)对肾脏发育的影响。方法:在妊娠第17天选取妊娠大鼠,随机分为IUGR组和对照组。IUGR组接受了包括关闭双侧子宫血管的方案,而对照组则接受了假手术。在妊娠第22天自然分娩。在出生后第7天,从对照组和IUGR组随机招募幼犬。手术切除肾脏进行Western blot和代谢组学分析。结果:IUGR是由UPI产生的,在出生后第7天,IUGR幼崽的体重明显低于对照组幼崽。结论:UPI可改变生长受限新生大鼠肾脏代谢,诱导肾细胞凋亡。我们的研究结果有可能为IUGR产生的肾脏变化所涉及的生物标志物和代谢途径提供新的见解。
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来源期刊
Nutrition & Metabolism
Nutrition & Metabolism 医学-营养学
CiteScore
8.40
自引率
0.00%
发文量
78
审稿时长
4-8 weeks
期刊介绍: Nutrition & Metabolism publishes studies with a clear focus on nutrition and metabolism with applications ranging from nutrition needs, exercise physiology, clinical and population studies, as well as the underlying mechanisms in these aspects. The areas of interest for Nutrition & Metabolism encompass studies in molecular nutrition in the context of obesity, diabetes, lipedemias, metabolic syndrome and exercise physiology. Manuscripts related to molecular, cellular and human metabolism, nutrient sensing and nutrient–gene interactions are also in interest, as are submissions that have employed new and innovative strategies like metabolomics/lipidomics or other omic-based biomarkers to predict nutritional status and metabolic diseases. Key areas we wish to encourage submissions from include: -how diet and specific nutrients interact with genes, proteins or metabolites to influence metabolic phenotypes and disease outcomes; -the role of epigenetic factors and the microbiome in the pathogenesis of metabolic diseases and their influence on metabolic responses to diet and food components; -how diet and other environmental factors affect epigenetics and microbiota; the extent to which genetic and nongenetic factors modify personal metabolic responses to diet and food compositions and the mechanisms involved; -how specific biologic networks and nutrient sensing mechanisms attribute to metabolic variability.
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