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代谢组学揭示了健康儿童空腹瘦素浓度与脂肪酸氧化和糖异生之间的关联。

Metabolomics reveals an entanglement of fasting leptin concentrations with fatty acid oxidation and gluconeogenesis in healthy children.

作者信息

Kirchberg Franca Fabiana, Brandt Stephanie, Moß Anja, Peissner Wolfgang, Koenig Wolfgang, Rothenbacher Dietrich, Brenner Hermann, Koletzko Berthold, Hellmuth Christian, Wabitsch Martin

机构信息

Ludwig-Maximilians-Universität München, Division of Metabolic and Nutritional Medicine, Dr. von Hauner Children's Hospital, University of Munich Medical Center, Munich, Germany.

Department of Pediatrics and Adolescent Medicine, Division of Pediatric Endocrinology and Diabetes, University Medical Center Ulm, Ulm, Germany.

出版信息

PLoS One. 2017 Aug 17;12(8):e0183185. doi: 10.1371/journal.pone.0183185. eCollection 2017.

Abstract

BACKGROUND

Leptin and adiponectin communicate with organ systems in order to regulate energetic and metabolic homeostasis. Their different points of action have been well characterized; however, no study has investigated their interrelationship with the metabolism at the molecular level in vivo.

OBJECTIVE

To examine the associations of leptin and adiponectin with the metabolic profile reflecting the intercellular and interorgan communication as well as activated metabolic pathways.

PATIENTS/METHODS: We measured plasma concentrations of leptin, adiponectin, and insulin along with concentrations of 196 metabolites in 400 healthy, fasting 8-years old German children who participated in the German Ulm Birth Cohort Study (UBCS). Using multiple linear mixed models, we evaluated the associations between hormones and metabolites.

RESULTS

Leptin levels increased exponentially with increasing BMI. Leptin was furthermore strongly associated with alanine and aspartate (Bonferroni corrected P[PBF] = 5.7×10-8 and 1.7×10-6, respectively), and negatively associated to the sum of the non-esterified fatty acids (NEFA) and the sum of the long-chain acylcarnitines C12-C18 (PBF = 0.009 and 0.0001, respectively). Insulin showed a similar association pattern, although the associations were less strong than for leptin. Adiponectin was neither related to BMI nor to any metabolite.

CONCLUSION

Although children were presumably metabolically similar, we found strong associations of insulin and leptin with the metabolite profile. High alanine concentrations and the lower concentrations of NEFA in children with high fasting leptin concentrations might arise from an increased gluconeogenesis and from the disinhibiting effect of leptin on the carnitine-palmitoyltransferase-1, respectively. As insulin had the same trend towards these associations, both hormones seem to be related to processes that provide the body with energy in fasting state.

摘要

背景

瘦素和脂联素与各器官系统相互作用,以调节能量和代谢稳态。它们不同的作用点已得到充分表征;然而,尚无研究在体内分子水平上探究它们与代谢的相互关系。

目的

研究瘦素和脂联素与反映细胞间和器官间通讯以及激活的代谢途径的代谢谱之间的关联。

患者/方法:我们测量了400名健康、空腹的8岁德国儿童的血浆瘦素、脂联素和胰岛素浓度,以及196种代谢物的浓度,这些儿童参与了德国乌尔姆出生队列研究(UBCS)。使用多重线性混合模型,我们评估了激素与代谢物之间的关联。

结果

瘦素水平随BMI的增加呈指数上升。瘦素还与丙氨酸和天冬氨酸密切相关(分别经Bonferroni校正的P值[PBF]=5.7×10-8和1.7×10-6),与非酯化脂肪酸(NEFA)总和以及长链酰基肉碱C12-C18总和呈负相关(分别为PBF=0.009和0.0001)。胰岛素显示出类似的关联模式,尽管其关联强度不如瘦素。脂联素既与BMI无关,也与任何代谢物无关。

结论

尽管这些儿童在代谢方面可能相似,但我们发现胰岛素和瘦素与代谢物谱之间存在密切关联。空腹瘦素浓度高的儿童中丙氨酸浓度升高和NEFA浓度降低,可能分别源于糖异生增加以及瘦素对肉碱-棕榈酰转移酶-1的去抑制作用。由于胰岛素在这些关联中具有相同趋势,这两种激素似乎都与空腹状态下为身体提供能量的过程有关。

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