超重/肥胖儿童的心肺健康和靶向蛋白质组学与大脑和心血管健康有关。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-10-01 Epub Date: 2023-02-23 DOI:10.1080/17461391.2023.2167237
Abel Plaza-Florido, Maria Rodriguez-Ayllon, Signe Altmäe, Francisco B Ortega, Irene Esteban-Cornejo
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引用次数: 2

摘要

心肺功能(CRF)与心血管疾病(CVD)风险因素和大脑健康障碍呈负相关。然而,将CRF与儿童健康联系起来的分子机制尚不清楚。我们的目的是检测健康儿童与超重/肥胖的不健康儿童(OW/OB)血浆中与大脑健康和CVD相关的蛋白质水平。87名患有OW/OB的儿童(10.08 ± 1.1岁,59%为男孩)。CRF通过跑步机测试进行测量,并将儿童分为适合或不适合。血浆中的靶向蛋白质组学是使用Olink的Neurology小组的邻近延伸分析技术在整个样本中和心血管小组的子样本中进行的。在调整性别、成熟状态和体重指数后,16种蛋白质(PLXNB3、sFRP3、CLEC1B、RSPO1、Gal8、CLEC10A、GCP5、MDGA1、CTCC、LAT、IL4RA、PRSS27、CXCL1、Gal9、MERTK和GT)在适合和不适合的OW/OB儿童之间差异表达。然而,应用FDR校正后,统计学上的显著差异消失了。在患有OW/OB的儿童中检测到与CRF水平相关的潜在候选蛋白,这些蛋白参与了神经发生、免疫/炎症反应、信号转导、血小板活化等几个生物学过程。然而,这些初步发现应该在未来的研究中得到证实或对比,使用更大的样本量、纵向和实验设计。重点超重/肥胖儿童心肺功能(CRF)与心血管和大脑健康之间联系的分子机制尚不清楚。靶向蛋白质组学分析显示,与患有OW/OB的“Unfit”儿童相比,“Fit”儿童血浆中差异表达的蛋白质(PLXNB3、sFRP3、CLEC1B、RSPO1、Gal8、CLEC10A、GCP5、MDGA1、CTCC、LAT、IL4RA、PRSS27、CXCL1、Gal9、MERTK和GT)。这些蛋白质参与多种生物学过程,如免疫/炎症反应、神经发生、信号转导和细胞代谢过程。有必要进行纵向和实验研究,以揭示CRF的改善如何与上述蛋白质循环水平的变化有关,以及它们如何在以后的生活中减少心血管疾病风险因素和大脑健康损伤。
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Cardiorespiratory fitness and targeted proteomics involved in brain and cardiovascular health in children with overweight/obesity.

Cardiorespiratory fitness (CRF) is inversely associated with cardiovascular disease (CVD) risk factors and brain health impairments. However, the molecular mechanisms linking CRF to health in children are poorly understood. We aimed to examine protein levels related to brain health and CVD in plasma of fit compared to unfit children with overweight/obesity (OW/OB). Eighty-seven children with OW/OB (10.08 ± 1.1 years, 59% boys) from the ActiveBrains project were included. CRF was measured by performing a treadmill test, and children were categorized into fit or unfit. Targeted proteomics in plasma was performed using Olink's proximity extension assay technology of Neurology panel in the whole sample and of Cardiovascular panel in a subsample. Sixteen proteins (PLXNB3, sFRP3, CLEC1B, RSPO1, Gal8, CLEC10A, GCP5, MDGA1, CTSC, LAT, IL4RA, PRSS27, CXCL1, Gal9, MERTK, and GT) were differentially expressed between fit and unfit children with OW/OB after adjusting for sex, maturational status, and body mass index. However, statistically significant differences disappeared after applying FDR correction. Potential candidate proteins related to CRF levels in children with OW/OB were detected, being involved in several biological processes such as neurogenesis, immune/inflammatory response, signal transduction, platelet activation. Nevertheless, these preliminary findings should be confirmed or contrasted in future studies using larger sample sizes, longitudinal and experimental designs.HighlightsThe molecular mechanisms underlying the link of cardiorespiratory fitness (CRF) with cardiovascular and brain health in children with overweight/obesity (OW/OB) are poorly understood.Targeted proteomic analysis revealed differentially expressed proteins (PLXNB3, sFRP3, CLEC1B, RSPO1, Gal8, CLEC10A, GCP5, MDGA1, CTSC, LAT, IL4RA, PRSS27, CXCL1, Gal9, MERTK, and GT) in plasma of "Fit" compared to "Unfit" children with OW/OB. These proteins are involved in several biological processes such as immune/inflammatory response, neurogenesis, signal transduction, and cellular metabolic process.Longitudinal and experimental studies are warranted to reveal how improvements in CRF are related to changes in circulating levels of the abovementioned proteins and how they might reduce cardiovascular diseases risk factors and brain health impairments later in life.

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ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
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9.40
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2.10%
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464
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