脑脊液 NPY 与外周载脂蛋白A的关系:体重指数的调节作用。

IF 3.9 2区 医学 Q2 NUTRITION & DIETETICS Nutrition & Metabolism Pub Date : 2024-07-25 DOI:10.1186/s12986-024-00828-6
Danyang Zhao, Xiaoli Han, Qingshuang Mu, Yan Wu, Ligang Shan, Lidong Su, Wenyan Wang, Pengxiang Wang, Yimin Kang, Fan Wang
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引用次数: 0

摘要

背景:载脂蛋白 A-I (ApoA-I) 和载脂蛋白 B (ApoB) 已成为受进食行为影响的新型心血管风险生物标志物。下丘脑食欲肽可调节进食行为并影响脂蛋白水平,而不同体重状态下的脂蛋白水平会受到不同影响。本研究探讨了体重指数(BMI)、下丘脑食欲肽和脂蛋白之间错综复杂的关系,重点是体重在神经肽Y(NPY)、胃泌素、奥曲肽A(OXA)、脑脊液(CSF)中的催产素与外周载脂蛋白A-I和载脂蛋白B之间的关联中的调节作用:在这项横断面研究中,我们纳入了平均年龄为 31.77 ± 10.25 岁的参与者,根据体重指数分为正常体重组(NW)(n = 73)和超重/肥胖组(OW/OB)(n = 117)。测量了脑脊液中的 NPY、胃泌素、OXA 和催产素水平:结果:与 OW/OB 组相比,NW 组的外周载脂蛋白 A-I 水平较高,而载脂蛋白 B 水平较低(所有 p 2 = 0.144,β=-0.54,p 结论:该研究提供了迄今为止有据可查的研究结果:本研究提供了迄今为止尚未被证实的证据,即体重指数(BMI)可调节 CSF NPY 与外周载脂蛋白 A-I 水平之间的关系。该研究还揭示了 NPY 在西北地区人群中的保护作用,与之形成鲜明对比的是,NPY 在奥沃/奥布地区人群中的风险因素作用与心血管疾病的高风险有关。
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Association of cerebrospinal fluid NPY with peripheral ApoA: a moderation effect of BMI.

Background: Apoprotein A-I (ApoA-I) and Apoprotein B (ApoB) have emerged as novel cardiovascular risk biomarkers influenced by feeding behavior. Hypothalamic appetite peptides regulate feeding behavior and impact lipoprotein levels, which effects vary in different weight states. This study explores the intricate relationship between body mass index (BMI), hypothalamic appetite peptides, and apolipoproteins with emphasis on the moderating role of body weight in the association between neuropeptide Y (NPY), ghrelin, orexin A (OXA), oxytocin in cerebrospinal fluid (CSF) and peripheral ApoA-I and ApoB.

Methods: In this cross-sectional study, we included participants with a mean age of 31.77 ± 10.25 years, categorized into a normal weight (NW) (n = 73) and an overweight/obese (OW/OB) (n = 117) group based on BMI. NPY, ghrelin, OXA, and oxytocin levels in CSF were measured.

Results: In the NW group, peripheral ApoA-I levels were higher, while ApoB levels were lower than in the OW/OB group (all p < 0.05). CSF NPY exhibited a positive correlation with peripheral ApoA-I in the NW group (r = 0.39, p = 0.001). Notably, participants with higher CSF NPY levels had higher peripheral ApoA-I levels in the NW group and lower peripheral ApoA-I levels in the OW/OB group, showing the significant moderating effect of BMI on this association (R2 = 0.144, β=-0.54, p < 0.001). The correlation between ghrelin, OXA and oxytocin in CSF and peripheral ApoB in both groups exhibited opposing trends (Ghrelin: r = -0.03 and r = 0.04; OXA: r = 0.23 and r=-0.01; Oxytocin: r=-0.09 and r = 0.04).

Conclusion: This study provides hitherto undocumented evidence that BMI moderates the relationship between CSF NPY and peripheral ApoA-I levels. It also reveals the protective role of NPY in the NW population, contrasting with its risk factor role in the OW/OB population, which was associated with the at-risk for cardiovascular disease.

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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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