Interplay of body mass index and metabolic syndrome: association with physiological age from midlife to late-life

被引:0
作者
Peggy Ler
Alexander Ploner
Deborah Finkel
Chandra A. Reynolds
Yiqiang Zhan
Juulia Jylhävä
Anna K. Dahl Aslan
Ida K. Karlsson
机构
[1] Karolinska Institutet,Department of Medical Epidemiology and Biostatistics
[2] University of Southern California,Center for Economic and Social Research
[3] Jönköping University,Institute of Gerontology
[4] University of Colorado Boulder,Institute for Behavioral Genetics
[5] Sun Yat-Sen University,School of Public Health
[6] University of Tampere,Faculty of Social Sciences, Unit of Health Sciences and Gerontology Research Center
[7] University of Skövde,School of Health Sciences
来源
GeroScience | 2024年 / 46卷
关键词
Biological age; Frailty index; Metabolic syndrome; Metabolic health; Obesity;
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学科分类号
摘要
Obesity and metabolic syndrome (MetS) share common pathophysiological characteristics with aging. To better understand their interplay, we examined how body mass index (BMI) and MetS jointly associate with physiological age, and if the associations changed from midlife to late-life. We used longitudinal data from 1,825 Swedish twins. Physiological age was measured as frailty index (FI) and functional aging index (FAI) and modeled independently in linear mixed-effects models adjusted for chronological age, sex, education, and smoking. We assessed curvilinear associations of BMI and chronological age with physiological age, and interactions between BMI, MetS, and chronological age. We found a significant three-way interaction between BMI, MetS, and chronological age on FI (p-interaction = 0·006), not FAI. Consequently, we stratified FI analyses by age: < 65, 65–85, and ≥ 85 years, and modeled FAI across ages. Except for FI at ages ≥ 85, BMI had U-shaped associations with FI and FAI, where BMI around 26-28 kg/m2 was associated with the lowest physiological age. MetS was associated with higher FI and FAI, except for FI at ages < 65, and modified the BMI-FI association at ages 65–85 (p-interaction = 0·02), whereby the association between higher BMI levels and FI was stronger in individuals with MetS. Age modified the MetS-FI association in ages ≥ 85, such that it was stronger at higher ages (p-interaction = 0·01). Low BMI, high BMI, and metabolic syndrome were associated with higher physiological age, contributing to overall health status among older individuals and potentially accelerating aging.
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页码:2605 / 2617
页数:12
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共 97 条
[1]  
Swinburn BA(2020)Global burden of 87 risk factors in 204 countries and territories, 1990–2019: a systematic analysis for the Global Burden of Disease Study 2019 Lancet 396 1223-49
[2]  
Kraak VI(2019)The global syndemic of obesity, undernutrition, and climate change: the Lancet Commission report Lancet 393 791-846
[3]  
Allender S(2009)Harmonizing the metabolic syndrome: a joint interim statement of the International Diabetes Federation Task Force on Epidemiology and Prevention; National Heart, Lung, and Blood Institute; American Heart Association; World Heart Federation; International Atherosclerosis Society; and International Association for the Study of Obesity Circulation 120 1640-1645
[4]  
Alberti KG(2021)Obesity and cardiovascular disease: a scientific statement from the American Heart Association Circulation 143 e984-e1010
[5]  
Eckel RH(2023)8. Obesity and weight management for the prevention and treatment of type 2 diabetes: standards of care in diabetes-2023 Diabetes Care 46 S128-S39
[6]  
Grundy SM(2001)Executive summary of the third report of the National Cholesterol Education Program (NCEP) expert panel on detection, evaluation, and treatment of high blood cholesterol in adults (adult treatment panel III) JAMA 285 2486-97
[7]  
Powell-Wiley TM(2023)Hallmarks of aging: An expanding universe Cell 186 243-278
[8]  
Poirier P(2017)Biological age predictors EBioMedicine 21 29-36
[9]  
Burke LE(2019)Management of frailty: opportunities, challenges, and future directions Lancet 394 1376-1386
[10]  
ElSayed NA(2017)The frailty index outperforms DNA methylation age and its derivatives as an indicator of biological age Geroscience 39 83-92