Cardiorespiratory Fitness May Influence Metabolic Inflexibility During Exercise in Obese Persons

Author:

Amaro-Gahete Francisco J12ORCID,Sanchez-Delgado Guillermo2,Ara Ignacio34,R. Ruiz Jonatan2

Affiliation:

1. EFFECTS-262 Research Group, Department of Physiology, School of Medicine, University of Granada, Spain

2. PROmoting FITness and Health through Physical Activity Research Group, Sport and Health University Research Institute, Department of Physical and Sports Education, School of Sports Science, University of Granada, Spain

3. GENUD Toledo Research Group, Universidad de Castilla-La Mancha, Toledo, Spain

4. CIBER of Frailty and Healthy Aging, Madrid, Spain

Abstract

Abstract Context We examined whether obese individuals have a reduced maximal fat oxidation (MFO) and the intensity that elicit MFO (Fatmax) compared with normal weight and overweight persons, taking into account their level of cardiorespiratory fitness. Methods The study subjects were 138 sedentary adults (87 women) aged 30.1 ± 13.6 years. Based on their body mass index, subjects were categorized as being of normal weight (n = 66), overweight (n = 48), or obese (n = 24). MFO and Fatmax were determined for all subjects by indirect calorimetry, using a walking graded exercise test. MFO was expressed in absolute terms (g/min) and relative to whole-body lean mass (mg/kgleanmass/min). Cardiorespiratory fitness was assessed via a maximal treadmill test. Results No differences in absolute MFO and Fatmax values were seen between the obese, normal weight, and overweight subjects (all P > 0.2), although after adjusting for cardiorespiratory fitness, the obese subjects returned significantly higher values than did their normal weight and overweight counterparts (all P < 0.03). However, when expressed with respect to lean mass, the MFO of the normal weight subjects was significantly greater than that of the overweight and obese subjects, independent of age, sex, or cardiorespiratory fitness. Conclusions Obese individuals have higher absolute MFO values when cardiorespiratory fitness is taken into account, but when expressed with respect to lean mass, normal weight individuals show a greater capacity to oxidize fat during exercise per unit of metabolically active tissue independent of age, sex, or cardiorespiratory fitness. These findings suggest that obese individuals may suffer from metabolic inflexibility during exercise.

Funder

Spanish Ministry of Economy and Competitivenes

Spanish Ministry of Education

Spanish Ministry of Education and Science

Redes Temáticas de Investigación Cooperativa RETIC

University of Granada

European Regional Development Funds

Fundación Iberoamericana de Nutrición

AstraZeneca HealthCare Foundation

Junta de Andalucía, Consejería de Conocimiento, Investigación y Universidades

Biomedical Research Networking Center on Frailty and Healthy Aging

Publisher

The Endocrine Society

Subject

Biochemistry (medical),Clinical Biochemistry,Endocrinology,Biochemistry,Endocrinology, Diabetes and Metabolism

Reference40 articles.

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