Cardiorespiratory fitness and submaximal exercise dynamics in normal-weight obesity and metabolically healthy obesity.

Samantha M Hart, Bryant H Keirns, Christina M Sciarrillo, Steven K Malin, Stephanie P Kurti, Sam R Emerson

Journal: European journal of applied physiology 2024;124(4):1131-1142

PMID: 37917417

Abstract

PURPOSE

Cardiorespiratory fitness (CRF) is critical for cardiovascular health. Normal-weight obesity (NWO) and metabolically healthy obesity (MHO) may be at increased risk for cardiovascular disease, but a comparison of CRF and submaximal exercise dynamics against rigorously defined low- and high-risk groups is lacking.

METHODS

Four groups (N = 40; 10/group) based on body mass index (BMI), body fat %, and metabolic syndrome (MetS) risk factors were recruited: healthy controls (CON; BMI 18.5-24.9 kg/m, body fat < 25% [M] or < 35% [F], 0-1 risk factors), NWO (BMI 18.5-24.9 kg/m, body fat ≥ 25% [M] or ≥ 35% [F]), MHO (BMI > 30 kg/m, body fat ≥ 25% [M] or ≥ 35% [F], 0-1 risk factors), or metabolically unhealthy obesity (MUO; BMI > 30 kg/m, body fat ≥ 25% [M] or ≥ 35% [F], 2 + risk factors). All participants completed a O test on a cycle ergometer.

RESULTS

O was similarly low in NWO (27.0 ± 4.8 mL/kg/min), MHO (25.4 ± 6.7 mL/kg/min) and MUO (24.6 ± 10.0 mL/kg/min) relative to CON (44.2 ± 11.0 mL/kg/min) when normalized to total body mass (p's < 0.01), and adjusting for fat mass or lean mass did not alter these results. This same differential O pattern was apparent beginning at 25% of the exercise test (P < 0.01).

CONCLUSIONS

NWO and MHO had similar peak and submaximal CRF to MUO, despite some favorable health traits. Our work adds clarity to the notion that excess adiposity hinders CRF across BMI categories.

CLINICALTRIALS

gov registration: NCT05008952.

© 2023. The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature.

Address: Department of Nutritional Sciences, Oklahoma State University, Stillwater, OK, 74075, USA.; Department of Nutrition and Heath Science, Ball State University, Muncie, IN, 47306, USA.; Department of Kinesiology and Health, Rutgers, The State University of New Jersey, New Brunswick, NJ, 08901, USA.; Department of Kinesiology, James Madison University, Harrisonburg, VA, 22807, USA.; Department of Nutritional Sciences, Oklahoma State University, Stillwater, OK, 74075, USA. [email protected].; Oklahoma State University, 211 Nancy Randolph Davis, Stillwater, OK, 74078, USA. [email protected].
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