Influence of water-based exercise on energy intake, appetite, and appetite-related hormones in adults: A systematic review and meta-analysis.

Appetite Appetite-related hormones Energy balance Energy compensation Energy intake Exercise

Journal

Appetite
ISSN: 1095-8304
Titre abrégé: Appetite
Pays: England
ID NLM: 8006808

Informations de publication

Date de publication:
01 01 2023
Historique:
received: 29 09 2022
revised: 10 11 2022
accepted: 11 11 2022
pubmed: 15 11 2022
medline: 15 12 2022
entrez: 14 11 2022
Statut: ppublish

Résumé

Single bouts of land-based exercise suppress appetite and do not typically alter energy intake in the short-term, whereas it has been suggested that water-based exercise may evoke orexigenic effects. The primary aim was to systematically review the available literature investigating the influence of water-based exercise on energy intake in adults (PROSPERO ID number CRD42022314349). PubMed, Medline, Sport-Discus, Academic Search Complete, CINAHL and Public Health Database were searched for peer-reviewed articles published in English from 1900 to May 2022. Included studies implemented a water-based exercise intervention versus a control or comparator. Risk of bias was assessed using the revised Cochrane 'Risk of bias tool for randomised trials' (RoB 2.0). We identified eight acute (same day) exercise studies which met the inclusion criteria. Meta-analysis was performed using a fixed effects generic inverse variance method on energy intake (8 studies (water versus control), 5 studies (water versus land) and 2 studies (water at two different temperatures)). Appetite and appetite-related hormones are also examined but high heterogeneity did not allow a meta-analysis of these outcome measures. We identified one chronic exercise training study which met the inclusion criteria with findings discussed narratively. Meta-analysis revealed that a single bout of exercise in water increased ad-libitum energy intake compared to a non-exercise control (mean difference [95% CI]: 330 [118, 542] kJ, P = 0.002). No difference in ad libitum energy intake was identified between water and land-based exercise (78 [-176, 334] kJ, P = 0.55). Exercising in cold water (18-20 °C) increased energy intake to a greater extent than neutral water (27-33 °C) temperature (719 [222, 1215] kJ; P < 0.005). The one eligible 12-week study did not assess whether water-based exercise influenced energy intake but did find that cycling and swimming did not alter fasting plasma concentrations of total ghrelin, insulin, leptin or total PYY but contributed to body mass loss 87.3 (5.2) to 85.9 (5.0) kg and 88.9 (4.9) to 86.4 (4.5) kg (P < 0.05) respectively. To conclude, if body mass management is a person's primary focus, they should be mindful of the tendency to eat more in the hours after a water-based exercise session, particularly when the water temperature is cold (18-20 °C).

Identifiants

pubmed: 36375602
pii: S0195-6663(22)00466-4
doi: 10.1016/j.appet.2022.106375
pii:
doi:

Substances chimiques

Water 059QF0KO0R
Hormones 0

Types de publication

Meta-Analysis Systematic Review Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

106375

Informations de copyright

Crown Copyright © 2022. Published by Elsevier Ltd. All rights reserved.

Déclaration de conflit d'intérêts

Declaration of competing interest JAK, AET and DJS acknowledge support from the National Institute for Health Research (NIHR) Leicester Biomedical Research Centre. The views expressed are those of the authors and not necessarily those of the NHS, the NIHR, or the Department of Health. All other authors declare no conflict of interest.

Auteurs

Marie J Grigg (MJ)

Centre for Sport, Exercise and Life Sciences, Coventry University, CV1 2DS, United Kingdom. Electronic address: hutsonm2@uni.coventry.ac.uk.

C Douglas Thake (CD)

Centre for Sport, Exercise and Life Sciences, Coventry University, CV1 2DS, United Kingdom. Electronic address: apx223@coventry.ac.uk.

Judith E Allgrove (JE)

Applied and Human Science Department, Kingston University, London, KT1 2EE, United Kingdom. Electronic address: J.Allgrove@kingston.ac.uk.

James A King (JA)

National Centre for Sport and Exercise Medicine, School of Sport, Exercise and Health Sciences, Loughborough University, Epinal Way, Loughborough, United Kingdom; National Institute for Health Research (NIHR) Leicester Biomedical Research Centre, University Hospitals of Leicester, National Health Service (NHS) Trust and the University of Leicester, Leicester, United Kingdom. Electronic address: j.a.king@lboro.ac.uk.

Alice E Thackray (AE)

National Centre for Sport and Exercise Medicine, School of Sport, Exercise and Health Sciences, Loughborough University, Epinal Way, Loughborough, United Kingdom; National Institute for Health Research (NIHR) Leicester Biomedical Research Centre, University Hospitals of Leicester, National Health Service (NHS) Trust and the University of Leicester, Leicester, United Kingdom. Electronic address: A.E.Thackray@lboro.ac.uk.

David J Stensel (DJ)

National Centre for Sport and Exercise Medicine, School of Sport, Exercise and Health Sciences, Loughborough University, Epinal Way, Loughborough, United Kingdom; National Institute for Health Research (NIHR) Leicester Biomedical Research Centre, University Hospitals of Leicester, National Health Service (NHS) Trust and the University of Leicester, Leicester, United Kingdom; Waseda University, Faculty of Sport Sciences, 2-579-15 Mikajima, Tokorozawa, Saitama, 359-1192, Japan. Electronic address: D.J.Stensel@lboro.ac.uk.

Alun Owen (A)

Centre for Sport, Exercise and Life Sciences, Coventry University, CV1 2DS, United Kingdom. Electronic address: aa5845@coventry.ac.uk.

David R Broom (DR)

Centre for Sport, Exercise and Life Sciences, Coventry University, CV1 2DS, United Kingdom. Electronic address: ad5173@coventry.ac.uk.

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Classifications MeSH