Exercise Effects on Bone Mineral Density in Men.

Nicole Klöckner, Wolfgang Kemmler, Michael Uder, Friederike E Thomasius, Reina Tholen, Cornel C Sieber, Daniel Schoene, Stefan Peters, Stefan Middeldorf, Uwe Lange, Michelle Mages, Bernd Kladny, Katharina Kerschan-Schindl, Franz Jakob, Markus Gosch, Clemens Becker, Simon von Stengel, Matthias Kohl, Mahdieh Shojaa

Journal: Nutrients 2022;13(12):4244

PMID: 34959796

Abstract

In contrast to postmenopausal women, evidence for a favorable effect of exercise on Bone Mineral Density (BMD) is still limited for men. This might be due to the paucity of studies, but also to the great variety of participants and study characteristics that may dilute study results. The aim of the present systematic review and meta-analysis was to evaluate the effect of exercise on BMD changes with rational eligibility criteria. A comprehensive search of six electronic databases up to 15 March 2021 was conducted. Briefly, controlled trials ≥6 months that determined changes in areal BMD in men >18 years old, with no apparent diseases or pharmacological therapy that relevantly affect bone metabolism, were included. BMD changes (standardized mean differences: SMD) of the lumbar spine (LS) and femoral neck (FN) were considered as outcomes. Twelve studies with 16 exercise and 12 control groups were identified. The pooled estimate of random-effect analysis was SMD = 0.38, 95%-CI: 0.14-0.61 and SMD = 0.25, 95%-CI: 0.00-0.49, for LS and FN, respectively. Heterogeneity between the trials was low-moderate. Funnel plots and rank and regression correlation tests indicate evidence for small study publication bias for LS but not FN-BMD. Subgroup analyses that focus on study length, type of exercise and methodologic quality revealed no significant difference between each of the three categories. In summary, we provided further evidence for a low but significant effect of exercise on BMD in men. However, we are currently unable to give even rough exercise recommendations for male cohorts.

Address: Institute of Medical Physics, Friedrich-Alexander University Erlangen-Nürnberg, 91052 Erlangen, Germany.; Department Population-Based Medicine, Institute of Health Science, University Hospital Tübingen, 72076 Tübingen, Germany.; Department of Medical and Life Sciences, University of Furtwangen, 78056 Villingen-Schwenningen, Germany.; Robert-Bosch-Krankenhaus, Geriatrie und Geriatrische Rehabilitation, 70376 Stuttgart, Germany.; Klinikum Nurnberg, Paracelsus Medizinische Privatuniversität, 90419 Nürnberg, Germany.; Bernhard Heine Zentrum für Bewegungsforschung, University of Würzburg, 97074 Würzburg, Germany.; Austrian Society for Bone and Mineral Research (ÖGKM), A-1090 Wien, Austria.; German Society for Orthopaedics and Trauma (DGOU), 10623 Berlin, Germany.; Deutsche Rheuma-Liga Bundesverband e.V., 53111 Bonn, Germany.; German Society for Physical and Rehabilitative Medicine (DGMPR), 01067 Dresden, Germany.; International Musculoskeletal Pain Society (IGOST), 88212 Ravensburg, Germany.; Deutscher Verband für Gesundheitssport und Sporttherapie e. V. (DVGS), 50354 Hürth, Germany.; European Geriatric Medicine Society (EuGMS), Institute for Biomedicine of Aging, FAU Erlangen-Nürnberg, 90419 Nürnberg, Germany.; Deutscher Verband für Physiotherapie (ZVK) e.V., 50679 Cologne, Germany.; Osteology Umbrella Association Germany (DVO), 67659 Kaiserslautern, Germany.; Institute of Radiology, FAU-Erlangen-Nürnberg and University Hospital Erlangen, 91054 Erlangen, Germany.
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