Resistance circuit training combined with hypoxia stimulates bone system of older adults: A randomized trial.

Alba Camacho-Cardenosa, Marta Camacho-Cardenosa, Ismael Martínez-Guardado, Alejo Leal, José María Villa Andrada, Rafael Timón

Journal: Experimental gerontology 2022;169():111983

PMID: 36243220

Abstract

PURPOSE

Aging leads to gradual irreversible decline in bone mass. As adherence to pharmacological treatment is poor, hypoxia combined with strength training has been suggested for therapeutic benefit for clinical populations. The present study investigated the effects of normobaric cyclic hypoxic exposure combined with resistance circuit training on bone of older adults.

METHODS

Healthy older adults (n = 50) were randomly assigned to a (1) control group (CON; n = 20), who were instructed to continue with their normal daily activities, (2) a group that performed resistance training in normoxia (RTN; n = 17) and (3) a group that performed resistance training in hypoxia (RTH; n = 13). During 24 weeks, RTH group performed resistance training with elastic bands under normobaric hypoxic conditions (16.1 % FiO2). A session of both exercise groups included nine exercises of several body areas with a structure of 3 sets × 12-15 repetitions per exercise, with a 1-minute rest between sets. Bone mineral density (g·cm-2) was measured using dual-energy X-ray absorptiometry. Bone turnover markers of formation (N-terminal propeptide of type I procollagen; PINP) and resorption (C-terminal telopeptide of type I collagen; bCTX) were analysed with enzyme-linked immunosorbent assay (ELISA) microplate reader.

RESULTS

Values of bCTX and bCTX/PINP significant decreased in RTN (bCTX: 47.79 %; p = 0.002; bCTX/PINP: 61.43 %; p = 0.007) and RTH (bCTX: 59.09 %; p = 0.001; bCTX/PINP: 62.61 %; p = 0.003) groups compared with CON group. Change in bone mineral density was not significantly different between groups. Based on clinically significant change, 23 % of the participants in the RTH group reached this value for femoral neck and trochanter bone mineral density (vs 0 % and 6 % of the RTN group, respectively).

CONCLUSIONS

24-Weeks of normobaric cyclic hypoxic exposure combined with resistance circuit training has potential to generate positive effects on bone in older adults.

TRIAL REGISTRATION NUMBER

NCT04281264 (date of registration: February 24, 2020).

Copyright © 2022 Elsevier Inc. All rights reserved.

Address: PROFITH (PROmoting FITness and Health through Physical Activity) Research Group, Sport and Health University Research Institute (iMUDS), Department of Physical Education and Sport, Faculty of Sport Sciences, University of Granada, 18007 Granada, Spain. Electronic address: [email protected].; Clinical Management Unit of Endocrinology and Nutrition - GC17. Maimónides Biomedical Research Institute of Cordoba (IMIBIC), Reina Sofía University Hospital, 14004, Córdoba, Spain. Electronic address: [email protected].; BRABE Group, Faculty of Life and Nature Sciences, University of Nebrija, 28248 Madrid, Spain. Electronic address: [email protected].; Medical Center Alejo Leal, 10001 Cáceres, Spain. Electronic address: [email protected].; Faculty of Nursing and Occupational Therapy, University of Extremadura, 10003 Cáceres, Spain. Electronic address: [email protected].; Faculty of Sport Sciences, University of Extremadura, 10003 Cáceres, Spain. Electronic address: [email protected].
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