Microgravity and Musculoskeletal Health: What Strategies Should Be Used for a Great Challenge?

Author:

Bonanni Roberto1ORCID,Cariati Ida2ORCID,Marini Mario2,Tarantino Umberto134ORCID,Tancredi Virginia24ORCID

Affiliation:

1. Department of Clinical Sciences and Translational Medicine, “Tor Vergata” University of Rome, Via Montpellier 1, 00133 Rome, Italy

2. Department of Systems Medicine, “Tor Vergata” University of Rome, Via Montpellier 1, 00133 Rome, Italy

3. Department of Orthopaedics and Traumatology, “Policlinico Tor Vergata” Foundation, Viale Oxford 81, 00133 Rome, Italy

4. Centre of Space Bio-Medicine, “Tor Vergata” University of Rome, Via Montpellier 1, 00133 Rome, Italy

Abstract

Space colonization represents the most insidious challenge for mankind, as numerous obstacles affect the success of space missions. Specifically, the absence of gravitational forces leads to systemic physiological alterations, with particular emphasis on the musculoskeletal system. Indeed, astronauts exposed to spaceflight are known to report a significant impairment of bone microarchitecture and muscle mass, conditions clinically defined as osteoporosis and sarcopenia. In this context, space medicine assumes a crucial position, as the development of strategies to prevent and/or counteract weightlessness-induced alterations appears to be necessary. Furthermore, the opportunity to study the biological effects induced by weightlessness could provide valuable information regarding adaptations to spaceflight and suggest potential treatments that can preserve musculoskeletal health under microgravity conditions. Noteworthy, improving knowledge about the latest scientific findings in this field of research is crucial, as is thoroughly investigating the mechanisms underlying biological adaptations to microgravity and searching for innovative solutions to counter spaceflight-induced damage. Therefore, this narrative study review, performed using the MEDLINE and Google Scholar databases, aims to summarize the most recent evidence regarding the effects of real and simulated microgravity on the musculoskeletal system and to discuss the effectiveness of the main defence strategies used in both real and experimental settings.

Publisher

MDPI AG

Subject

Paleontology,Space and Planetary Science,General Biochemistry, Genetics and Molecular Biology,Ecology, Evolution, Behavior and Systematics

Reference151 articles.

1. Adaptation to microgravity, deconditioning, and countermeasures;Tanaka;J. Physiol. Sci.,2017

2. Human health during space travel: An overview;Kandarpa;Neurol. India,2019

3. Stem Cell Culture Under Simulated Microgravity;Sarigil;Adv. Exp. Med. Biol.,2020

4. Physiological adaptations to weightlessness: Effects on exercise and work performance;Convertino;Exerc. Sport Sci. Rev.,1990

5. Gravity-dependent phenomena at the scale of the single cell;Todd;ASGSB Bull. Publ. Am. Soc. Gravit. Sp. Biol.,1989

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