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Effects of spaceflight on the muscles of the murine shoulder
Author(s) -
Shen Hua,
Lim Chanteak,
Schwartz Andrea G.,
AndreevAndrievskiy Alexander,
Deymier Alix C.,
Thomopoulos Stavros
Publication year - 2017
Publication title -
the faseb journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.709
H-Index - 277
eISSN - 1530-6860
pISSN - 0892-6638
DOI - 10.1096/fj.201700320r
Subject(s) - spaceflight , weightlessness , anatomy , medicine , chemistry , physics , astronomy
Mechanical loading is necessary for the development and maintenance of the musculoskeletal system. Removal of loading via microgravity, paralysis, or bed rest leads to rapid loss of muscle mass and function; however, the molecular mechanisms that lead to these changes are largely unknown, particularly for the spaceflight (SF) microgravity environment. Furthermore, few studies have explored these effects on the shoulder, a dynamically stabilized joint with a large range of motion; therefore, we examined the effects of microgravity on mouse shoulder muscles for the 15‐d Space Transportation System (STS)‐131, 13‐d STS‐135, and 30‐d Bion‐M1 missions. Mice from STS missions were euthanized within 4 h after landing, whereas mice from the Bion‐M1 mission were euthanized within 14 h after landing. The motion‐generating deltoid muscle was more sensitive to microgravity than the joint‐stabilizing rotator cuff muscles. Mice from the STS‐131 mission exhibited reduced myogenic ( My /5 and ‐ 6 ) and adipogenic ( Pparg , Cebpa , and Lep ) gene expression, whereas either no change or an increased expression of these genes was observed in mice from the Bion‐M1 mission. In summary, muscle responses to microgravity were muscle‐type specific, short‐duration SF caused dramatic molecular changes to shoulder muscles and responses to reloading upon landing were rapid.—Shen, H., Lim, C., Schwartz, A. G., Andreev‐Andrievskiy, A., Deymier, A. C., Thomopoulos, S. Effects of spaceflight on the muscles of the murine shoulder. FASEB J. 31, 5466–5477 (2017). www.fasebj.org