Thirty days of spaceflight does not alter murine calvariae structure despite increased Sost expression

Previously our laboratory documented increases in calvaria bone volume and thickness in mice exposed to 15 days of spaceflight aboard the NASA Shuttle mission STS-131. However, the tissues were not processed for gene expression studies to determine what bone formation pathways might contribute to th...

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Veröffentlicht in:Bone Reports 2017-12, Vol.7 (C), p.57-62
Hauptverfasser: Macaulay, Timothy R, Siamwala, Jamila H, Hargens, Alan R, Macias, Brandon R
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Sprache:eng
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Zusammenfassung:Previously our laboratory documented increases in calvaria bone volume and thickness in mice exposed to 15 days of spaceflight aboard the NASA Shuttle mission STS-131. However, the tissues were not processed for gene expression studies to determine what bone formation pathways might contribute to these structural adaptations. Therefore, this study was designed to investigate both the structural and molecular changes in mice calvariae after a longer duration of spaceflight. The primary purpose was to determine the calvaria bone volume and thickness of mice exposed to 30 days of spaceflight using micro-computed tomography for comparison with our previous findings. Because sclerostin, the secreted glycoprotein of the gene, is a potent inhibitor of bone formation, our second aim was to quantify mRNA expression using quantitative PCR. Calvariae were obtained from six mice aboard the Russian 30-day Bion-M1 biosatellite and seven ground controls. In mice exposed to 30 days of spaceflight, calvaria bone structure was not significantly different from that of their controls (bone volume was about 5% lower in spaceflight mice, p = 0.534). However, mRNA expression was 16-fold (16.4 ± 0.4, p 
ISSN:2352-1872
2352-1872
DOI:10.1016/j.bonr.2017.08.004