Literature DB >> 22648000

Treatment of hydrogen molecule abates oxidative stress and alleviates bone loss induced by modeled microgravity in rats.

Y Sun1, F Shuang, D M Chen, R B Zhou.   

Abstract

UNLABELLED: Treatment with molecular hydrogen alleviates microgravity-induced bone loss through abating oxidative stress, restoring osteoblastic differentiation, and suppressing osteoclast differentiation and osteoclastogenesis.
INTRODUCTION: Recently, it has been suggested that hydrogen gas exerts a therapeutic antioxidant activity by selectively reducing cytotoxic reactive oxygen species (ROS). The aim of the present study was to elucidate whether treatment with molecular hydrogen alleviated bone loss induced by modeled microgravity in rats.
METHODS: Hindlimb suspension (HLS) and rotary wall vessel bioreactor were used to model microgravity in vivo and in vitro, respectively. Sprague-Dawley rats were exposed to HLS for 6 weeks to induced bone loss and simultaneously administrated with hydrogen water (HW). Then, we investigated the effects of incubation with hydrogen-rich medium (HRM) on MC3T3-E1 and RAW264.7 cells exposed to modeled microgravity.
RESULTS: Treatment with HW alleviated HLS-induced reduction of bone mineral density, ultimate load, stiffness, and energy in femur and lumbar vertebra. Treatment with HW alleviated HLS-induced augmentation of malondialdehyde content and peroxynitrite content and reduction of total sulfhydryl content in femur and lumbar vertebra. In cultured MC3T3-E1 cells, incubation with HRM inhibited modeled microgravity-induced ROS formation, reduction of osteoblastic differentiation, increase of ratio of receptor activator of nuclear factor kappa B ligand to osteoprotegerin, inducible nitric oxide synthetase upregulation, and Erk1/2 phosphorylation. In cultured RAW264.7, incubation with HRM aggravated modeled microgravity-induced ROS formation, osteoclastic differentiation, and osteoclastogenesis.
CONCLUSION: Treatment with molecular hydrogen alleviates microgravity-induced bone loss in rats. Molecular hydrogen could thus be envisaged as a nutritional countermeasure for spaceflight but remains to be tested in humans.

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Year:  2012        PMID: 22648000     DOI: 10.1007/s00198-012-2028-4

Source DB:  PubMed          Journal:  Osteoporos Int        ISSN: 0937-941X            Impact factor:   4.507


  43 in total

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5.  Simulated microgravity using the Random Positioning Machine inhibits differentiation and alters gene expression profiles of 2T3 preosteoblasts.

Authors:  Steven J Pardo; Mamta J Patel; Michelle C Sykes; Manu O Platt; Nolan L Boyd; George P Sorescu; Min Xu; Jack J W A van Loon; May D Wang; Hanjoong Jo
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6.  Effect of clinostat rotation on differentiation of embryonic bone in vitro.

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  22 in total

1.  Effects of Hindlimb Unweighting on MBP and GDNF Expression and Morphology in Rat Dorsal Root Ganglia Neurons.

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2.  Rac1 GTPase silencing counteracts microgravity-induced effects on osteoblastic cells.

Authors:  Alain Guignandon; Céline Faure; Thibaut Neutelings; Aline Rattner; Pierre Mineur; Marie-Thérèse Linossier; Norbert Laroche; Charles Lambert; Christophe Deroanne; Betty Nusgens; René Demets; Alain Colige; Laurence Vico
Journal:  FASEB J       Date:  2014-06-05       Impact factor: 5.191

3.  Attenuation of hind-limb suspension-induced bone loss by curcumin is associated with reduced oxidative stress and increased vitamin D receptor expression.

Authors:  M Xin; Y Yang; D Zhang; J Wang; S Chen; D Zhou
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4.  Hydrogen-rich saline prevents bone loss in diabetic rats induced by streptozotocin.

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Authors:  Dong-Zhu Li; Qing-Xiang Zhang; Xiao-Xian Dong; Huai-Dong Li; Xin Ma
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6.  Treatment with hydrogen molecule alleviates TNFα-induced cell injury in osteoblast.

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7.  Hydrogen water consumption prevents osteopenia in ovariectomized rats.

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8.  Treatment with resveratrol attenuates sublesional bone loss in spinal cord-injured rats.

Authors:  Hua-Dong Wang; Ya-Min Shi; Li Li; Ji-Dong Guo; Yu-Peng Zhang; Shu-Xun Hou
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9.  Monochromatic computed microtomography using laboratory and synchrotron sources and X-ray fluorescence analysis for comprehensive analysis of structural changes in bones.

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Journal:  J Appl Crystallogr       Date:  2015-05-31       Impact factor: 3.304

10.  Physical exercise and intermittent administration of lactulose may improve autism symptoms through hydrogen production.

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