Neohesperidin suppresses osteoclast differentiation, bone resorption and ovariectomised-induced osteoporosis in mice

Publication Overview
TitleNeohesperidin suppresses osteoclast differentiation, bone resorption and ovariectomised-induced osteoporosis in mice
AuthorsTan Z, Cheng J, Liu Q, Zhou L, Wang T, Lin X, Yuan J, Quinn JM, Tickner J, Qin A, Zhao J, Xu J
TypeJournal Article
Journal NameMolecular and cellular endocrinology
Year2016
CitationTan Z, Cheng J, Liu Q, Zhou L, Wang T, Lin X, Yuan J, Quinn JM, Tickner J, Qin A, Zhao J, Xu J. Neohesperidin suppresses osteoclast differentiation, bone resorption and ovariectomised-induced osteoporosis in mice. Molecular and cellular endocrinology. 2016 Sep 21.

Abstract

Excessive bone resorption by osteoclasts plays an important role in osteoporosis. Bone loss occurs in ovariectomised (OVX) mice in a similar manner to that in humans, so this model is suitable for evaluating potential new therapies for osteoporosis. Neohesperidin (NE) is a flavonoid compound isolated from citrus fruits. Its role in bone metabolism is unknown. In this study we found that neohesperidin inhibits osteoclast differentiation, bone resorption and the expression of osteoclast marker genes, tartrate-resistant acid phosphatase and cathepsin K. In addition, neohesperidin inhibited receptor activator of NF-kappaB ligand (RANKL)-induced activation of NF-κB, and the degradation of inhibitor of kappa B-alpha (IκBα). Furthermore, neohesperidin inhibited RANKL induction of nuclear factor of activated T-cells (NFAT) and calcium oscillations. In vivo treatment of ovariectomised mice with neohesperidin protected against bone loss in mice. The results suggest neohesperidin has anti-osteoclastic effects in vitro and in vivo and possesses therapeutic potential as a natural anti-catabolic treatment in osteoporosis.

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Ov0419Ov0419genetic_marker
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Additional details for this publication include:
Property NameValue
Publication ModelPrint-Electronic
ISSN1872-8057
eISSN1872-8057
Publication Date2016 Sep 21
Journal AbbreviationMol. Cell. Endocrinol.
Elocation10.1016/j.mce.2016.09.026
CopyrightCopyright © 2016. Published by Elsevier Ireland Ltd.
LanguageEnglish
Language AbbrENG
Publication TypeJournal Article