Literature DB >> 25035826

Osteoporosis and obesity: Role of Wnt pathway in human and murine models.

Graziana Colaianni1, Giacomina Brunetti1, Maria Felicia Faienza1, Silvia Colucci1, Maria Grano1.   

Abstract

Studies concerning the pathophysiological connection between obesity and osteoporosis are currently an intriguing area of research. Although the onset of these two diseases can occur in a different way, recent studies have shown that obesity and osteoporosis share common genetic and environmental factors. Despite being a risk factor for health, obesity has traditionally been considered positive to bone because of beneficial effect of mechanical loading, exerted by high body mass, on bone formation. However, contrasting studies have not achieved a clear consensus, suggesting instead that excessive fat mass derived from obesity condition may not protect against osteoporosis or, even worse, could be rather detrimental to bone. On the other hand, it is hitherto better established that, since adipocytes and osteoblasts are derived from a common mesenchymal stem cell precursor, molecules that lead to osteoblastogenesis inhibit adipogenesis and vice versa. Here we will discuss the role of the key molecules regulating adipocytes and osteoblasts differentiation, which are peroxisome proliferators activated receptor-γ and Wnts, respectively. In particular, we will focus on the role of both canonical and non-canonical Wnt signalling, involved in mesenchymal cell fate regulation. Moreover, at present there are no experimental data that relate any influence of the Wnt inhibitor Sclerostin to adipogenesis, although it is well known its role on bone metabolism. In addition, the most common pathological condition in which there is a simultaneous increase of adiposity and decrease of bone mass is menopause. Given that postmenopausal women have high Sclerostin level inversely associated with circulating estradiol level and since the sex hormone replacement therapy has proved to be effective in attenuating bone loss and reversing menopause-related obesity, we hypothesize that Sclerostin contribution in adipogenesis could be an active focus of research in the coming years.

Entities:  

Keywords:  Bone; Dickkopf; Fat; Obesity; Osteoporosis; Peroxisome proliferators activated receptor-γ; Sclerostin; Wnt

Year:  2014        PMID: 25035826      PMCID: PMC4095016          DOI: 10.5312/wjo.v5.i3.242

Source DB:  PubMed          Journal:  World J Orthop        ISSN: 2218-5836


  39 in total

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Journal:  Nat Clin Pract Rheumatol       Date:  2006-01

6.  Serum sclerostin levels negatively correlate with parathyroid hormone levels and free estrogen index in postmenopausal women.

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Journal:  J Bone Miner Res       Date:  2008-06       Impact factor: 6.741

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  22 in total

Review 1.  Implications of exercise-induced adipo-myokines in bone metabolism.

Authors:  Giovanni Lombardi; Fabian Sanchis-Gomar; Silvia Perego; Veronica Sansoni; Giuseppe Banfi
Journal:  Endocrine       Date:  2015-12-30       Impact factor: 3.633

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Authors:  Emanuela A Greco; Andrea Lenzi; Silvia Migliaccio
Journal:  Ther Adv Endocrinol Metab       Date:  2015-12       Impact factor: 3.565

Review 3.  Dynamic interplay between bone and multiple myeloma: emerging roles of the osteoblast.

Authors:  Michaela R Reagan; Lucy Liaw; Clifford J Rosen; Irene M Ghobrial
Journal:  Bone       Date:  2015-02-26       Impact factor: 4.398

Review 4.  'Adipaging': ageing and obesity share biological hallmarks related to a dysfunctional adipose tissue.

Authors:  Laura M Pérez; Helios Pareja-Galeano; Fabián Sanchis-Gomar; Enzo Emanuele; Alejandro Lucia; Beatriz G Gálvez
Journal:  J Physiol       Date:  2016-05-10       Impact factor: 5.182

5.  Apolipoprotein A-1 regulates osteoblast and lipoblast precursor cells in mice.

Authors:  Harry C Blair; Elena Kalyvioti; Nicholaos I Papachristou; Irina L Tourkova; Spryros A Syggelos; Despina Deligianni; Malvina G Orkoula; Christos G Kontoyannis; Eleni A Karavia; Kyriakos E Kypreos; Dionysios J Papachristou
Journal:  Lab Invest       Date:  2016-04-18       Impact factor: 5.662

6.  Tanshinol alleviates impaired bone formation by inhibiting adipogenesis via KLF15/PPARγ2 signaling in GIO rats.

Authors:  Ya-Jun Yang; Zhu Zhu; Dong-Tao Wang; Xin-le Zhang; Yu-Yu Liu; Wen-Xiu Lai; Yu-Lin Mo; Jin Li; Yan-Long Liang; Zhuo-Qing Hu; Yong-Jie Yu; Liao Cui
Journal:  Acta Pharmacol Sin       Date:  2018-01-11       Impact factor: 6.150

7.  Adipokines may mediate the relationship between resting metabolic rates and bone mineral densities in obese women.

Authors:  S Moradi; K Mirzaei; A A Abdurahman; S A Keshavarz
Journal:  Osteoporos Int       Date:  2017-01-23       Impact factor: 4.507

8.  Discordance between fat mass index and body mass index is associated with reduced bone mineral density in women but not in men: the Busselton Healthy Ageing Study.

Authors:  K Zhu; M Hunter; A James; E M Lim; B R Cooke; J P Walsh
Journal:  Osteoporos Int       Date:  2016-07-29       Impact factor: 4.507

Review 9.  Adipose, Bone, and Myeloma: Contributions from the Microenvironment.

Authors:  Michelle M McDonald; Heather Fairfield; Carolyne Falank; Michaela R Reagan
Journal:  Calcif Tissue Int       Date:  2016-06-24       Impact factor: 4.333

10.  Deregulation of arginase induces bone complications in high-fat/high-sucrose diet diabetic mouse model.

Authors:  Anil Bhatta; Rajnikumar Sangani; Ravindra Kolhe; Haroldo A Toque; Michael Cain; Abby Wong; Nicole Howie; Rahul Shinde; Mohammed Elsalanty; Lin Yao; Norman Chutkan; Monty Hunter; Ruth B Caldwell; Carlos Isales; R William Caldwell; Sadanand Fulzele
Journal:  Mol Cell Endocrinol       Date:  2015-12-17       Impact factor: 4.102

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