Literature DB >> 26699911

GPR40, a free fatty acid receptor, differentially impacts osteoblast behavior depending on differentiation stage and environment.

Claire Philippe1,2,3, Fabien Wauquier1,2,3, Bernard Lyan4,2, Véronique Coxam1,2,3, Yohann Wittrant5,6,7,8.   

Abstract

GPR40 is a free fatty acid receptor that has been recently shown to impact bone remodeling. This receptor protects skeleton by inhibiting bone resorbing osteoclast differentiation. Consistent with GPR40 expression on bone forming cells, we assumed that this receptor may also influence osteoblast activity. To further investigate this hypothesis, biological effects of GW9508, a synthetic agonist for GPR40, was first tested on osteoblast differentiation parameters. Assays were performed in two different cell models: the MC3T3-E1 osteoblastic cell line and primary bone marrow cultures extracted from wild-type and GPR40 knock-out mice. Both models showed a dual role of GPR40 on osteoblasts. Although receptor stimulation induced early stimulation of differentiation marker expression, it finally led to inhibition of mineralization process during late differentiation stages. To further elucidate this discrepancy, mice were ovariectomized to induce bone loss and received GPR40 agonist by gavage. Data revealed a weak influence of GPR40 agonist on osteoblast markers expression. Nevertheless, a significant increase in OPG expression was observed upon GW9508 treatment that contribute to explain the GPR40-related osteoporosis prevention. To conclude, our results confirm the relevance of this new opportunity in the management of bone loss.

Entities:  

Keywords:  Cell differentiation; Fatty acids; GPR40; Nutrition; Osteoblast; Osteoporosis

Mesh:

Substances:

Year:  2015        PMID: 26699911     DOI: 10.1007/s11010-015-2626-5

Source DB:  PubMed          Journal:  Mol Cell Biochem        ISSN: 0300-8177            Impact factor:   3.396


  35 in total

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3.  Effects of non-collagenous proteins on the formation of apatite in calcium beta-glycerophosphate solutions.

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Review 4.  Novel functions for insulin in bone.

Authors:  Keertik Fulzele; Thomas L Clemens
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Review 5.  Type 2 diabetes and bone.

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6.  Bone marrow-derived stromal cells can express neuronal markers by DHA/GPR40 signaling.

Authors:  D B Kaplamadzhiev; H Hisha; Y Adachi; S Ikehara; A B Tonchev; N B Boneva; I V Pyko; M Kikuchi; M Nakaya; T Wakayama; S Iseki; T Yamashima
Journal:  Biosci Trends       Date:  2010-06       Impact factor: 2.400

7.  The free fatty acid receptor G protein-coupled receptor 40 (GPR40) protects from bone loss through inhibition of osteoclast differentiation.

Authors:  Fabien Wauquier; Claire Philippe; Laurent Léotoing; Sylvie Mercier; Marie-Jeanne Davicco; Patrice Lebecque; Jérôme Guicheux; Paul Pilet; Elisabeth Miot-Noirault; Vincent Poitout; Thierry Alquier; Véronique Coxam; Yohann Wittrant
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8.  Downregulation of osteoblast markers and induction of the glial fibrillary acidic protein by oncostatin M in osteosarcoma cells require PKCdelta and STAT3.

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Authors:  Y Wittrant; S Théoleyre; C Chipoy; M Padrines; F Blanchard; D Heymann; F Rédini
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10.  PAPSS2 promotes alkaline phosphates activity and mineralization of osteoblastic MC3T3-E1 cells by crosstalk and Smads signal pathways.

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2.  Activation of GPR40 Suppresses AGE-Induced Reduction of Type II Collagen and Aggrecan in Human SW1353 Chondrocytes.

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Review 5.  Physiologic and pathologic effects of dietary free fatty acids on cells of the joint.

Authors:  Natalia S Harasymowicz; Amanda Dicks; Chia-Lung Wu; Farshid Guilak
Journal:  Ann N Y Acad Sci       Date:  2019-01-15       Impact factor: 5.691

  5 in total

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