Literature DB >> 20582583

Extracellular matrix produced by osteoblasts cultured under low-magnitude, high-frequency stimulation is favourable to osteogenic differentiation of mesenchymal stem cells.

Virginie Dumas1, Benjamin Ducharne, Anthony Perrier, Carole Fournier, Alain Guignandon, Mireille Thomas, Sylvie Peyroche, Daniel Guyomar, Laurence Vico, Aline Rattner.   

Abstract

The effects of low-magnitude, high-frequency (LMHF) mechanical stimulation on osteoblastic cells are poorly understood. We have developed a system that generates very small (15-40 με), high-frequency (400 Hz, sine) deformations on osteoblast cultures (MC3T3-E1). We investigated the effects of these LMHF stimulations mainly on extracellular matrix (ECM) synthesis. The functional properties of this ECM after decellularization were evaluated on C3H10T1/2 mesenchymal stem cells (MSCs). LMHF stimulations were applied 20 min once daily for 1, 3, or 7 days in MC3T3-E1 culture (1, 3, or 7 dLMHF). Cell number and viability were not affected after 3 or 7 dLMHF. Osteoblast response to LMHF was assessed by an increase in nitric oxide secretion, alteration of the cytoskeleton, and focal contacts. mRNA expression for fibronectin, osteopontin, bone sialoprotein, and type I collagen in LMHF cultures were 1.8-, 1.6-, 1.5-, and 1.7-fold higher than controls, respectively (P < 0.05). In terms of protein, osteopontin levels were increased after 3 dLMHF and ECM organization was altered as shown by fibronectin topology after 7 dLMHF. After decellularization, 7 dLMHF-ECM or control ECM was reseeded with MSCs. Seven dLMHF-ECM improved early events such as cell attachment (2 h) and focal contact adhesion (6 h) and, later (16 h), modified MSC morphological parameters. After 5 days in multipotential medium, gene-expression changes indicated that 7 dLMHF-ECM promoted the expression of osteoblast markers at the expense of adipogenic marker. LMHF stimulations of osteoblasts are therefore efficient and sufficient to generate osteogenic matrix.

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Year:  2010        PMID: 20582583     DOI: 10.1007/s00223-010-9394-8

Source DB:  PubMed          Journal:  Calcif Tissue Int        ISSN: 0171-967X            Impact factor:   4.333


  16 in total

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6.  Revealing cytokine-induced changes in the extracellular matrix with secondary ion mass spectrometry.

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7.  The potential benefits and inherent risks of vibration as a non-drug therapy for the prevention and treatment of osteoporosis.

Authors:  M Ete Chan; Gunes Uzer; Clinton T Rubin
Journal:  Curr Osteoporos Rep       Date:  2013-03       Impact factor: 5.096

8.  Gene expression responses to mechanical stimulation of mesenchymal stem cells seeded on calcium phosphate cement.

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Review 9.  The effects of locomotion on bone marrow mesenchymal stem cell fate: insight into mechanical regulation and bone formation.

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Journal:  Cell Biosci       Date:  2021-05-17       Impact factor: 7.133

Review 10.  Possible Mechanisms for the Effects of Sound Vibration on Human Health.

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Journal:  Healthcare (Basel)       Date:  2021-05-18
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