Literature DB >> 17706764

Ultrasound effect on osteoblast precursor cells in trabecular calcium phosphate scaffolds.

Mark R Appleford1, Sunho Oh, Judith A Cole, Jiri Protivínský, Joo L Ong.   

Abstract

This study investigated the in vitro effect of low-intensity pulsed ultrasound (LIPUS) on human embryonic palatal mesenchyme cells (HEPM, CRL-1486, ATCC, Manassas, VA), an osteoblast precursor cell line, during early adhesion to calcium phosphate scaffolds. Hydroxyapatite (HA) and beta-tricalcium phosphate (TCP) ceramic scaffolds were produced by a template coating method. Phospho-specific antibody cell-based ELISA (PACE) technique was utilized on stress activation proteins, including the extracellular signal-regulated kinase (ERK1/2), P38, c-Jun N-terminal kinase (JNK) and the anti-apoptosis mediator protein kinase B (PKB/AKT). Cell-based ELISAs were also performed on the membrane anchoring protein vinculin and alpha6beta4 integrin. LIPUS stimulated activation of PERK 1/2, PJNK, PP38 and vinculin in traditional two-dimensional (2-D) culture. Calcium release from the scaffolds was partially involved in the activation of PERK 1/2 when cell response was compared between culture on 2-D surfaces and three-dimensional (3-D) HA and TCP scaffolds. Effects of calcium extracted media from scaffolds alone could not account for the full activation of PJNK, PP38, PAKT, vinculin and alpha6beta4 integrin. LIPUS stimulation further increased PERK activity on TCP scaffolds corresponding with an increase in both vinculin and alpha6beta4 integrin levels. It was concluded from this study that LIPUS treatment can significantly affect stress signaling mediators and adhesion proteins in osteoblast precursor cells during the early cell-attachment phase to trabecular patterned scaffolds.

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Year:  2007        PMID: 17706764      PMCID: PMC2001312          DOI: 10.1016/j.biomaterials.2007.06.010

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  33 in total

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8.  In vivo evaluation of a novel porous hydroxyapatite to sustain osteogenesis of transplanted bone marrow-derived osteoblastic cells.

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9.  An in vivo model for investigations of mechanical signal transduction in trabecular bone.

Authors:  M R Moalli; N J Caldwell; P V Patil; S A Goldstein
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10.  Effects of trabecular calcium phosphate scaffolds on stress signaling in osteoblast precursor cells.

Authors:  Mark R Appleford; Sunho Oh; Judith A Cole; David L Carnes; Myunghyun Lee; Joel D Bumgardner; Warren O Haggard; Joo L Ong
Journal:  Biomaterials       Date:  2007-03-09       Impact factor: 12.479

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