Literature DB >> 17224811

Effects of direct current electrical stimulation on gene expression of osteopromotive factors in a posterolateral spinal fusion model.

Douglas C Fredericks1, Joseph Smucker, Emily B Petersen, John A Bobst, Jean C Gan, Bruce J Simon, Paul Glazer.   

Abstract

STUDY
DESIGN: An in vivo model was used to determine levels of mRNA expression in response to direct current (DC) electrical stimulation in a rabbit posterolateral fusion model.
OBJECTIVES: This study tested the possibility that DC stimulation at the surgery site would increase expression of genes related to bone formation relative to expression in autograft alone. SUMMARY OF BACKGROUND DATA: DC electrical stimulation as an adjunct treatment in spinal surgery has shown increased fusion rates when compared with autograft alone, yet the biology of such treatment is not fully understood.
METHODS: Thirty New Zealand White rabbits were entered into the study. A posterolateral, intertransverse process fusion was performed bilaterally at L4-L5, with autogenous bone graft. An implantable DC stimulator was placed across the decorticated transverse processes before placement of autograft. Animals were killed at 3, 7, 14, 21, and 28 days. mRNA levels of BMP-2, 4, 6, 7, VEGF, FGF-2, TGF-beta, ALK-2, and ALK-3 were evaluated with real-time RT-PCR.
RESULTS: mRNA expression was significantly higher in the DC stimulated animals versus the control animals for several of the genes studied. In particular, levels of mRNA were elevated for BMP-2, BMP-6, and BMP-7.
CONCLUSIONS: This study shows for the first time that DC stimulation results in a sustained increase of multiple osteogenic genes, suggesting that the biologic mechanism for the DC-induced increase in the rate and extent of bone formation observed clinically may be mediated by the up-regulation of these osteoinductive factors.

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Year:  2007        PMID: 17224811     DOI: 10.1097/01.brs.0000251363.77027.49

Source DB:  PubMed          Journal:  Spine (Phila Pa 1976)        ISSN: 0362-2436            Impact factor:   3.468


  11 in total

1.  Vertebral growth modulation by electrical current in an animal model: potential treatment for scoliosis.

Authors:  George R Dodge; J Richard Bowen; Changhoon Jeong
Journal:  J Pediatr Orthop       Date:  2010-06       Impact factor: 2.324

2.  Evaluation of a novel silicate substituted hydroxyapatite bone graft substitute in a rabbit posterolateral fusion model.

Authors:  Douglas C Fredericks; Emily B Petersen; Nikhil Sahai; Katherine Gibson N Corley; Nicole DeVries; Nicole M Grosland; Joseph D Smucker
Journal:  Iowa Orthop J       Date:  2013

Review 3.  Electrical stimulation therapies for spinal fusions: current concepts.

Authors:  Jean C Gan; Paul A Glazer
Journal:  Eur Spine J       Date:  2006-04-08       Impact factor: 3.134

4.  The effect of capacitively coupled (CC) electrical stimulation on human disc nucleus pulposus cells and the relationship between CC and BMP-7.

Authors:  Zili Wang; William C Hutton; S Tim Yoon
Journal:  Eur Spine J       Date:  2016-02-18       Impact factor: 3.134

5.  Electrically conductive surface modifications of three-dimensional polypropylene fumarate scaffolds.

Authors:  M B Runge; M Dadsetan; J Baltrusaitis; M J Yaszemski
Journal:  J Biol Regul Homeost Agents       Date:  2011 Apr-Jun       Impact factor: 1.711

6.  Electrospun PLGA and β-TCP (Rebossis-85) in a Lapine Posterolateral Fusion Model.

Authors:  J Christopher Nepola; Emily B Petersen; Nicole DeVries-Watson; Nicole Grosland; Douglas C Fredericks
Journal:  Iowa Orthop J       Date:  2019

Review 7.  Factors influencing arthrodesis rates in a rabbit posterolateral spine model with iliac crest autograft.

Authors:  Jason H Ghodasra; Erika L Daley; Erin L Hsu; Wellington K Hsu
Journal:  Eur Spine J       Date:  2013-10-29       Impact factor: 3.134

8.  Combining electrical stimulation and tissue engineering to treat large bone defects in a rat model.

Authors:  Liudmila Leppik; Han Zhihua; Sahba Mobini; Vishnu Thottakkattumana Parameswaran; Maria Eischen-Loges; Andrei Slavici; Judith Helbing; Lukas Pindur; Karla M C Oliveira; Mit B Bhavsar; Lukasz Hudak; Dirk Henrich; John H Barker
Journal:  Sci Rep       Date:  2018-04-20       Impact factor: 4.379

9.  Direct electrical stimulation enhances osteogenesis by inducing Bmp2 and Spp1 expressions from macrophages and preosteoblasts.

Authors:  Kasama Srirussamee; Sahba Mobini; Nigel J Cassidy; Sarah H Cartmell
Journal:  Biotechnol Bioeng       Date:  2019-09-23       Impact factor: 4.530

10.  Changes in the extracellular microenvironment and osteogenic responses of mesenchymal stem/stromal cells induced by in vitro direct electrical stimulation.

Authors:  Kasama Srirussamee; Ruikang Xue; Sahba Mobini; Nigel J Cassidy; Sarah H Cartmell
Journal:  J Tissue Eng       Date:  2021-02-16       Impact factor: 7.813

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