Literature DB >> 15099631

Recruitment of mesenchymal stem cells and expression of TGF-beta 1 and VEGF in the early stage of shock wave-promoted bone regeneration of segmental defect in rats.

Yeung-Jen Chen1, Tilmann Wurtz, Ching-Jen Wang, Yur-Ren Kuo, Kuender D Yang, Hue-Chen Huang, Feng-Sheng Wang.   

Abstract

Extracorporeal shock wave (ESW) treatment has recently been established as a method to enhance bone repair. Here, we reported that ESW-promoted healing of segmental defect via stimulation of mesenchymal stem cell recruitment and differentiation into bone forming cells. Rats with a segmental femoral defect were exposed to a single ESW treatment (0.16 mJ/mm(2), 1 Hz, 500 impulses). Cell morphology and histological changes in the defect region were assessed 3, 7, 14, and 28 days post-treatment. Presence of mesenchymal stem cell was assayed by immuno-staining for RP59, a recently discovered marker, and also production of TGF-beta 1 and VEGF was monitored. ESW treatment increased total cell density and the proportion of RP59 positive cells in the defect region. High numbers of round- and cuboidal-shaped cells strongly expressing RP59 were initially found. Later, the predominant cell type was spindle-shaped fibroblastic cells, subsequently, aggregates of osteogenic and chondrogenic cells were observed. Histological observation suggested that bone marrow stem cells were progressively differentiated into osteoblasts and chondrocytes. RP59 staining was initially intense and decreased with the appearance of expression depended on the differentiation states of osteogenic and chondrogenic cells during the regeneration phase. Mature chondrocytes and osteoblasts exhibited only slight RP59 immuno-reactivity. Expression of TGF-beta 1 and VEGF-A mRNA in the defect tissues was also significantly increased (P<0.05) after ESW treatment as determined by RT-PCR. Intensive TGF-beta 1 immuno-reactivity was induced immediately, whereas a lag period was observed for VEGF-A. Chondrocytes and osteoblasts at the junction of ossified cartilage clearly exhibited VEGF-A expression. Our findings suggest that recruitment of meseoblasts at the junction of ossified cartilage clearly exhibited mesenchymal stem cells is a critical step in bone reparation that is enhanced by ESW treatment. TGF-beta 1 and VEGF-A are proposed to play a chemotactic and mitogenic role in recruitment and differentiation of mesenchymal stem cells.

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Year:  2004        PMID: 15099631     DOI: 10.1016/j.orthres.2003.10.005

Source DB:  PubMed          Journal:  J Orthop Res        ISSN: 0736-0266            Impact factor:   3.494


  49 in total

1.  Study of vascular injuries using endothelial denudation model and the therapeutic application of shock wave: a review.

Authors:  Cheuk-Kwan Sun; Pei-Lin Shao; Ching-Jen Wang; Hon-Kan Yip
Journal:  Am J Transl Res       Date:  2011-04-08       Impact factor: 4.060

Review 2.  Controlled release strategies for bone, cartilage, and osteochondral engineering--Part I: recapitulation of native tissue healing and variables for the design of delivery systems.

Authors:  Vítor E Santo; Manuela E Gomes; João F Mano; Rui L Reis
Journal:  Tissue Eng Part B Rev       Date:  2013-02-19       Impact factor: 6.389

3.  Extracorporeal shock waves in articular cartilage defects in the rats.

Authors:  Bekir Murat Cinar; Esra Circi; Gulnur Guven; Ismail Cengiz Tuncay; Murat Ali Hersekli; Alihan Derincek
Journal:  Musculoskelet Surg       Date:  2011-06-14

4.  Endogenous Stem Cells Were Recruited by Defocused Low-Energy Shock Wave in Treating Diabetic Bladder Dysfunction.

Authors:  Yang Jin; Lina Xu; Yong Zhao; Muwen Wang; Xunbo Jin; Haiyang Zhang
Journal:  Stem Cell Rev Rep       Date:  2017-04       Impact factor: 5.739

5.  The effects of low-level diode laser irradiation on differentiation, antigenic profile, and phagocytic capacity of osteoblast-like cells (MG-63).

Authors:  Rosa Medina-Huertas; Francisco Javier Manzano-Moreno; Elvira De Luna-Bertos; Javier Ramos-Torrecillas; Olga García-Martínez; Concepción Ruiz
Journal:  Lasers Med Sci       Date:  2014-03-12       Impact factor: 3.161

6.  Shock wave treatment enhances cell proliferation and improves wound healing by ATP release-coupled extracellular signal-regulated kinase (ERK) activation.

Authors:  Anna M Weihs; Christiane Fuchs; Andreas H Teuschl; Joachim Hartinger; Paul Slezak; Rainer Mittermayr; Heinz Redl; Wolfgang G Junger; Harald H Sitte; Dominik Rünzler
Journal:  J Biol Chem       Date:  2014-08-12       Impact factor: 5.157

7.  Slightly focused high-energy shockwave therapy: a potential adjuvant treatment for osteoporotic fracture.

Authors:  Xiao-Feng Chen; Hai-Ming Huang; Xiao-Lin Li; Ge-Jun Liu; Hui Zhang
Journal:  Int J Clin Exp Med       Date:  2015-04-15

8.  Effects of low-energy shockwave therapy on the erectile function and tissue of a diabetic rat model.

Authors:  Xuefeng Qiu; Guiting Lin; Zhongcheng Xin; Ludovic Ferretti; Haiyang Zhang; Tom F Lue; Ching-Shwun Lin
Journal:  J Sex Med       Date:  2012-12-17       Impact factor: 3.802

9.  BMP9 signaling in stem cell differentiation and osteogenesis.

Authors:  Joseph D Lamplot; Jiaqiang Qin; Guoxin Nan; Jinhua Wang; Xing Liu; Liangjun Yin; Justin Tomal; Ruidong Li; Wei Shui; Hongyu Zhang; Stephanie H Kim; Wenwen Zhang; Jiye Zhang; Yuhan Kong; Sahitya Denduluri; Mary Rose Rogers; Abdullah Pratt; Rex C Haydon; Hue H Luu; Jovito Angeles; Lewis L Shi; Tong-Chuan He
Journal:  Am J Stem Cells       Date:  2013-03-08

Review 10.  Rehabilitation and return-to-sports activity after debridement and bone marrow stimulation of osteochondral talar defects.

Authors:  Inge C M van Eekeren; Mikel L Reilingh; C Niek van Dijk
Journal:  Sports Med       Date:  2012-10-01       Impact factor: 11.136

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