Literature DB >> 21136191

Mesenchymal stem cells require integrin β1 for directed migration induced by osteopontin in vitro.

Chengyu Zou1, Guanbin Song, Qing Luo, Lin Yuan, Li Yang.   

Abstract

Mesenchymal stem cells (MSCs) are characterized by their ability of self-renewal paired with the capacity to differentiate into multiple mesenchymal cell lineages. Numerous studies have reported beneficial effects of MSCs in tissue repair and regeneration. After in vivo administration, MSCs home to and engraft to injured tissues. However, the molecular mechanisms are not clear. Osteopontin (OPN) has been found to be elevated in response to injury and inflammation and its role on cell mobilization has been studied. Therefore, the facts imply that OPN may contribute to the recruitment of MSCs to the sites of injury. In this study, using transwell assay, we found that rat bone marrow-derived mesenchymal stem cells (rMSCs) migrated towards OPN in a concentration-dependent manner. To further examine the involved molecular mechanisms for OPN-induced rMSCs migration, RT-PCR, and Western blot were used to detect the expressions of integrin β1 and CD44v6, the two receptors of OPN. OPN promoted integrin β1 mRNA and protein expression while CD44v6 mRNA level was not altered. Blockade of integrin β1 also inhibited OPN-induced rMSCs migration, indicating the possible involvement of integrin β1 in OPN-induced migration in rMSCs. Our data have shown for the first time that OPN increases integrin β1 expression in rMSCs and promotes rMSCs migration through the ligation to integrin β1.

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Year:  2010        PMID: 21136191     DOI: 10.1007/s11626-010-9377-0

Source DB:  PubMed          Journal:  In Vitro Cell Dev Biol Anim        ISSN: 1071-2690            Impact factor:   2.416


  32 in total

1.  Marrow stromal cells form guiding strands in the injured spinal cord and promote recovery.

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Review 2.  beta 1 integrin function in vivo: adhesion, migration and more.

Authors:  C Brakebusch; R Fässler
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3.  CD44 variants but not CD44s cooperate with beta1-containing integrins to permit cells to bind to osteopontin independently of arginine-glycine-aspartic acid, thereby stimulating cell motility and chemotaxis.

Authors:  Y U Katagiri; J Sleeman; H Fujii; P Herrlich; H Hotta; K Tanaka; S Chikuma; H Yagita; K Okumura; M Murakami; I Saiki; A F Chambers; T Uede
Journal:  Cancer Res       Date:  1999-01-01       Impact factor: 12.701

4.  Involvement of beta1-integrin up-regulation in basic fibroblast growth factor- and epidermal growth factor-induced proliferation of mouse neuroepithelial cells.

Authors:  Yusuke Suzuki; Makoto Yanagisawa; Hirokazu Yagi; Yoshihiko Nakatani; Robert K Yu
Journal:  J Biol Chem       Date:  2010-04-06       Impact factor: 5.157

5.  Immunohistochemical study of osteopontin in the spinal cords of rats with clip compression injury.

Authors:  Changjong Moon; Seungdam Heo; Meejung Ahn; Heechul Kim; Myungseung Shin; Ki Bum Sim; Hyung Min Kim; Taekyun Shin
Journal:  J Vet Med Sci       Date:  2004-10       Impact factor: 1.267

6.  Inhibition of osteopontin suppresses in vitro and in vivo angiogenesis in endometrial cancer.

Authors:  Xue-lian Du; Tao Jiang; Xiu-gui Sheng; Rong Gao; Qing-shui Li
Journal:  Gynecol Oncol       Date:  2009-09-23       Impact factor: 5.482

7.  High expression of osteopontin and CD44v6 in odontogenic keratocysts.

Authors:  Yi-Ping Wang; Bu-Yuan Liu
Journal:  J Formos Med Assoc       Date:  2009-04       Impact factor: 3.282

8.  Thrombin-cleaved osteopontin regulates hemopoietic stem and progenitor cell functions through interactions with alpha9beta1 and alpha4beta1 integrins.

Authors:  Jochen Grassinger; David N Haylock; Melonie J Storan; Gemma O Haines; Brenda Williams; Genevieve A Whitty; Andrew R Vinson; Cheang Ly Be; Songhui Li; Esben S Sørensen; Patrick P L Tam; David T Denhardt; Dean Sheppard; Peter F Choong; Susan K Nilsson
Journal:  Blood       Date:  2009-05-05       Impact factor: 22.113

9.  Mesenchymal stem cells use integrin beta1 not CXC chemokine receptor 4 for myocardial migration and engraftment.

Authors:  James E Ip; Yaojiong Wu; Jing Huang; Lunan Zhang; Richard E Pratt; Victor J Dzau
Journal:  Mol Biol Cell       Date:  2007-05-16       Impact factor: 4.138

10.  Mesenchymal stem cell engraftment in lung is enhanced in response to bleomycin exposure and ameliorates its fibrotic effects.

Authors:  Luis A Ortiz; Frederica Gambelli; Christine McBride; Dina Gaupp; Melody Baddoo; Naftali Kaminski; Donald G Phinney
Journal:  Proc Natl Acad Sci U S A       Date:  2003-06-18       Impact factor: 12.779

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  14 in total

1.  Osteoblasts can induce dental pulp stem cells to undergo osteogenic differentiation.

Authors:  Yuying Wang; Jie Yao; Mengtong Yuan; Zhiwu Zhang; Weiping Hu
Journal:  Cytotechnology       Date:  2012-07-18       Impact factor: 2.058

Review 2.  The progress of early growth response factor 1 and leukemia.

Authors:  Jing Tian; Ziwei Li; Yang Han; Tao Jiang; Xiaoming Song; Guosheng Jiang
Journal:  Intractable Rare Dis Res       Date:  2016-05

3.  Bone marrow transplantation transfers age-related susceptibility to neovascular remodeling in murine laser-induced choroidal neovascularization.

Authors:  Diego G Espinosa-Heidmann; Goldis Malek; Priyatham S Mettu; Alejandro Caicedo; Peter Saloupis; Sarah Gach; Askia K Dunnon; Peng Hu; Maria-Grazia Spiga; Scott W Cousins
Journal:  Invest Ophthalmol Vis Sci       Date:  2013-11-13       Impact factor: 4.799

4.  Osteogenic differentiation of human mesenchymal stem cells on α5 integrin binding peptide hydrogels is dependent on substrate elasticity.

Authors:  Navakanth R Gandavarapu; Daniel L Alge; Kristi S Anseth
Journal:  Biomater Sci       Date:  2014-03-01       Impact factor: 6.843

5.  From Blood to Lesioned Brain: An In Vitro Study on Migration Mechanisms of Human Nasal Olfactory Stem Cells.

Authors:  Stéphane D Girard; Isabelle Virard; Emmanuelle Lacassagne; Jean-Michel Paumier; Hanae Lahlou; Françoise Jabes; Yves Molino; Delphine Stephan; Kevin Baranger; Maya Belghazi; Arnaud Deveze; Michel Khrestchatisky; Emmanuel Nivet; François S Roman; François Féron
Journal:  Stem Cells Int       Date:  2017-06-18       Impact factor: 5.443

6.  Dendritic Cell-derived Extracellular Vesicles mediate Mesenchymal Stem/Stromal Cell recruitment.

Authors:  Andreia M Silva; Maria I Almeida; José H Teixeira; André F Maia; George A Calin; Mário A Barbosa; Susana G Santos
Journal:  Sci Rep       Date:  2017-05-10       Impact factor: 4.379

7.  Extracellular matrix stiffness controls osteogenic differentiation of mesenchymal stem cells mediated by integrin α5.

Authors:  Meiyu Sun; Guangfan Chi; Juanjuan Xu; Ye Tan; Jiayi Xu; Shuang Lv; Ziran Xu; Yuhan Xia; Lisha Li; Yulin Li
Journal:  Stem Cell Res Ther       Date:  2018-03-01       Impact factor: 6.832

8.  Interleukin-1 beta and tumor necrosis factor alpha inhibit migration activity of chondrogenic progenitor cells from non-fibrillated osteoarthritic cartilage.

Authors:  Helga Joos; Anja Wildner; Cathrin Hogrefe; Heiko Reichel; Rolf E Brenner
Journal:  Arthritis Res Ther       Date:  2013       Impact factor: 5.156

9.  TGFβ1 - induced recruitment of human bone mesenchymal stem cells is mediated by the primary cilium in a SMAD3-dependent manner.

Authors:  Marie-Noëlle Labour; Mathieu Riffault; Søren T Christensen; David A Hoey
Journal:  Sci Rep       Date:  2016-10-17       Impact factor: 4.379

10.  Alcohol exposure decreases osteopontin expression during fracture healing and osteopontin-mediated mesenchymal stem cell migration in vitro.

Authors:  Roman M Natoli; Henry Yu; Megan Conti-Mica Meislin; Pegah Abbasnia; Philip Roper; Aleksandra Vuchkovska; Xianghui Xiao; Stuart R Stock; John J Callaci
Journal:  J Orthop Surg Res       Date:  2018-04-27       Impact factor: 2.359

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