Literature DB >> 22526408

Bone marrow stromal cell-mediated tissue sparing enhances functional repair after spinal cord contusion in adult rats.

Gaby J Ritfeld1, Rishi D S Nandoe Tewarie, Katarina Vajn, Sahar T Rahiem, Andres Hurtado, Dane F Wendell, Raymund A C Roos, Martin Oudega.   

Abstract

Bone marrow stromal cell (BMSC) transplantation has shown promise for repair of the spinal cord. We showed earlier that a BMSC transplant limits the loss of spinal nervous tissue after a contusive injury. Here, we addressed the premise that BMSC-mediated tissue sparing underlies functional recovery in adult rats after a contusion of the thoracic spinal cord. Our results reveal that after 2 months BMSCs had elicited a significant increase in spared tissue volumes and in blood vessel density in the contusion epicenter. A strong functional relationship existed between spared tissue volumes and blood vessel density. BMSC-transplanted rats exhibited significant improvements in motor, sensorimotor, and sensory functions, which were strongly correlated with spared tissue volumes. Retrograde tracing revealed that rats with BMSCs had twice as many descending brainstem neurons with an axon projecting beyond the contused spinal cord segment and these correlated strongly with the improved motor/sensorimotor functions but not sensory functions. Together, our data indicate that tissue sparing greatly contributes to BMSC-mediated functional repair after spinal cord contusion. The preservation/formation of blood vessels and sparing/regeneration of descending brainstem axons may be important mediators of the BMSC-mediated anatomical and functional improvements.

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Year:  2012        PMID: 22526408     DOI: 10.3727/096368912X640484

Source DB:  PubMed          Journal:  Cell Transplant        ISSN: 0963-6897            Impact factor:   4.064


  25 in total

1.  Comparison of cellular architecture, axonal growth, and blood vessel formation through cell-loaded polymer scaffolds in the transected rat spinal cord.

Authors:  Nicolas N Madigan; Bingkun K Chen; Andrew M Knight; Gemma E Rooney; Eva Sweeney; Lisa Kinnavane; Michael J Yaszemski; Peter Dockery; Timothy O'Brien; Siobhan S McMahon; Anthony J Windebank
Journal:  Tissue Eng Part A       Date:  2014-08-11       Impact factor: 3.845

2.  A Rehabilomics framework for personalized and translational rehabilitation research and care for individuals with disabilities: Perspectives and considerations for spinal cord injury.

Authors:  Amy K Wagner
Journal:  J Spinal Cord Med       Date:  2014-07-16       Impact factor: 1.985

3.  Biocompatibility of a coacervate-based controlled release system for protein delivery to the injured spinal cord.

Authors:  Britta M Rauck; Tabitha L Novosat; Martin Oudega; Yadong Wang
Journal:  Acta Biomater       Date:  2014-10-08       Impact factor: 8.947

4.  Meta-analysis of stem cell transplantation for reflex hypersensitivity after spinal cord injury.

Authors:  Xuemei Chen; Bohan Xue; Yuping Li; Chunhua Song; Peijun Jia; Xiuhua Ren; Weidong Zang; Jian Wang
Journal:  Neuroscience       Date:  2017-06-27       Impact factor: 3.590

5.  The effect of a polyurethane-based reverse thermal gel on bone marrow stromal cell transplant survival and spinal cord repair.

Authors:  Gaby J Ritfeld; Britta M Rauck; Tabitha L Novosat; Daewon Park; Pavan Patel; Raymund A C Roos; Yadong Wang; Martin Oudega
Journal:  Biomaterials       Date:  2013-12-09       Impact factor: 12.479

6.  Transplantation of Cerebral Dopamine Neurotrophic Factor Transducted BMSCs in Contusion Spinal Cord Injury of Rats: Promotion of Nerve Regeneration by Alleviating Neuroinflammation.

Authors:  Hua Zhao; Lei Cheng; Xinwen Du; Yong Hou; Yi Liu; Zhaoqiang Cui; Lin Nie
Journal:  Mol Neurobiol       Date:  2014-11-25       Impact factor: 5.590

7.  A Comparative Study of Three Different Types of Stem Cells for Treatment of Rat Spinal Cord Injury.

Authors:  Jiri Ruzicka; Lucia Machova-Urdzikova; John Gillick; Takashi Amemori; Nataliya Romanyuk; Kristyna Karova; Kristyna Zaviskova; Jana Dubisova; Sarka Kubinova; Raj Murali; Eva Sykova; Meena Jhanwar-Uniyal; Pavla Jendelova
Journal:  Cell Transplant       Date:  2016-11-02       Impact factor: 4.064

Review 8.  Mesenchymal Stem Cell-Macrophage Choreography Supporting Spinal Cord Repair.

Authors:  Inés Maldonado-Lasunción; Joost Verhaagen; Martin Oudega
Journal:  Neurotherapeutics       Date:  2018-07       Impact factor: 7.620

9.  Vascular Endothelial Growth Factor Enhanced the Angiogenesis Response of Human Umbilical Cord-Derived Mesenchymal Stromal Cells in a Rat Model of Radiation Myelopathy.

Authors:  Hua You; Li Wei; Jing Zhang; Jia-Ning Wang
Journal:  Neurochem Res       Date:  2015-08-02       Impact factor: 3.996

10.  The Effect of Inflammatory Priming on the Therapeutic Potential of Mesenchymal Stromal Cells for Spinal Cord Repair.

Authors:  Inés Maldonado-Lasunción; Agnes E Haggerty; Akinori Okuda; Tokumitsu Mihara; Natalia de la Oliva; Joost Verhaagen; Martin Oudega
Journal:  Cells       Date:  2021-05-25       Impact factor: 6.600

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