Intravenous mesenchymal stem cell therapy for traumatic brain injury Laboratory investigation

被引:211
作者
Harting, Matthew T. [1 ]
Jimenez, Fernando [1 ]
Xue, Hasan [1 ]
Fischer, Uwe M. [1 ]
Baumgartner, James [1 ]
Dash, Pramod K. [2 ,3 ]
Cox, Charles S., Jr. [1 ]
机构
[1] Univ Texas Houston, Sch Med, Dept Pediat Surg, Houston, TX 77030 USA
[2] Univ Texas Houston, Sch Med, Dept Neurobiol & Anat, Houston, TX 77030 USA
[3] Univ Texas Houston, Sch Med, Vivian L Smith Ctr Neurol Res, Houston, TX 77030 USA
基金
美国国家卫生研究院;
关键词
adult stem cell; cellular therapy; in vivo tracking; mesenchymal stem cell; traumatic brain injury; CORD BLOOD-CELLS; PROGENITOR-CELLS; MARROW-CELLS; TRANSPLANTATION; RECOVERY; DELIVERY; RATS; OSTEOGENESIS; DIFFERENTIATE; EXPRESSION;
D O I
10.3171/2008.9.JNS08158
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Object. Cell therapy has shown preclinical promise in the treatment of many diseases, and its application is being translated to the clinical arena. Intravenous mesenchymal stein cell (MSC) therapy has been shown to improve functional recovery after traumatic brain injury (TBI). Herein, the authors report on their attempts to reproduce such observations, including detailed characterizations of the MSC Population, non-bromodeoxyuridine-based cell labeling, macroscopic and microscopic cell tracking, quantification of cells traversing the pulmonary microvasculature, and well-validated measurement of motor and cognitive function recovery. Methods. Rat MSCs were isolated, expanded in vitro, immunophenotyped, and labeled. Four million MSCs were intravenously infused into Sprague-Dawley rats 24 hours after receiving a moderate, unilateral controlled cortical impact TBI. Infrared macroscopic cell tracking was used to identify cell distribution. Immunohistochemical analysis of brain and lung tissues 48 hours and 2 weeks postinfusion revealed transplanted cells in these locations, and these cells were quantified. Intraarterial blood sampling and flow cytometry were used to quantity the number of transplanted cells reaching the arterial circulation. Motor and cognitive behavioral testing was performed to evaluate functional recovery. Results. At 48 hours post-MSC infusion, the majority of cells were localized to the lungs. Between 1.5 and 3.7% of the infused cells were estimated to traverse the lungs and reach the arterial circulation, 0.295% reached the carotid artery, and a very small percentage reached the cerebral parenchyma (0.0005%) and remained there. Almost no cells were identified in the brain tissue at 2 weeks postinfusion. No motor or cognitive functional improvements in recovery were identified. Conclusions. The intravenous infusion of MSCs appeared neither to result in significant acute or prolonged cerebral engraftment of cells nor to modify the recovery of motor or cognitive function. Less than 4% of the infused cells were likely to traverse the Pulmonary microvasculature and reach the arterial circulation, a phenomenon termed the "pulmonary first-pass effect," which may limit the efficacy of this therapeutic approach. The data in this study contradict the findings of previous reports and highlight the potential shortcomings of acute, single-dose, intravenous MSC therapy for TBI. (DOI: 10.3171/2008.9.JNS08158)
引用
收藏
页码:1189 / 1197
页数:9
相关论文
共 48 条
[11]   Motor and cognitive function evaluation following experimental traumatic brain injury [J].
Fujimoto, ST ;
Longhi, L ;
Saatman, KE ;
McIntosh, TK .
NEUROSCIENCE AND BIOBEHAVIORAL REVIEWS, 2004, 28 (04) :365-378
[12]   Intravenous administration of human umbilical cord blood cells in a mouse model of amyotrophic lateral sclerosis: Distribution, migration, and differentiation [J].
Garbuzova-Davis, S ;
Willing, AE ;
Zigova, T ;
Saporta, S ;
Justen, EB ;
Lane, JC ;
Hudson, JE ;
Chen, N ;
Davis, CD ;
Sanberg, PR .
JOURNAL OF HEMATOTHERAPY & STEM CELL RESEARCH, 2003, 12 (03) :255-270
[13]   Antisense oligodeoxynucleotide-mediated disruption of hippocampal cAMP response element binding protein levels impairs consolidation of memory for water maze training [J].
Guzowski, JF ;
McGaugh, JL .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1997, 94 (06) :2693-2698
[14]   Transplantability and therapeutic effects of bone marrow-derived mesenchymal cells in children with osteogenesis imperfecta [J].
Horwitz, EM ;
Prockop, DJ ;
Fitzpatrick, LA ;
Koo, WWK ;
Gordon, PL ;
Neel, M ;
Sussman, M ;
Orchard, P ;
Marx, JC ;
Pyeritz, RE ;
Brenner, MK .
NATURE MEDICINE, 1999, 5 (03) :309-313
[15]   Human mesenchymal stem cells exert potent antitumorigenic effects in a model of Kaposi's sarcoma [J].
Khakoo, Aarif Y. ;
Pati, Shibani ;
Anderson, Stasia A. ;
Reid, William ;
Elshal, Mohamed F. ;
Rovira, Ilsa I. ;
Nguyen, Ahn T. ;
Malide, Daniela ;
Combs, Christian A. ;
Hall, Gentzon ;
Zhang, Jianhu ;
Raffeld, Mark ;
Rogers, Terry B. ;
Stetler-Stevenson, William ;
Frank, Joseph A. ;
Reitz, Marvin ;
Finkel, Toren .
JOURNAL OF EXPERIMENTAL MEDICINE, 2006, 203 (05) :1235-1247
[16]   Intravenous mononuclear marrow cells reverse neuropathic pain from experimental mononeuropathy [J].
Klass, Markus ;
Gavrikov, Vitaliy ;
Drury, Danielle ;
Stewart, Bethany ;
Hunter, Stephen ;
Denson, Donald D. ;
Hord, Allen ;
Csete, Marie .
ANESTHESIA AND ANALGESIA, 2007, 104 (04) :944-948
[17]   Rapid hematopoietic recovery after coinfusion of autologous-blood stem cells and culture-expanded marrow mesenchymal stem cells in advanced breast cancer patients receiving high-dose chemotherapy [J].
Koç, ON ;
Gerson, SL ;
Cooper, BW ;
Dyhouse, SM ;
Haynesworth, SE ;
Caplan, AI ;
Lazarus, HM .
JOURNAL OF CLINICAL ONCOLOGY, 2000, 18 (02) :307-316
[18]   Human umbilical cord blood cells differentiate into muscle in sjl muscular dystrophy mice [J].
Kong, KY ;
Ren, JM ;
Kraus, M ;
Finklestein, SP ;
Brown, RH .
STEM CELLS, 2004, 22 (06) :981-993
[19]   Intravenous delivery of autologous mesenchymal stem cells limits infarct size and improves left ventricular function in the infarcted porcine heart [J].
Krause, Ulf ;
Harter, Christoph ;
Seckinger, Anja ;
Wolf, David ;
Reinhard, Adrian ;
Bea, Florian ;
Dengler, Thomas ;
Hardt, Stefan ;
Ho, Anthony ;
Katus, Hugo A. ;
Kuecherer, Helmut ;
Hansen, Alexander .
STEM CELLS AND DEVELOPMENT, 2007, 16 (01) :31-37
[20]   Purified hematopoietic stem cells can differentiate into hepatocytes in vivo [J].
Lagasse, E ;
Connors, H ;
Al-Dhalimy, M ;
Reitsma, M ;
Dohse, M ;
Osborne, L ;
Wang, X ;
Finegold, M ;
Weissman, IL ;
Grompe, M .
NATURE MEDICINE, 2000, 6 (11) :1229-1234