Cell therapy attempted as a novel approach for chronic traumatic brain injury 鈥?a pilot study
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  • 作者:Alok Sharma ; Hemangi Sane ; Pooja Kulkarni ; Jayanti Yadav…
  • 关键词:Traumatic brain injury ; Cellular therapy ; Autologous ; Bone marrow ; Mononuclear cells ; Intrathecal ; PET CT scan
  • 刊名:SpringerPlus
  • 出版年:2015
  • 出版时间:December 2015
  • 年:2015
  • 卷:4
  • 期:1
  • 全文大小:702KB
  • 参考文献:Ahmed A, Shtaya A, Zaben M, Gray W (2014) Activation of endogenous neural stem cells after traumatic brain injury. The Lancet 383:S18CrossRef
    Bramlett HM, Dietrich WD (2007) Progressive damage after brain and spinal cord injury: pathomechanisms and treatment strategies. Prog Brain Res 161:125鈥?41CrossRef
    Bunch J, Jennifer H (2000) Information and Resources column. TBI Challenge 4, No. 2 (2000). BIA, Alexandria
    Fischer UM, Harting MT, Jimenez F, Monzon-Posadas WO, Xue H, Savitz SI, Laine GA, Cox CS Jr (2009) Pulmonary passage is a major obstacle for intravenous stem cell delivery: the pulmonary first-pass effect. Stem Cells Dev 18(5):683鈥?92CrossRef
    Horner PJ, Gage FH (2000) Regenerating the damaged central nervous system. Nature 407(6807):963鈥?70CrossRef
    Hsu YC, Chen SL, Wang DY, Chiu IM (2013) Stem cell-based therapy in neural repair. Biomed J 36(3):98鈥?05CrossRef
    Jorge RE, Starkstein SE (2005) Pathophysiologic aspects of major depression following traumatic brain injury. J Head Trauma Rehabil 20:475鈥?87CrossRef
    Kato T, Nakayama N, Yasokawa Y, Okumura A, Shinoda J, Iwama T (2007) Statistical image analysis of cerebral glucose metabolism in patients with cognitive impairment following diffuse traumatic brain injury. J Neurotrauma 24(6):919鈥?26CrossRef
    Kim HJ, Lee JH, Kim SH (2010) Therapeutic effects of human mesenchymal stem cells on traumatic brain injury in rats: secretion of neurotrophic factors and inhibition of apoptosis. J Neurotrauma 27(1):131鈥?38CrossRef
    Kraus MF, Susmaras T, Caughlin BP, Walker CJ, Sweeney JA, Little DM (2007) White matter integrity and cognition in chronic traumatic brain injury: a diffusion tensor imaging study. Brain 130(Pt 10):2508鈥?519CrossRef
    Lawall H, Bramlage P, Amann B (2010) Stem cell and progenitor cell therapy in peripheral artery disease. A critical appraisal. Thromb Haemost 103:696鈥?09CrossRef
    Lee JS, Hong JM, Moon GJ, Lee PH, Ahn YH, Bang OY, STARTING collaborators (2010) A long-term follow-up study of intravenous autologous mesenchymal stem cell transplantation in patients with ischemic stroke. Stem Cells 28(6):1099鈥?106CrossRef
    Liu S, Qu Y, Stewart TJ, Howard MJ, Chakrabortty S, Holekamp TF, McDonald JW (2000) Embryonic stem cells differentiate into oligodendrocytes and myelinate in culture and after spinal cord transplantation. Proc Natl Acad Sci 97(11):6126鈥?131CrossRef
    Morganti-Kossmann MC, Rancan M, Stahel PF, Kossmann T (2002) Inflammatory response in acute traumatic brain injury: a double-edged sword. Curr Opin Crit Care 8(2):101鈥?05CrossRef
    Morizane A, Doi D, Kikuchi T, Okita K, Hotta A, Kawasaki T, Hayashi T, Onoe H, Shiina T, Yamanaka S, Takahashi J (2013) Direct comparison of autologous and allogeneic transplantation of iPSC-derived neural cells in the brain of a nonhuman primate. Stem Cell Reports 1(4):283鈥?92CrossRef
    Muotri AR (2010) Pluripotent stem cells and neurological diseases. Estudos Avan莽ados 24(70):71鈥?9CrossRef
    Nakashima T, Nakayama N, Miwa K, Okumura A, Soeda A, Iwama T (2007) Focal brain glucose hypometabolism in patients with neuropsychologic deficits after diffuse axonal injury. AJNR Am J Neuroradiol 28(2):236鈥?42
    Park KI, Hack MA, Ourednik J, Yandava B, Flax JD, Stieg PE, Gullans S, Jensen FE, Sidman RL, Ourednik V, Snyder EY (2006) Acute injury directs the migration, proliferation, and differentiation of solid organ stem cells: evidence from the effect of hypoxia-ischemia in the CNS on clonal "reporter" neural stem cells. Exp Neurol 199(1):156鈥?78CrossRef
    Parr AM, Tator CH, Keating A (2007) Bone marrow-derived mesenchymal stromal cells for the repair of central nervous system injury. Bone Marrow Transplant 40:609鈥?19CrossRef
    Peter R, Chen Z (2002) Transplanted neural stem cells survive, differentiate, and improve neurological motor function after experimental traumatic brain injury. Neurosurgery 51(4):1043鈥?054
    Prins M, Greco T, Alexander D, Giza CC (2013) The pathophysiology of traumatic brain injury at a glance. Dis Model Mech 6(6):1307鈥?315CrossRef
    Sanchez-Ramos J, Song S, Cardozo-Pelaez F, Hazzi C, Stedeford T, Willing A, Freeman TB, Saporta S, Janssen W, Patel N, Cooper DR, Sanberg PR (2000) Adult bone marrow stromal cells differentiate into neural cells in vitro. Exp Neurol 164:247鈥?56CrossRef
    Schwarzbold M, Diaz A, Martins ET, Rufino A, Amante LN, Thais ME, Quevedo J, Hohl A, Linhares MN, Walz R (2008) Psychiatric disorders and traumatic brain injury. Neuropsychiatric disease and treatment 4(4):797
    Sharma A, Gokulchandran N, Chopra G, Kulkarni P, Lohia M, Badhe P, Jacob VC (2012a) Administration of autologous bone marrow derived mononuclear cells in children with incurable neurological disorders and injury is safe and improves their quality of life. Cell Transplant 21(Supp 1):S1鈥揝12CrossRef
    Sharma A, Kulkarni P, Sane H, Gokulchandran N, Badhe P, Lohia M, Mishra P (2012b) Positron emission tomography- computed tomography scan captures the effects of cellular therapy in a case of cerebral palsy. J Clin Case Rep 2:195CrossRef
    Sharma A, Sane H, Badhe P, Kulkarni P, Chopra G, Lohia M, Gokulchandran N (2012c) Autologous bone marrow stem cell therapy shows functional improvement in hemorrhagic stroke- a case study. Indian Journal of Clinical Practice 23(2):100鈥?05
    Sharma A, Badhe P, Gokulchandran N, Kulkarni P, Sane H, Lohia M, Avhad V (2012d) Autologous bone marrow derived mononuclear cell therapy for vascular dementia - Case report. J Stem Cell Res Ther 2:129
    Sharma A, Sane H, Paranjape A, Gokulchandran N, Kulkarni P, Nagrajan A, Badhe P. (2013) Positron Emission Tomography 鈥?Computer Tomography scan used as a monitoring tool following cellular therapy in Cerebral Palsy and Mental Retardation 鈥?A Case Report. Case Rep Neurol Med. doi:10.1155/2013/141983
    Sharma A, Gokulchandran N, Sane H, Badhe P, Kulkarni P, Lohia M, Nagrajan A, Thomas N (2013b) Detailed analysis of the clinical effects of cell therapy for thoracolumbar spinal cord injury: an original study. Journal of Neurorestoratology 1:13鈥?2CrossRef
    Sharma A, Gokulchandran N, Sane H, Nagrajan A, Paranjape A, Kulkarni P, Shetty A, Mishra P, Kali M, Biju H, Badhe P. (2013) Autologous bone marrow mononuclear cell therapy for autism 鈥?an open label proof of concept study. Stem Cell Int. doi:10.1155/2013/623875
    Smith DH, Chen XH, Pierce JE, Wolf JA, Trojanowski JQ, Graham DI, McIntosh TK (1997) Progressive atrophy and neuron death for one year following brain trauma in the rat. J Neurotrauma 14:715鈥?27CrossRef
    Ul Hassan A, Hassan G, Rasool Z (2009) Role of stem cells in treatment of neurological disorder. Int J Health Sci (Qassim) 3(2):227鈥?33
    World Medical Association (2013) World medical association declaration of helsinki: ethical principles for medical research involving human subjects. JAMA 310(20):2191鈥?194CrossRef
    Yoon SH, Shim YS, Park YH, Chung JK, Nam JH, Kim MO, Park HC, Park SR, Min BH, Kim EY, Choi BH, Park H, Ha Y (2007) Complete spinal cord injury treatment using autologous bone marrow cell transplantation and bone marrow stimulation with granulocyte macrophage-colony stimulating factor: Phase I/II clinical trial. Stem Cells 25(8):2066鈥?073CrossRef
    Zhang R, Liu Y, Yan K, Chen L, Chen XR, Li P, Chen FF, Jiang XD (2013) Anti-inflammatory and immunomodulatory mechanisms of mesenchymal stem cell transplantation in experimental traumatic brain injury. J Neuroinflammation 10(1):106CrossRef
    Zhao LR, Duan WM, Reyes M, Keene CD, Verfaillie CM, Low WC (2002) Human bone marrow stem cells exhibit neural phenotypes and ameliorate neurological deficits after grafting into the ischemic brain of rats. Experimental neurology 174(1):11鈥?0CrossRef
    Zhong C, Qin Z, Zhong CJ, Wang Y, Shen XY (2003) Neuroprotective effects of bone marrow stromal cells on rat organotypic hippocampal slice culture model of cerebral ischemia. Neurosci Lett 342:93鈥?6CrossRef
  • 作者单位:Alok Sharma (1)
    Hemangi Sane (2)
    Pooja Kulkarni (2)
    Jayanti Yadav (3)
    Nandini Gokulchandran (1)
    Hema Biju (3)
    Prerna Badhe (1)

    1. Department of Medical Services and Clinical research, NeuroGen Brain & Spine Institute, Stem Asia Hospital and Research Centre, Sector 鈥?40, Plot No. 19, Palm Beach Road, Seawood (W), New Mumbai, 400706, India
    2. Department Of Research & Development, NeuroGen Brain & Spine Institute, Stem Asia Hospital and Research Centre, Sector 鈥?40, Plot No. 19, Palm Beach Road, Seawood (W), New Mumbai, 400706, India
    3. Department Of NeuroRehabilitation, NeuroGen Brain & Spine Institute, Stem Asia Hospital and Research Centre, Sector 鈥?40, Plot No. 19, Palm Beach Road, Seawood (W), New Mumbai, 400706, India
  • 刊物类别:Science, general;
  • 刊物主题:Science, general;
  • 出版者:Springer International Publishing
  • ISSN:2193-1801
文摘
Traumatic brain injury is an injury to the brain parenchyma resulting from external factors such as vehicular accidents, falls, or sports injuries. Its outcome involves primary insult followed by a cascade of secondary insult, resulting in diffuse axonal injury further causing white matter damage. Surgical intervention targets the primary damage, whereas only few treatment alternatives are available to treat the secondary damage. Cellular therapy could be one of the prospective therapeutic options, as it has the potential to arrest the degeneration and promote regeneration of new cells in the brain. We conducted a pilot study on 14 cases who were administered with autologous bone marrow mononuclear cells, intrathecally. The follow up was done at 1 week, 3 months and 6 months after the intervention. The Functional Independence Measure scale, the SF-8 Health Survey Scoring and the disability rating scale were used as outcome measures. These scales showed a positive shift in scores at the end of 6 months. Improvements were observed in various symptoms, along with activities of daily living. Improvement in PET CT scan performed before and 6 months after the intervention in 3 patients corresponded to the clinical and functional improvements observed in these patients. The results of this study suggest that cell therapy may promote functional recovery leading to an improved quality of life in chronic TBI. Although the results are positive, the improvements after cell therapy are not optimal. Hence, additional multicenter, controlled studies are required to establish cell therapy as a standard therapeutic approach. Keywords Traumatic brain injury Cellular therapy Autologous Bone marrow Mononuclear cells Intrathecal PET CT scan

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