Neural Stem Cell-Based Therapy for Ischemic Stroke
Stem cell-based approaches for the treatment of stroke have been the subject of intensive research over the past decade. Based on accumulated experimental evidence, stem cell-based therapy is a very promising prospect for the development of a novel treatment to restore stroke-damaged brain and impai...
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Published in | Translational stroke research Vol. 2; no. 3; pp. 272 - 278 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
New York
Springer-Verlag
01.09.2011
Springer Nature B.V |
Subjects | |
Online Access | Get full text |
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Abstract | Stem cell-based approaches for the treatment of stroke have been the subject of intensive research over the past decade. Based on accumulated experimental evidence, stem cell-based therapy is a very promising prospect for the development of a novel treatment to restore stroke-damaged brain and impaired neurological function. Studies performed on experimental animal models of stroke employed a variety of stem cell types from diverse sources and have demonstrated their ability to replace lost neurons and functionally integrate into the brain, modulate inflammation, and stimulate angiogenesis and neurogenesis from an endogenous stem cell pool, most likely through trophic actions. A few clinical trials in stroke patients using stem cell transplantation have been completed or are on-going but the results have not yet proven the effectiveness of the stem cell-based approaches. A joint effort of stroke researchers and clinicians is needed to further optimize treatment protocols using safe and reproducible stem cell sources tested in relevant animal models of stroke and showing substantial neurological recovery of stroke-impaired function. |
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AbstractList | Stem cell-based approaches for the treatment of stroke have been the subject of intensive research over the past decade. Based on accumulated experimental evidence, stem cell-based therapy is a very promising prospect for the development of a novel treatment to restore stroke-damaged brain and impaired neurological function. Studies performed on experimental animal models of stroke employed a variety of stem cell types from diverse sources and have demonstrated their ability to replace lost neurons and functionally integrate into the brain, modulate inflammation, and stimulate angiogenesis and neurogenesis from an endogenous stem cell pool, most likely through trophic actions. A few clinical trials in stroke patients using stem cell transplantation have been completed or are on-going but the results have not yet proven the effectiveness of the stem cell-based approaches. A joint effort of stroke researchers and clinicians is needed to further optimize treatment protocols using safe and reproducible stem cell sources tested in relevant animal models of stroke and showing substantial neurological recovery of stroke-impaired function. Stem cell-based approaches for the treatment of stroke have been the subject of intensive research over the past decade. Based on accumulated experimental evidence, stem cell-based therapy is a very promising prospect for the development of a novel treatment to restore stroke-damaged brain and impaired neurological function. Studies performed on experimental animal models of stroke employed a variety of stem cell types from diverse sources and have demonstrated their ability to replace lost neurons and functionally integrate into the brain, modulate inflammation, and stimulate angiogenesis and neurogenesis from an endogenous stem cell pool, most likely through trophic actions. A few clinical trials in stroke patients using stem cell transplantation have been completed or are on-going but the results have not yet proven the effectiveness of the stem cell-based approaches. A joint effort of stroke researchers and clinicians is needed to further optimize treatment protocols using safe and reproducible stem cell sources tested in relevant animal models of stroke and showing substantial neurological recovery of stroke-impaired function.Stem cell-based approaches for the treatment of stroke have been the subject of intensive research over the past decade. Based on accumulated experimental evidence, stem cell-based therapy is a very promising prospect for the development of a novel treatment to restore stroke-damaged brain and impaired neurological function. Studies performed on experimental animal models of stroke employed a variety of stem cell types from diverse sources and have demonstrated their ability to replace lost neurons and functionally integrate into the brain, modulate inflammation, and stimulate angiogenesis and neurogenesis from an endogenous stem cell pool, most likely through trophic actions. A few clinical trials in stroke patients using stem cell transplantation have been completed or are on-going but the results have not yet proven the effectiveness of the stem cell-based approaches. A joint effort of stroke researchers and clinicians is needed to further optimize treatment protocols using safe and reproducible stem cell sources tested in relevant animal models of stroke and showing substantial neurological recovery of stroke-impaired function. |
Author | Darsalia, Vladimer Kokaia, Zaal |
Author_xml | – sequence: 1 givenname: Zaal surname: Kokaia fullname: Kokaia, Zaal email: Zaal.Kokaia@med.lu.se organization: Laboratory of Neural Stem Cell Biology and Therapy, Lund Stem Cell Center, Lund University Hospital – sequence: 2 givenname: Vladimer surname: Darsalia fullname: Darsalia, Vladimer organization: NeuroDivision, Diabetes Research Unit, Department of Clinical Science and Education, South Hospital, Karolinska Institutet |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/24323649$$D View this record in MEDLINE/PubMed https://lup.lub.lu.se/record/2812827$$DView record from Swedish Publication Index oai:portal.research.lu.se:publications/0541f5cf-50b1-4399-863f-98f85b5dc528$$DView record from Swedish Publication Index http://kipublications.ki.se/Default.aspx?queryparsed=id:124666023$$DView record from Swedish Publication Index |
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CorporateAuthor | Neural stamcellsbiologi och terapi Institutionen för kliniska vetenskaper, Lund Lunds universitet Profile areas and other strong research environments Lund University Neural stem cell biology and therapy Department of Clinical Sciences, Lund StemTherapy: National Initiative on Stem Cells for Regenerative Therapy Neurology, Lund Strategiska forskningsområden (SFO) Faculty of Medicine Strategic research areas (SRA) Section IV Medicinska fakulteten Sektion IV Profilområden och andra starka forskningsmiljöer Neurologi, Lund |
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Snippet | Stem cell-based approaches for the treatment of stroke have been the subject of intensive research over the past decade. Based on accumulated experimental... |
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SubjectTerms | Ablation Biomedical and Life Sciences Biomedicine Brain research Cardiology Cell growth Cell-based Therapies for Stroke Clinical Medicine Clinical translation Cytokines Growth factors Ischemia Klinisk medicin Medical and Health Sciences Medicin och hälsovetenskap Neurogenesis Neurologi Neurology Neuroregeneration Neurosciences Neurosurgery Rodents Stem cell transplantation Stem cells Stroke Transplantation Traumatic brain injury Vascular Surgery |
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Title | Neural Stem Cell-Based Therapy for Ischemic Stroke |
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