{"id":337,"date":"2023-08-10T15:21:28","date_gmt":"2023-08-10T15:21:28","guid":{"rendered":"https:\/\/pediatricbrainfoundation.org\/archive\/stem-cells-help-repair-traumatic-brain-injury-building-biobridge-usf\/"},"modified":"2023-08-10T15:21:28","modified_gmt":"2023-08-10T15:21:28","slug":"stem-cells-help-repair-traumatic-brain-injury-building-biobridge-usf","status":"publish","type":"page","link":"https:\/\/pediatricbrainfoundation.org\/archive\/stem-cells-help-repair-traumatic-brain-injury-building-biobridge-usf\/","title":{"rendered":"Stem cells help repair traumatic brain injury by building a \u201cbiobridge,\u201d USF researchers report"},"content":{"rendered":"<div class=\"row-fluid\">\n<section class=\"span12\">\n<div class=\"back-link\"><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/educate\/science-news\/\">\u00ab Back to Scientific News<\/a><\/div>\n<\/section><\/div>\n<div class=\"row-fluid\">\n<section class=\"content-top span12\">\n      <a id=\"main-content\"><\/a><\/p>\n<h1 class=\"page-header\">Stem cells help repair traumatic brain injury by building a \u201cbiobridge,\u201d USF researchers report <\/h1>\n<\/section><\/div>\n<div class=\"row-fluid\">\n<section class=\"main-content span9\">\n<section id=\"block-system-main\" class=\"block-system block-page-content clearfix\">\n<div class=\"section-in\">\n<div class=\"section-inn\">\n<div class=\"section-innn\">\n<article id=\"node-5783\" class=\"node node-science-article clearfix\">\n<div class=\"submitted\">\n            <span class=\"created\">Wednesday, October 2, 2013<\/span>&nbsp;&nbsp;\u00b7&nbsp;&nbsp;Posted by <a href=\"http:\/\/hscweb3.hsc.usf.edu\/blog\/2013\/10\/02\/stem-cells-help-repair-traumatic-brain-injury-by-building-a-biobridge-usf-researchers-report\/\" target=\"_blank\" rel=\"noopener\">University of South Florida <\/a>    <\/div>\n<p>  <!--\nTHIS FILE IS NOT USED AND IS HERE AS A STARTING POINT FOR CUSTOMIZATION ONLY.\nSee http:\/\/api.drupal.org\/api\/function\/theme_field\/7 for details.\nAfter copying this file to your theme's folder and customizing it, remove this\nHTML comment.\n--><\/p>\n<div id=\"field-headline\" class=\"field field-name-field-headline field-type-text-long field-label-hidden\">\n<div class=\"field-items\">\n<div class=\"field-item even\">The USF study presents evidence for a third concept of stem-cell mediated brain repair.<\/div>\n<\/p><\/div>\n<\/div>\n<p><!--\nTHIS FILE IS NOT USED AND IS HERE AS A STARTING POINT FOR CUSTOMIZATION ONLY.\nSee http:\/\/api.drupal.org\/api\/function\/theme_field\/7 for details.\nAfter copying this file to your theme's folder and customizing it, remove this\nHTML comment.\n--><\/p>\n<div id=\"body\" class=\"field field-name-body field-type-text-with-summary field-label-hidden prose\">\n<div class=\"field-items\">\n<div class=\"field-item even\">\n<p class=\"tkgyxz44ddvou8s4e\">\n<p class=\"tkgyxz44ddvou8s4e\">University of South Florida researchers have suggested a new view of how stem cells may help repair the brain following trauma. In a series of preclinical experiments, they report that transplanted cells appear to build a \u201cbiobridge\u201d that links an uninjured brain site where new neural stem cells are born with the damaged region of the brain.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">Their findings were recently reported online in the peer-reviewed journal PLOS ONE.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">\u201cThe transplanted stem cells serve as migratory cues for the brain\u2019s own neurogenic cells, guiding the exodus of these newly formed host cells from their neurogenic niche towards the injured brain tissue,\u201d said principal investigator Cesar Borlongan, PhD, professor and director of the USF Center for Aging and Brain Repair.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">Based in part on the data reported by the USF researchers in this preclinical study, the U.S. Food and Drug Administration recently approved a limited clinical trial to transplant SanBio Inc\u2019s SB632 cells (an adult stem cell therapy) in patients with traumatic brain injury.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">Stem cells are undifferentiated, or blank, cells with the potential to give rise to many different cell types that carry out different functions. While the stem cells in adult bone marrow or umbilical cord blood tend to develop into the cells that make up the organ system from which they originated, these multipotent stem cells can be manipulated to take on the characteristics of neural cells.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">To date, there have been two widely-held views on how stem cells may work to provide potential treatments for brain damage caused by injury or neurodegenerative disorders. \u00a0One school of thought is that stem cells implanted into the brain directly replace dead or dying cells. \u00a0The other, more recent view is that transplanted stem cells secrete growth factors that indirectly rescue the injured tissue.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">The USF study presents evidence for a third concept of stem-cell mediated brain repair.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">The researchers randomly assigned rats with traumatic brain injury and confirmed neurological impairment to one of two groups. One group received transplants of bone marrow-derived stem cells (SB632 cells) into the region of the brain affected by traumatic injury. The other (control group) received a sham procedure in which solution alone was infused into the brain with no implantation of stem cells.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">At one and three months post-TBI, the rats receiving stem cell transplants showed significantly better motor and neurological function and reduced brain tissue damage compared to rats receiving no stem cells. These robust improvements were observed even though survival of the transplanted cells was modest and diminished over time.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">The researchers then conducted a series of experiments to examine the host brain tissue.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">At three months post-traumatic brain injury, the brains of transplanted rats showed massive cell proliferation and differentiation of stem cells into neuron-like cells in the area of injury, the researchers found. This was accompanied by a solid stream of stem cells migrating from the brain\u2019s uninjured subventricular zone \u2014 a region where many new stem cells are formed \u2013 to the brain\u2019s site of injury.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">In contrast, the rats receiving solution alone showed limited proliferation and neural-commitment of stem cells, with only scattered migration to the site of brain injury and virtually no expression of newly formed cells in the subventricular zone. Without the addition of transplanted stem cells, the brain\u2019s self-repair process appeared insufficient to mount a defense against the cascade of traumatic brain injury-induced cell death.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">The researchers conclude that the transplanted stem cells create a neurovascular matrix that bridges the long-distance gap between the region in the brain where host neural stem cells arise and the site of injury. This pathway, or \u201cbiobridge,\u201d ferries the newly emerging host cells to the specific place in the brain in need of repair, helping promote functional recovery from traumatic brain injury.<\/p>\n<p><br class=\"tkgyxz44ddvou8s4e\"\/><\/p>\n<p class=\"tkgyxz44ddvou8s4e\">\n<\/div><\/div>\n<\/div>\n<p>      <!--\nTHIS FILE IS NOT USED AND IS HERE AS A STARTING POINT FOR CUSTOMIZATION ONLY.\nSee http:\/\/api.drupal.org\/api\/function\/theme_field\/7 for details.\nAfter copying this file to your theme's folder and customizing it, remove this\nHTML comment.\n--><\/p>\n<div id=\"field-tags\" class=\"field field-name-field-tags field-type-taxonomy-term-reference field-label-hidden\">\n<div class=\"field-items\">\n<div class=\"field-item even\"><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/tags\/stem-cells\/\">stem cells<\/a><\/div>\n<div class=\"field-item odd\"><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\">biobridge<\/a><\/div>\n<div class=\"field-item 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