{"id":285,"date":"2023-08-10T15:21:20","date_gmt":"2023-08-10T15:21:20","guid":{"rendered":"https:\/\/pediatricbrainfoundation.org\/archive\/molecular-time-signaling-controls-stem-cells-during-brain-development\/"},"modified":"2023-08-10T15:21:20","modified_gmt":"2023-08-10T15:21:20","slug":"molecular-time-signaling-controls-stem-cells-during-brain-development","status":"publish","type":"page","link":"https:\/\/pediatricbrainfoundation.org\/archive\/molecular-time-signaling-controls-stem-cells-during-brain-development\/","title":{"rendered":"Molecular time signaling controls stem cells during brain development"},"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\">Molecular time signaling controls stem cells during brain development<\/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-6365\" class=\"node node-science-article clearfix\">\n<div class=\"submitted\">\n            <span class=\"created\">Thursday, November 13, 2014<\/span>&nbsp;&nbsp;\u00b7&nbsp;&nbsp;Posted by <a href=\"http:\/\/ki.se\/en\/news\/molecular-time-signalling-controls-stem-cells-during-brain-development\" target=\"_blank\" rel=\"noopener\">Karolinska Institute<\/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\">Researchers at Karolinska Institute have succeeded in explaining how stem cells in the brain change to allow one type of stem cell to produce different cell types at different stages<\/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\">In a study being published in the journal Neuron, researchers show that the signal molecule TGF-beta acts as a time signal that regulates the nerve stem cells&#8217; potential at different stages of the brain&#8217;s development \u2013 knowledge that may be significant for future pharmaceutical development.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">The human brain consists of thousands of different types of nerve cells that are all formed out of what in simple terms can be described as immature stem cells. It has long been known that the neural stem cells change as the human brain develops and ages. One type of stem cell can produce multiple types of nerve cells at different stages of the brain&#8217;s development. In this process, ageing stem cells also gradually become more limited in their development potential and lose the ability to develop the maturated cell types that form during the early stages.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">How neural stem cell identity and potential is regulated over time has been poorly understood. But in the study being published, researchers at the Department of Cell and Molecular Biology at Karolinska Institutet present a molecular time mechanism that can help explain neuronal stem cell regulation and therefore also the occurrence of cellular diversity in the brain.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">\u201cTGF-beta functions as an important time signal that controls when a stem cell should stop producing one type of nerve cell and instead start producing another, while also gradually limiting the stem cell&#8217;s \u00a0future development capacity,\u201d says Johan Ericson, Professor of Developmental Biology, who led the study.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">Mass-prduction of nerve cells<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">In their work, the researchers also show how TGF-beta can be used in stem cell cultures to mass-produce nerve cells which in turn produce the signalling substance serotonin. Today the brain&#8217;s serotonin system is already a known target for the treatment of depression, and according to researchers it should be possible to use time signals in pharmaceutical development based on stem cells.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">\u201cThis is the first known signalling molecule that regulates the potential of neuronal stem cells\u201d, says Johan Ericson. \u201cWith a better understanding of how potential is regulated, it could be possible to broaden the development spectrum of ageing stem cells, allowing them to regain their capacity to produce cell types from earlier development stages, which in the long-term perspective could be relevant to future treatment methods for neurodegenerative disease\u201d.<\/p>\n<p class=\"tkgyxz44ddvou8s4e\">The research was funded by grants from the Swedish Foundation for Strategic Research (SSF), Knut and Alice Wallenberg Foundation, Swedish Research Council, Swedish Cancer Society and Swedish Brain Foundation.<\/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\/tgf-beta\/\">TGF-beta<\/a><\/div>\n<div class=\"field-item odd\"><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/tags\/brain-development\/\">brain development<\/a><\/div>\n<div class=\"field-item even\"><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/tags\/nerve-cells\/\">nerve cells<\/a><\/div>\n<div class=\"field-item odd\"><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/tags\/neural-stem-cells\/\">neural stem cells<\/a><\/div>\n<div class=\"field-item even\"><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/tags\/serotonin\/\">serotonin<\/a><\/div>\n<\/p><\/div>\n<\/div>\n<ul id=\"pager-links\" class=\"row-fluid\">\n<li id=\"prev-link\" class=\"span6\"><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/educate\/science-news\/uc-davis-investigational-medication-used-resolve-life-threatening-seizures\/\" rel=\"prev\"><span class=\"title\">\u00ab Previous Post<\/span><span class=\"text\">UC Davis investigational medication used to resolve life-threatening seizures in children<\/span><\/a><\/li>\n<li id=\"next-link\" class=\"span6\"><a href=\"https:\/\/pediatricbrainfoundation.org\/archive\/educate\/science-news\/scientists-discover-children-s-cells-living-mothers-brains\/\" rel=\"next\"><span class=\"title\">Next Post \u00bb<\/span><span class=\"text\">Scientists Discover 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