PMID-sentid Pub_year Sent_text comp_official_name comp_offsetprotein_name organism prot_offset 26777664-6 2016 This issue was investigated here using intrastriatal injections of a tetracycline-inducible adeno-associated viral vector expressing human GDNF cDNA (AAV-tetON-GDNF) in rats, and doxycycline (DOX; 0.01, 0.03, 0.5 and 3mg/ml) in the drinking water during 5weeks. Tetracycline 69-81 glial cell derived neurotrophic factor Homo sapiens 139-143 26777664-6 2016 This issue was investigated here using intrastriatal injections of a tetracycline-inducible adeno-associated viral vector expressing human GDNF cDNA (AAV-tetON-GDNF) in rats, and doxycycline (DOX; 0.01, 0.03, 0.5 and 3mg/ml) in the drinking water during 5weeks. Tetracycline 69-81 glial cell derived neurotrophic factor Homo sapiens 160-164 23269553-4 2013 A modified tetracycline operator 7 (tetO7) was inserted into a region upstream of the EF1-alpha promoter to drive GDNF expression. Tetracycline 11-23 glial cell derived neurotrophic factor Homo sapiens 114-118 26466815-5 2015 Briefly, SCs were transduced with a tetracycline-inducible (Tet-On) GDNF overexpressing lentivirus before transplantation. Tetracycline 36-48 glial cell derived neurotrophic factor Homo sapiens 68-72 24997241-3 2014 We previously improved tetracycline (Tet)-On lentivirus system carrying human GDNF (hGDNF) gene, and demonstrated that hGDNF gene expression was tightly regulated and functional in vitro. Tetracycline 23-35 glial cell derived neurotrophic factor Homo sapiens 78-82 24997241-3 2014 We previously improved tetracycline (Tet)-On lentivirus system carrying human GDNF (hGDNF) gene, and demonstrated that hGDNF gene expression was tightly regulated and functional in vitro. Tetracycline 23-35 glial cell derived neurotrophic factor Homo sapiens 84-89 24997241-3 2014 We previously improved tetracycline (Tet)-On lentivirus system carrying human GDNF (hGDNF) gene, and demonstrated that hGDNF gene expression was tightly regulated and functional in vitro. Tetracycline 23-35 glial cell derived neurotrophic factor Homo sapiens 119-124 24997241-3 2014 We previously improved tetracycline (Tet)-On lentivirus system carrying human GDNF (hGDNF) gene, and demonstrated that hGDNF gene expression was tightly regulated and functional in vitro. Tetracycline 37-40 glial cell derived neurotrophic factor Homo sapiens 78-82 24997241-3 2014 We previously improved tetracycline (Tet)-On lentivirus system carrying human GDNF (hGDNF) gene, and demonstrated that hGDNF gene expression was tightly regulated and functional in vitro. Tetracycline 37-40 glial cell derived neurotrophic factor Homo sapiens 84-89 24997241-3 2014 We previously improved tetracycline (Tet)-On lentivirus system carrying human GDNF (hGDNF) gene, and demonstrated that hGDNF gene expression was tightly regulated and functional in vitro. Tetracycline 37-40 glial cell derived neurotrophic factor Homo sapiens 119-124 24997241-4 2014 Here we further examined the efficiency and neuroprotection of Tet-On lentivirus-mediated hGDNF gene regulation in neural progenitor cells (NPCs) and a rat model of parkinsonism. Tetracycline 63-66 glial cell derived neurotrophic factor Homo sapiens 90-95 24997241-7 2014 Intrastriatal injections of Tet-On lentivirus vectors resulted in dramatically increased levels of hGDNF protein in the striatum of rats with Dox-drinking water, when compared to lentivirus-injected and saline-injected rats with normal drinking water, respectively. Tetracycline 28-31 glial cell derived neurotrophic factor Homo sapiens 99-104 24997241-9 2014 To the best of our knowledge, this is the first report that hGDNF gene transfer by Tet-On lentivirus vectors is tightly regulated in rat brain, and Dox-induced hGDNF is functional in neuroprotection of nigral DA neurons in a rat model of parkinsonism. Tetracycline 83-86 glial cell derived neurotrophic factor Homo sapiens 60-65 24728940-5 2014 To design this system for regulation of GDNF expression, we transduced two lentiviral vectors, one containing a constitutively active GDNF transgene flanked by two loxP sites, and the other containing a tetracycline-inducible cre transgene along with its constitutively active transactivator, into Schwann cells (SCs). Tetracycline 203-215 glial cell derived neurotrophic factor Homo sapiens 40-44 19639608-4 2009 METHODS: A tetracycline-inducible adeno-associated virus (AAV)-1 vector expressing human GDNF cDNA was administered unilaterally in the rat striatum 5 weeks after 6-hydroxydopamine. Tetracycline 11-23 glial cell derived neurotrophic factor Homo sapiens 89-93 9299553-4 1997 Therefore we adopted a self-contained tetracycline-regulated expression system to acquire an rAdv expressing hGDNF. Tetracycline 38-50 glial cell derived neurotrophic factor Homo sapiens 109-114 17223106-1 2007 An autoregulated tetracycline-inducible recombinant adeno-associated viral vector (rAAV-pTet(bidi)ON) utilizing the rtTAM2 reverse tetracycline transactivator (rAAV-rtTAM2) was used to conditionally express the human GDNF cDNA. Tetracycline 17-29 glial cell derived neurotrophic factor Homo sapiens 217-221 17223106-2 2007 Doxycycline, a tetracycline analog, induced a time- and dose-dependent release of GDNF in vitro in human glioma cells infected with rAAV-rtTAM2 serotype 2 virus. Tetracycline 15-27 glial cell derived neurotrophic factor Homo sapiens 82-86