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1.
Behav Neurosci ; 123(6): 1197-217, 2009 Dec.
Article in English | MEDLINE | ID: mdl-20001104

ABSTRACT

We have demonstrated in our previous studies that ventral subicular lesion induces neurodegeneration of the hippocampus and produces cognitive impairment in rats. In the present study, the efficacy of transplanted green fluorescent protein (GFP)-labeled hippocampal cell line (H3-GFP) cells in establishing functional recovery in ventral subicular lesioned rats has been evaluated. The survival of H3-GFP transplants and their ability to express trophic factors in vivo were also investigated. Adult male Wistar rats were subjected to selective lesioning of ventral subiculum and were transplanted with H3-GFP cells into the cornu ammonis 1 (CA1) hippocampus. The transplants settled mainly in the dentate gyrus and expressed neurotrophic factors, brain-derived neurotrophic factor (BDNF), and basic fibroblast growth factor (bFGF). The ventral subicular lesioned (VSL) rats with H3-GFP transplants showed enhanced expression of BDNF in the hippocampus and performed well in eight-arm radial maze and Morris water maze tasks. The VSL rats without hippocampal transplants continued to show cognitive impairment in task learning. The present study demonstrated the H3-GFP transplants mediated recovery of cognitive functions in VSL rats. Our study supports the notion of graft meditated host regeneration and functional recovery through trophic support, although these mechanisms require further investigation.


Subject(s)
Cell Transplantation , Hippocampus/cytology , Hippocampus/metabolism , Maze Learning/physiology , Analysis of Variance , Animals , Behavior, Animal/physiology , Brain-Derived Neurotrophic Factor/metabolism , Cell Count , Cell Line , Fibroblast Growth Factor 2/metabolism , Fluorescent Antibody Technique , Green Fluorescent Proteins/metabolism , Hippocampus/pathology , Image Processing, Computer-Assisted , Male , Microscopy, Confocal , Nerve Degeneration/metabolism , Nerve Degeneration/pathology , Neurons/metabolism , Neurons/pathology , Rats , Rats, Wistar , Recovery of Function/physiology , Spatial Behavior/physiology , Time Factors
2.
J Biomol Screen ; 14(10): 1207-15, 2009 Dec.
Article in English | MEDLINE | ID: mdl-19820070

ABSTRACT

One of the challenges in developing cell lines for high-throughput screening in drug discovery is the labor- and time-intensive process required to create stable clonal cell lines that express specific reporters or drug targets. The authors report here the generation of a site-specific retargeting platform in 3 different cell lines: adherent HEK293, suspension CHO-S, and a human embryonic cell line (BGO1V). These platform cell lines were generated by using a combination of 2 site-specific integrases to develop a system that allows one to efficiently target a gene of interest to a specific locus and generates rapid production of homogeneous cell pools that stably express the gene of interest. The phiC31 integrase was used to create a platform line by placing a target site for the R4 integrase into a pseudo attP site, and then the R4 integrase was used to place a gene of interest into specific R4 target site. The authors demonstrate the successful and rapid retargeting of a G-protein-coupled receptor (cholecystokinin receptor A, CCKAR), an ion channel (the transient receptor potential cation channel, subfamily M, member 8, TRPM8), and a GFP-c-Jun(1-79) fusion protein into the specific loci in these cell lines and show that these retargeted cell lines exhibit functional and pharmacological responses consistent with those reported in the literature.


Subject(s)
Bacteriophages/enzymology , Drug Discovery/methods , Integrases/metabolism , Animals , Biological Assay , Blotting, Southern , Cell Line , Clone Cells , Genetic Vectors/genetics , Green Fluorescent Proteins/metabolism , Humans , Proto-Oncogene Proteins c-jun/metabolism , TRPM Cation Channels/metabolism
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