We here describe various approaches using GFP that are being used in the morphological and functional analysis of specific cell types in the normal and injured central nervous system. Incorporation of GFP into viral vectors allows phenotypic characterization of transduced cells and can be used to label their axons and terminal projections. Characterization of transduced cell morphology can be enhanced by intracellular injection of living GFP-labeled cells with appropriate fluorescent dyes. Ex vivo labeling of precursor or glial cells using viral vectors that encode GFP permits long-term identification of these cells after transplantation into the brain or spinal cord. In utero electroporation methods result in expression of gene products in...
High-density cultures of mammalian neurons offer a model system for studies of brain development, bu...
Development, physiological functions, and pathologies of the brain depend on tight interactions betw...
Visualizing the precise morphology of closely juxtaposed cells and their interactions can be highly ...
We describe an experimental system to visualize the soma and processes of mammalian neurons and glia...
AbstractWe describe an experimental system to visualize the soma and processes of mammalian neurons ...
To visualize the movements of cells and their processes in developing vertebrates, we constructed re...
Background Ex vivo gene therapy and cell replacement in the nervous system may provide therapeutic o...
<div><p>GFP expression is shown in fixed tissue following wholemount anti-GFP immunostaining, bright...
To detect subtle changes in neuronal morphology in response to changes in experience, one must image...
Neural stem cells (NSC’s) often follow the same path of migration throughout the brain, traveling fr...
Neural stem cells generate a wide spectrum of cell types in developing and adult nervous systems. Th...
<p>(A) Lentiviral vectors express enhanced green fluorescent protein (GFP) under the control of the ...
Green fluorescent protein (GFP) gene was transfected and expressed in murine embryonic stem (ES) cel...
AbstractWe have generated embryonic stem (ES) cells and transgenic mice carrying a tau-tagged green ...
Reconstruction of mouse cerebellar oligodendrocyte precursor cells. Cells in cultured brain slices w...
High-density cultures of mammalian neurons offer a model system for studies of brain development, bu...
Development, physiological functions, and pathologies of the brain depend on tight interactions betw...
Visualizing the precise morphology of closely juxtaposed cells and their interactions can be highly ...
We describe an experimental system to visualize the soma and processes of mammalian neurons and glia...
AbstractWe describe an experimental system to visualize the soma and processes of mammalian neurons ...
To visualize the movements of cells and their processes in developing vertebrates, we constructed re...
Background Ex vivo gene therapy and cell replacement in the nervous system may provide therapeutic o...
<div><p>GFP expression is shown in fixed tissue following wholemount anti-GFP immunostaining, bright...
To detect subtle changes in neuronal morphology in response to changes in experience, one must image...
Neural stem cells (NSC’s) often follow the same path of migration throughout the brain, traveling fr...
Neural stem cells generate a wide spectrum of cell types in developing and adult nervous systems. Th...
<p>(A) Lentiviral vectors express enhanced green fluorescent protein (GFP) under the control of the ...
Green fluorescent protein (GFP) gene was transfected and expressed in murine embryonic stem (ES) cel...
AbstractWe have generated embryonic stem (ES) cells and transgenic mice carrying a tau-tagged green ...
Reconstruction of mouse cerebellar oligodendrocyte precursor cells. Cells in cultured brain slices w...
High-density cultures of mammalian neurons offer a model system for studies of brain development, bu...
Development, physiological functions, and pathologies of the brain depend on tight interactions betw...
Visualizing the precise morphology of closely juxtaposed cells and their interactions can be highly ...