Single-cell microarray analysis in hippocampus CA1: demonstration and validation of cellular heterogeneity
F Kamme, R Salunga, J Yu, DT Tran, J Zhu… - Journal of …, 2003 - jneurosci.org
Journal of Neuroscience, 2003•jneurosci.org
Laser capture microdissection in combination with microarrays allows for the expression
analysis of thousands of genes in selected cells. Here we describe single-cell gene
expression profiling of CA1 neurons in the rat hippocampus using a combination of laser
capture, T7 RNA amplification, and cDNA microarray analysis. Subsequent cluster analysis
of the microarray data identified two different cell types: pyramidal neurons and an
interneuron. Cluster analysis also revealed differences among the pyramidal neurons …
analysis of thousands of genes in selected cells. Here we describe single-cell gene
expression profiling of CA1 neurons in the rat hippocampus using a combination of laser
capture, T7 RNA amplification, and cDNA microarray analysis. Subsequent cluster analysis
of the microarray data identified two different cell types: pyramidal neurons and an
interneuron. Cluster analysis also revealed differences among the pyramidal neurons …
Laser capture microdissection in combination with microarrays allows for the expression analysis of thousands of genes in selected cells. Here we describe single-cell gene expression profiling of CA1 neurons in the rat hippocampus using a combination of laser capture, T7 RNA amplification, and cDNA microarray analysis. Subsequent cluster analysis of the microarray data identified two different cell types: pyramidal neurons and an interneuron. Cluster analysis also revealed differences among the pyramidal neurons, indicating that even a single cell type in vivo is not a homogeneous population of cells at the gene expression level. Microarray data were confirmed by quantitative RT-PCR and in situ hybridization. We also report on the reproducibility and sensitivity of this combination of methods. Single-cell gene expression profiling offers a powerful tool to tackle the complexity of the mammalian brain.
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