BACKGROUND: Laser capture microdissection (LCM) is an established technique for the procurement of enriched cell populations that can undergo further downstream analysis, although it does have limitations. Expression microdissection (xMD) is a new technique that begins to address these pitfalls, such as operator dependence and contamination. NEW METHOD: xMD utilises immunohistochemistry in conjunction with a chromogen to isolate specific cell types by extending the fundamental principles of LCM to create an operator-independent method for the procurement of specific CNS cell types. RESULTS: We report how xMD enables the isolation of specific cell populations, namely neurones and astrocytes, from rat formalin fixed-paraffin embedded...
Microarray experiments allow researchers to collect an amazing amount of gene expression data that ...
In the last few decades many efforts have been dedicated to decipher the nature and regenerative pot...
We developed a novel, highly accurate, capillary based vacuum-assisted microdissection device CTAS-C...
Laser capture microdissection (LCM) is a versatile computer-assisted dissection method that permits ...
Isolating individual populations of cells from post-mortem (PM) central nervous system (CNS) tissue ...
Laser capture microdissection (LCM) permits isolation of specific cell types and cell groups based u...
Morphological studies have shown pathology of neurons and glia in many brain disorders, including ps...
Background: Laser capture microdissection enables the isolation of single cells or small cell gro...
The field of single-cell analysis has greatly benefitted from recent technological advances allowing...
BACKGROUND: The analysis of gene expression for tissue homogenates is of limited value because of th...
Gene expression profiling techniques such as RNA sequencing has greatly contributed to our understan...
Background: The heterogeneity of the brain requires appropriate molecular biological approaches to a...
Brain function in normal aging and neurological diseases has long been a subject of interest. With c...
BACKGROUND: The analysis of gene expression for tissue homogenates is of limited value because of th...
<div><p>We developed a novel, highly accurate, capillary based vacuum-assisted microdissection devic...
Microarray experiments allow researchers to collect an amazing amount of gene expression data that ...
In the last few decades many efforts have been dedicated to decipher the nature and regenerative pot...
We developed a novel, highly accurate, capillary based vacuum-assisted microdissection device CTAS-C...
Laser capture microdissection (LCM) is a versatile computer-assisted dissection method that permits ...
Isolating individual populations of cells from post-mortem (PM) central nervous system (CNS) tissue ...
Laser capture microdissection (LCM) permits isolation of specific cell types and cell groups based u...
Morphological studies have shown pathology of neurons and glia in many brain disorders, including ps...
Background: Laser capture microdissection enables the isolation of single cells or small cell gro...
The field of single-cell analysis has greatly benefitted from recent technological advances allowing...
BACKGROUND: The analysis of gene expression for tissue homogenates is of limited value because of th...
Gene expression profiling techniques such as RNA sequencing has greatly contributed to our understan...
Background: The heterogeneity of the brain requires appropriate molecular biological approaches to a...
Brain function in normal aging and neurological diseases has long been a subject of interest. With c...
BACKGROUND: The analysis of gene expression for tissue homogenates is of limited value because of th...
<div><p>We developed a novel, highly accurate, capillary based vacuum-assisted microdissection devic...
Microarray experiments allow researchers to collect an amazing amount of gene expression data that ...
In the last few decades many efforts have been dedicated to decipher the nature and regenerative pot...
We developed a novel, highly accurate, capillary based vacuum-assisted microdissection device CTAS-C...