The tissue microarray (TMA) technology provides the means for high-throughput analysis of multiple tissues and cells. The technique is used within the Human Protein Atlas project for global analysis of protein expression patterns in normal human tissues, cancer and cell lines. Here we present the assembly of 1 mm cores, retrieved from microscopically selected representative tissues, into a single recipient TMA block. The number and size of cores in a TMA block can be varied from approximately forty 2 mm cores to hundreds of 0.6 mm cores. The advantage of using TMA technology is that large amount of data can rapidly be obtained using a single immunostaining protocol to avoid experimental variability. Importantly, only limited amount of scarc...
Background: The human protein atlas (HPA) is a powerful proteomic tool for visualizing the distribut...
Tissue microarray (TMA) technology allows rapid visualization of molecular targets in thousands of t...
Two new technologies (tissue microarrays (TMAs) and proteomics) have generated a great amount of dat...
The tissue microarray (TMA) technology provides the means for high-throughput analysis of multiple t...
The tissue microarray (TMA) technology provides the means for high-throughput analysis of multiple t...
Proteins are essential building blocks in every living cell, and since the complete human genome was...
Tissue-based diagnostics and research is incessantly evolving with the development of new molecular ...
To construct a complete map of the human proteome landscape is a vital part of the total understandi...
INTRODUCTIONResolving the molecular details of proteome variation in the different tissues and organ...
Tissue microarrays (TMAs) are an ordered array of tissue cores on a glass slide. They permit immunoh...
Tissue microarrays (TMAs) are an ordered array of tissue cores on a glass slide. They permit immunoh...
A complete set of high-quality antibodies against the human proteome would constitute a remarkable r...
A complete set of high-quality antibodies against the human proteome would constitute a remarkable r...
Tissue microarrays (TMAs) are produced by taking small punches from a series of paraffin-embedded (d...
Antibody-based proteomics applied to tissue microarray (TMA) technology provides a very efficient me...
Background: The human protein atlas (HPA) is a powerful proteomic tool for visualizing the distribut...
Tissue microarray (TMA) technology allows rapid visualization of molecular targets in thousands of t...
Two new technologies (tissue microarrays (TMAs) and proteomics) have generated a great amount of dat...
The tissue microarray (TMA) technology provides the means for high-throughput analysis of multiple t...
The tissue microarray (TMA) technology provides the means for high-throughput analysis of multiple t...
Proteins are essential building blocks in every living cell, and since the complete human genome was...
Tissue-based diagnostics and research is incessantly evolving with the development of new molecular ...
To construct a complete map of the human proteome landscape is a vital part of the total understandi...
INTRODUCTIONResolving the molecular details of proteome variation in the different tissues and organ...
Tissue microarrays (TMAs) are an ordered array of tissue cores on a glass slide. They permit immunoh...
Tissue microarrays (TMAs) are an ordered array of tissue cores on a glass slide. They permit immunoh...
A complete set of high-quality antibodies against the human proteome would constitute a remarkable r...
A complete set of high-quality antibodies against the human proteome would constitute a remarkable r...
Tissue microarrays (TMAs) are produced by taking small punches from a series of paraffin-embedded (d...
Antibody-based proteomics applied to tissue microarray (TMA) technology provides a very efficient me...
Background: The human protein atlas (HPA) is a powerful proteomic tool for visualizing the distribut...
Tissue microarray (TMA) technology allows rapid visualization of molecular targets in thousands of t...
Two new technologies (tissue microarrays (TMAs) and proteomics) have generated a great amount of dat...