In stem cell biology, there is a growing need for advanced technologies that may help to unravel the molecular mechanisms of self-renewal and differentiation. Proteomics, the comprehensive analysis of proteins, is such an emerging technique. To facilitate interactions between specialists in proteomics and stem cell biology, a new initiative has been undertaken, supported by the Human Proteome Organization (HUPO) and the International Society for Stem Cell Research (ISSCR). Here we present the Proteome Biology of Stem Cells Initiative (PBSCI) and report on its goals and future activities
To characterize molecular changes during cell type transitions, the authors develop a method to simu...
Mesenchymal stem cells (MSCs) are undifferentiated, multi-potent stem cells with the ability to rene...
The emergence of new methods for reprogramming of adult somatic cells into induced pluripotent stem ...
In stem cell biology, there is a growing need for advanced technologies that may help to unravel the...
AbstractThe notion that integration of cutting-edge technologies in stem cell research would be enha...
In stem cell biology, there is a growing need for advanced technologies that may help to unravel the...
The HUPO initiative “Proteome biology of stem cells ” has been established as a collaborative platfo...
Genomics methodologies have advanced to the extent that it is now possible to interrogate the gene e...
The recent identification of cells with stem cell-like behaviour in several types of human cancers h...
Stem cells have two characteristics that make them unique from any other cell: they can renew themse...
Stem cell research promises to transform current medical practices by providing alternative solutio...
The concept of cell-based therapy has been advocated as a novel approach for treating diseases or co...
Stem Cells and Cancer Stem Cells; vol. 3The evolution of proteomics has led to its application in id...
Proteomics is the study of proteins and their interactions in a cell. With the completion of the Hum...
The term "proteomics" encompasses the large-scale detection and analysis of proteins and their post-...
To characterize molecular changes during cell type transitions, the authors develop a method to simu...
Mesenchymal stem cells (MSCs) are undifferentiated, multi-potent stem cells with the ability to rene...
The emergence of new methods for reprogramming of adult somatic cells into induced pluripotent stem ...
In stem cell biology, there is a growing need for advanced technologies that may help to unravel the...
AbstractThe notion that integration of cutting-edge technologies in stem cell research would be enha...
In stem cell biology, there is a growing need for advanced technologies that may help to unravel the...
The HUPO initiative “Proteome biology of stem cells ” has been established as a collaborative platfo...
Genomics methodologies have advanced to the extent that it is now possible to interrogate the gene e...
The recent identification of cells with stem cell-like behaviour in several types of human cancers h...
Stem cells have two characteristics that make them unique from any other cell: they can renew themse...
Stem cell research promises to transform current medical practices by providing alternative solutio...
The concept of cell-based therapy has been advocated as a novel approach for treating diseases or co...
Stem Cells and Cancer Stem Cells; vol. 3The evolution of proteomics has led to its application in id...
Proteomics is the study of proteins and their interactions in a cell. With the completion of the Hum...
The term "proteomics" encompasses the large-scale detection and analysis of proteins and their post-...
To characterize molecular changes during cell type transitions, the authors develop a method to simu...
Mesenchymal stem cells (MSCs) are undifferentiated, multi-potent stem cells with the ability to rene...
The emergence of new methods for reprogramming of adult somatic cells into induced pluripotent stem ...