The emergence of new methods for reprogramming of adult somatic cells into induced pluripotent stem cells (iPSC) led to the development of new approaches in drug discovery and regenerative medicine. Investigation of the molecular mechanisms underlying the self-renewal, expansion and differentiation of human iPSC (hiPSC) should lead to improvements in the manufacture of safe and reliable cell therapy products. The goal of our study was qualitative and quantitative proteomic characterizations of hiPSC by means of electrospray ionization (ESI)-MSe and MALDI-TOF/TOF mass spectrometry (MS). Proteomes of hiPSCs of different somatic origins: fibroblasts and peripheral blood CD34+ cells, reprogrammed by the same technique, were compared with the or...
Mesenchymal progenitor cells have great therapeutic potential, yet incomplete characterization of th...
AbstractThe derivation of human embryonic stem cells (hESCs) brought cell therapy-based regenerative...
Mesenchymal stem cells (MSCs) are undifferentiated, multi-potent stem cells with the ability to rene...
AbstractThe emergence of new methods for reprogramming of adult somatic cells into induced pluripote...
AbstractThe emergence of new methods for reprogramming of adult somatic cells into induced pluripote...
In 2006, Yamanaka and co-workers announced a milestone finding that somatic cells can be reprogramme...
Detailed knowledge of cell-surface proteins for isolating well-defined populations of human pluripot...
Assessing relevant molecular differences between human-induced pluripotent stem cells (hiPSCs) and h...
Stem cells have two characteristics that make them unique from any other cell: they can renew themse...
International audienceSeveral mechanisms mediate the regenerative and reparative capacity of stem ce...
International audienceSeveral mechanisms mediate the regenerative and reparative capacity of stem ce...
<p><em>presented in: ASMS 2010 in Salt Lake City, Utah</em></p> <p> </p> <p>“Are iPS cells indisting...
SummaryMesenchymal progenitor cells have great therapeutic potential, yet incomplete characterizatio...
Abstract Background Much of our current knowledge of the molecular expression profile of human embry...
The stem cell microenvironment contains soluble factors, support cells, and components of the extrac...
Mesenchymal progenitor cells have great therapeutic potential, yet incomplete characterization of th...
AbstractThe derivation of human embryonic stem cells (hESCs) brought cell therapy-based regenerative...
Mesenchymal stem cells (MSCs) are undifferentiated, multi-potent stem cells with the ability to rene...
AbstractThe emergence of new methods for reprogramming of adult somatic cells into induced pluripote...
AbstractThe emergence of new methods for reprogramming of adult somatic cells into induced pluripote...
In 2006, Yamanaka and co-workers announced a milestone finding that somatic cells can be reprogramme...
Detailed knowledge of cell-surface proteins for isolating well-defined populations of human pluripot...
Assessing relevant molecular differences between human-induced pluripotent stem cells (hiPSCs) and h...
Stem cells have two characteristics that make them unique from any other cell: they can renew themse...
International audienceSeveral mechanisms mediate the regenerative and reparative capacity of stem ce...
International audienceSeveral mechanisms mediate the regenerative and reparative capacity of stem ce...
<p><em>presented in: ASMS 2010 in Salt Lake City, Utah</em></p> <p> </p> <p>“Are iPS cells indisting...
SummaryMesenchymal progenitor cells have great therapeutic potential, yet incomplete characterizatio...
Abstract Background Much of our current knowledge of the molecular expression profile of human embry...
The stem cell microenvironment contains soluble factors, support cells, and components of the extrac...
Mesenchymal progenitor cells have great therapeutic potential, yet incomplete characterization of th...
AbstractThe derivation of human embryonic stem cells (hESCs) brought cell therapy-based regenerative...
Mesenchymal stem cells (MSCs) are undifferentiated, multi-potent stem cells with the ability to rene...