The last few years have seen significant advances in our understanding of the molecular mechanisms of stem-cell-fate specification. New and emerging high-throughput techniques, as well as increasingly accurate loss-of-function perturbation techniques, are allowing us to dissect the interplay among genetic, epigenetic, proteomic, and signaling mechanisms in stem-cell-fate determination with ever-increasing fidelity (Boyer et al. 2005, 2006; Ivanova et al. 2006; Loh et al. 2006; Cole et al. 2008; Jiang et al. 2008; Johnson et al. 2008; Kim et al. 2008; Liu et al. 2008; Marson et al. 2008; Mathur et al. 2008). Taken together, recent reports using these new techniques demonstrate that stem-cell-fate specification is an extremely complex process...
Despite being the object of intense study, embryonic development has been difficult to model due to ...
SummaryIdentification of cell-fate determinants for directing stem cell differentiation remains a ch...
Computational biology is enabling an explosive growth in our understanding of stem cells and our abi...
Quantitative approaches are essential for the advancement of strategies to manipulate stem cells or ...
Recently, the field of computational stem cell biology, a new subdiscipline of developmental biology...
Stem cells are capable of extended proliferation and concomitantly differentiating into a plethora o...
A major challenge for stem cell engineering is achieving a holistic understanding of the molecular n...
Stem cell differentiation and the maintenance of self-renewal are intrinsically complex processes re...
Cellular reprogramming has been recently intensively studied experimentally. We developed a global p...
Despite the importance of inter-cellular (between cell) communication networks in regulating homeost...
Despite the importance of inter-cellular (between cell) communication networks in regulating homeost...
AbstractA sound theoretical or conceptual model of gene regulatory processes that control stem cell ...
Modern stem cell studies now typically use a variety of different high-throughput techniques to deco...
There is significant interest in studying stem cells, both to elucidate their basic biological funct...
Despite being the object of intense study, embryonic development has been difficult to model due to ...
Despite being the object of intense study, embryonic development has been difficult to model due to ...
SummaryIdentification of cell-fate determinants for directing stem cell differentiation remains a ch...
Computational biology is enabling an explosive growth in our understanding of stem cells and our abi...
Quantitative approaches are essential for the advancement of strategies to manipulate stem cells or ...
Recently, the field of computational stem cell biology, a new subdiscipline of developmental biology...
Stem cells are capable of extended proliferation and concomitantly differentiating into a plethora o...
A major challenge for stem cell engineering is achieving a holistic understanding of the molecular n...
Stem cell differentiation and the maintenance of self-renewal are intrinsically complex processes re...
Cellular reprogramming has been recently intensively studied experimentally. We developed a global p...
Despite the importance of inter-cellular (between cell) communication networks in regulating homeost...
Despite the importance of inter-cellular (between cell) communication networks in regulating homeost...
AbstractA sound theoretical or conceptual model of gene regulatory processes that control stem cell ...
Modern stem cell studies now typically use a variety of different high-throughput techniques to deco...
There is significant interest in studying stem cells, both to elucidate their basic biological funct...
Despite being the object of intense study, embryonic development has been difficult to model due to ...
Despite being the object of intense study, embryonic development has been difficult to model due to ...
SummaryIdentification of cell-fate determinants for directing stem cell differentiation remains a ch...
Computational biology is enabling an explosive growth in our understanding of stem cells and our abi...