Induced pluripotent stem cells (iPSCs) with potential for therapeutic applications can be derived from somatic cells via ectopic expression of a set of limited and defined transcription factors. However, due to risks of random integration of the reprogramming transgenes into the host genome, the low efficiency of the process, and the potential risk of virally induced tumorigenicity, alternative methods have been developed to generate pluripotent cells using nonintegrating systems, albeit with limited success. Here, we show that c-KIT+ human first-trimester amniotic fluid stem cells (AFSCs) can be fully reprogrammed to pluripotency without ectopic factors, by culture on Matrigel in human embryonic stem cell (hESC) medium supplemented with th...
Autologous cell-based therapies got a step closer to reality with the introduction of induced plurip...
Reprogramming human somatic cells to pluripotency represents a valuable resource for research aiming...
Human embryonic stem cells (hESCs) closely resemble mouse epiblast stem cells exhibiting primed plur...
Induced pluripotent stem cells (iPSCs) with potential for therapeutic applications can be derived fr...
Induced pluripotent stem cells (iPSCs) with potential for therapeutic applications can be derived fr...
Induced pluripotent stem cells (iPSCs) with potential for therapeutic applications can be derived fr...
Human mid-trimester amniotic fluid stem cells (AFSC) have promising applications in regenerative med...
Human mid-trimester amniotic fluid stem cells (AFSC) have promising applications in regenerative med...
Restoring pluripotency using chemical compounds alone would be a major step forward in developing cl...
Restoring pluripotency using chemical compounds alone would be a major step forward in developing cl...
Amniotic fluid stem cells (AFSC) represent an attractive potential cell source for fetal and pediatr...
<p>Fetal stem cells are a unique type of adult stem cells that have been suggested to be broadly mul...
Introduction: The generation of human induced pluripotent stem cells (hiPSCs) derived from autologou...
Autologous cell-based therapies got a step closer to reality with the introduction of induced plurip...
Reprogramming human somatic cells to pluripotency represents a valuable resource for research aiming...
Human embryonic stem cells (hESCs) closely resemble mouse epiblast stem cells exhibiting primed plur...
Induced pluripotent stem cells (iPSCs) with potential for therapeutic applications can be derived fr...
Induced pluripotent stem cells (iPSCs) with potential for therapeutic applications can be derived fr...
Induced pluripotent stem cells (iPSCs) with potential for therapeutic applications can be derived fr...
Human mid-trimester amniotic fluid stem cells (AFSC) have promising applications in regenerative med...
Human mid-trimester amniotic fluid stem cells (AFSC) have promising applications in regenerative med...
Restoring pluripotency using chemical compounds alone would be a major step forward in developing cl...
Restoring pluripotency using chemical compounds alone would be a major step forward in developing cl...
Amniotic fluid stem cells (AFSC) represent an attractive potential cell source for fetal and pediatr...
<p>Fetal stem cells are a unique type of adult stem cells that have been suggested to be broadly mul...
Introduction: The generation of human induced pluripotent stem cells (hiPSCs) derived from autologou...
Autologous cell-based therapies got a step closer to reality with the introduction of induced plurip...
Reprogramming human somatic cells to pluripotency represents a valuable resource for research aiming...
Human embryonic stem cells (hESCs) closely resemble mouse epiblast stem cells exhibiting primed plur...