The dramatic discovery that somatic cells could be reprogrammed to induced pluripotent stem cells (iPSCs), by the expression of just four factors, has opened new opportunities for regenerative medicine and novel ways of modeling human diseases. Extensive research over the short time since the first iPSCs were generated has yielded the ability to reprogram various cell types using a diverse range of methods. However the duration, efficiency, and safety of induced reprogramming have remained a persistent limitation to achieving a robust experimental and therapeutic system. The field has worked to resolve these issues through technological advances using non-integrative approaches, factor replacement or complementation with microRNA, shRNA and...
AbstractA better understanding of the cellular and molecular mechanisms involved in the reprogrammin...
Induced pluripotent stem cells (iPSCs) have been produced from a number of mouse and human somatic c...
Abstract With their capability to undergo unlimited self-renewal and to differentiate into all cell ...
The advent of induced pluripotent stem cells (iPSCs) has brought the goal of using patient-derived c...
The discovery that somatic cells can be reprogrammed to induced pluripotent stem cells (iPSCs) by th...
EDITORIAL COMMENT Cells have some specific molecular and physiological properties that act their ...
Reprogramming relies on the concept that cellular fate is plastic, and therefore a considerable effo...
BACKGROUND: Less than a decade ago the prospect for reprogramming the human somatic cell looked blea...
BACKGROUND: Less than a decade ago the prospect for reprogramming the human somatic cell looked blea...
BACKGROUND: Less than a decade ago the prospect for reprogramming the human somatic cell looked blea...
Somatic cell reprogramming consists of the induction of a complex sequence of events that results in...
In reprogramming, cellular transition to pluripotency only occurs in few cells. My thesisis focused ...
In reprogramming, cellular transition to pluripotency only occurs in few cells. My thesisis focused ...
A better understanding of the cellular and molecular mechanisms involved in the reprogramming of som...
Pluripotent stem cells, having long been considered the fountain of youth, have caught the attention...
AbstractA better understanding of the cellular and molecular mechanisms involved in the reprogrammin...
Induced pluripotent stem cells (iPSCs) have been produced from a number of mouse and human somatic c...
Abstract With their capability to undergo unlimited self-renewal and to differentiate into all cell ...
The advent of induced pluripotent stem cells (iPSCs) has brought the goal of using patient-derived c...
The discovery that somatic cells can be reprogrammed to induced pluripotent stem cells (iPSCs) by th...
EDITORIAL COMMENT Cells have some specific molecular and physiological properties that act their ...
Reprogramming relies on the concept that cellular fate is plastic, and therefore a considerable effo...
BACKGROUND: Less than a decade ago the prospect for reprogramming the human somatic cell looked blea...
BACKGROUND: Less than a decade ago the prospect for reprogramming the human somatic cell looked blea...
BACKGROUND: Less than a decade ago the prospect for reprogramming the human somatic cell looked blea...
Somatic cell reprogramming consists of the induction of a complex sequence of events that results in...
In reprogramming, cellular transition to pluripotency only occurs in few cells. My thesisis focused ...
In reprogramming, cellular transition to pluripotency only occurs in few cells. My thesisis focused ...
A better understanding of the cellular and molecular mechanisms involved in the reprogramming of som...
Pluripotent stem cells, having long been considered the fountain of youth, have caught the attention...
AbstractA better understanding of the cellular and molecular mechanisms involved in the reprogrammin...
Induced pluripotent stem cells (iPSCs) have been produced from a number of mouse and human somatic c...
Abstract With their capability to undergo unlimited self-renewal and to differentiate into all cell ...