The derivation of gametes from patient-specific pluripotent stem cells may provide new perspectives for genetic parenthood for patients currently facing sterility. We use current data to assess the gamete differentiation potential of patient-specific pluripotent stem cells and to determine which reprogramming strategy holds the greatest promise for future clinical applications. First, we compare the two best established somatic cell reprogramming strategies: the production of induced pluripotent stem cells (iPSC) and somatic cell nuclear transfer followed by embryonic stem cell derivation (SCNT-ESC). Recent reports have indicated that these stem cells, though displaying a similar pluripotency potential, show important differences at the epi...
During embryonic development pluripotency is progressively lost irreversibly by cell division, diffe...
Background: Pluripotent stem cells have been derived from a variety of sources such as from the inne...
Human embryonic stem cells (ESCs) have the capability to differentiate into all somatic cell types, ...
The derivation of gametes from patient-specific pluripotent stem cells may provide new perspectives ...
AbstractPluripotent stem cells hold enomous potential for therapuetic applications in tissue replace...
It has long been discovered that human pluripotent cells could be isolated from the blastocyst state...
Human pluripotent stem cells hold potential for regenerative medicine, but available cell types have...
Lineage-restricted cells can be reprogrammed to a pluripotent state through overexpression of define...
Possessing the ability of self-renewal with immortalization and potential for differentiation into d...
Previous studies have shown that induced pluripotent stem cells (iPSCs) can be derived from fibrobla...
Pluripotent stem cells are basic cells with an indefinite self-renewal capacity and the potential to...
<div><p>Previous studies have shown that induced pluripotent stem cells (iPSCs) can be derived from ...
Pluripotent stem cells are basic cells with an indefinite self-renewal capacity and the potential to...
Human induced pluripotent stem cells (hiPSCs), derived from easily obtainable skin cells, possess en...
The concept of reprogramming of somatic cells has opened a new era in regenerative medicine. Transdu...
During embryonic development pluripotency is progressively lost irreversibly by cell division, diffe...
Background: Pluripotent stem cells have been derived from a variety of sources such as from the inne...
Human embryonic stem cells (ESCs) have the capability to differentiate into all somatic cell types, ...
The derivation of gametes from patient-specific pluripotent stem cells may provide new perspectives ...
AbstractPluripotent stem cells hold enomous potential for therapuetic applications in tissue replace...
It has long been discovered that human pluripotent cells could be isolated from the blastocyst state...
Human pluripotent stem cells hold potential for regenerative medicine, but available cell types have...
Lineage-restricted cells can be reprogrammed to a pluripotent state through overexpression of define...
Possessing the ability of self-renewal with immortalization and potential for differentiation into d...
Previous studies have shown that induced pluripotent stem cells (iPSCs) can be derived from fibrobla...
Pluripotent stem cells are basic cells with an indefinite self-renewal capacity and the potential to...
<div><p>Previous studies have shown that induced pluripotent stem cells (iPSCs) can be derived from ...
Pluripotent stem cells are basic cells with an indefinite self-renewal capacity and the potential to...
Human induced pluripotent stem cells (hiPSCs), derived from easily obtainable skin cells, possess en...
The concept of reprogramming of somatic cells has opened a new era in regenerative medicine. Transdu...
During embryonic development pluripotency is progressively lost irreversibly by cell division, diffe...
Background: Pluripotent stem cells have been derived from a variety of sources such as from the inne...
Human embryonic stem cells (ESCs) have the capability to differentiate into all somatic cell types, ...