Differentiated cells can be experimentally reprogrammed back to pluripotency by nuclear transfer, cell fusion or induced pluripotent stem cell technology. Nuclear transfer and cell fusion can lead to efficient reprogramming of gene expression. The egg and oocyte reprogramming process includes the exchange of somatic proteins for oocyte proteins, the post-translational modification of histones and the demethylation of DNA. These events occur in an ordered manner and on a defined timescale, indicating that reprogramming by nuclear transfer and by cell fusion rely on deterministic processes.status: publishe
Fertile offspring have been produced by nuclear transfer from adult somatic cells in several mammali...
Patient-specific somatic cell reprogramming is likely to have a large impact on medicine by providin...
During the natural event of fertilization highly differentiated spermatozoa may revert to the totipo...
Differentiated cells can be experimentally reprogrammed back to pluripotency by nuclear transfer, ce...
There is currently particular interest in the field of nuclear reprogramming, a process by which the...
The differentiated state of somatic cells is highly stable, but it can be experimentally reversed. T...
Nuclear reprogramming describes a switch in gene expression of one kind of cell to that of another u...
Abstract In the course of normal development, cells rarely are able to revert from a differentiated ...
Patient-specific somatic cell reprogramming is likely to have a large impact on medicine by providin...
The natural reprogramming of the mammalian egg and sperm genomes is an efficient process that takes ...
Reprogramming of somatic cells to a pluripotent embryonic stem cell-like state has been achieved by ...
Fertile offspring have been produced by nuclear transfer from adult somatic cells in several mammali...
We review experiments in which somatic cell nuclei are transplanted singly to enucleated eggs (metap...
Transplantation of Xenopus laevis cell nucleus to enucleated Xenopus egg leads to the ge...
Somatic cell nuclear transfer (SCNT), the technique commonly known as cloning, permits transformatio...
Fertile offspring have been produced by nuclear transfer from adult somatic cells in several mammali...
Patient-specific somatic cell reprogramming is likely to have a large impact on medicine by providin...
During the natural event of fertilization highly differentiated spermatozoa may revert to the totipo...
Differentiated cells can be experimentally reprogrammed back to pluripotency by nuclear transfer, ce...
There is currently particular interest in the field of nuclear reprogramming, a process by which the...
The differentiated state of somatic cells is highly stable, but it can be experimentally reversed. T...
Nuclear reprogramming describes a switch in gene expression of one kind of cell to that of another u...
Abstract In the course of normal development, cells rarely are able to revert from a differentiated ...
Patient-specific somatic cell reprogramming is likely to have a large impact on medicine by providin...
The natural reprogramming of the mammalian egg and sperm genomes is an efficient process that takes ...
Reprogramming of somatic cells to a pluripotent embryonic stem cell-like state has been achieved by ...
Fertile offspring have been produced by nuclear transfer from adult somatic cells in several mammali...
We review experiments in which somatic cell nuclei are transplanted singly to enucleated eggs (metap...
Transplantation of Xenopus laevis cell nucleus to enucleated Xenopus egg leads to the ge...
Somatic cell nuclear transfer (SCNT), the technique commonly known as cloning, permits transformatio...
Fertile offspring have been produced by nuclear transfer from adult somatic cells in several mammali...
Patient-specific somatic cell reprogramming is likely to have a large impact on medicine by providin...
During the natural event of fertilization highly differentiated spermatozoa may revert to the totipo...