Development of safe and efficient approaches for gene delivery in human embryonic stem cells (hESc) and particularly in human induced pluripotent stem (hiPS) cells, which can be derived in a person-specific manner, is considered to be imperative for harnessing their full potential in both the basic and applied research. The aim of this study was to evaluate the potential of human artificial chromosome (HAC) for gene delivery and expression in hESc and hiPS cells. HAC offers many potential advantages including the provision for carrying large genes with corresponding regulatory elements to obtain long-term regulated gene expression. In addition, they can replicate and segregate independently without integration into the host cell genome. To ...
Human artificial chromosomes (HACs) have unique characteristics as gene-delivery vectors, including ...
Human induced pluripotent stem cells (hiPSCs), derived from easily obtainable skin cells, possess en...
iPSC technology has the potential to generate patient specific pluripotent cells for use in stem cel...
Development of safe and efficient approaches for gene delivery in human embryonic stem cells (hESc) ...
We present a novel and efficient non-integrating gene expression system in human embryonic stem cell...
Human artificial chromosome (HAC) vectors are an important gene transfer system for expression and c...
We present a novel and efficient non-integrating gene expression system in human embryonic stem cell...
Human Artificial Chromosomes (HACs) have been confirmed as viable gene expression vectors and a pote...
AlphoidtetO-type human artificial chromosome (HAC) has been recently synthetized as a novel class of...
Gene expression studies and gene therapy require efficient gene delivery into cells. Different techn...
Human artificial chromosomes (HACs) have unique characteristics as gene-delivery vectors, including ...
Induced pluripotent stem (iPS) cells are valuable for generating patient-specific disease models. ...
Herpes simplex type 1 (HSV-1) amplicon vectors possess a number of features that make them excellent...
In the last years, our laboratory has developed and refined a novel platform of episomal self-sustai...
Alphoid(tetO)-type human artificial chromosome (HAC) has been recently synthetized as a novel class ...
Human artificial chromosomes (HACs) have unique characteristics as gene-delivery vectors, including ...
Human induced pluripotent stem cells (hiPSCs), derived from easily obtainable skin cells, possess en...
iPSC technology has the potential to generate patient specific pluripotent cells for use in stem cel...
Development of safe and efficient approaches for gene delivery in human embryonic stem cells (hESc) ...
We present a novel and efficient non-integrating gene expression system in human embryonic stem cell...
Human artificial chromosome (HAC) vectors are an important gene transfer system for expression and c...
We present a novel and efficient non-integrating gene expression system in human embryonic stem cell...
Human Artificial Chromosomes (HACs) have been confirmed as viable gene expression vectors and a pote...
AlphoidtetO-type human artificial chromosome (HAC) has been recently synthetized as a novel class of...
Gene expression studies and gene therapy require efficient gene delivery into cells. Different techn...
Human artificial chromosomes (HACs) have unique characteristics as gene-delivery vectors, including ...
Induced pluripotent stem (iPS) cells are valuable for generating patient-specific disease models. ...
Herpes simplex type 1 (HSV-1) amplicon vectors possess a number of features that make them excellent...
In the last years, our laboratory has developed and refined a novel platform of episomal self-sustai...
Alphoid(tetO)-type human artificial chromosome (HAC) has been recently synthetized as a novel class ...
Human artificial chromosomes (HACs) have unique characteristics as gene-delivery vectors, including ...
Human induced pluripotent stem cells (hiPSCs), derived from easily obtainable skin cells, possess en...
iPSC technology has the potential to generate patient specific pluripotent cells for use in stem cel...