We present a novel and efficient non-integrating gene expression system in human embryonic stem cells (hESc) utilizing human artificial chromosomes (HAC), which behave as autonomous endogenous host chromosomes and segregate correctly during cell division. HAC are important vectors for investigating the organization and structure of the kinetochore, and gene complementation. HAC have so far been obtained in immortalized or tumour-derived cell lines, but never in stem cells, thus limiting their potential therapeutic application. In this work, we modified the herpes simplex virus type 1 amplicon system for efficient transfer of HAC DNA into two hESc. The deriving stable clones generated green fluorescent protein gene-expressing HAC at high fre...
Human Artificial Chromosomes (HACs) have been confirmed as viable gene expression vectors and a pote...
Human artificial chromosomes (HACs) have unique characteristics as gene-delivery vectors, including ...
Human artificial chromosomes (HACs) represent a novel promising episomal system for functional genom...
We present a novel and efficient non-integrating gene expression system in human embryonic stem cell...
We present a novel and efficient non-integrating gene expression system in human embryonic stem cell...
Development of safe and efficient approaches for gene delivery in human embryonic stem cells (hESc) ...
Human artificial chromosome (HAC) vectors are an important gene transfer system for expression and c...
Human artificial chromosomes (HACs) are autonomous molecules that can function and segregate as norm...
AlphoidtetO-type human artificial chromosome (HAC) has been recently synthetized as a novel class of...
Human artificial chromosomes (HACs) have unique characteristics as gene-delivery vectors, including ...
Human Artificial Chromosomes (HAC) are fascinating extrachromosomal molecules that stay independentl...
Artificial chromosomes is an exciting technology which has developed rapidly since the late 1990s. H...
A human artificial chromosome (HAC) vector was constructed from a 1-Mb yeast artificial chromosome (...
De novo assembled alphoid(tetO)-type human artificial chromosomes (HACs) represent a novel promising...
Alphoid(tetO)-type human artificial chromosome (HAC) has been recently synthetized as a novel class ...
Human Artificial Chromosomes (HACs) have been confirmed as viable gene expression vectors and a pote...
Human artificial chromosomes (HACs) have unique characteristics as gene-delivery vectors, including ...
Human artificial chromosomes (HACs) represent a novel promising episomal system for functional genom...
We present a novel and efficient non-integrating gene expression system in human embryonic stem cell...
We present a novel and efficient non-integrating gene expression system in human embryonic stem cell...
Development of safe and efficient approaches for gene delivery in human embryonic stem cells (hESc) ...
Human artificial chromosome (HAC) vectors are an important gene transfer system for expression and c...
Human artificial chromosomes (HACs) are autonomous molecules that can function and segregate as norm...
AlphoidtetO-type human artificial chromosome (HAC) has been recently synthetized as a novel class of...
Human artificial chromosomes (HACs) have unique characteristics as gene-delivery vectors, including ...
Human Artificial Chromosomes (HAC) are fascinating extrachromosomal molecules that stay independentl...
Artificial chromosomes is an exciting technology which has developed rapidly since the late 1990s. H...
A human artificial chromosome (HAC) vector was constructed from a 1-Mb yeast artificial chromosome (...
De novo assembled alphoid(tetO)-type human artificial chromosomes (HACs) represent a novel promising...
Alphoid(tetO)-type human artificial chromosome (HAC) has been recently synthetized as a novel class ...
Human Artificial Chromosomes (HACs) have been confirmed as viable gene expression vectors and a pote...
Human artificial chromosomes (HACs) have unique characteristics as gene-delivery vectors, including ...
Human artificial chromosomes (HACs) represent a novel promising episomal system for functional genom...