Gene expression studies and gene therapy require efficient gene delivery into cells. Different technologies by viral and non-viral mechanisms have been used for gene delivery into cells. Small gene vectors transfer across the cell membrane with a relatively high efficiency, but not large genes or entire loci spanning several kilobases, which do not remain intact following introduction. Previously, we developed an efficient delivery system based on herpes virus simplex type 1 (HSV-1) amplicons to transfer large fragments of DNA incorporated in human artificial chromosome (HAC) vectors into the nucleus of human cells. The HSV-1 amplicon lacks the signals for cleavage and replication of its own genome, yet each amplicon has the capacity to inc...
Human artificial chromosomes (HACs) are gene-delivery vectors suitable for introducing large DNA fra...
At the gene therapy session of the ICCXV Chromosome Conference (2004), recent advances in the constr...
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...
Human artificial chromosome (HAC) vectors are an important gene transfer system for expression and c...
Human Artificial Chromosomes (HACs) have been confirmed as viable gene expression vectors and a pote...
Human Artificial Chromosomes (HACs) have been confirmed as viable gene expression vectors and a pote...
Human Artificial Chromosomes (HACs) have been confirmed as viable gene expression vectors and a pote...
Development of safe and efficient approaches for gene delivery in human embryonic stem cells (hESc) ...
Development of safe and efficient approaches for gene delivery in human embryonic stem cells (hESc) ...
Development of safe and efficient approaches for gene delivery in human embryonic stem cells (hESc) ...
Herpes simplex type 1 (HSV-1) amplicon vectors possess a number of features that make them excellent...
Herpes simplex virus type 1 (HSV-1) is a major human pathogen whose lifestyle is based on a long-ter...
Human artificial chromosomes (HACs) are gene-delivery vectors suitable for introducing large DNA fra...
Amplicons are defective and non-integrative vectors derived from herpes simplex virus type 1. As the...
Human artificial chromosomes (HACs) are gene-delivery vectors suitable for introducing large DNA fra...
At the gene therapy session of the ICCXV Chromosome Conference (2004), recent advances in the constr...
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...
Human artificial chromosome (HAC) vectors are an important gene transfer system for expression and c...
Human Artificial Chromosomes (HACs) have been confirmed as viable gene expression vectors and a pote...
Human Artificial Chromosomes (HACs) have been confirmed as viable gene expression vectors and a pote...
Human Artificial Chromosomes (HACs) have been confirmed as viable gene expression vectors and a pote...
Development of safe and efficient approaches for gene delivery in human embryonic stem cells (hESc) ...
Development of safe and efficient approaches for gene delivery in human embryonic stem cells (hESc) ...
Development of safe and efficient approaches for gene delivery in human embryonic stem cells (hESc) ...
Herpes simplex type 1 (HSV-1) amplicon vectors possess a number of features that make them excellent...
Herpes simplex virus type 1 (HSV-1) is a major human pathogen whose lifestyle is based on a long-ter...
Human artificial chromosomes (HACs) are gene-delivery vectors suitable for introducing large DNA fra...
Amplicons are defective and non-integrative vectors derived from herpes simplex virus type 1. As the...
Human artificial chromosomes (HACs) are gene-delivery vectors suitable for introducing large DNA fra...
At the gene therapy session of the ICCXV Chromosome Conference (2004), recent advances in the constr...
We present a novel and efficient non-integrating gene expression system in human embryonic stem cell...