Human artificial chromosome (HAC) technology has developed rapidly over the past four years. Recent reports show that HACs are useful gene transfer vectors in expression studies and important tools for determining human chromosome function. HACs have been used to complement gene deficiencies in human cultured cells by transfer of large genomic loci also containing the regulatory elements for appropriate expression. And, they now offer the possibility to express large human transgenes in animals, especially in mouse models of human genetic diseases
Exactly controlled conditional gene expressing systems are crucial for genomic functional research, ...
Human chromosome fragments (hCFs) and human artificial chromosomes (HACs) can be transferred into mo...
In a comparative study, we show that human artificial chromosome (HAC) vectors based on alpha-satell...
Artificial chromosomes is an exciting technology which has developed rapidly since the late 1990s. H...
Human artificial chromosomes (HACs) are autonomous molecules that can function and segregate as norm...
At the gene therapy session of the ICCXV Chromosome Conference (2004), recent advances in the constr...
Human artificial chromosome (HAC) vectors are an important gene transfer system for expression and c...
A human artificial chromosome (HAC) vector was constructed from a 1-Mb yeast artificial chromosome (...
AlphoidtetO-type human artificial chromosome (HAC) has been recently synthetized as a novel class of...
We have shown functional complementation of a genetic deficiency in human cultured cells, using arti...
Artificial chromosomes, also known as human-made or synthetic chromosomes, represent a groundbreakin...
Human Artificial Chromosomes (HAC) are fascinating extrachromosomal molecules that stay independentl...
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...
Artificial chromosomes (ACs) are highly promising vectors for use in gene therapy applications. They...
Exactly controlled conditional gene expressing systems are crucial for genomic functional research, ...
Human chromosome fragments (hCFs) and human artificial chromosomes (HACs) can be transferred into mo...
In a comparative study, we show that human artificial chromosome (HAC) vectors based on alpha-satell...
Artificial chromosomes is an exciting technology which has developed rapidly since the late 1990s. H...
Human artificial chromosomes (HACs) are autonomous molecules that can function and segregate as norm...
At the gene therapy session of the ICCXV Chromosome Conference (2004), recent advances in the constr...
Human artificial chromosome (HAC) vectors are an important gene transfer system for expression and c...
A human artificial chromosome (HAC) vector was constructed from a 1-Mb yeast artificial chromosome (...
AlphoidtetO-type human artificial chromosome (HAC) has been recently synthetized as a novel class of...
We have shown functional complementation of a genetic deficiency in human cultured cells, using arti...
Artificial chromosomes, also known as human-made or synthetic chromosomes, represent a groundbreakin...
Human Artificial Chromosomes (HAC) are fascinating extrachromosomal molecules that stay independentl...
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...
Artificial chromosomes (ACs) are highly promising vectors for use in gene therapy applications. They...
Exactly controlled conditional gene expressing systems are crucial for genomic functional research, ...
Human chromosome fragments (hCFs) and human artificial chromosomes (HACs) can be transferred into mo...
In a comparative study, we show that human artificial chromosome (HAC) vectors based on alpha-satell...