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Nucleic Acids Research|January 29, 2002
Directed evolution of a recombinase for improved genomic integration at a native human sequenceC R Sclimenti, B Thyagarajan, M P CalosCurrent Opinion in Biotechnology|November 20, 1998
Epstein-Barr virus vectors for gene expression and transferC R Sclimenti, M P CalosNucleic Acids Research|August 23, 2000
An extrachromosomal tetracycline-regulatable system for mammalian cellsC R Sclimenti, E J Baba, M P CalosPlasmid|June 15, 1999
Epstein-Barr virus plasmid model system for analyzing recombination in human cellsJ E Phillips, B Thyagarajan, M P CalosMolecular Therapy : the Journal of the American Society of Gene Therapy|August 3, 2001
Epstein-Barr virus/human vector provides high-level, long-term expression of alpha1-antitrypsin in miceS M Stoll, C R Sclimenti, E J Baba, et al.Gene|February 26, 2000
Mammalian genomes contain active recombinase recognition sitesB Thyagarajan, M J Guimarães, A C Groth, et al.Proceedings of the National Academy of Sciences of the United States of America|May 10, 2000
A phage integrase directs efficient site-specific integration in human cellsA C Groth, E C Olivares, B Thyagarajan, et al.Molecular and Cellular Biology|May 22, 2001
Site-specific genomic integration in mammalian cells mediated by phage phiC31 integraseB Thyagarajan, E C Olivares, R P Hollis, et al.Trends in Genetics : TIG|November 1, 1996
The potential of extrachromosomal replicating vectors for gene therapyM P CalosClinical Pharmacology and Therapeutics|October 27, 2016
Genome Editing Techniques and Their Therapeutic ApplicationsM P CalosPageof 7