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Bioconjugate Chemistry|July 20, 1999
Size reduction of galactosylated PEI/DNA complexes improves lectin-mediated gene transfer into hepatocytesT Bettinger, J S Remy, P ErbacherGene Therapy|May 26, 1999
Gene transfer with synthetic virus-like particles via the integrin-mediated endocytosis pathwayP Erbacher, J S Remy, J P BehrBiochimica Et Biophysica Acta|February 21, 1997
The reduction of the positive charges of polylysine by partial gluconoylation increases the transfection efficiency of polylysine/DNA complexesP Erbacher, A C Roche, M Monsigny, et al.Bioconjugate Chemistry|July 1, 1995
Glycosylated polylysine/DNA complexes: gene transfer efficiency in relation with the size and the sugar substitution level of glycosylated polylysines and with the plasmid sizeP Erbacher, A C Roche, M Monsigny, et al.Experimental Cell Research|May 25, 1996
Putative role of chloroquine in gene transfer into a human hepatoma cell line by DNA/lactosylated polylysine complexesP Erbacher, A C Roche, M Monsigny, et al.Bioconjugate Chemistry|November 17, 1998
Convenient polymer-supported synthetic route to heterobifunctional polyethylene glycolsT Bettinger, J S Remy, P Erbacher, et al.Gene Therapy|August 3, 2000
Protective copolymers for nonviral gene vectors: synthesis, vector characterization and application in gene deliveryD Finsinger, J S Remy, P Erbacher, et al.The Journal of Gene Medicine|May 16, 2000
Systemic linear polyethylenimine (L-PEI)-mediated gene delivery in the mouseS M Zou, P Erbacher, J S Remy, et al.Pharmaceutical Research|October 2, 1998
Chitosan-based vector/DNA complexes for gene delivery: biophysical characteristics and transfection abilityP Erbacher, S Zou, T Bettinger, et al.Biomacromolecules|November 17, 2001
Peptide hormone covalently bound to polyelectrolytes and embedded into multilayer architectures conserving full biological activityJ Chluba, J C Voegel, G Decher, et al.Pageof 3