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Human Gene Therapy|August 1, 1993
Development and analysis of recombinant adenoviruses for gene therapy of cystic fibrosisD P Rich, L A Couture, L M Cardoza, et al.Nature|September 27, 1990
Expression of cystic fibrosis transmembrane conductance regulator corrects defective chloride channel regulation in cystic fibrosis airway epithelial cellsD P Rich, M P Anderson, R J Gregory, et al.The American Journal of Physiology|August 5, 1998
Partial restoration of cAMP-stimulated CFTR chloride channel activity in DeltaF508 cells by deoxyspergualinC Jiang, S L Fang, Y F Xiao, et al.Human Gene Therapy|July 29, 1998
Potentiation of gene transfer to the mouse lung by complexes of adenovirus vector and polycations improves therapeutic potentialJ M Kaplan, S E Pennington, J A St George, et al.Nature Genetics|January 1, 1994
Safety and efficacy of repetitive adenovirus-mediated transfer of CFTR cDNA to airway epithelia of primates and cotton ratsJ Zabner, D M Petersen, A P Puga, et al.Nature Genetics|September 1, 1992
Human cystic fibrosis transmembrane conductance regulator directed to respiratory epithelial cells of transgenic miceJ A Whitsett, C R Dey, B R Stripp, et al.Human Gene Therapy|August 4, 2001
Aerosol and lobar administration of a recombinant adenovirus to individuals with cystic fibrosis. I. Methods, safety, and clinical implicationsP M Joseph, B P O'Sullivan, A Lapey, et al.Dysphagia|November 2, 2024
A Ducted, Biomimetic Nipple Improves Aspects of Infant Feeding Physiology and Performance in an Animal ModelC J Mayerl, E B Kaczmarek, A E Smith, et al.Human Gene Therapy|January 1, 1997
Characterization of factors involved in modulating persistence of transgene expression from recombinant adenovirus in the mouse lungJ M Kaplan, D Armentano, T E Sparer, et al.Bone Marrow Transplantation|March 22, 2016
Personalized home-based interval exercise training may improve cardiorespiratory fitness in cancer patients preparing to undergo hematopoietic cell transplantationW A Wood, B Phillips, A E Smith-Ryan, et al.Pageof 22