DNA Nuclear Targeting Sequences for Non-Viral Gene Delivery
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Wim E. Hennink | Enrico Mastrobattista | W. Hennink | R. Oosting | R. Kok | D. Crommelin | E. Mastrobattista | E. V. van Gaal | Roel van Eijk | M. Bąkowska | D. Feyen | Daan J. A. Crommelin | Roel van Eijk | Robbert Jan Kok | Ronald S. Oosting | Ethlinn V. B. van Gaal | Marta Bakowska | Dries Feyen
[1] A S Verkman,et al. Size-dependent DNA Mobility in Cytoplasm and Nucleus* , 2000, The Journal of Biological Chemistry.
[2] Hiroyuki Mizuguchi,et al. Quantitative and mechanism-based investigation of post-nuclear delivery events between adenovirus and lipoplex , 2007, Nucleic acids research.
[3] J. Gasiorowski,et al. Postmitotic nuclear retention of episomal plasmids is altered by DNA labeling and detection methods. , 2005, Molecular therapy : the journal of the American Society of Gene Therapy.
[4] A. Mikos,et al. Tracking the intracellular path of poly(ethylenimine)/DNA complexes for gene delivery. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[5] A. Logan,et al. Factors influencing the ability of nuclear localization sequence peptides to enhance nonviral gene delivery. , 2004, Bioconjugate chemistry.
[6] Marie Carrière,et al. NLS bioconjugates for targeting therapeutic genes to the nucleus. , 2003, Advanced drug delivery reviews.
[7] Arto Urtti,et al. Intracellular DNA release and elimination correlate poorly with transgene expression after non-viral transfection. , 2009, Journal of controlled release : official journal of the Controlled Release Society.
[8] Yuichi Yamasaki,et al. In situ single cell observation by fluorescence resonance energy transfer reveals fast intra‐cytoplasmic delivery and easy release of plasmid DNA complexed with linear polyethylenimine , 2004, The journal of gene medicine.
[9] D. Dean,et al. Import of plasmid DNA into the nucleus is sequence specific. , 1997, Experimental cell research.
[10] Yasuo Shinohara,et al. Quantitative Analysis of Correlation Between Number of Nuclear Plasmids and Gene Expression Activity After Transfection with Cationic Liposomes , 2002, Pharmaceutical Research.
[11] U. Kutay,et al. Transport between the cell nucleus and the cytoplasm. , 1999, Annual review of cell and developmental biology.
[12] J. Behr,et al. Gene delivery: a single nuclear localization signal peptide is sufficient to carry DNA to the cell nucleus. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[13] W. Zimmer,et al. Nuclear entry of nonviral vectors , 2005, Gene Therapy.
[14] C. Pichon,et al. Nuclear delivery of NFκB-assisted DNA/polymer complexes: plasmid DNA quantitation by confocal laser scanning microscopy and evidence of nuclear polyplexes by FRET imaging , 2008, Nucleic acids research.
[15] I. Maclachlan,et al. Cationic lipid-mediated transfection of cells in culture requires mitotic activity , 1999, Gene Therapy.
[16] A. Mesika,et al. A regulated, NFkappaB-assisted import of plasmid DNA into mammalian cell nuclei. , 2001, Molecular therapy : the journal of the American Society of Gene Therapy.
[17] S. Kozubek,et al. The role of actin and microtubule networks in plasmid DNA intracellular trafficking. , 2007, Acta biochimica Polonica.
[18] M. Monsigny,et al. Cytoskeletal involvement in the cellular trafficking of plasmid/PEI derivative complexes. , 2007, Journal of controlled release : official journal of the Controlled Release Society.
[19] Mario R. Capecchi,et al. High efficiency transformation by direct microinjection of DNA into cultured mammalian cells , 1980, Cell.
[20] M. Hashida,et al. Insertion of nuclear factor-kappaB binding sequence into plasmid DNA for increased transgene expression in colon carcinoma cells. , 2008, Journal of biotechnology.
[21] N. Minakawa,et al. No enhancement of nuclear entry by direct conjugation of a nuclear localization signal peptide to linearized DNA. , 2003, Bioconjugate chemistry.
[22] N. M. Rao,et al. The role of plasmid constructs containing the SV40 DNA nuclear-targeting sequence in cationic lipid-mediated DNA delivery. , 2005, Cellular & molecular biology letters.
[23] J. Birchall,et al. Nuclear localisation and pDNA condensation in non‐viral gene delivery , 2007, The journal of gene medicine.
[24] M. Mano,et al. S413‐PV cell penetrating peptide and cationic liposomes act synergistically to mediate intracellular delivery of plasmid DNA , 2008, The journal of gene medicine.
[25] D. W. Pack,et al. On the kinetics of polyplex endocytic trafficking: implications for gene delivery vector design. , 2002, Molecular therapy : the journal of the American Society of Gene Therapy.
[26] D. Lauffenburger,et al. Vector unpacking as a potential barrier for receptor-mediated polyplex gene delivery. , 2000, Biotechnology and bioengineering.
[27] G. Moseley,et al. Targeted delivery to the nucleus. , 2007, Advanced drug delivery reviews.
[28] T. Bieber,et al. Intracellular route and transcriptional competence of polyethylenimine-DNA complexes. , 2002, Journal of controlled release : official journal of the Controlled Release Society.
[29] Joseph Zabner,et al. Cellular and Molecular Barriers to Gene Transfer by a Cationic Lipid (*) , 1995, The Journal of Biological Chemistry.
[30] D. Scherman,et al. Coupling of importin beta binding peptide on plasmid DNA: transfection efficiency is increased by modification of lipoplex's physico-chemical properties , 2003, BMC biotechnology.
[31] C. van Nostrum,et al. Endosomal escape of polymeric gene delivery complexes is not always enhanced by polymers buffering at low pH. , 2004, Biomacromolecules.
[32] Richard N Cohen,et al. Quantification of plasmid DNA copies in the nucleus after lipoplex and polyplex transfection. , 2009, Journal of controlled release : official journal of the Controlled Release Society.
[33] Yasuo Shinohara,et al. An assessment of relative transcriptional availability from nonviral vectors. , 2004, International journal of pharmaceutics.
[34] J. Utvik,et al. DNA injection into single cells of intact mice. , 1999, Human gene therapy.
[35] D. Dean,et al. Intracellular trafficking of plasmids for gene therapy: mechanisms of cytoplasmic movement and nuclear import. , 2006, Current gene therapy.
[36] M. Gondo,et al. Muscle-specific enhancement of gene expression by incorporation of SV40 enhancer in the expression plasmid , 2001, Gene Therapy.
[37] W. Zimmer,et al. Smooth Muscle-Specific Gene Delivery in the Vasculature Based on Restriction of DNA Nuclear Import , 2008, Experimental biology and medicine.
[38] D. Crommelin,et al. An NLS peptide covalently linked to linear DNA does not enhance transfection efficiency of cationic polymer based gene delivery systems , 2005, The journal of gene medicine.
[39] B. Hartmann,et al. An optimized extended DNA kappa B site that enhances plasmid DNA nuclear import and gene expression , 2009, The journal of gene medicine.
[40] D. Scherman,et al. Coupling of nuclear localization signals to plasmid DNA and specific interaction of the conjugates with importin alpha. , 1999, Bioconjugate chemistry.
[41] S. Adam,et al. The nuclear pore complex , 2001, Genome Biology.
[42] W. Hennink,et al. Fluorescence in situ hybridization to monitor the intracellular location and accessibility of plasmid DNA delivered by cationic polymer-based gene carriers. , 2009, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[43] M K Foecking,et al. Powerful and versatile enhancer-promoter unit for mammalian expression vectors. , 1986, Gene.
[44] Hadas Keren,et al. Effect of peptides bearing nuclear localization signals on therapeutic ultrasound mediated gene delivery , 2008, The journal of gene medicine.
[45] W. Zimmer,et al. Cell-specific nuclear import of plasmid DNA , 1999, Gene Therapy.
[46] C. Rudolph,et al. Targeting of the glucocorticoid hormone receptor with plasmid DNA comprising glucocorticoid response elements improves nonviral gene transfer efficiency in the lungs of mice , 2007, The journal of gene medicine.
[47] G. Koch,et al. Synchronization of HeLa cell cultures by inhibition of DNA polymerase alpha with aphidicolin. , 1980, Nucleic acids research.
[48] D. Dean,et al. Effect of a DNA nuclear targeting sequence on gene transfer and expression of plasmids in the intact vasculature , 2003, Gene Therapy.
[49] A. Graessmann,et al. Helper activity for gene expression, a novel function of the SV40 enhancer. , 1989, Nucleic acids research.
[50] Alexander Bohla,et al. Transgene expression of transfected supercoiled plasmid DNA concatemers in mammalian cells , 2009, The journal of gene medicine.
[51] T. Giorgio,et al. Nuclear-associated plasmid, but not cell-associated plasmid, is correlated with transgene expression in cultured mammalian cells. , 2000, Molecular therapy : the journal of the American Society of Gene Therapy.
[52] M. Bassik,et al. DNA vector chemistry: The covalent attachment of signal peptides to plasmid DNA , 1998, Nature Biotechnology.
[53] M. Monsigny,et al. Transcription of plasmid DNA: influence of plasmid DNA/polyethylenimine complex formation. , 2005, Journal of controlled release : official journal of the Controlled Release Society.
[54] J. Wolff,et al. A nuclear localization signal can enhance both the nuclear transport and expression of 1 kb DNA. , 1999, Journal of cell science.
[55] Takao Hayakawa,et al. Quantitative comparison of intracellular trafficking and nuclear transcription between adenoviral and lipoplex systems. , 2006, Molecular therapy : the journal of the American Society of Gene Therapy.
[56] H. O'brodovich,et al. Metabolic instability of plasmid DNA in the cytosol: a potential barrier to gene transfer , 1999, Gene Therapy.
[57] A. Mesika,et al. A Regulated, NFκB-Assisted Import of Plasmid DNA into Mammalian Cell Nuclei , 2001 .
[58] Lars J. Brandén,et al. A peptide nucleic acid–nuclear localization signal fusion that mediates nuclear transport of DNA , 1999, Nature Biotechnology.
[59] G. Ghosh,et al. Enhanced intracellular mobility and nuclear accumulation of DNA plasmids associated with a karyophilic protein. , 2005, Human gene therapy.
[60] D. Dean,et al. Intracellular trafficking of plasmids during transfection is mediated by microtubules. , 2006, Molecular therapy : the journal of the American Society of Gene Therapy.
[61] L. Smith,et al. Sequence requirements for plasmid nuclear import. , 1999, Experimental cell research.
[62] G. Moseley,et al. The efficiency of nuclear plasmid DNA delivery is a critical determinant of transgene expression at the single cell level , 2010, The journal of gene medicine.
[63] K. Luby-Phelps,et al. Cytoarchitecture and physical properties of cytoplasm: volume, viscosity, diffusion, intracellular surface area. , 2000, International review of cytology.