Synthetic, self-assembly ABCD nanoparticles; a structural paradigm for viable synthetic non-viral vectors.
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[1] Andrew D. Miller,et al. Site-directed genome modification: derivatives of DNA-modifying enzymes as targeting tools. , 2005, Trends in biotechnology.
[2] Andrew D. Miller,et al. Site-directed genome modification: nucleic acid and protein modules for targeted integration and gene correction. , 2005, Trends in biotechnology.
[3] Andrew D. Miller,et al. Synthesis and Application of Integrin Targeting Lipopeptides in Targeted Gene Delivery , 2005, Chembiochem : a European journal of chemical biology.
[4] Andrew D. Miller,et al. Lipidic carriers of siRNA: differences in the formulation, cellular uptake, and delivery with plasmid DNA. , 2004, Biochemistry.
[5] A. Rait,et al. A sterically stabilized immunolipoplex for systemic administration of a therapeutic gene , 2004, Gene Therapy.
[6] Shiroh Futaki,et al. Development of a non-viral multifunctional envelope-type nano device by a novel lipid film hydration method. , 2004, Journal of controlled release : official journal of the Controlled Release Society.
[7] Tomoyuki Yamada,et al. siDirect: highly effective, target-specific siRNA design software for mammalian RNA interference , 2004, Nucleic Acids Res..
[8] A. Balaban,et al. Pyridinium cationic lipids in gene delivery: a structure-activity correlation study. , 2004, Journal of medicinal chemistry.
[9] Andrew D. Miller,et al. The facile solid-phase synthesis of cholesterol-based polyamine lipids , 2004 .
[10] Qi Zhou,et al. Enhanced transfection efficiency of a systemically delivered tumor-targeting immunolipoplex by inclusion of a pH-sensitive histidylated oligolysine peptide. , 2004, Nucleic acids research.
[11] J. Bouchard,et al. Dystrophin expression in myofibers of Duchenne muscular dystrophy patients following intramuscular injections of normal myogenic cells. , 2004, Molecular therapy : the journal of the American Society of Gene Therapy.
[12] R. Harbottle,et al. Development of a Self-assembling Nuclear Targeting Vector System Based on the Tetracycline Repressor Protein* , 2004, Journal of Biological Chemistry.
[13] K. Ui-Tei,et al. Guidelines for the selection of highly effective siRNA sequences for mammalian and chick RNA interference. , 2004, Nucleic acids research.
[14] C. Magin-Lachmann,et al. In vitro and in vivo delivery of intact BAC DNA – comparison of different methods , 2004, The journal of gene medicine.
[15] K. Ewert,et al. Surface functionalized cationic lipid-DNA complexes for gene delivery: PEGylated lamellar complexes exhibit distinct DNA-DNA interaction regimes. , 2004, Biophysical journal.
[16] D. Hoekstra,et al. Characterization and transfection properties of lipoplexes stabilized with novel exchangeable polyethylene glycol-lipid conjugates. , 2004, Biochimica et biophysica acta.
[17] Michele P Calos,et al. Phage integrases: biology and applications. , 2004, Journal of molecular biology.
[18] W. Pardridge,et al. In vivo knockdown of gene expression in brain cancer with intravenous RNAi in adult rats , 2003, The journal of gene medicine.
[19] W. Pardridge,et al. Absence of Toxicity of Chronic Weekly Intravenous Gene Therapy with Pegylated Immunoliposomes , 2003, Pharmaceutical Research.
[20] S. Jayasena,et al. Functional siRNAs and miRNAs Exhibit Strand Bias , 2003, Cell.
[21] T. Du,et al. Asymmetry in the Assembly of the RNAi Enzyme Complex , 2003, Cell.
[22] Andrew D. Miller,et al. Kinetic study of DNA condensation by cationic peptides used in nonviral gene therapy: analogy of DNA condensation to protein folding. , 2003, Biochemistry.
[23] Andrew D. Miller,et al. Synthesis and formulation of neoglycolipids for the functionalization of liposomes and lipoplexes. , 2003, Bioconjugate chemistry.
[24] D. Thompson,et al. Direct synthesis of plasmenylcholine from allyl-substituted glycerols. , 2003, The Journal of organic chemistry.
[25] 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.
[26] Halina D. Inerowicz,et al. Acid-Triggered Release from Sterically Stabilized Fusogenic Liposomes via a Hydrolytic DePEGylation Strategy† , 2003 .
[27] Andrew D. Miller,et al. Comparison between the interactions of adenovirus-derived peptides with plasmid DNA and their role in gene delivery mediated by liposome-peptide-DNA virus-like nanoparticles. , 2003, Organic & biomolecular chemistry.
[28] A. Balaban,et al. Pyridinium‐Based Cationic Lipids as Gene‐Transfer Agents , 2003 .
[29] M. Kay,et al. Sustainable correction of junctional epidermolysis bullosa via transposon-mediated nonviral gene transfer , 2003, Gene Therapy.
[30] D. Scherman,et al. Cationic lipids for transfection. , 2003, Current medicinal chemistry.
[31] Andrew D. Miller. The problem with cationic liposome/micelle-based non-viral vector systems for gene therapy. , 2003, Current medicinal chemistry.
[32] P. Khavari,et al. φC31 Integrase-Mediated Nonviral Genetic Correction of Junctional Epidermolysis Bullosa , 2003 .
[33] D. Pisetsky,et al. Effect of cytofectins on the immune response of murine macrophages to mammalian DNA , 2003, Immunology.
[34] D. Dykxhoorn,et al. Killing the messenger: short RNAs that silence gene expression , 2003, Nature Reviews Molecular Cell Biology.
[35] Andrew D. Miller,et al. Thermodynamic aspects and biological profile of CDAN/DOPE and DC-Chol/DOPE lipoplexes. , 2003, Biochemistry.
[36] M. C. Feiters,et al. Gemini surfactants: new synthetic vectors for gene transfection. , 2003, Angewandte Chemie.
[37] Eric Perouzel,et al. Nuclear Localisation Sequence Templated Nonviral Gene Delivery Vectors: Investigation of Intracellular Trafficking Events of LMD and LD Vector Systems , 2003, Chembiochem : a European journal of chemical biology.
[38] D F P Larkin,et al. Antibody targeted gene transfer to endothelium , 2003, The journal of gene medicine.
[39] T. Chen,et al. Transfection properties of stabilized plasmid-lipid particles containing cationic PEG lipids. , 2003, Biochimica et biophysica acta.
[40] D. Scherman,et al. Anionic polyethyleneglycol lipids added to cationic lipoplexes increase their plasmatic circulation time. , 2003, Journal of controlled release : official journal of the Controlled Release Society.
[41] F. Szoka,et al. Chemical approaches to triggerable lipid vesicles for drug and gene delivery. , 2003, Accounts of chemical research.
[42] F. Szoka,et al. Mechanism of pH-triggered collapse of phosphatidylethanolamine liposomes stabilized by an ortho ester polyethyleneglycol lipid. , 2003, Biophysical journal.
[43] Francis C Szoka,et al. Low-pH-sensitive PEG-stabilized plasmid-lipid nanoparticles: preparation and characterization. , 2003, Bioconjugate chemistry.
[44] E. Wagner,et al. Retrofitting BACs with G418 resistance, luciferase, and oriP and EBNA-1 – new vectors for in vitro and in vivo delivery , 2003, BMC biotechnology.
[45] Eric C. Olivares,et al. Site-specific genomic integration produces therapeutic Factor IX levels in mice , 2002, Nature Biotechnology.
[46] P. Cheng,et al. Transferrin-facilitated lipofection gene delivery strategy: characterization of the transfection complexes and intracellular trafficking. , 2002, Human gene therapy.
[47] Daniel F Voytas,et al. Common physical properties of DNA affecting target site selection of sleeping beauty and other Tc1/mariner transposable elements. , 2002, Journal of molecular biology.
[48] P. Khavari,et al. Stable nonviral genetic correction of inherited human skin disease , 2002, Nature Medicine.
[49] D. Thompson,et al. Formation of Plasmid-Based Transfection Complexes with an Acid-Labile Cationic Lipid: Characterization of in Vitro and in Vivo Gene Transfer , 2002, Pharmaceutical Research.
[50] Y. Barrandon,et al. A microinjected COL7A1-PAC vector restores synthesis of intact procollagen VII in a dystrophic epidermolysis bullosa keratinocyte cell line. , 2002, Human gene therapy.
[51] J. Summers,et al. Design of a nonviral vector for site‐selective, efficient integration into the human genome , 2002, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[52] M. Simionescu,et al. Binding and uptake of transferrin-bound liposomes targeted to transferrin receptors of endothelial cells. , 2002, Vascular pharmacology.
[53] W. Pardridge,et al. Antisense gene therapy of brain cancer with an artificial virus gene delivery system. , 2002, Molecular therapy : the journal of the American Society of Gene Therapy.
[54] D. Scherman,et al. Folate-targeted gene transfer in vivo. , 2002, Molecular therapy : the journal of the American Society of Gene Therapy.
[55] M. Lindenbaum,et al. Retrofitting of a satellite repeat DNA-based murine artificial chromosome (ACes) to contain loxP recombination sites , 2002, Gene Therapy.
[56] A. Giordano,et al. CDK9: From Basal Transcription to Cancer and AIDS , 2002, Cancer biology & therapy.
[57] F. Booy,et al. Characterisation of LMD virus-like nanoparticles self-assembled from cationic liposomes, adenovirus core peptide μ (mu) and plasmid DNA , 2002, Gene Therapy.
[58] Wenjin Guo,et al. Efficient intracellular drug and gene delivery using folate receptor-targeted pH-sensitive liposomes composed of cationic/anionic lipid combinations. , 2002, Journal of controlled release : official journal of the Controlled Release Society.
[59] M. Ferrari,et al. Synergy between cationic lipid and co-lipid determines the macroscopic structure and transfection activity of lipoplexes. , 2002, Nucleic acids research.
[60] M. Moreno-Aliaga,et al. Enhanced gene delivery in vitro and in vivo by improved transferrin-lipoplexes. , 2002, Biochimica et biophysica acta.
[61] P. Cheng,et al. p53 and PTEN/MMAC1/TEP1 gene therapy of human prostate PC-3 carcinoma xenograft, using transferrin-facilitated lipofection gene delivery strategy. , 2002, Human gene therapy.
[62] S. Raguz,et al. LCR-mediated, long-term tissue-specific gene expression within replicating episomal plasmid and cosmid vectors , 2002, Gene Therapy.
[63] E. Chang,et al. Systemic tumor-targeted gene delivery by anti-transferrin receptor scFv-immunoliposomes. , 2002, Molecular cancer therapeutics.
[64] W. Pardridge,et al. Receptor‐mediated delivery of an antisense gene to human brain cancer cells , 2002, The journal of gene medicine.
[65] E. Chang,et al. Self-assembly of a virus-mimicking nanostructure system for efficient tumor-targeted gene delivery. , 2002, Human gene therapy.
[66] S. Joo,et al. Enhancement of Gene Transfer to Cervical Cancer Cells Using Transferrin- Conjugated Liposome , 2002, Drug development and industrial pharmacy.
[67] A. Balaban,et al. Recent developments in cationic lipid-mediated gene delivery and gene therapy , 2001 .
[68] E. Chang,et al. Systemic p53 Gene Therapy of Cancer with Immunolipoplexes Targeted by Anti-Transferrin Receptor scFv , 2001, Molecular medicine.
[69] D. Scherman,et al. Sterically stabilized BGTC‐based lipoplexes: structural features and gene transfection into the mouse airways in vivo , 2001, The journal of gene medicine.
[70] W. Pardridge,et al. Receptor-Mediated Gene Targeting to Tissues In Vivo Following Intravenous Administration of Pegylated Immunoliposomes , 2001, Pharmaceutical Research.
[71] W. Earnshaw,et al. Functional complementation of a genetic deficiency with human artificial chromosomes. , 2001, American journal of human genetics.
[72] C. Coutelle,et al. An araC-controlled Bacterialcre Expression System to Produce DNA Minicircle Vectors for Nuclear and Mitochondrial Gene Therapy* , 2001, The Journal of Biological Chemistry.
[73] C. Perrin,et al. Rational approaches to the design of cationic gemini surfactants for gene delivery. , 2001, Journal of the American Chemical Society.
[74] R. Lechler,et al. TRANSFERRIN RECEPTOR-MEDIATED GENE TRANSFER TO THE CORNEAL ENDOTHELIUM1 , 2001, Transplantation.
[75] F. Szoka,et al. Steric stabilization of fusogenic liposomes by a low-pH sensitive PEG--diortho ester--lipid conjugate. , 2001, Bioconjugate chemistry.
[76] S. Nir,et al. Kinetic analysis of the initial steps involved in lipoplex--cell interactions: effect of various factors that influence transfection activity. , 2001, Biochimica et biophysica acta.
[77] O. Ludkovski,et al. Stabilized plasmid-lipid particles for systemic gene therapy , 2000, Gene Therapy.
[78] S. Stass,et al. Co-polymer of histidine and lysine markedly enhances transfection efficiency of liposomes , 2000, Gene Therapy.
[79] Y. Rojanasakul,et al. High-efficiency gene transfection of macrophages by lipoplexes. , 2000, International journal of pharmaceutics.
[80] A. Telenius,et al. Novel generation of human satellite DNA-based artificial chromosomes in mammalian cells. , 2000, Journal of cell science.
[81] R. Plasterk,et al. Sleeping Beauty, a wide host-range transposon vector for genetic transformation in vertebrates. , 2000, Journal of molecular biology.
[82] Y. Barrandon,et al. Stable integration of large (>100 kb) PAC constructs in HaCaT keratinocytes using an integrin-targeting peptide delivery system , 2000, Gene Therapy.
[83] M. Zignani,et al. Current status of pH-sensitive liposomes in drug delivery. , 2000, Progress in lipid research.
[84] M. Hope,et al. Membrane perturbation and the mechanism of lipid-mediated transfer of DNA into cells. , 2000, Biochimica et biophysica acta.
[85] D. Patel,et al. Cationic liposome and plasmid DNA complexes formed in serum-free medium under optimum transfection condition are negatively charged. , 2000, Biochimica et biophysica acta.
[86] S. Wente. Gatekeepers of the nucleus. , 2000, Science.
[87] M. Kay,et al. Somatic integration and long-term transgene expression in normal and haemophilic mice using a DNA transposon system , 2000, Nature Genetics.
[88] A. Urtti,et al. A lipid carrier with a membrane active component and a small complex size are required for efficient cellular delivery of anti-sense phosphorothioate oligonucleotides. , 2000, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[89] L. Vaysse,et al. Transfection using synthetic peptides: comparison of three DNA-compacting peptides and effect of centrifugation. , 2000, Biochimica et biophysica acta.
[90] J. Birchall,et al. Physical stability and in-vitro gene expression efficiency of nebulised lipid-peptide-DNA complexes. , 2000, International journal of pharmaceutics.
[91] D. Davidson,et al. Bacterial DNA is implicated in the inflammatory response to delivery of DNA/DOTAP to mouse lungs , 2000, Gene Therapy.
[92] R. Jenkins,et al. An integrin-targeted non-viral vector for pulmonary gene therapy , 2000, Gene Therapy.
[93] D. Huertas,et al. Expression of the human CFTR gene from episomal oriP-EBNA1-YACs in mouse cells. , 2000, Human molecular genetics.
[94] Simon C Watkins,et al. Lyophilization of cationic lipid-protamine-DNA (LPD) complexes. , 2000, Journal of pharmaceutical sciences.
[95] S. Simões,et al. Human serum albumin enhances DNA transfection by lipoplexes and confers resistance to inhibition by serum. , 2000, Biochimica et biophysica acta.
[96] N. Düzgüneş,et al. Efficient gene transfer by transferrin lipoplexes in the presence of serum. , 2000, Biochimica et biophysica acta.
[97] P. Low,et al. Enhanced folate receptor mediated gene therapy using a novel pH-sensitive lipid formulation. , 2000, Journal of controlled release : official journal of the Controlled Release Society.
[98] K. Ulbrich,et al. Decreased Binding to Proteins and Cells of Polymeric Gene Delivery Vectors Surface Modified with a Multivalent Hydrophilic Polymer and Retargeting through Attachment of Transferrin* , 2000, The Journal of Biological Chemistry.
[99] D. Heo,et al. Selective gene expression in hepatic tumor with trans-arterial delivery of DNA/liposome/transferrin complex. , 2000, In vivo.
[100] A S Verkman,et al. Size-dependent DNA Mobility in Cytoplasm and Nucleus* , 2000, The Journal of Biological Chemistry.
[101] O. Ludkovski,et al. Encapsulation of Plasmid DNA in Stabilized Plasmid – Lipid Particles Composed of Different Cationic Lipid Concentration for Optimal Transfection Activity , 2000, Journal of drug targeting.
[102] S. Diamond,et al. Nonclassical Nuclear Localization Signal Provides for High Efficiency, Nonviral Gene Transfer to Nondividing Endothelium , 1999, Nature Biotechnology.
[103] S. Simões,et al. Mechanisms of gene transfer mediated by lipoplexes associated with targeting ligands or pH-sensitive peptides , 1999, Gene Therapy.
[104] D. Durand,et al. DNA packing in stable lipid complexes designed for gene transfer imitates DNA compaction in bacteriophage. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[105] K. Yanagihara,et al. Lectin enhancement of the lipofection efficiency in human lung carcinoma cells. , 1999, Biochimica et biophysica acta.
[106] Scott L. Diamond,et al. Nuclear targeting peptide scaffolds for lipofection of nondividing mammalian cells , 1999, Nature Biotechnology.
[107] Nicholas R. Lemoine,et al. Understanding Gene Therapy , 1999 .
[108] P. Cullis,et al. Stabilized plasmid-lipid particles for regional gene therapy: formulation and transfection properties , 1999, Gene Therapy.
[109] S. Reddy,et al. The effect of CpG sequences on the B cell response to a viral glycoprotein encoded by a plasmid vector , 1999, Gene Therapy.
[110] D. Liggitt,et al. Lipid-DNA complexes induce potent activation of innate immune responses and antitumor activity when administered intravenously. , 1999, Journal of immunology.
[111] Andrew D. Miller,et al. Peptide Mini-Vectors for Gene Delivery. , 1999, Angewandte Chemie.
[112] F. Szoka,et al. Physicochemical characterization and purification of cationic lipoplexes. , 1999, Biophysical journal.
[113] B. Kinsey,et al. Gene transfer by guanidinium‐cholesterol: dioleoylphosphatidyl‐ethanolamine liposome‐DNA complexes in aerosol , 1999, The journal of gene medicine.
[114] D. Scherman,et al. Intracellular fate and nuclear targeting of plasmid DNA , 1999, Cell Biology and Toxicology.
[115] D. Thompson,et al. Synthesis of acid-labile diplasmenyl lipids for drug and gene delivery applications. , 1999, Chemistry and physics of lipids.
[116] P. Cullis,et al. Gene transfer mediated by fusion protein hemagglutinin reconstituted in cationic lipid vesicles , 1999, Gene Therapy.
[117] F R Haselton,et al. Mitosis enhances transgene expression of plasmid delivered by cationic liposomes. , 1999, Biochimica et biophysica acta.
[118] Simon C Watkins,et al. Dynamic changes in the characteristics of cationic lipidic vectors after exposure to mouse serum: implications for intravenous lipofection , 1999, Gene Therapy.
[119] R. Horst,et al. Ca2+-ATPases and their expression in the mammary gland of pregnant and lactating rats. , 1999, American journal of physiology. Cell physiology.
[120] D. Geddes,et al. The extra- and intracellular barriers to lipid and adenovirus-mediated pulmonary gene transfer in native sheep airway epithelium , 1999, Gene Therapy.
[121] H. O'brodovich,et al. Metabolic instability of plasmid DNA in the cytosol: a potential barrier to gene transfer , 1999, Gene Therapy.
[122] D. Scherman,et al. Structural characteristics of supramolecular assemblies formed by guanidinium-cholesterol reagents for gene transfection. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[123] D. Scherman,et al. Synthetic DNA-compacting peptides derived from human sequence enhance cationic lipid-mediated gene transfer in vitro and in vivo , 1999, Gene Therapy.
[124] L. Palmer,et al. Stabilized plasmid-lipid particles: construction and characterization , 1999, Gene Therapy.
[125] 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.
[126] J. Wands,et al. Targeted gene transfer to hepatocellular carcinoma cells in vitro using a novel monoclonal antibody−based gene delivery system , 1999, Hepatology.
[127] J. Capeau,et al. Liposomes enhance delivery and expression of an RGD-oligolysine gene transfer vector in human tracheal cells , 1998, Gene Therapy.
[128] R. Debs,et al. Proteoglycans Mediate Cationic Liposome-DNA Complex-based Gene Delivery in Vitro and in Vivo * , 1998, The Journal of Biological Chemistry.
[129] E. Livanos,et al. A system for shuttling 200-kb BAC/PAC clones into human cells: stable extrachromosomal persistence and long-term ectopic gene activation. , 1998, Human gene therapy.
[130] E. Waelti,et al. Delivery to cancer cells of antisense L‐ myc oligonucleotides incorporated in fusogenic, cationic‐lipid‐reconstituted influenza‐virus envelopes (cationic virosomes) , 1998, International journal of cancer.
[131] Andrew D. Miller. Cationic Liposomes for Gene Therapy , 1998 .
[132] T Salditt,et al. An inverted hexagonal phase of cationic liposome-DNA complexes related to DNA release and delivery. , 1998, Science.
[133] Sanchita Bhattacharya,et al. Characterization of cationic lipid-protamine–DNA (LPD) complexes for intravenous gene delivery , 1998, Gene Therapy.
[134] T. Friedmann,et al. Enhanced Gene Transfer with Fusogenic Liposomes Containing Vesicular Stomatitis Virus G Glycoprotein , 1998, Journal of Virology.
[135] R. Plasterk,et al. Transposon Tc1 of the nematode Caenorhabditis elegans jumps in human cells. , 1998, Nucleic acids research.
[136] K. Sugimachi,et al. HVJ (Sendai virus) liposome-mediated gene transfer: current status and future perspectives (review). , 1998, International journal of oncology.
[137] R. Coombes,et al. Endothelial cell transfection with cationic liposomes and herpes simplex-thymidine kinase mediated killing , 1998, Gene Therapy.
[138] Leaf Huang,et al. Time-dependent maturation of cationic liposome–DNA complex for serum resistance , 1998, Gene Therapy.
[139] F. Szoka,et al. Effect of serum components on the physico-chemical properties of cationic lipid/oligonucleotide complexes and on their interactions with cells. , 1998, Biochimica et biophysica acta.
[140] Y. Namiki,et al. Gene transduction for disseminated intraperitoneal tumor using cationic liposomes containing non-histone chromatin proteins: cationic liposomal gene therapy of carcinomatosa , 1998, Gene Therapy.
[141] Y. Kaneda,et al. Development and characterization of cationic liposomes conjugated with HVJ (Sendai virus): reciprocal effect of cationic lipid for in vitro and in vivo gene transfer. , 1997, Human gene therapy.
[142] J. Vos. The simplicity of complex MACs , 1997, Nature Biotechnology.
[143] L. Huang,et al. In vivo gene transfer via intravenous administration of cationic lipid–protamine–DNA (LPD) complexes , 1997, Gene Therapy.
[144] Y. Song,et al. Characterization of cationic liposome-mediated gene transfer in vivo by intravenous administration. , 1997, Human gene therapy.
[145] Leaf Huang,et al. Overcoming the inhibitory effect of serum on lipofection by increasing the charge ratio of cationic liposome to DNA , 1997, Gene Therapy.
[146] K Sugimachi,et al. HVJ (Sendai virus)-cationic liposomes: a novel and potentially effective liposome-mediated technique for gene transfer to the airway epithelium , 1997, Gene Therapy.
[147] O. Danos,et al. In Vivo Gene Transfer by Intravenous Administration of Stable Cationic Lipid/DNA Complex , 1997, Pharmaceutical Research.
[148] F. Liu,et al. Factors controlling the efficiency of cationic lipid-mediated transfection in vivo via intravenous administration , 1997, Gene Therapy.
[149] G. Vassaux,et al. Copy number-dependent expression of a YAC-cloned human CFTR gene in a human epithelial cell line , 1997, Gene Therapy.
[150] Andrew D. Miller,et al. Optimization of liposome mediated transfection of a neuronal cell line , 1997, Neuroreport.
[151] R. Scheule,et al. Biophysical characterization of cationic lipid: DNA complexes. , 1997, Biochimica et biophysica acta.
[152] K. Mechtler,et al. Influence of membrane-active peptides on lipospermine/DNA complex mediated gene transfer. , 1997, Bioconjugate chemistry.
[153] M. Aoki,et al. In vivo transfer efficiency of antisense oligonucleotides into the myocardium using HVJ-liposome method. , 1997, Biochemical and biophysical research communications.
[154] D. Hoekstra,et al. Novel pyridinium surfactants for efficient, nontoxic in vitro gene delivery. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[155] Joachim O. Rädler,et al. Structure of DNA-Cationic Liposome Complexes: DNA Intercalation in Multilamellar Membranes in Distinct Interhelical Packing Regimes , 1997, Science.
[156] R. Podgornik,et al. The Structure of DNA−Liposome Complexes , 1997 .
[157] D. Papahadjopoulos,et al. Stabilization of cationic liposome‐plasmid DNA complexes by polyamines and poly(ethylene glycol)‐phospholipid conjugates for efficient in vivo gene delivery , 1997, FEBS letters.
[158] E. Brambilla,et al. An electron microscopy study into the mechanism of gene transfer with lipopolyamines. , 1996, Gene therapy.
[159] R. Scheule,et al. Detailed analysis of structures and formulations of cationic lipids for efficient gene transfer to the lung. , 1996, Human gene therapy.
[160] H. Herweijer,et al. Gene transfer into mammalian cells using histone-condensed plasmid DNA. , 1996, Human gene therapy.
[161] S W Hui,et al. The role of helper lipids in cationic liposome-mediated gene transfer. , 1996, Biophysical journal.
[162] K. Mechtler,et al. Activation of the complement system by synthetic DNA complexes: a potential barrier for intravenous gene delivery. , 1996, Human gene therapy.
[163] J. M. Brown,et al. Fate of cationic liposomes and their complex with oligonucleotive in vivo , 1996 .
[164] P. Godowski,et al. Pharmacokinetics, tissue distribution, and expression efficiency of plasmid [33P]DNA following intravenous administration of DNA/cationic lipid complexes in mice: use of a novel radionuclide approach. , 1996, Journal of pharmaceutical sciences.
[165] L. Vitiello,et al. Condensation of plasmid DNA with polylysine improves liposome-mediated gene transfer into established and primary muscle cells. , 1996, Gene therapy.
[166] Leaf Huang,et al. Potentiation of cationic liposome-mediated gene delivery by polycations. , 1996, Biochemistry.
[167] C. Y. Chow,et al. A novel series of amphiphilic imidazolinium compounds for in vitro and in vivo gene delivery. , 1995, Biochemistry.
[168] Joseph Zabner,et al. Cellular and Molecular Barriers to Gene Transfer by a Cationic Lipid (*) , 1995, The Journal of Biological Chemistry.
[169] G. Karlsson,et al. Complexes between cationic liposomes and DNA visualized by cryo-TEM. , 1995, Biochimica et biophysica acta.
[170] J. Behr,et al. Targeted gene transfer into hepatoma cells with lipopolyamine-condensed DNA particles presenting galactose ligands: a stage toward artificial viruses. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[171] Leaf Huang,et al. New structures in complex formation between DNA and cationic liposomes visualized by freeze—fracture electron microscopy , 1994, FEBS letters.
[172] T. Ogihara,et al. Pharmacokinetics of antisense oligodeoxyribonucleotides (cyclin B1 and CDC 2 kinase) in the vessel wall in vivo: enhanced therapeutic utility for restenosis by HVJ-liposome delivery. , 1994, Gene.
[173] H. Kamata,et al. Amphiphilic peptides enhance the efficiency of liposome-mediated DNA transfection. , 1994, Nucleic acids research.
[174] R. Kumar,et al. Enhanced gene delivery and mechanism studies with a novel series of cationic lipid formulations. , 1994, The Journal of biological chemistry.
[175] L. Huang,et al. DNA transfection mediated by cationic liposomes containing lipopolylysine: characterization and mechanism of action. , 1994, Biochimica et biophysica acta.
[176] A. Miller,et al. Non–invasive liposome–mediated gene delivery can correct the ion transport defect in cystic fibrosis mutant mice , 1993 .
[177] F. Szoka,et al. Polyamidoamine cascade polymers mediate efficient transfection of cells in culture. , 1993, Bioconjugate chemistry.
[178] R. Ghirlando,et al. Mode of formation and structural features of DNA-cationic liposome complexes used for transfection. , 1993, Biochemistry.
[179] S. J. Flint,et al. Characterization of the adenovirus 2 virion protein, mu. , 1989, Virology.
[180] J. Behr,et al. Efficient gene transfer into mammalian primary endocrine cells with lipopolyamine-coated DNA. , 1989, Proceedings of the National Academy of Sciences of the United States of America.
[181] K. Iwai,et al. Increased expression of DNA cointroduced with nuclear protein in adult rat liver. , 1989, Science.
[182] Keiichi Hosokawa,et al. Isolation and characterization of an extremely basic protein from adenovirus type 5 , 1976, Journal of virology.
[183] M. Hung,et al. Non-viral vectors for gene therapy , 2005 .
[184] Carole L Yauk,et al. Comprehensive comparison of six microarray technologies. , 2004, Nucleic acids research.
[185] Jong-Mok Kim,et al. Preparation of plasmenylcholine lipids and plasmenyl-type liposome dispersions. , 2004, Methods in enzymology.
[186] F. Szoka,et al. Improved preparation of PEG-diortho ester-diacyl glycerol conjugates. , 2004, Methods in enzymology.
[187] A. Telenius,et al. Efficient in-vitro transfer of a 60-Mb mammalian artificial chromosome into murine and hamster cells using cationic lipids and dendrimers , 2004, Chromosome Research.
[188] Andrew D. Miller,et al. Physico-chemical analysis of cationic liposome–DNA complexes (lipoplexes) with respect to in vitro and in vivo gene delivery efficiency , 2001 .
[189] M. Kamihira,et al. Protamine-modified DDAB lipid vesicles promote gene transfer in the presence of serum. , 2001, Journal of biochemistry.
[190] A. Miller,et al. Cell delivery, intracellular trafficking and expression of an integrin-mediated gene transfer vector in tracheal epithelial cells , 2000, Gene Therapy.
[191] Leaf Huang,et al. Structure and function of lipid-DNA complexes for gene delivery. , 2000, Annual review of biophysics and biomolecular structure.
[192] S. Kawakami,et al. Mannose receptor-mediated gene transfer into macrophages using novel mannosylated cationic liposomes , 2000, Gene Therapy.
[193] K. Yanagihara,et al. Effects of epidermal growth factor, transferrin, and insulin on lipofection efficiency in human lung carcinoma cells , 2000, Cancer Gene Therapy.
[194] T. Mayumi,et al. Gene delivery systems using the Sendai virus. , 1999, Molecular membrane biology.
[195] Leaf Huang,et al. LPD lipopolyplex initiates a potent cytokine response and inhibits tumor growth , 1999, Gene Therapy.
[196] Y. Kaneda. Development of a novel fusogenic viral liposome system (HVJ-liposomes) and its applications to the treatment of acquired diseases. , 1999, Molecular membrane biology.
[197] J. Hughes,et al. Nuclear localization signal peptides enhance cationic liposome-mediated gene therapy. , 1998, Journal of drug targeting.
[198] J. Rossi,et al. Receptor ligand-facilitated cationic liposome delivery of anti-HIV-1 Rev-binding aptamer and ribozyme DNAs. , 1998, Journal of drug targeting.
[199] Andrew D. Miller,et al. Polyamine Analogues of 3β-[N-(N′,N′-Dimethylaminoethane)carbamoyl]cholesterol (DC-Chol) as Agents for Gene Delivery , 1998 .
[200] L. Huang,et al. Protamine sulfate enhances lipid-mediated gene transfer , 1997, Gene Therapy.
[201] Jp Behr. L'éponge à protons : un moyen d'entrer dans une cellule auquel les virus n'ont pas pensé , 1996 .