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Peptide-based cationic liposome-mediated gene delivery

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Pages 127-139 | Published online: 22 Nov 2011

Bibliography

  • Crystal RG. Transfer of genes to human: early lessons and obstacles to success. Science 1995;270:148-51
  • Donahue RE, Kessler SW, Bodine D, Helper virus induced T cell lymphoma in nonhuman primates afrer retrovira mediated gene transfer. J Exp Med 1992;176:1125-35
  • Sun JY, Anand-Jawa V, Chatterjee S, Immune responses to adeno-associated virus and its recombinant vectors. Gene Ther 2003;10:964-76
  • Boktov J, Hirsch-Lerner D, Barenholz Y. Characterization of the interplay between the main factors contributing to lipoplex-mediated transfection in cell cultures. J Gene Med 2007;9:884-93
  • Hyde SC, Southern KW, Gileadi U, Repeat administration of DNA/liposomes to the nasal epithelium of patients with cystic fibrosis. Gene Ther 2000;7:1156-65
  • Noone PG, Hohneker KW, Zhou Z, Safety and biological efficacy of a lipid-CFTR complex for gene transfer in the nasal epithelium of adult patients with cystic fibrosis. Mol Ther 2000;1:105-14
  • Stopeck AT, Jones A, Hersh EM, Phase II study of direct intralesional gene transfer of allovectin-7, an HLA-B7/beta2-microglobulin DNA-liposome complex,in patients with, metastatic metastatic melanoma. Clin Cancer Res 2001;7:2285-91
  • Ferber D. Gene therapy: safer and virus-free. Science 2001;294:1638-42
  • Hacein-Bey-Abina S, Kalle C, Schmidt M, A serious adverse event after successful gene therapy for X linked severe combined immunodeficiency. N Engl J Med 2003;348:255-6
  • Woods NB, Bottero V, Schmidt M, Gene therapy: therapeutic gene causing lymphoma. Nature 2006;440:1123-34
  • Arpicco S, Canevari S, Ceruti M, Synthesis characterization and transfection activity of new saturated and unsaturated cationic lipids. Il Farmaco 2004;59:869-78
  • Bianco A, Bonadies F, Napolitano R, A simple approach to DC-cholesterol, its analogues and vitamin D-based cationic lipids for gene therapy. Lett Org Chem 2005;2:79-82
  • Zhang SB, Zhao YN, Zhao BD, Hybrids of nonviral vectors for gene delivery. Bioconjug Chem 2010;21:1003-9
  • Rea JC, Gibly RF, Barron AE, Self-assembling peptide-lipoplexes for substrate-mediated gene delivery. Acta Biomater 2009;5:903-12
  • Coles DJ, Esposito A, Chuah HT, The synthesis and characterization of lipophilic peptide-based carriers for gene delivery. Tetrahedron 2010;66:5435-41
  • Zhang SB, Xu YM, Wang B, Cationic compounds used in lipoplexes and polyplexes for gene delivery. J Control Release 2004;100:165-80
  • Ko YT, Falcao C, Torchilin VP. Cationic liposomes loaded with proapoptotic peptide D-(KLAKLAK)2 and Bcl-2 antisense oligodeoxynucleotide G3139 for enhanced anticancer therapy. Mol Pharm 2009;6:971-7
  • Mintzer MA, Simanek EE. Nonviral vectors for gene delivery. Chem Rev 2009;109:259-302
  • Nishikawa M, Yamauchi M, Morimoto K, Heptocyte-targeted in vivo gene expression by intraveneous injection of plasmid DNA complexed with synthetic multi-functional gene delivery system. Gene Ther 2000;7:548-55
  • Schuster MJ, Wu GY, Walton CM, Multicomponent DNA carrier with a vesicular stomatitis virus G-peptide greatly enhaances liver-targeted gene expression in mice. Bioconjug Chem 1999;10:1075-83
  • McKenzie DL, Kwok KY, Rice KG. A potent new class of reductively activated peptide gene delivery agents. J Biol Chem 2000;275:9970-7
  • Brizard A, Dolain C, Huc I, Asp-Gly based peptides confined at the surface of cationic Gemini surfactant aggregates. Langmuir 2006;22:3591-600
  • Huang CY. UnoT, Murphy JE, et al. Lipitoids-novel cationic lipids for cellular delivery of plasmid DNA in vitro. Chem Biol 1998;5:345-54
  • Choi JS, Lee EJ, Jang HS, New cationic liposomes for gene transfer into mammalian cells with high efficiency and low toxicity. Bioconjug Chem 2001;12:108-13
  • Sochanik A, Kaida I, Mitrus I, A new cholesterol derivative suitable for transfecting certain type of cells in the presence of 10% serum. Cancer Gene Ther 2000;7:513-20
  • Obata Y, Daisuke S, Shinji T. Evaluation of cationic assemblies constructed with amino acid based lipids for plasmid DNA delivery. Bioconjug Chem 2008;19:1055-63
  • Prata Carla AH, Zhang XX, Luo D, Lipophilic peptides for gene delivery. Bioconjug Chem 2008;19:418-20
  • Ma BC, Zhang SB, Jiang HM, Lipoplex morphologies and their influences on transfection efficiency in gene delivery. J Control Release 2007;1111:184-94
  • Niculescu-Duvaz D, Heyes J, Springer CJ. Structure-activity relationship in cationic lipid mediated gene transfection. Curr Med Chem 2003;10:1233-61
  • Zhao YN, Zhang SB, Cui SH. The development of polypeptide cationic liposome. Chem World 2010;11:701-7
  • Gao X, Huang L. A novel cationic liposome reagent for efficiency transfection of mammalian cells. Biochem Biophys Res Commun 1991;179:280-5
  • Aissaoui A, Oudrhiri N, Petit L, Progress in gene delivery by cationic lipids: guanidinium-cholesterol-based systems as an example. Curr Drug Targets 2002;3:1-16
  • Fujiwara T, Hasegawa S, Hirashima N, Gene transfection activities of amphiphilic steroid-polyamine conjugates. Biochim Biophys Acta Biomembr 2000;1468:396-402
  • Heyes J, Palmer L, Chan K, Lipid encapsulation enables the effective systemic delivery of polyplex plasmid DNA. Mol Ther 2005;15:713-20
  • Wasungu L, Stuart MC, Scarzello M, Lipoplexes formed from sugar-based Gemini surfactants undergo a lamellar-to-micellar phase transition at acidic pH. Evidence for a non-inverted membrane-destabilizing hexagonal phase of lipoplexes. Biochim Biophys Acta 2006;1758:1677-84
  • Pastorino F, Mumbengegwi DR, Ribatti D, Increase of therapeutic effects by treating melanoma with targeted combinations of c-myc antisense and doxorubicin. J Control Release 2008;126:85-94
  • Tagami T, Hirose K, Barichello JM, Global gene expression profiling in cultured cells is Strongly influenced bytreatment with siRNA-cationic liposome complexes. Pharm Res 2008;25:2497-504
  • Han SE, Kang H, Shim GY, Novel cationic cholesterol derivative-based liposomes for serum-enhanced delivery of siRNA. Int J Pharm 2008;353:260-9
  • Felgner P, Gadek T, Holm M, Lipofectin: a highly efficient, lipid mediated DNA-transfection procedure. Proc Natl Acad Sci 1987;84:7413-17
  • Gebeyehu G, Jessee JA, Ciccarone VC, New dihydroxypropyl alkylene di- and poly- amine cationic lipids for conjugation with reporter molecules, DNA, or drugs, for assay, enhanced targetting, and transfection of cells. U.S. Patent 1994;5:334, 761
  • Bennett CF, Chiang MY, Chan H, Cationic lipids enhance cellular uptake and activity of phosphorothioate antisense oligonucleotides. Mol Pharmacol 1992;41:1023-33
  • Wang CY, Huang L. Highly efficient DNA delivery mediated by pH-sensitive immunoliposomes. Biochemistry 1989;28:9508-14
  • Zhou X, Huang L. DNA transfection mediated by cationic liposomes containing lipopolylysine: characterization and mechanism of action. Biochim Biophys Acta Biomembr 1994;1189:195-203
  • Xu Y, Szoka FC. Mechanism of DNA release from cationic liposome/DNA complexes used in cell transfection. Biochemistry 1996;35:5616-23
  • Zelphati O, Szoka FC. Mechanism of oligonucleotide release from cationic liposomes. Proc Natl Acad Sci USA 1996;93:11493-8
  • Uyechi-O′Brien LS, Szoka FC. Mechanisms for cationic lipids in gene transfer. Drugs Pharm Sci 2003;131:79-108
  • Li W, Szoka FC. Lipid-based Nanoparticles for Nucleic Acid Delivery. Pharm Res 2007;24:438-49
  • Bergen JM, Kwon EJ, Shen TW, Application of an environmentally- sensitive fluorophore for rapid analysis of the binding and internalization efficiency of gene carriers. Bioconjug Chem 2008;19:377-84
  • Akinc A, Langer R. Measuring the pH environment of DNA delivered using nonviral vectors: implications for lysosomal trafficking. Biotechnol Bioeng 2002;78:503-8
  • Bieber T, Meissner W, Kostin S, Intracellular route and transcriptional competence of polyethylenimine-DNA complexes. J Control Release 2002;82:441-54
  • Itaka K, Harada A, Yamasaki Y, In situ single cell observation by fluorescence resonance energy transfer reveals fast intracytoplasmic delivery and easy release of plasmid DNA complexed with linear polyethylenimine. J Gene Med 2004;6:76-84
  • Grosse S, Thevenot G, Monsigny M, Which mechanism for nuclear import of plasmid DNA complexed with polyethylenimine derivatives? J Gene Med 2006;8:845-51
  • Vaughan EE, DeGliulio JV, Dean DA. Intracellular trafficking of plasmids for gene therapy: mechanisms of cytoplasmic movement and nuclear import. Curr Gene Ther 2006;6:671-81
  • Vacik J, Dean BS, Zimmer WE, Cell-specific nuclear import of plasmid DNA. Gene Ther 1999;6:1006-14
  • Huth S, Hoffmann F, Gersdorff K, Interaction of polyamine gene vectors with RNA leads to the dissociation of plasmid DNA-carrier complexes. J Gene Med 2006;8:14116-24
  • Folda T, Gros L, Ringsdorf H. Formation of oriented polypeptides and polyamides in monolayers and liposomes. Makromol Chem Rapid Commun 1982;3:167-74
  • Neumann R, Ringsdorf H. Peptide liposomes from amphiphilic amino acids. J Am Chem Soc 1986;108:487-90
  • Kim HS, Moon J, Kim KS, Gene-transferring efficiencies of novel diamino cationic lipids with varied hydrocarbon chain. Bioconjug Chem 2004;15:1095-101
  • Kim HS, Song IH, Kim JC, In vitro and in vivo gene-transferring characteristics of novel cationic lipids, DMKD O, O-dimyristyl-N-lysyl glutamate. J Control Release 2006;115:234-41
  • Rasmussen FW, Bendifallah N, Zachar V, Evaluation of transfection protocols for unmodified and modified peptide nucleic acid (PNA) oligomers. Oligonucleotides 2006;16:43-57
  • Bendifallah N, Rasmussen FW, Zachar V, Evaluation of cellpenetrating peptides (CPPs) as vehicles for intracellular delivery of antisense peptide nucleic acid (PNA). Bioconjug Chem 2006;17:750-8
  • Shiraishi T, Pankratova S, Nielsen PE. Calcium ions effectively enhance the effect of antisense peptide nucleic acids conjugated to cationic tat and oligoarginine peptides. Chem Biol 2005;12:923-9
  • Turner JJ, Ivanova GD, Verbeure B, Cell-penetrating peptide conjugates of peptide nucleic acids (PNA) as inhibitors of HIV-1 Tat-dependent trans-activation in cells. Nucleic Acids Res 2005;33:6837-49
  • Boe S, Longva AS, Hovig E. Photochemically induced gene silencing using small interfering RNA molecules in combination with lipid carriers. Oligonucleotides 2007;17:166-73
  • Shiraishi T, Nielsen PE. Photochemically enhanced cellular delivery of cell penetrating peptide-PNA conjugates. FEBS Lett 2006;580:1451-6
  • Koppelhus U, Shiraishi T, Zachar V, Improved cellular activity of antisense peptide nucleic acids by conjugation to a cationic peptide-lipid (catlip) domain. Bioconjug Chem 2008;19:1526-34
  • Obata Y, Saito S, Takeda N, Plasmid DNA-encapsulating liposomes:effect of a spacer between the cationic head group and hydrophobic moieties of the lipids on gene expression efficiency. Biochem Biophys Acta 2009;1788:1148-58
  • Obata Y, Ciofani G, Raffa V, Evaluation of cationic liposomes composed of an amino acid-based lipid for neuronal transfection. Nanomedicine Nanotechnol Biol Med 2010;6:70-7
  • Cashion MP, Li XL, Geng Y, Gemini surfactant electrospun membranes. Langmuir 2010;26:678-83
  • Bhattacharya S, De S, George SK. Synthesis and vesicle formation from novel pseudoglyceryl dimeric lipids. Chem Commun 1997;23:2287-8
  • Camilleri P, Kremer A, Edwards AJ, A novel class of cationic Gemini surfactants showing efficient in vitro gene transfection properties. Chem Commun 2000;14:1253-4
  • McGregor C, Perrin C, Monck M, Rational approaches to the design of cationic Gemini surfactants for gene delivery. J Am Chem Soc 2001;123:6215-20
  • Buijnsters PJJA, Rodriguez CLG, Willighagen EL, Cationic Gemini surfactants based on tartaric acid: synthesis,aggregation, monolayer behaviour, and interaction with DNA. Eur J Org Chem 2002;8:1397-406
  • Brito RO, Marques EF, Gomes P, Self-assembly in a catanionic mixture with an aminoacid-derived surfactant: from mixed micelles to spontaneous vesicles. J Phys Chem 2006;110:18158-65
  • Kwon YU, Kodadek TJ. Quantitative Evaluation of the Relative Cell Permeability of Peptoids and Peptides. Am Chem Soc 2007;129:1508-9
  • Wrenn SJ, Weisinger RM, Halpin DR, Contribution from the Department of Biochemistry and the Department of Chemistry. Am Chem Soc 2007;129:13137-43
  • Udugamasooriya DG, Dineen SP, Brekken RA, A peptoid “antibody surrogate” that antagonizes VEGF receptor 2 activity. Am Chem Soc 2008;130:5744-52
  • Yoo B, Kirshenbaum K. Peptoid architectures: elaboration, actuation, and application. Curr Opin Chem Bio 2008;12:714-21
  • Lu XW, Zeng Y, Liu CF. Modulating the hybridization property of PNA with a peptoid-like side chain. Org Lett 2009;11:2329-32
  • Utku Y, Dehan E, Ouerfelli O, A peptidomimetic siRNA transfection reagent for highly effective gene silencing. Mal Biosyst 2006;2:312-17
  • Seurynck-Servoss SL, Dohm MT, Barron AE. Effects of including an N-terminal insertion region and arginine-mimetic side chains in helical peptoid analogues of lung surfactant protein B. Biochemistry 2006;45:11809-18
  • Dohm MT, Brown NJ, Seurynck-Servoss SL, Mimicking SP-C palmitoylation on a peptoid-based SP-B analogue markedly improves surface activity. Biochim Biophys Acta 2010;1798:1663-78
  • Ren T, Zhang GS, Liu F, Synthesis and evaluation of vitamin D-based cationic lipids for gene delivery in vivo. Bioorg Med Chem Lett 2000;10:891-4
  • Xu L, Anchordoquy TJ. Cholesterol domains in cationic lipid/DNA complexes improve transfection. Biochim Biophys Acta 2008;1778:2177-81
  • Wang D, Lin QS. Cationic liposome mediated gene transfer. Pro Biochem biophys 1997;24:486-92

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