Bianchi, C. Paul, “Chemical Abstracts”, J-Pharmacology, vol. 122, No. 11, pp. 88-89 (1995). |
Leventis, et al., “Interactions of Mammalian Cells with Lipid Dispersions Containing Novel Metabolizable Cationic Amphiphiles”, Biochim. Biophys. Acta., vol. 1023, pp. 124-132 (1990). |
Phillips, et al. from Liposomes as Drug Carriers, John Wiley & Sons, 1988, G. Gregoriadis, et., pp. 243-259. |
P. L. Felgner and G. M. Ringold, “Cationic Liposome-Mediated Transfection”, Nature, vol. 337, pp. 387-388 (1989). |
Felgner, et al., “Lipofection: A Highly Efficient, Lipid-Mediated DNA-Transfection Procedure”, Proc. Natl. Acad. Sci. U.S.A., vol. 84, pp. 7413-7417 (1987). |
Ito, et al., “Synthetic Cationic Amphiphiles for Liposome-Mediated DNA Transfection”, Biochem. Intern., vol. 22(2), pp. 235-241 (1990). |
Pinnaduwage, et al., “Use of a Quanternary Ammonium Detergent in Liposome Mediated DNA Transfection of Moure L-Cells”,Biochem. Biophys. Acta, vol 985, pp. 33-37 (1989). |
Muller, et al., “Laboratory methods Efficient Transfection and Expression of Heterologous Genes in PC12 Cells”, DNA and Cell Biol, vol. 9 (3), pp. 221-229 (1990). |
Cheetham, J. J., et al., “Cholesterol Sulfate Inhibits the Fusion of Sendai Virus to Biological and Model Membrane”, Journal of Biological Chemistry, vol. 265, No. 21, pp. 12404-12409 (1990). |
Letsinger, R. L., et al., “Cholesteryl-conjugated Oligonucleotides: Synthese, Properties and Activity as Inhibitors of Replication of Human Immuniodeficiency Virus in Cell Culture”, Proc. Natl. Acad. Sci. USA (1989). |
Rose, J.K., et al., “A New Cationic Liposome Reagent Mediating Nearly Quantitative Transfection of Animal Cells”, BioTechniques, vol. 10, No. 4, pp. 520-525 (1991). |
Stamatatos, L., Leventis, R., Zuckermann, M.J., and Silvius, J.R., “Interactions of Cationic Lipid Vesicles with Negatively Charged Phospholipid Vesicles and Biological Membranes”, Biochemistry, 27:3917-3925 (1988). |
Behr, J. P., et al., “Efficient gene transfer into mammalian primary endocrine cells with lipopolyamine-coated DNA”, Proceedings of the National Academy of Sciences, USA, 96, 1989, pp. 6982-6986. |
Epand, R. M., The relationship between the effect of drugs on bilayer stability and on protein kinase C activity, Chem-Biol. Interactions, 63, 1987, pp. 239-247. |
Felgner, P. L., “Particulate systems and polymers for the in vitro and in vivo delivery of polynucleotides”, Advanced Drug Delivery Reviews, 5, 1990, pp. 163-187. |
Hannun, Y.A. et al, “Sphingosine inhibition of protein kinase C activity and phorbol dibruyrate binding in vitro and in human platelets”, Journal of Biological Chemistry, 261, 1986, pp. 12604-12609. |
Loeffler, J.P., et al., “Lipopolyamine-mediated transfection allows gene expression studies in primary neuronal cells”, Journal of Neurochemistry, 54(5), 1990, pp. 1812-1815. |
Rando, R. R., et al. “The Synthesis and Properties of a Functional Fluorescent Cholesterol Analog”, Biochimica et Biophysica Acta, vol. 684, pp. 12-20 (1982). |
Abid, S.K. and Sherrington, D.C., “Synthesis of polymerizable and non-polymerizable liquid-crystalline vesicle-forming quarternary ammonium derivatives of cholesterol”, Polymer Communications, vol. 28, pp. 16-19 (1987). |
Shashoua, V.E., et al., “γ-Aminobutyric Acid Esters. 1. Synthesis, Brian Uptake, and Pharmacological Studies of Aliphatic and Steroid Esters of γ-Aminobutyric Acid”, J. Med. Chem., vol. 27, pp. 659-664 (1984). |
Okahata, Yoshio, et al., “Molecular Selective Adsorption on a Multibilayer-coated Piezoelectric Crystal”, J. Chem. Soc., Chem Commun., pp. 1037-1038 (1988). |