Crystal. Transfer of Genes to Humans: Early Lessons and Obstacles to Success. Science 270: 404-410, Oct. 1995. |
Report and Recommendtations of the Panel to Assess the NIH Investment in Research on Gene Therapy, Orkin and Motulsky, co-chairs. The National Institutes of Health, Dec. 1995. |
Goffe, A., and R. Goffe, "Chemical stabilizing agents for transient DNA in cell culture," 163rd AAAS Nat'l Mtg. Sci. Innov. Expos., Poster No. A106, Seattle, WA, 1997. |
Nordenberg, J., et al., "Inhibition of growth of human melanoma cells and enhancement of alkaline phosphatase activity by butyric acid," Harefuah, 111:59, 1986. |
Goldstein, S., et al., "Enhanced transfection efficiency and improved cell survival after electroporation of G2/M-synchronized cells and treatment with sodium butyrate," Nucleic Acids Research, 17:3959-3972, 1989. |
Gorman, C., and B. Howard, "Expression of recombinant plasmids in mammalian cells is enhanced by sodium butyrate," Nucleic Acids Research, 11:7631-7648, 1983. |
Satoh, K. et al., "Effect of drugs on gene expression in mammalian cells: a highly efficient procedure to test large numbers of samples," Nucleic Acids Research, 21:4429-4430, 1993. |
Beis, I., and A. Theophilidis, "Phosphofructokinase in the plerocercoids of Shistocephalus solidus (Cestoda: Pseudophyllidea)," Int. J. Paristol., 12:389-394, 1982. |
Morand, C., et al., "Importance of the modulation of glycolysis in the control of lactate metabolism by fatty acids in isolated heptocytes from fed rats," Arch. Biochem. Biophys., 309:254-260, 1994. |
Anderson, J. and S. Bridges, "Short-chain fatty acid fermentation products of plant fiber affect glucose metabolism of isolated rat hepatocytes," Proc. Soc. Exptl. Biol. Med., 17:372-376, 1984. |
Kormis, K.K. et al., "Prospects of Therapy of Liver Diseases with Foreign Genes," Seminars in Liver Disease 15:257-267 (1995). |
Gorman, C., "High Efficiency Gene Transfer into Mammalian Cells," DNA Cloning II, A Practical Approach, (Glover, D.M., Ed) IRL Press, Oxford pp. 143-190 (1985). |
Wynshaw-Boris, A. et al., "The Determination of Sequence Requirements for Hormonal Regulation of Gene Expression," BioTechniques 4:104-117 (1986). |
"Guide to Eukaryotic Transfections with Cationic Lipid Reagents," (Life Technologies (Gibco BRL)). |
Chen, C. and Okayama, H., "High-Efficiency Transformation of Mammalian Cells by Plasmid DNA," Mol. Cell. Biol. 7:2745-2752 (1987). |
Alam, J. and Cook, J.L., "Reporter Genes: Application to the Study of Mammalian Gene Transcription," Anal. Biochem. 188:245-254 (1990). |
Gorman, C.M. and Howard, B.H., "Expression of recombinant plasmids in mammalian cells is enhanced by sodium butyrate," Nucleic Acids Research 11:7631-7648 (1983). |
Wolff, J.A. et al., "Direct Gene Transfer into Mouse Muscle in Vivo," Science 247:1465-1468 (1990). |
Cohen, J., "Naked DNA Points Way to Vaccines," Science 259:1691-1692 (1993). |
Wu, G.Y. and Wu, C.H., "Receptor-mediated Gene Delivery and Expression in Vivo," J. Biol. Chem. 263:14621-14624 (1988). |
Chow, D.D. et al., "Targeting Small Unilamellar Liposomes to Hepatic Parenchymal Cells by Dose Effect," J. Pharmacol. Exptl. Ther. 248:506-513 (1989). |
Wu, C.H. et al., "Targeting Genes: Delivery and Persistent Expression of a Foreign Gene Driven by Mammalian Regulatory Elements in Vivo," J. Biol. Chem. 264:16985-16987 (1989). |
Kaneda, Y. et al., "Introduction and Expression of the Human Insulin Gene in Adult Rat Liver," J. Biol. Chem. 264:12126-12129 (1989a). |
Kaneda, Y. et al., "Increased Expression of DNA Cointroduced with Nuclear Protein in Adult Rat Liver," Science 243:375-378 (1989b). |
Wilson, J.M. et al., "Hepatocyte-directed Gene Transfer in Vivo Leads to Transient Improvement of Hypercholesterolemia in Low Density Lipoprotein Receptor-deficient Rabbits," J. Biol. Chem. 267:963-967 (1992). |
Wilson, J.M. et al., "A Novel Mechanism for Achieving Transgene Persistence in Vivo after Somatic Gene Transfer into Hepatocytes," J. Biol. Chem. 267:11483-11489 (1992b). |
Chowdhury, N.R. et al., "Fate of DNA Targeted to the Liver by Asialoglycoprotein Receptor-mediated Endocytosis in Vivo," J. Biol. Chem. 268:11265-11271 (1993). |
Perales, J.C. et al., "Gene transfer in vivo: Sustained expression and regulation of genes introduced into the liver by receptor-targeted uptake," Proc. Natl. Acad. Sci. USA 91:4086-4090 (1994). |
Palermo, D.P. et al., "Production of analytical quantities of recombinant proteins in Chinese hamster ovary cells using sodium butyrate to elevate gene expression," J. Biotechnol. 19:35-48 (1991). |
Boffa, L.C. et al., "Manifold Effects of Sodium Butyrate on Nuclear Function," J. Biol. Chem. 256:9612-9621 (1981). |
Kruh, J., "Effects of sodium butyrate, a new pharmacological agent, on cells in culture," Mol. Cell. Biochem. 42:65-82 (1982). |
Chabanas, A. et al., "Effects of Butyric Acid on Cell Cycle Regulation and Induction of Histone H1.degree. in Mouse Cells and Tissue Culture," J. Mol. Biol. 183:141-151 (1985). |
Parker, M.I. et al., "DNA Hypermethylation in Sodium Butyrate-treated WI-38 Fibroblasts," J. Biol. Chem. 261:2786-2790 (1986). |
Kooistra, T. et al., "Butyrate stimulates tissue-type plasminogen-activator synthesis in cultured human endothelial cells," Biochem. J. 247:605-612 (1987). |
Kaneko, Y. et al., "Alteration of Differentiation State of Human Hepatocytes Cultured with Novobiocin and Butyrate," Canc. Res. 50:3101-3105 (1990). |
Nathan, D.F. et al., "Increased Cell Surface EGF Receptor Expression during the Butyrate-Induced Differentiation of Human HCT-116 Colon Tumor Cell Clones," Exptl. Cell Res. 190:76-84 (1990). |
Kosaka, M. et al., "Reversible Effects of Sodium Butyrate on the Differentiation of F9 Embryonal Carcinoma Cells," Exptl. Cell Res. 192:46-51 (1991). |
Oh, S.K.W. et al., "Substantial Overproduction of Antibodies by Applying Osmotic Presure and Sodium Butyrate," Biotech. Bioeng. 42:601-610 (1993). |
Sidhu, J.S. and Omiecinski, C.J., "Modulation of xenobiotic-inducible cytochrome P450 gene expression by dexamethasone in primary rat hepatocytes," Pharmacogenitics 5:24-36 (1995). |
Morrow, J.S. et al., "Butyrate Regulates Glycosylation of the Glycoprotein Hormone Alpha Subunit Secreted by `Glucose-Starved` Human Liver Cells," Biochemical and Biophysical Research Communications 112:115-125 (1983). |
Barsoum, J., "Stable Integration of Vectors at High Copy Number for High-Level Expression in Animal Cells," Methods in Molecular Biology: Animal Cell Electroporation and Electrofusion Protocols 48:225-237 (1995). |
Berthold, W., "Gene Stability in Mammalian Cells and Protein Consistency," Genetic Stability and Recombinant Product Consistency 83:67-79 (1994). |
Bilbao, G. et al., "Adenoviral/retroviral vector chimeras: a novel strategy to achieve high-efficiency stable transduction in vivo," The FASEB Journal 11:624-634 (1997). |
BioWhitaker, Inc., "Multi-Test Limulus Amebocyte Lysate Pyrogent.RTM. 03 plus," pp. 1-11 (1995). |
Boulo, V. et al., "Transient expression of luciferase reporter gene after lipofection in oyster (Crassostrea gigas) primary cell cultures," Molecular Marine Biology and Biotechnology 5(3):167-174 (1996). |
Bray, H.G. et al., "Chondroitin from Cartilage," Chemistry of Tissues pp. 142-146 (1944). |
Flamant, F. et al., "Virofection: a new procedure to achieve stable expression of genes transferred into early embryos," Int. J. Dev. Biol. 38:751-757 (1994). |
Hascall, V.C., "Isolation and Characterization of Proteoglycans," Methods in Enzymology 230:390-417 (1994). |
Kelleher, Z.T. and Vos, J.-M.H., "Long-Term Episomal Gene Delivery in Human Lymphoid Cells Using Human and Avian Adenoviral-Assisted Transfection," BioTechniques 17(6):1110-1117 (1994). |
GibcoBRL Life Technologies, "1993-1994 Catalogue and Reference Guide," pp. R12-R19 (1993). |
Matthews, K.E. and Keating, A., "Bead Transfection of Adherent Cells," Mol. Biotech. 5:259-261 (1996). |
Partridge, S.M., "The State of Combination of Chondroitin Sulphate in Cartilage," Biochem. J. 43:387-397 (1948). |
Partridge, T.A. and Davies, K.E., "Myoblast-based gene therapies," British Medical Bulletin 51(1):123-137 (1995). |
Simoni, M. and Gromoll, J., "Monitoring the transfection efficiency of the human follicle-stimulating hormone receptor cDNA in COS-7 cells: evaluation of the growth hormone transient gene expression assay system," J. Endocrinol. Invest. 19:359-364 (1996). |
Verma, I.M. and Somia, N., "Gene therapy-promises, problems and prospects," Nature 389:239-242 (1997). |