Ferrari, B., et al. Artificial carbohydrate antigens: the synthesis of glycopeptidic haptens with T.sub.N specificity. Bio. Org. Chem. 11(1):85-95 (1982). |
Kiwada, et al. Application of synthetic liposomes based on acyl amino acids or acyl peptides as drug carriers. Chem. Pharm. Bull., 35:2935-1942 (1987). |
Larrabee, C.E., et al. Radiation-induced polymerization of sodium 10-undecenoate in aqueous micelle solutions. J. Polymer Sci. Polyn. Lett. Ed. 17:749-751 (1979). |
LeBlanc, M. et al. Use of lymphoblastoid Namalva cell cultures in a toxicity test. Application to the monitoring of detoxification procedures for fluorocarbons to be used as intravascular oxygen-carriers. Pharm. Res. 246 (1985). |
Liposome Technology. Targeted Drug Delivery and Biological Interaction. vol. III. (G. Gregoriadis ed., CRC Press, Inc., (1984). |
Ogawa, T., et al. Enhancement of serum antibody production in mice by oral administration of lipophilic derivatives of muramylpeptides and bacterial lipopolysaccharides with bovine serum albumin. Chem. Abstracts 105:305q (1986). |
Okahata, Y., et al., Functional capsule membranes. Part 29. Concanavalin A-induced permeability control of capsule membranes corked with synthetic glycolipid bilayers or grafted with synthetic glycopolymers. J. Chem. Soc. Perkin Trans. II p. 1317 (1987). |
Ozer, et al., A novel drug delivery system: non-ionic surfactant vesicles. European Journal of Pharmaceutical and Biopharmaceutics. 37:75-79 (1991). |
Okahata, Y., et al., Functional capsule membranes. Part 28..sup.1 A capsule membrane grafted with viologen-containing polymers as a reactor of electron-transfer catalysis in heterophases. J. Chem. Soc. Perkin Trans. II p. 1003 (1987). |