| Kitada et al., WO9417197, Aug. 4, 1994.* |
| Zhou et al., Nucleic Acids Res., 18:5554, 1990.* |
| Yamada et al., Biochem. Biophys. Res. Commun., 149:665-671, 1987.* |
| Frenkel, D. et al.: “Modulation of Alzheimer's beta-amyloid neurotoxicity by site-directed single-chain antibody.” Neuroimmunomodulation, vol. 6, No. 6, Nov. 1999, p. 444 XP00800088, 4th International Congress of the International Society for Neuroimmunomodulation; Lugano, Switzerland; Sep. 29-Oct. 2, 1999. ISSN: 1021-7401, abstract. |
| Solomon, B. et al.: “Disaggregation of Alzheimer Beta-Amyloid by Site-Directed Mab” Proceedings Of The National Academy Of Sciences of USA, National Academy Of Science, Washington, US, vol. 94, Apr. 1997, pp. 4109-4112, XP002911322, ISSN: 0027-8424, the whole document. |
| Sigurdsson, Einar M. et al.: “Immunization with a nontoxic/nonfibrillar amyloid-beta homologus peptide reduces Alzheimer's disease-associated pathologhy in transgenic mice.” American Journal Of Pathology, vol. 159, No. 2, Aug. 2001, pp. 439-447, XP008000840, ISSN: 0002-9440, the whole document. |
| Schenk, Dale et al.: “Immunization with amyloid-β attenuates Alzheimer-disease-like pathology in the PDAPP mouse.” Nature, 1999;400: pp. 173-177. |
| Aguado, T. et al.: “Meeting Report—Novel adjuvants currently in clinical testing Nov. 2-4, 1998, Foundation Mérieux, Annecy, France: A meeting sponsored by the World Health Organization.” Vaccine 17 (1999); pp. 2321-2328. |
| Pallitto, Monica M. et al.: “Recognition Sequence Design for Peptidyl Modulators of β-Amyloid Aggregation and Toxicity.” Biochemistry 1999, 38, pp. 3570-3578. |
| Futaki, S. et al.: “Arginine-rich peptides: An abundant source of membrane-permeable peptides having potential as carriers for intracellular protein delivery.” J Biol. Chem. 2001, Feb. 23; 276 (8): 5836-40, abstract. |
| Martinez-Fong, D. et al.: “Nonenzymatic glycosylation of poly-L-lysine: a new tool for targeted gene delivery.” Hepatology 1994 Dec.; 20(6): 1602-8. |
| Schwarzenberger, P. et al.: “Poly-L-lysine-based molecular conjugate vectors: a high efficiency gene transfer system for human progenitor and leukemia cells.” Am J Med Sci 2001 Feb.; 321 (2): 129-36. |
| Wang, Y. et al., “Endocytosis of horseradish peroxidase-poly-lysine conjugate by glomerular epithelial cells: an in vitro study.” J Pathol 1989 Oct.; 159(2): 159-67. |
| Shen, W.C. et al.: “Disulfide spacer between methotrexate and poly(D-lysine). A probe for exploring the reductive process in endocytosis.” J Biol Chem 1985 Sep 15; 260(20): 10905-8. |
| Peterson, P.K. et al.: “Polyamino acid enhancement of bacterial phagocytosis by human polymorphonuclear leukocytes and peritoneal macrophages.” Infect Immun 1984 Feb.; 43(2): 561-6. |
| Deierkauf F.A., et al.: “Phygocytosis by rabbit polymorphonuclear leukocytes: the effect of albumin and polyamino acids on latex uptake.” J Cell Physiol 1977 Aug.; 92(2): 169-75. |
| Di Nicola, M. et al.: “Large-scale feasibility of gene transduction into human CD34+ cell derived dendritic cells by adenoviral/polycation complex.” Br J Haematol 2000 Oct.; 111(1):344-50. |
| Buschle M. et al.: “Transloading of tumor antigen-derived peptides into antigen-presenting cells.” Proc Natl Acad Sci USA 1997 Apr. 1;94 (7): 3256-61. |
| Farmer, J.L. et al.: “Human immune response to cationized proteins. II. Characterization of interaction of cationized diphtheria toxoid with human mononuclear cells.” Cell Immunol 1993 Jan.; 146(1): 198-209. |