On the power of chemical synthesis: Immunological evaluation of models for multiantigenic carbohydrate-based cancer vaccines
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S. Danishefsky | L. Williams | G. Ragupathi | P. Livingston | Jennifer R. Allen | P. Glunz | D. M. Coltart | C. Harris | F. Koide | E. Kagan
[1] M. Breimer,et al. Characterization of a mouse monoclonal IgG3 antibody to the tumor-associated globo H structure produced by immunization with a synthetic glycoconjugate , 1998, Glycoconjugate Journal.
[2] S. Kuduk,et al. Principles of mucin architecture: structural studies on synthetic glycopeptides bearing clustered mono-, di-, tri-, and hexasaccharide glycodomains. , 2002, Journal of the American Chemical Society.
[3] S. Danishefsky,et al. Constructing an adenocarcinoma vaccine: Immunization of mice with synthetic KH‐1 nonasaccharide stimulates anti‐KH‐1 and anti‐Ley antibodies , 2002, International journal of cancer.
[4] Larry Norton,et al. Immunization of metastatic breast cancer patients with a fully synthetic globo H conjugate: A phase I trial , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[5] S. Danishefsky,et al. Pursuit of optimal carbohydrate-based anticancer vaccines: preparation of a multiantigenic unimolecular glycopeptide containing the Tn, MBr1, and Lewis(y) antigens. , 2001, Journal of the American Chemical Society.
[6] S. Danishefsky,et al. In pursuit of an anticancer vaccine: a monomolecular construct containing multiple carbohydrate antigens , 2000 .
[7] G. Ragupathi,et al. Effect of immunological adjuvant combinations on the antibody and T-cell response to vaccination with MUC1-KLH and GD3-KLH conjugates. , 2000, Vaccine.
[8] R. Reynolds,et al. Development of semisynthetic triterpenoid saponin derivatives with immune stimulating activity. , 2000, Vaccine.
[9] M. Peyton,et al. Immunization of ovarian cancer patients with a synthetic Lewisy‐protein conjugate vaccine: A phase 1 trial , 2000, International journal of cancer.
[10] C. Musselli,et al. Induction of antibodies against GD3 ganglioside in melanoma patients by vaccination with GD3‐lactone‐KLH conjugate plus immunological adjuvant QS‐21 , 2000, International journal of cancer.
[11] G. Kanra,et al. Immunogenicity study of a combined diphtheria, tetanus, acellular pertussis, inactivated poliomyelitis vaccine used to reconstitute a freeze-dried Haemophilus influenzae type b vaccine (DTaP-IPV//PRP-T) administered simultaneously with a hepatitis B vaccine at two, three and four months of life. , 1999, Vaccine.
[12] C. Musselli,et al. Comparison of the effect of different immunological adjuvants on the antibody and T-cell response to immunization with MUC1-KLH and GD3-KLH conjugate cancer vaccines. , 1999, Vaccine.
[13] S. Danishefsky,et al. New Applications of the n-Pentenyl Glycoside Method in the Synthesis and Immunoconjugation of Fucosyl GM1: A Highly Tumor-Specific Antigen Associated with Small Cell Lung Carcinoma , 1999 .
[14] M. Kris,et al. Immunogenicity of a fucosyl-GM1-keyhole limpet hemocyanin conjugate vaccine in patients with small cell lung cancer. , 1999, Clinical cancer research : an official journal of the American Association for Cancer Research.
[15] H. Scher,et al. Carbohydrate vaccines in cancer: immunogenicity of a fully synthetic globo H hexasaccharide conjugate in man. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[16] H. Scher,et al. A Fully Synthetic Globo H Carbohydrate Vaccine Induces a Focused Humoral Response in Prostate Cancer Patients: A Proof of Principle. , 1999, Angewandte Chemie.
[17] A. Fattom,et al. Epitopic overload at the site of injection may result in suppression of the immune response to combined capsular polysaccharide conjugate vaccines. , 1999, Vaccine.
[18] N. Cheung,et al. Antibodies against GD2 ganglioside can eradicate syngeneic cancer micrometastases. , 1998, Cancer research.
[19] V. Usonis,et al. Feasibility study of a combined diphtheria-tetanus-acellular pertussis-hepatitis B (DTPa-HBV) vaccine, and comparison of clinical reactions and immune responses with diphtheria-tetanus-acellular pertussis (DTPa) and hepatitis B vaccines applied as mixed or injected into separate limbs. , 1997, Vaccine.
[20] C. Cordon-Cardo,et al. Selection of tumor antigens as targets for immune attack using immunohistochemistry: I. Focus on gangliosides , 1997, International journal of cancer.
[21] C. Cordon-Cardo,et al. Selection of tumor antigens as targets for immune attack using immunohistochemistry: II. Blood group‐related antigens , 1997, International journal of cancer.
[22] S. Danishefsky,et al. Immunization of Mice with a Fully Synthetic Globo H Antigen Results in Antibodies against Human Cancer Cells: A Combined Chemical—Immunological Approach to the Fashioning of an Anticancer Vaccine , 1997 .
[23] S. Kurikka. Priming with diphtheria-tetanus-pertussis vaccine enhances the response to the Haemophilus influenzae type b tetanus conjugate vaccine in infancy. , 1996, Vaccine.
[24] K. Lloyd,et al. Augmenting the immunogenicity of synthetic MUC1 peptide vaccines in mice. , 1996, Cancer research.
[25] S. Danishefsky,et al. Glycals in Organic Synthesis: The Evolution of Comprehensive Strategies for the Assembly of Oligosaccharides and Glycoconjugates of Biological Consequence , 1996 .
[26] P. Livingston. Augmenting the immunogenicity of carbohydrate tumor antigens. , 1995, Seminars in cancer biology.
[27] H. Oettgen,et al. GM2-KLH conjugate vaccine: increased immunogenicity in melanoma patients after administration with immunological adjuvant QS-21. , 1995, Cancer research.
[28] A. Cross,et al. Safety and immunogenicity of a polyvalent Escherichia coli vaccine in human volunteers. , 1994, The Journal of infectious diseases.
[29] S. Itzkowitz,et al. Use of model cell lines to study the biosynthesis and biological role of cancer-associated sialosyl-Tn antigen. , 1994, Cancer Research.
[30] T. Barington,et al. Opposite effects of actively and passively acquired immunity to the carrier on responses of human infants to a Haemophilus influenzae type b conjugate vaccine , 1994, Infection and immunity.
[31] P O Livingston,et al. GD3 vaccines for melanoma: superior immunogenicity of keyhole limpet hemocyanin conjugate vaccines. , 1994, Cancer research.
[32] T. Barington,et al. Non-epitope-specific suppression of the antibody response to Haemophilus influenzae type b conjugate vaccines by preimmunization with vaccine components , 1993, Infection and immunity.
[33] J. Poolman,et al. Effect of carrier priming on immunogenicity of saccharide-protein conjugate vaccines , 1991, Infection and immunity.
[34] C. Kensil,et al. Separation and characterization of saponins with adjuvant activity from Quillaja saponaria Molina cortex. , 1991, Journal of immunology.
[35] P. Mäkelä,et al. A randomized, prospective field trial of a conjugate vaccine in the protection of infants and young children against invasive Haemophilus influenzae type b disease. , 1990, The New England journal of medicine.
[36] J. Donnelly,et al. Immunogenicity of a Haemophilus influenzae polysaccharide-Neisseria meningitidis outer membrane protein complex conjugate vaccine. , 1990, Journal of immunology.
[37] K. Hellström,et al. Highly tumor-reactive, internalizing, mouse monoclonal antibodies to Le(y)-related cell surface antigens. , 1990, Cancer research.
[38] R. Schneerson,et al. Studies on Pneumococcus vaccine alone or mixed with DTP and on Pneumococcus type 6B and Haemophilis influenzae type b capsular polysaccharide‐tetanus toxoid conjugates in two‐to five‐year‐old children with sickle cell anemia , 1990, The Pediatric infectious disease journal.
[39] J. Eskola,et al. Efficacy of Haemophilus influenzae type b polysaccharide-diphtheria toxoid conjugate vaccine in infancy. , 1987, The New England journal of medicine.
[40] P. Anderson. Antibody Responses to Haemophilus influenzae Type b and Diphtheria Toxin Induced by Conjugates of Oligosaccharides of the Type b Capsule with the Nontoxic Protein CRM197 , 1983, Infection and immunity.
[41] O. Mäkelä,et al. Effect of Carrier Preimmunization on the Anti‐Hapten Response in the Chicken , 1974, Scandinavian journal of immunology.
[42] E. Kabat,et al. Immunochemical studies on blood groups. XXXIV. Structures of some oligosaccharides produced by alkaline degradation of blood group A, B, and H substances. , 1966, Biochemistry.