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1.
Brown F. Recombinant sub-unit and peptide viral vaccines // Immunol. Adjuvants and Vaccines. -New York, London, 1989.-С.163- 173

2.
Berzofsky Jay A. Designing anti-viral synthetic peptide vaccines // J. Cell. Biochem., 1994, Suppl. 18С.-С.212

3.
Construction of candidate synthetic peptide vaccines for HIV-1 // Vaccines'94: Mod. Approaches New Vaccines Includ. Prev. AIDS. -Cold Spring Harbor (N.Y.), 1994.-С.147-153

4.
Development of a synthetic peptide vaccine against measles: Protection against measles and canine distemper and bypass of suppression by maternal antibody // Vaccines'94. -Cold Spring Harbor (N.Y.), 1994.-С.41-45

5.
Construction of candidate synthetic peptide vaccines for HIV-1 // Vaccines'94: Mod. Approaches New Vaccines Includ. Prev. AIDS. -Cold Spring Harbor (N.Y.), 1994.-С.147-153

6.
Development of a synthetic peptide vaccine against measles: Protection against measles and canine distemper and bypass of suppression by maternal antibody // Vaccines'94. -Cold Spring Harbor (N.Y.), 1994.-С.41-45

7.
Yanamishi Development of new vaccine manufacturing techniques // Asian Med. J., 1995. Vol. 38, N 1.-С.1-6

8.
A potential peptide vaccine against two different strains of influenza virus isolated at intervals of about 10 years // Proc. Nat. Acad. Sci. USA, 1994. Vol. 91, N 20.-С.9588-9592

9.
A potential peptide vaccine against two different strains of influenza virus isolated at intervals of about 10 years // Proc. Nat. Acad. Sci. USA, 1994. Vol. 91, N 20.-С.9588-9592

10.
The influence of MHC polymorphism on the selection of T-cell determinants of FMDV in cattle // Immunology, 1995. Vol. 84, N 1.-С.79-85

11.
The influence of MHC polymorphism on the selection of T-cell determinants of FMDV in cattle // Immunology, 1995. Vol. 84, N 1.-С.79-85

12.
Peptide immunization in humans: A combined CD8{+}/CD4{+} T cell-targeted vaccine restimulates the memory CD4 T cell response but fails to induce cytotoxic T lymphocytes (CTL) // Clin. and Exp. Immunol., 1996. Vol. 105, N 1.-С.18-25

13.
Peptide immunization in humans: A combined CD8{+}/CD4{+} T cell-targeted vaccine restimulates the memory CD4 T cell response but fails to induce cytotoxic T lymphocytes (CTL) // Clin. and Exp. Immunol., 1996. Vol. 105, N 1.-С.18-25

14.
Villarrubia Vicente G. Las nuavas vacunas y la respuesta inmunologica I: La memoria inmunologica. Respuesta humoral frente a respuesta celular // Med. clin., 1996. Vol. 107, N 4.-С.146-154

15.
Developing synthetic peptide vaccines for HIV-1 // Vaccines'95: Mol. Approaches Contr. Infec. Diseases. -Cold Spring Harbor (N. Y.), 1995.-С.135-142

16.
Success with a peptide vaccine in the target animal: Firm protection against viral host-range variants // Vaccines'95: Mol. Approaches Contr. Infec. Diseases. -Cold Spring Harbor (N.Y.), 1995.-С.399-404

17.
Success with a peptide vaccine in the target animal: Firm protection against viral host-range variants // Vaccines'95: Mol. Approaches Contr. Infec. Diseases. -Cold Spring Harbor (N.Y.), 1995.-С.399-404

18.
Developing synthetic peptide vaccines for HIV-1 // Vaccines'95: Mol. Approaches Contr. Infec. Diseases. -Cold Spring Harbor (N. Y.), 1995.-С.135-142

19.
Receptor-linked antigen delivery system. Importance of autologous 'альфа'2-macroglobulin in the development of peptide vaccine // Biochem. and Biophys. Res. Commun., 1995. Vol. 216, N 1.-С.399-405

20.
Ogasawara Synthetic peptide vaccines effective in preventing virus infection // Microbiol. and Immunol., 1999. Vol. 43, N 10.-С.915-923

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