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1.
A critical role for integrin 'альфа'[4] and CD44 in the induction of experimental autoimmune encephalomyelitis (EAE) in mice // J. Cell. Biochem., 1993, Suppl. 17А.-С.356

2.
A hippocampal protein associated with paraneoplastic neurologic syndrome and small cell lung carcinoma // Biochem. and Biophys. Res. Commun., 1994. Vol. 199, N 3.-С.1200-1208

3.
A key regulatory role for histamine in experimental autoimmune encephalomyelitis: Disease exacerbation in histidine decarboxylase-deficient mice // J. Immunol., 2006. Vol. 176, N 1.-С.17-26

4.
A molecular basis for MHC class II - associated autoimmunity // Science, 1988. Vol. 240, N 4855.-С.1003-1009

5.
A single amino acid change in an MBP peptide confers the capacity to prevent rather than induce EAE // J. Cell. Biochem., 1992, Suppl. 16D.-С.40

6.
A viral peptide with limited homology to a self peptide can induce clinical signs of experimental autoimmune encephalomyelitis // J. Immunol., 1998. Vol. 161, N 1.-С.60-64

7.
A viral peptide with limited homology to a self peptide can induce clinical signs of experimental autoimmune encephalomyelitis // J. Immunol., 1998. Vol. 161, N 1.-С.60-64

8.
Alters Susan E. Comparison of rat and rat-mouse chimeric anti-murine CD4 antibodies in vitro. Chemeric antibodies lyse low-density CD4+ cells // J. Immunol., 1989. Vol. 142, N 6.-С.2018-2023

9.
Characterization o T-cell receptor 'альфа''бета' repertoire in synovial tissue from different temporal phases of rheumatoid arthritis // 11th Eur. Immunol. Meet., Espoo, 9-12 June, 1991. -Helsinki, 1991.-С.35

10.
Differential regulation of chemokines by IL-17 in colonic epithelial cells // J. Immunol., 2008. Vol. 181, N 9.-С.6536-6545

11.
Gijbels Gelatinase B producing cells in multiple sclerosis lesions // J. Cell. Biochem., 1994, Suppl. 18d.-С.143

12.
Gijbels Treatment of central nervous system inflammatory disease with matrix metalloprotease inhibitors

13.
HLA-DP'бета' and susceptibility to multiple sclerosis: An analysis of caucasoid and japanese patient populations // Hum. Immunol., 1990. Vol. 28, N 4.-С.365-72

14.
HMG-CoA reductase inhibition causes increased necrosis and apoptosis in an in vivo mouse glioblastoma multiforme model // Anticancer Res., 2009. Vol. 29, N 12.-С.4901-4908

15.
HMG-CoA reductase inhibition causes increased necrosis and apoptosis in an in vivo mouse glioblastoma multiforme model // Anticancer Res., 2009. Vol. 29, N 12.-С.4901-4908

16.
HMG-CoA reductase inhibition causes increased necrosis and apoptosis in an in vivo mouse glioblastoma multiforme model // Anticancer Res., 2009. Vol. 29, N 12.-С.4901-4908

17.
IL-2 and TNF receptors as targets of regulatory T-T interactions: Isolation and characterization of cytokine receptor-reactive T cell lines in the Lewis rat // J. Immunol., 1996. Vol. 157, N 11.-С.4855-4861

18.
IL-2 and TNF receptors as targets of regulatory T-T interactions: Isolation and characterization of cytokine receptor-reactive T cell lines in the Lewis rat // J. Immunol., 1996. Vol. 157, N 11.-С.4855-4861

19.
Immunity to the extracellular domain of nogo-A modulates experimental autoimmune encephalomyelitis // J. Immunol., 2004. Vol. 173, N 11.-С.6981-6992

20.
Induction of a non-encephalitogenic type 2 T helper-cell autoimmune response in multiple sclerosis after administration of an altered peptide ligand in a placebo-controlled, randomized phase II trial // Nature Med., 2000. Vol. 6, N 10.-С.1076-1082

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