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1.
J Immunol ; 186(2): 667-74, 2011 Jan 15.
Article de Anglais | MEDLINE | ID: mdl-21169545

RÉSUMÉ

Development of long-term humoral immunity, characterized by the formation of long-lived plasma cells (PCs) in the bone marrow and memory B cells, is a critical component of protective immunity to pathogens, and as such it is the major goal of vaccination. However, the mechanisms involved in the generation of long-term humoral immunity remain poorly understood. In this study, we used IL-21R-deficient (IL-21R.KO) mice to examine the role of the IL-21 pathway in the development of the B cell memory response. Primary IgG serum Ab responses to the T cell-dependent Ag 4-hydroxy-3-nitrophenylacetyl (NP) hapten conjugated to chicken γ globulin were delayed in IL-21R.KO mice, but reached normal titers within 3 to 4 wk of immunization. IL-21R.KO mice formed germinal centers and generated normal numbers of PCs in their bone marrow. Additionally, memory B cell formation was similar in wild-type and IL-21R.KO mice. However, NP-specific memory B cells and PCs failed to expand following secondary immunization of IL-21R.KO mice, and consequently, secondary IgG Ab responses to NP hapten conjugated to chicken γ globulin were significantly impaired. These results identify the IL-21 pathway as a critical component of the memory B cell response.


Sujet(s)
Sous-populations de lymphocytes B/immunologie , Sous-populations de lymphocytes B/métabolisme , Différenciation cellulaire/immunologie , Immunoglobuline G/biosynthèse , Immunoglobuline M/biosynthèse , Mémoire immunologique , Récepteurs à l'interleukine-21/physiologie , Animaux , Antigènes de surface/biosynthèse , Protéines régulatrices de l'apoptose/biosynthèse , Sous-populations de lymphocytes B/cytologie , Différenciation cellulaire/génétique , Poulets/immunologie , Cellules dendritiques folliculaires/immunologie , Cellules dendritiques folliculaires/métabolisme , Centre germinatif/cytologie , Centre germinatif/immunologie , Centre germinatif/métabolisme , Haptènes/administration et posologie , Haptènes/immunologie , Rappel de vaccin , Mémoire immunologique/génétique , Mémoire immunologique/immunologie , Antigènes CD45/biosynthèse , Souris , Souris de lignée C57BL , Souris knockout , Nitrophénols/administration et posologie , Nitrophénols/immunologie , Phénylacétates/administration et posologie , Phénylacétates/immunologie , Récepteur-1 de mort cellulaire programmée , Récepteurs CXCR5/biosynthèse , Récepteurs à l'interleukine-21/déficit , Récepteurs à l'interleukine-21/génétique , Lymphocytes T auxiliaires/cytologie , Lymphocytes T auxiliaires/immunologie , Lymphocytes T auxiliaires/métabolisme , Gammaglobulines/administration et posologie , Gammaglobulines/immunologie
2.
MAbs ; 2(3): 335-46, 2010.
Article de Anglais | MEDLINE | ID: mdl-20424514

RÉSUMÉ

Using phage display, we generated a panel of optimized neutralizing antibodies against the human and mouse receptors for interleukin 21 (IL-21), a cytokine that is implicated in the pathogenesis of many types of autoimmune disease. Two antibodies, Ab-01 and Ab-02, which differed by only four amino acids in V(L) CDR3, showed potent inhibition of human and mouse IL-21R in cell-based assays and were evaluated for their pharmacological and pharmacodynamic properties. Ab-01, but not Ab-02, significantly reduced a biomarker of disease (anti-dsDNA antibodies) and IgG deposits in the kidney in the MRL-Fas(lpr) mouse model of lupus, suggesting that anti-IL-21R antibodies may prove useful in the treatment of lupus. Ab-01 also had a consistently higher exposure (AUC(0-infinity)) than Ab-02 following a single dose in rodents or cynomolgus monkeys (2-3-fold or 4-7-fold, respectively). Our data demonstrate that small differences in CDR3 sequences of optimized antibodies can lead to profound differences in in vitro and in vivo properties, including differences in pharmacological activity and pharmacokinetic profiles. The lack of persistent activity of Ab-02 in the MRL-Fas(lpr) mouse lupus model may have been a consequence of faster elimination, reduced potency in blocking the effects of mouse IL-21R, and more potent/earlier onset of the anti-product response relative to Ab-01.


Sujet(s)
Anticorps anti-idiotypiques/administration et posologie , Anticorps monoclonaux/administration et posologie , Anticorps neutralisants/administration et posologie , Lupus érythémateux disséminé/thérapie , Récepteurs à l'interleukine-21/antagonistes et inhibiteurs , Animaux , Anticorps anti-idiotypiques/immunologie , Anticorps monoclonaux/immunologie , Anticorps monoclonaux/pharmacocinétique , Anticorps neutralisants/immunologie , Cellules cultivées , Régions déterminant la complémentarité/génétique , Modèles animaux de maladie humaine , Femelle , Humains , Injections péritoneales , Injections veineuses , Injections sous-cutanées , Interleukines/immunologie , Lupus érythémateux disséminé/immunologie , Macaca fascicularis , Mâle , Souris , Souris de lignée MRL lpr , Lignées consanguines de souris , Rats , Rat Sprague-Dawley , Récepteurs à l'interleukine-21/immunologie
3.
Arthritis Rheum ; 56(4): 1152-63, 2007 Apr.
Article de Anglais | MEDLINE | ID: mdl-17393408

RÉSUMÉ

OBJECTIVE: Interleukin-21 (IL-21) is a T cell-derived cytokine that modulates T cell, B cell, and natural killer cell responses. In this study, the effects of blocking IL-21 were examined in 2 rodent models of rheumatoid arthritis (RA) to determine whether IL-21 contributes to their pathologic processes. METHODS: DBA/1 mice were immunized with bovine type II collagen and then treated with murine IL-21 receptor Fc fusion protein (IL-21R.Fc), which was initiated after the onset of arthritis symptoms in 10% of the cohort. The mice were assessed 3 times per week for signs of disease, including histologic features as well as serum cytokine, Ig, and cytokine messenger RNA (mRNA) levels in the paws. In a separate experiment, Lewis rats were immunized with Freund's complete adjuvant followed by administration of IL-21R.Fc at the peak of inflammation in the joints. Rats were assessed daily for histologic features and for scoring of arthritis severity. In addition, the effects of IL-21R.Fc on the production of interferon-gamma (IFNgamma) by T cells were examined. RESULTS: Treatment of DBA/1 mice with IL-21R.Fc reduced the clinical and histologic signs of collagen-induced arthritis. Nonspecific IgG1 levels were decreased in response to treatment. The levels of IL-6 mRNA in the paws and the serum IL-6 levels were decreased after treatment with IL-21R.Fc. IFNgamma mRNA levels were increased in the paws, and the addition of IL-21R.Fc to collagen-activated lymph node cultures enhanced the levels of IFNgamma. Collagen-specific spleen cell responses in IL-21R.Fc-treated mice were observed as reduced levels of IFNgamma and increased levels of IL-6. Treatment of Lewis rats with IL-21R.Fc after induction of adjuvant-induced arthritis resulted in reversal of disease signs and improvements in histologic parameters. CONCLUSION: These findings demonstrate a pathogenic role for IL-21 in animal models of RA, and support consideration of IL-21 as a therapeutic target in human RA.


Sujet(s)
Arthrite expérimentale/prévention et contrôle , Fragments Fc des immunoglobulines/administration et posologie , Sous-unité alpha du récepteur à l'interleukine 21/administration et posologie , Interleukines/antagonistes et inhibiteurs , Récepteurs à l'interleukine-21/antagonistes et inhibiteurs , Protéines de fusion recombinantes/administration et posologie , Animaux , Arthrite expérimentale/métabolisme , Arthrite expérimentale/anatomopathologie , Cellules cultivées , Cytokines/sang , Cytokines/génétique , Relation dose-effet des médicaments , Expression des gènes , Sous-unité alpha du récepteur à l'interleukine 21/métabolisme , Interleukines/métabolisme , Noeuds lymphatiques/effets des médicaments et des substances chimiques , Noeuds lymphatiques/métabolisme , Activation des lymphocytes , Mâle , Souris , Souris de lignée DBA , ARN messager/métabolisme , Rats , Rats de lignée LEW , Rat Sprague-Dawley , Récepteurs à l'interleukine-21/métabolisme , Récepteurs aux facteurs de nécrose tumorale/administration et posologie , Récepteurs aux facteurs de nécrose tumorale/antagonistes et inhibiteurs , Récepteurs aux facteurs de nécrose tumorale/génétique , Rate/effets des médicaments et des substances chimiques , Rate/métabolisme , Lymphocytes T/effets des médicaments et des substances chimiques , Lymphocytes T/métabolisme
4.
Immunity ; 16(4): 559-69, 2002 Apr.
Article de Anglais | MEDLINE | ID: mdl-11970879

RÉSUMÉ

IFNalpha/beta, IL-12, and IL-15 regulate NK cell activation and expansion, but signals triggering resolution of the NK response upon induction of adaptive immunity remain to be defined. We now report that IL-21, a product of activated T cells, may serve this function. Mice lacking IL-21R (IL-21R(-/-)) had normal NK cell development but no detectable responses to IL-21. IL-21 enhanced cytotoxic activity and IFNgamma production by activated murine NK cells but did not support their viability, thus limiting their duration of activation. Furthermore, IL-21 blocked IL-15-induced expansion of resting NK cells, thus preventing the initiation of further innate responses. In contrast, IL-21 enhanced the proliferation, IFNgamma production, and cytotoxic function of CD8(+) effector T cells in an allogeneic MLR. These observations suggest that IL-21 promotes the transition between innate and adaptive immunity.


Sujet(s)
Lymphocytes T CD8+/immunologie , Interleukines/immunologie , Cellules tueuses naturelles/immunologie , Activation des lymphocytes/immunologie , Animaux , Apoptose/immunologie , Cytotoxicité immunologique , Femelle , Antigènes CD44/immunologie , Immunité active , Immunité innée , Interleukine-15/immunologie , Sous-unité alpha du récepteur à l'interleukine 21 , Interleukines/pharmacologie , Isoantigènes/immunologie , Cellules tueuses naturelles/cytologie , Numération des lymphocytes , Mâle , Souris , Souris de lignée BALB C , Souris de lignée C57BL , Souris knockout , Récepteurs aux interleukines/génétique , Récepteurs aux interleukines/immunologie , Récepteurs à l'interleukine-2/biosynthèse , Récepteurs à l'interleukine-21
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