Pascal and Francis Bibliographic Databases

Help

Search results

Your search

kw.\*:("Antigène CD21")

Document Type [dt]

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Publication Year[py]

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Discipline (document) [di]

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Author Country

A-Z Z-A Frequency ↓ Frequency ↑
Export in CSV

Results 1 to 25 of 131

  • Page / 6
Export

Selection :

  • and

Dependence of germinal center B cells on expression of CD21/CD35 for survivalFISCHER, M. B; GOERG, S; LIMING SHEN et al.Science (Washington, D.C.). 1998, Vol 280, Num 5363, pp 582-585, issn 0036-8075Article

Structure, function, and genetics of human B cell-associated surface moleculesCLARK, E. A; LEDBETTER, J. A.Advances in cancer research. 1989, Vol 52, pp 81-149, issn 0065-230XArticle

Elevation of CD21 and CD23 positive lymphocytes in children with atopic dermatitisGHADERI, A. A; DOROUDCHI, M; EMAD, M et al.EJD. European journal of dermatology. 1996, Vol 6, Num 6, pp 421-422, issn 1167-1122Article

Synergy test for recognition of epitopes on soluble proteins ; its application in the study of CD21 and CD23 antigens and their respective antibodiesLING, N. R; BROWN, B; HARDIE, D et al.Journal of immunological methods. 1994, Vol 173, Num 1, pp 11-17, issn 0022-1759Article

CD23 and CD21 function as adhesion molecules in homotypic aggregation of human B lymphocytesBJÖRCK, P; ELENSTRÖM-MAGNUSSON, C; ROSEN, A et al.European journal of immunology. 1993, Vol 23, Num 8, pp 1771-1775, issn 0014-2980Article

CD21 is a ligand for CD23 and regulates IgE productionAUBRY, J.-P; POCHON, S; GRABER, P et al.Nature (London). 1992, Vol 358, Num 6386, pp 505-507, issn 0028-0836Article

Expression of CR2/EBV receptors on human thymocytes detected by monoclonal antibodiesTSOUKAS, C. D; LAMBRIS, J. D.European journal of immunology. 1988, Vol 18, Num 8, pp 1299-1302, issn 0014-2980Article

Optimal long-term humoral responses to replication-defective herpes simplex virus require CD21/CD35 complement receptor expression on stromal cellsBROCKMAN, Mark A; VERSCHOOR, Admar; JIA ZHU et al.Journal of virology. 2006, Vol 80, Num 14, pp 7111-7117, issn 0022-538X, 7 p.Article

Measurement of peripheral B cell subpopulations in common variable immunodeficiency (CVID) using a whole blood methodFERRY, B. L; JONES, J; BATEMAN, E. A et al.Clinical and experimental immunology (Print). 2005, Vol 140, Num 3, pp 532-539, issn 0009-9104, 8 p.Article

The dual function of the splenic marginal zone: essential for initiation of anti-TI-2 responses but also vital in the general first-line defense against blood-borne antigensZANDVOORT, A; TIMENS, W.Clinical and experimental immunology (Print). 2002, Vol 130, Num 1, pp 4-11, issn 0009-9104, 8 p.Article

REPONSE IMMUNITAIRE CONTRE UN ANTIGENE EXPRIME PAR TRANSGENESE SUR LES CELLULES B DES ILOTS DE LANGERHANS = IMMUNE RESPONSE AGAINST AN ANTIGEN TRANSGENICALY EXPRESSED ON B-CELLS OF LANHERHANS ISLETSVigneau Hermellin, Murielle; Carel, Jean-Claude.1998, 155 p.Thesis

Ligand specificities of mouse complement receptor types 1 (CR1) and 2(CR2) purified from spleen cellsPRAMOONJAGO, P; TAKEDA, J; KIM, Y. U et al.International immunology. 1993, Vol 5, Num 4, pp 337-343, issn 0953-8178Article

The CD19/CD21 signal transducing complex of human B lymphocytes includes the target of antiproliferative antibody-1 and Leu-13 moleculesBRADBURY, L. E; KANSAS, G. S; LEVY, S et al.The Journal of immunology (1950). 1992, Vol 149, Num 9, pp 2841-2850, issn 0022-1767Article

Enhanced CD21 expression and shedding in chronic lymphatic leukemia: a possible pathomechanism in disease progressionZHI LOW, Hui; HILBRANS, Dorothee; SCHMIDT-WOLF, Ingo G. H et al.International journal of hematology. 2012, Vol 96, Num 3, pp 350-356, issn 0925-5710, 7 p.Article

Differential expression of CD21 identifies developmentally and functionally distinct subsets of human transitional B cellsSURYANI, Santi; FULCHER, David A; SANTNER-NANAN, Brigitte et al.Blood. 2010, Vol 115, Num 3, pp 519-529, issn 0006-4971, 11 p.Article

Immunization with a DNA chimeric molecule encoding a hemagglutinin peptide and a scFv CD21-specific antibody fragment induces long-lasting IgM and CTL responses to influenza virusIVANOVSKA, Nina; TCHORBANOV, Andrey; PRECH, Jozsef et al.Vaccine. 2006, Vol 24, Num 11, pp 1830-1837, issn 0264-410X, 8 p.Article

A somatic knockout of CBF1 in a human B-cell line reveals that induction of CD21 and CCR7 by EBNA-2 is strictly CBF1 dependent and that downregulation of immunoglobulin M is partially CBF1 independentMAIER, Sabine; SANTAK, Maja; MANTIK, Anja et al.Journal of virology. 2005, Vol 79, Num 14, pp 8784-8792, issn 0022-538X, 9 p.Article

Regulation of humoral immune responses by CD21/CD35ZHIBIN CHEN; KORALOV, S. B; KELSOE, G et al.Immunological reviews. 2000, Vol 176, pp 194-204, issn 0105-2896Article

Decreased expression of complement receptor type 2 (CR2) on neoplastic B cells of chronic lymphocytic leukaemiaTOOZE, J. A; BEVAN, D. H.Clinical and experimental immunology (Print). 1991, Vol 83, Num 3, pp 423-429, issn 0009-9104, 7 p.Article

Comparative structure and evolution of murine CR2 : the homolog of the human C3d/EBV receptor (CD21)FINGEROTH, J. D.The Journal of immunology (1950). 1990, Vol 144, Num 9, pp 3458-3467, issn 0022-1767Article

Complement receptor 2/CD21- human naive B cells contain mostly autoreactive unresponsive clonesISNARDI, Isabelle; NG, Yen-Shing; MEFFRE, Eric et al.Blood. 2010, Vol 115, Num 24, pp 5026-5036, issn 0006-4971, 11 p.Article

Expression of CD21 and CD23 during human fetal developmentTHORNTON, Catherine A; HOLLOWAY, Judith A; WARNER, John O et al.Pediatric research. 2002, Vol 52, Num 2, pp 245-250, issn 0031-3998Article

CD21 expressed on basophilic cells is involved in histamine release triggered by CD23 and anti-CD21 antibodiesBACON, K; GAUCHAT, J.-F; AUBRY, J.-P et al.European journal of immunology. 1993, Vol 23, Num 10, pp 2721-2724, issn 0014-2980Article

Expression, molecular association, and functions of C3 complement receptors CR1 (CD35) and CR2 (CD21) on the human T cell line HPB-ALLDELIBRIAS, C.-C; FISCHER, E; BISMUTH, G et al.The Journal of immunology (1950). 1992, Vol 149, Num 3, pp 768-774, issn 0022-1767Article

Ligation of membrane immunoglobulin leads to inactivation of the signal-transducing ability of membrane immunoglobulin, CD19, CD21, and B-cell gp95RIJKERS, G. T; GRIFFIOEN, A. W; ZEGERS, B. J. M et al.Proceedings of the National Academy of Sciences of the United States of America. 1990, Vol 87, Num 22, pp 8766-8770, issn 0027-8424, 5 p.Article

  • Page / 6