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Characterization of a third form of the human T cell receptor γ/δHOCHSTENBACH, F; PARKER, C; BRENNER, M. B et al.The Journal of experimental medicine. 1988, Vol 168, Num 2, pp 761-776, issn 0022-1007Article

Preferential Th1 Cytokine Profile of Phosphoantigen-Stimulated Human Vγ9Vδ2 T CellsDUNNE, Margaret R; MANGAN, Bozgana A; MADRIGAL-ESTEBAS, Laura et al.Mediators of inflammation. 2010, Vol 2010, Num 2, issn 0962-9351, 704941.1-704941.11Article

Environmentally responsive and reversible regulation of epidermal barrier function by γδ T cellsGIRARDI, Michael; LEWIS, Julia M; FILLER, Renata B et al.Journal of investigative dermatology. 2006, Vol 126, Num 4, pp 808-814, issn 0022-202X, 7 p.Article

T-cell receptor heterogeneity of γδ T-cell clones from human female reproductive tissuesCHRISTMAS, S. E; BREW, R; DENIZ, G et al.Immunology (Oxford). 1993, Vol 78, Num 3, pp 436-443, issn 0019-2805Article

γδ T cells and CD14+ Monocytes Are Predominant Cellular Sources of Cytokines and Chemokines Associated With Severe MalariaSTANISIC, Danielle I; CUTTS, Julia; SCHOFIELD, Louis et al.The Journal of infectious diseases. 2014, Vol 210, Num 2, pp 295-305, issn 0022-1899, 11 p.Article

Notch-Hes1 pathway is required for the development of IL-17―producing γδ T cellsSHIBATA, Kensuke; YAMADA, Hisakata; KAWAMOTO, Hiroshi et al.Blood. 2011, Vol 118, Num 3, pp 586-593, issn 0006-4971, 8 p.Article

Identification of novel γδ T-cell subsets following bacterial infection in the absence of Vγ1+ T cells : Homeostatic control of γδ T-cell responses to pathogen infection by Vγ1+ T cellsNEWTON, Darren J; ANDREW, Elizabeth M; DALTON, Jane E et al.Infection and immunity. 2006, Vol 74, Num 2, pp 1097-1105, issn 0019-9567, 9 p.Article

Site-specific recombination system from Tn1000(γδ) stabilises recombinant plasmids in Escherichi coliBELLANI, M; NUDEL, C; SANCHEZ RIVAS, C et al.Biotechnology letters. 1997, Vol 19, Num 4, pp 331-333, issn 0141-5492Article

γδ T-cell subset distribution in human semen from fertile donorsBERTOTTO, A; SPINOZZI, F; GERLI, R et al.American journal of reproductive immunology (1989). 1995, Vol 34, Num 3, pp 176-178, issn 1046-7408Article

Key implication of CD277/butyrophilin-3 (BTN3A) in cellular stress sensing by a major human γδ T-cell subsetHARLY, Christelle; GUILLAUME, Yves; DECHANET-MERVILLE, Julie et al.Blood. 2012, Vol 120, Num 11, pp 2269-2279, issn 0006-4971, 11 p.Article

Histamine modulates γδ-T lymphocyte migration and cytotoxicity, via Gi and Gs protein-coupled signalling pathways : Analytical receptor, pharmacology in drug discoveryTRUTA-FELES, K; LAGADARI, M; NORGAUER, J et al.British journal of pharmacology. 2010, Vol 161, Num 6, pp 1291-1300, issn 0007-1188, 10 p.Article

Characterization of the γδ T cell response to acute leukemiaMEEH, Paul F; KING, Michelle; O'BRIEN, Rebecca L et al.Cancer immunology and immunotherapy. 2006, Vol 55, Num 9, pp 1072-1080, issn 0340-7004, 9 p.Article

Analysis of γδ T-cell receptor repertoire in the human nasal mucosaTAKEUCHI, K; HIRATA, N; UKAI, K et al.Journal of allergy and clinical immunology. 1997, Vol 99, Num 2, pp 251-253, issn 0091-6749Article

Two subsets of human T lymphocytes expressing γ/δ antigen receptor are identifiable by monoclonal antibodies directed to two distinct molecular forms of the receptorBOTTINO, C; TAMBUSSI, G; FERRINI, S et al.The Journal of experimental medicine. 1988, Vol 168, Num 2, pp 491-505, issn 0022-1007Article

Anti-tumour immunotherapy with Vγ9Vδ2 T lymphocytes: from the bench to the bedsideBRAZA, Mounia S; KLEIN, Bernard.British journal of haematology. 2013, Vol 160, Num 2, pp 123-132, issn 0007-1048, 10 p.Article

Respiratory Syncytial Virus Protects Against the Subsequent Development of Ovalbumin-Induced Allergic Responses by Inhibiting Th2-Type γδ T CellsLEIYING ZHANG; JING LIU; ENHUA WANG et al.Journal of medical virology. 2013, Vol 85, Num 1, pp 149-156, issn 0146-6615, 8 p.Article

Characterization of Avian γδ T-Cell Subsets after Salmonella enterica Serovar Typhimurium Infection of ChicksPIEPER, Jana; METHNER, Ulrich; BERNDT, Angela et al.Infection and immunity. 2011, Vol 79, Num 2, pp 822-829, issn 0019-9567, 8 p.Article

Human γδ T lymphocytes induce robust NK cell―mediated antitumor cytotoxicity through CD 137 engagementMANIAR, Amudhan; XIAOYU ZHANG; WEI LIN et al.Blood. 2010, Vol 116, Num 10, pp 1726-1733, issn 0006-4971, 8 p.Article

Linking Innate and Adaptive Immunity: Human Vγ9Vδ2 T Cells Enhance CD40 Expression and HMGB-1 SecretionKALYAN, Shirin; CHOW, Anthony W.Mediators of inflammation. 2009, Vol 2009, Num 2, issn 0962-9351, 819408.1-819408.9Article

Role of two distinct γδ T cell subsets during West Nile virus infectionWELTE, Thomas; LAMB, Jacquelyn; ANDERSON, John F et al.FEMS immunology and medical microbiology. 2008, Vol 53, Num 2, pp 275-283, issn 0928-8244, 9 p.Article

Alkylamines cause Vγ9Vδ2 T-cell activation and proliferation by inhibiting the mevalonate pathwayTHOMPSON, Keith; ROJAS-NAVEA, Javier; ROGERS, Michael J et al.Blood. 2006, Vol 107, Num 2, pp 651-654, issn 0006-4971, 4 p.Article

Contribution of NK, NK T, γδ T, and αβ T cells to the gamma interferon response required for liver protection against Trypanosoma cruziSARDINHA, Luiz Roberto; ELIAS, Rosa Maria; MOSCA, Taina et al.Infection and immunity. 2006, Vol 74, Num 4, pp 2031-2042, issn 0019-9567, 12 p.Article

Memory T cells protect against Plasmodium vivax infectionJANGPATARAPONGSA, Kulachart; SIRICHAISINTHOP, Jeeraphat; SATTABONGKOT, Jetsumon et al.Microbes and infection. 2006, Vol 8, Num 3, pp 680-686, issn 1286-4579, 7 p.Article

Recent insights into the signals that control αβ/γδ-lineage fateLAURITSEN, Jens Peter H; HAKS, Mariëlle C; LEFEBVRE, Juliette M et al.Immunological reviews. 2006, Vol 209, pp 176-190, issn 0105-2896, 15 p.Article

Activation status of cord blood γδ T cells reflects in utero exposure to Plasmodium falciparum antigenENGELMANN, Ilka; SANTAMARIA, Andrea; KREMSNER, Peter G et al.The Journal of infectious diseases. 2005, Vol 191, Num 10, pp 1612-1622, issn 0022-1899, 11 p.Article

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