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Review
. 1984 Summer;8(3):649-61.
doi: 10.1016/0145-305x(84)90097-1.

T-lymphocyte and B-lymphocyte dichotomy in anuran amphibians: III. Assessment and identification of inducible killer T-lymphocytes (IKTL) and spontaneous killer T-lymphocytes (SKTL)

Review

T-lymphocyte and B-lymphocyte dichotomy in anuran amphibians: III. Assessment and identification of inducible killer T-lymphocytes (IKTL) and spontaneous killer T-lymphocytes (SKTL)

A E Klempau et al. Dev Comp Immunol. 1984 Summer.

Abstract

We have established the existence of alloreactive inducible killer (IK) T-lymphocytes in Rana pipiens by injecting immunogenic concentrations of allogeneic frog erythrocytes (RBC). Assessment of specific IK activity was determined microscopically, observing effector-target conjugate formation, and spectrophotometrically as released hemoglobin (Hb) from lysed targets (RBC). The presence of spontaneous killer (SK) T-lymphocyte activity was also determined using unimmunized frogs and similar assay conditions. Assays using rabbit anti-frog Thy-1.1 antiserum inhibition, but not E-rosetted T-lymphocyte depletion, confirmed the T-lymphocyte category of both effector cell populations in Rana pipiens. For IK activity, we determined the 1) best priming doses, 2) best effector cell source (peripheral blood), 3) best priming route (intraperitoneal), 4) kinetics of immunity development, and 5) kinetics of lysis. Kinetics of lysis and organ distribution for spontaneous killer cells were also determined. Our results may assist 1) in establishing the evolutionary origin of cytotoxic T-lymphocytes (CTL) and natural killer (NK) cells, and 2) in predicting where the capacity of immuno-surveillance against modified-self appeared in phylogeny. The implications are important for understanding origins of mechanisms of resistance against neoplastic conditions.

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