Flow cytometry-based assay for determination of teleost cytotoxic cell lysis of target cells
Open Access
- 27 November 2001
- Vol. 45 (4) , 259-266
- https://doi.org/10.1002/1097-0320(20011201)45:4<259::aid-cyto10020>3.0.co;2-n
Abstract
Background The nonradiometric assays previously developed to detect cellular cytotoxic activity have been hindered by many difficulties. Among the problems are the requirement for expensive commercial kits and the use of techniques that produce high background noise and decreased sensitivity. In addition, these assays did not account for bidirectional apoptosis (activation-induced cell death [AICD]). Most attempts to derive cytometry-based cytotoxicity assays have been unsuccessful because individual effectors and targets could not be identified (i.e., “separated”) using gating techniques. Methods In the present study, teleost nonspecific cytotoxic (NCC) and mammalian target cells were each sufficiently different in size to identify them by flow cytometry (FCM). Using appropriate gating and discriminator techniques, these two cell populations were differentiated based on scatter properties and propidium iodide (PI) binding. Total capacity for PI binding was obtained by permeabilization of the targets with ice-cold acetone. Spontaneous PI binding was relatively low. This technique detected cytotoxicity at effector-to-target ratios (E:T) of 1:1 and after only 30 min cocultivation. Results Tilapia NCC from peripheral blood kill human transformed target cells by necrosis and apoptosis as identified by PI binding. Maximum killing of HL-60 targets (approximately 100%) occurred by 180 min cocultivation. For the same time, the killing of IM-9 did not exceed 60%. Almost 90% of IM-9 targets are lysed following 14 h of cocultivation. The maximum killing of both HL-60 and IM-9 targets was observed at a 25:1 E:T ratio after 14 h. Comparisons of the chromium>51 release assay with flow detection of cytotoxicity revealed that FCM detected 55% lysis of the target cells compared with 2% cytotoxicity by chromium release, after a cocultivation time of 240 min. Discussion FCM detection of (teleost) NCC lysis of target cells using PI uptake is more sensitive than standard chromium release assays. This level of sensitivity was observed because NCC and targets were sufficiently different in size such that they could be resolved by scatter plots. Using FCM, cytotoxicity was detected earlier and at lower E:T ratios than previously reported for chromium release assays. Although tilapia were reported previously to be not capable of lysing IM-9 targets by chromium release detection, the more sensitive method of FCM detected cytotoxicity using PI uptake. HL-60 lysis by tilapia NCC exhibited saturable kinetics but occurred at different times post-cocultivation. Cytometry 45:259–266, 2001.Keywords
This publication has 17 references indexed in Scilit:
- Role of Nonspecific Cytotoxic Cells in the Induction of Programmed Cell Death of Pathogenic Protozoans: Participation of the Fas Ligand-Fas Receptor SystemExperimental Parasitology, 2000
- In vivoactivation of tilapia nonspecific cytotoxic cells byStreptococcus iniaeand amplification with apoptosis regulatory factor(s)Fish & Shellfish Immunology, 2000
- Activation-Induced Programmed Cell Death of Nonspecific Cytotoxic Cells and Inhibition by Apoptosis Regulatory FactorsCellular Immunology, 2000
- Isolation of rainbow trout (Oncorhynchus mykiss) intestinal intraepithelial lymphocytes (IEL) and measurement of their cytotoxic activityFish & Shellfish Immunology, 1997
- Flow cytometric analysis of natural killer cell function as a clinical assayCytometry, 1994
- Nonspecific cytotoxic cells as effectors of immunity in fishAnnual Review of Fish Diseases, 1992
- Comparison of fluorochrome-labeled and 51Cr-labeled targets for natural killer cytotoxicity assayJournal of Immunological Methods, 1989
- Nonspecific cytotoxic cells in fish (Ictaluruspunctatus) V. Metabolic requirements of lysisDevelopmental & Comparative Immunology, 1985
- Mobilization and activation of nonspecific cytotoxic cells (ncc) in the channel catfish (Ictalurus punctatus) infected with Ichthyophthirius multifiliisComparative Immunology, Microbiology and Infectious Diseases, 1985
- Nonspecific cytotoxic cells in fish (Ictaluruspunctatus) IV. Target cell binding and recycling capacityDevelopmental & Comparative Immunology, 1984