The kinematics of cytotoxic lymphocytes influence their ability to kill target cells.

Cytotoxic lymphocytes (CTL) have been reported to show a range of motility patterns from rapid long-range tracking to complete arrest, but how and whether these kinematics affect their ability to kill target cells is not known. Many in vitro killing assays utilize cell lines and tumour-derived cells...

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Main Authors: Purnima Bhat, Graham Leggatt, Klaus I Matthaei, Ian H Frazer
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4011687?pdf=render
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spelling doaj-e5bf915fe6ce441f97d8404cd17d603f2020-11-25T00:48:00ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0195e9524810.1371/journal.pone.0095248The kinematics of cytotoxic lymphocytes influence their ability to kill target cells.Purnima BhatGraham LeggattKlaus I MatthaeiIan H FrazerCytotoxic lymphocytes (CTL) have been reported to show a range of motility patterns from rapid long-range tracking to complete arrest, but how and whether these kinematics affect their ability to kill target cells is not known. Many in vitro killing assays utilize cell lines and tumour-derived cells as targets, which may be of limited relevance to the kinetics of CTL-mediated killing of somatic cells. Here, live-cell microscopy is used to examine the interactions of CTL and primary murine skin cells presenting antigens. We developed a qualitative and quantitative killing assay using extended-duration fluorescence time-lapse microscopy coupled with large-volume objective software-based data analysis to obtain population data of cell-to-cell interactions, motility and apoptosis. In vivo and ex vivo activated antigen-specific cytotoxic lymphocytes were added to primary keratinocyte targets in culture with fluorometric detection of caspase-3 activation in targets as an objective determinant of apoptosis. We found that activated CTL achieved contact-dependent apoptosis of non-tumour targets after a period of prolonged attachment - on average 21 hours - which was determined by target cell type, amount of antigen, and activation status of CTL. Activation of CTL even without engagement of the T cell receptor was sufficient to mobilise cells significantly above baseline, while the addition of cognate antigen further enhanced their motility. Highly activated CTL showed markedly increased vector displacement, and velocity, and lead to increased antigen-specific target cell death. These data show that the inherent kinematics of CTL correlate directly with their ability to kill non-tumour cells presenting cognate antigen.http://europepmc.org/articles/PMC4011687?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Purnima Bhat
Graham Leggatt
Klaus I Matthaei
Ian H Frazer
spellingShingle Purnima Bhat
Graham Leggatt
Klaus I Matthaei
Ian H Frazer
The kinematics of cytotoxic lymphocytes influence their ability to kill target cells.
PLoS ONE
author_facet Purnima Bhat
Graham Leggatt
Klaus I Matthaei
Ian H Frazer
author_sort Purnima Bhat
title The kinematics of cytotoxic lymphocytes influence their ability to kill target cells.
title_short The kinematics of cytotoxic lymphocytes influence their ability to kill target cells.
title_full The kinematics of cytotoxic lymphocytes influence their ability to kill target cells.
title_fullStr The kinematics of cytotoxic lymphocytes influence their ability to kill target cells.
title_full_unstemmed The kinematics of cytotoxic lymphocytes influence their ability to kill target cells.
title_sort kinematics of cytotoxic lymphocytes influence their ability to kill target cells.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Cytotoxic lymphocytes (CTL) have been reported to show a range of motility patterns from rapid long-range tracking to complete arrest, but how and whether these kinematics affect their ability to kill target cells is not known. Many in vitro killing assays utilize cell lines and tumour-derived cells as targets, which may be of limited relevance to the kinetics of CTL-mediated killing of somatic cells. Here, live-cell microscopy is used to examine the interactions of CTL and primary murine skin cells presenting antigens. We developed a qualitative and quantitative killing assay using extended-duration fluorescence time-lapse microscopy coupled with large-volume objective software-based data analysis to obtain population data of cell-to-cell interactions, motility and apoptosis. In vivo and ex vivo activated antigen-specific cytotoxic lymphocytes were added to primary keratinocyte targets in culture with fluorometric detection of caspase-3 activation in targets as an objective determinant of apoptosis. We found that activated CTL achieved contact-dependent apoptosis of non-tumour targets after a period of prolonged attachment - on average 21 hours - which was determined by target cell type, amount of antigen, and activation status of CTL. Activation of CTL even without engagement of the T cell receptor was sufficient to mobilise cells significantly above baseline, while the addition of cognate antigen further enhanced their motility. Highly activated CTL showed markedly increased vector displacement, and velocity, and lead to increased antigen-specific target cell death. These data show that the inherent kinematics of CTL correlate directly with their ability to kill non-tumour cells presenting cognate antigen.
url http://europepmc.org/articles/PMC4011687?pdf=render
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