Cargando…

Human melanoma-specific CD8(+) T-cells from metastases are capable of antigen-specific degranulation and cytolysis directly ex vivo

The relatively low frequencies of tumor Ag-specific T-cells in PBMC and metastases from cancer patients have long precluded the analysis of their direct ex vivo cytolytic capacity. Using a new composite technique that works well with low cell numbers, we aimed at determining the functional competenc...

Descripción completa

Detalles Bibliográficos
Autores principales: Mahnke, Yolanda D., Devevre, Estelle, Baumgaertner, Petra, Matter, Maurice, Rufer, Nathalie, Romero, Pedro, Speiser, Daniel E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Landes Bioscience 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3382891/
https://www.ncbi.nlm.nih.gov/pubmed/22754765
_version_ 1782236568685117440
author Mahnke, Yolanda D.
Devevre, Estelle
Baumgaertner, Petra
Matter, Maurice
Rufer, Nathalie
Romero, Pedro
Speiser, Daniel E.
author_facet Mahnke, Yolanda D.
Devevre, Estelle
Baumgaertner, Petra
Matter, Maurice
Rufer, Nathalie
Romero, Pedro
Speiser, Daniel E.
author_sort Mahnke, Yolanda D.
collection PubMed
description The relatively low frequencies of tumor Ag-specific T-cells in PBMC and metastases from cancer patients have long precluded the analysis of their direct ex vivo cytolytic capacity. Using a new composite technique that works well with low cell numbers, we aimed at determining the functional competence of melanoma-specific CD8(+) T-cells. A multiparameter flow cytometry based technique was applied to assess the cytolytic function, degranulation and IFNγ production by tumor Ag-specific CD8(+) T-cells from PBMC and tumor-infiltrated lymph nodes (TILN) of melanoma patients. We found strong cytotoxicity by T-cells not only when they were isolated from PBMC but also from TILN. Cytotoxicity was observed against peptide-pulsed target cells and melanoma cells presenting the naturally processed endogenous antigen. However, unlike their PBMC-derived counterparts, T-cells from TILN produced only minimal amounts of IFNγ, while exhibiting similar levels of degranulation, revealing a critical functional dichotomy in metastatic lesions. Our finding of partial functional impairment fits well with the current knowledge that T-cells from cancer metastases are so-called exhausted, a state of T-cell hyporesponsiveness also found in chronic viral infections. The identification of responsible mechanisms in the tumor microenvironment is important for improving cancer therapies.
format Online
Article
Text
id pubmed-3382891
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Landes Bioscience
record_format MEDLINE/PubMed
spelling pubmed-33828912012-07-01 Human melanoma-specific CD8(+) T-cells from metastases are capable of antigen-specific degranulation and cytolysis directly ex vivo Mahnke, Yolanda D. Devevre, Estelle Baumgaertner, Petra Matter, Maurice Rufer, Nathalie Romero, Pedro Speiser, Daniel E. Oncoimmunology Research Paper The relatively low frequencies of tumor Ag-specific T-cells in PBMC and metastases from cancer patients have long precluded the analysis of their direct ex vivo cytolytic capacity. Using a new composite technique that works well with low cell numbers, we aimed at determining the functional competence of melanoma-specific CD8(+) T-cells. A multiparameter flow cytometry based technique was applied to assess the cytolytic function, degranulation and IFNγ production by tumor Ag-specific CD8(+) T-cells from PBMC and tumor-infiltrated lymph nodes (TILN) of melanoma patients. We found strong cytotoxicity by T-cells not only when they were isolated from PBMC but also from TILN. Cytotoxicity was observed against peptide-pulsed target cells and melanoma cells presenting the naturally processed endogenous antigen. However, unlike their PBMC-derived counterparts, T-cells from TILN produced only minimal amounts of IFNγ, while exhibiting similar levels of degranulation, revealing a critical functional dichotomy in metastatic lesions. Our finding of partial functional impairment fits well with the current knowledge that T-cells from cancer metastases are so-called exhausted, a state of T-cell hyporesponsiveness also found in chronic viral infections. The identification of responsible mechanisms in the tumor microenvironment is important for improving cancer therapies. Landes Bioscience 2012-07-01 /pmc/articles/PMC3382891/ /pubmed/22754765 Text en Copyright © 2012 Landes Bioscience http://creativecommons.org/licenses/by-nc/3.0/ This is an open-access article licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported License. The article may be redistributed, reproduced, and reused for non-commercial purposes, provided the original source is properly cited.
spellingShingle Research Paper
Mahnke, Yolanda D.
Devevre, Estelle
Baumgaertner, Petra
Matter, Maurice
Rufer, Nathalie
Romero, Pedro
Speiser, Daniel E.
Human melanoma-specific CD8(+) T-cells from metastases are capable of antigen-specific degranulation and cytolysis directly ex vivo
title Human melanoma-specific CD8(+) T-cells from metastases are capable of antigen-specific degranulation and cytolysis directly ex vivo
title_full Human melanoma-specific CD8(+) T-cells from metastases are capable of antigen-specific degranulation and cytolysis directly ex vivo
title_fullStr Human melanoma-specific CD8(+) T-cells from metastases are capable of antigen-specific degranulation and cytolysis directly ex vivo
title_full_unstemmed Human melanoma-specific CD8(+) T-cells from metastases are capable of antigen-specific degranulation and cytolysis directly ex vivo
title_short Human melanoma-specific CD8(+) T-cells from metastases are capable of antigen-specific degranulation and cytolysis directly ex vivo
title_sort human melanoma-specific cd8(+) t-cells from metastases are capable of antigen-specific degranulation and cytolysis directly ex vivo
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3382891/
https://www.ncbi.nlm.nih.gov/pubmed/22754765
work_keys_str_mv AT mahnkeyolandad humanmelanomaspecificcd8tcellsfrommetastasesarecapableofantigenspecificdegranulationandcytolysisdirectlyexvivo
AT devevreestelle humanmelanomaspecificcd8tcellsfrommetastasesarecapableofantigenspecificdegranulationandcytolysisdirectlyexvivo
AT baumgaertnerpetra humanmelanomaspecificcd8tcellsfrommetastasesarecapableofantigenspecificdegranulationandcytolysisdirectlyexvivo
AT mattermaurice humanmelanomaspecificcd8tcellsfrommetastasesarecapableofantigenspecificdegranulationandcytolysisdirectlyexvivo
AT rufernathalie humanmelanomaspecificcd8tcellsfrommetastasesarecapableofantigenspecificdegranulationandcytolysisdirectlyexvivo
AT romeropedro humanmelanomaspecificcd8tcellsfrommetastasesarecapableofantigenspecificdegranulationandcytolysisdirectlyexvivo
AT speiserdaniele humanmelanomaspecificcd8tcellsfrommetastasesarecapableofantigenspecificdegranulationandcytolysisdirectlyexvivo