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Genotype-Dependent Tumor Regression in Marek’s Disease Mediated at the Level of Tumor Immunity

Marek’s disease (MD) of chickens is a unique natural model of Hodgkin’s and Non Hodgkin’s lymphomas in which the neoplastically-transformed cells over-express CD30 (CD30(hi)) antigen. All chicken genotypes can be infected with MD virus and develop microscopic lymphomas. From 21 days post infection (...

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Autores principales: Kumar, Shyamesh, Buza, Joram J., Burgess, Shane C.
Formato: Texto
Lenguaje:English
Publicado: Springer Netherlands 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2787926/
https://www.ncbi.nlm.nih.gov/pubmed/19308678
http://dx.doi.org/10.1007/s12307-008-0018-z
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author Kumar, Shyamesh
Buza, Joram J.
Burgess, Shane C.
author_facet Kumar, Shyamesh
Buza, Joram J.
Burgess, Shane C.
author_sort Kumar, Shyamesh
collection PubMed
description Marek’s disease (MD) of chickens is a unique natural model of Hodgkin’s and Non Hodgkin’s lymphomas in which the neoplastically-transformed cells over-express CD30 (CD30(hi)) antigen. All chicken genotypes can be infected with MD virus and develop microscopic lymphomas. From 21 days post infection (dpi) microscopic lymphomas regress in resistant chickens but, in contrast, they progress to gross lymphomas in susceptible chickens. Here we test our hypothesis that in resistant chickens at 21 dpi the tissue microenvironment is pro T-helper (Th)-1 and compatible with cytotoxic T lymphocyte (CTL) immunity but in susceptible lines it is pro Th-2 or pro T-regulatory (T-reg) and antagonistic to CTL immunity. We used the B2, non-MHC-associated, MD resistance/susceptibility system (line [L]6(1)/line [L]7(2)) and quantified the levels of key mRNAs that can be used to define Th-1 (IL-2, IL-12, IL-18, IFNγ), Th-2 (IL-4, IL-10) and T-reg (TGFβ, GPR-83, CTLA-4, SMAD-7) lymphocyte phenotypes. We measured gene expression in both whole tissues (represents tissue microenvironment and tumor microenvironment) and in the lymphoma lesions (tumor microenvironment) themselves. Gene ontology-based modeling of our results shows that the dominant phenotype in whole tissue as well as in microscopic lymphoma lesions, is pro T-reg in both L6(1) and L7(2) but a minor pro Th-1 and anti Th-2 tissue microenvironment exists in L6(1) whereas there is an anti Th-1 and pro Th-2 tissue microenvironment in L7(2). The tumor microenvironment per se is pro T-reg, anti Th-1 and pro Th-2 in both L6(1) and L7(2). Together our data suggests that the neoplastic transformation is essentially the same in both L6(1) and L7(2) and that resistance/susceptibility is mediated at the level of tumor immunity in the tissues.
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spelling pubmed-27879262009-12-04 Genotype-Dependent Tumor Regression in Marek’s Disease Mediated at the Level of Tumor Immunity Kumar, Shyamesh Buza, Joram J. Burgess, Shane C. Cancer Microenviron Original Paper Marek’s disease (MD) of chickens is a unique natural model of Hodgkin’s and Non Hodgkin’s lymphomas in which the neoplastically-transformed cells over-express CD30 (CD30(hi)) antigen. All chicken genotypes can be infected with MD virus and develop microscopic lymphomas. From 21 days post infection (dpi) microscopic lymphomas regress in resistant chickens but, in contrast, they progress to gross lymphomas in susceptible chickens. Here we test our hypothesis that in resistant chickens at 21 dpi the tissue microenvironment is pro T-helper (Th)-1 and compatible with cytotoxic T lymphocyte (CTL) immunity but in susceptible lines it is pro Th-2 or pro T-regulatory (T-reg) and antagonistic to CTL immunity. We used the B2, non-MHC-associated, MD resistance/susceptibility system (line [L]6(1)/line [L]7(2)) and quantified the levels of key mRNAs that can be used to define Th-1 (IL-2, IL-12, IL-18, IFNγ), Th-2 (IL-4, IL-10) and T-reg (TGFβ, GPR-83, CTLA-4, SMAD-7) lymphocyte phenotypes. We measured gene expression in both whole tissues (represents tissue microenvironment and tumor microenvironment) and in the lymphoma lesions (tumor microenvironment) themselves. Gene ontology-based modeling of our results shows that the dominant phenotype in whole tissue as well as in microscopic lymphoma lesions, is pro T-reg in both L6(1) and L7(2) but a minor pro Th-1 and anti Th-2 tissue microenvironment exists in L6(1) whereas there is an anti Th-1 and pro Th-2 tissue microenvironment in L7(2). The tumor microenvironment per se is pro T-reg, anti Th-1 and pro Th-2 in both L6(1) and L7(2). Together our data suggests that the neoplastic transformation is essentially the same in both L6(1) and L7(2) and that resistance/susceptibility is mediated at the level of tumor immunity in the tissues. Springer Netherlands 2009-03-18 /pmc/articles/PMC2787926/ /pubmed/19308678 http://dx.doi.org/10.1007/s12307-008-0018-z Text en © Springer Science+Business Media B.V. 2009 https://creativecommons.org/licenses/by-nc/4.0/ This article is distributed under the terms of the Creative Commons Attribution Noncommercial License which permits any noncommercial use, distribution, and reproduction in any medium, provided the original author(s) and source are credited.
spellingShingle Original Paper
Kumar, Shyamesh
Buza, Joram J.
Burgess, Shane C.
Genotype-Dependent Tumor Regression in Marek’s Disease Mediated at the Level of Tumor Immunity
title Genotype-Dependent Tumor Regression in Marek’s Disease Mediated at the Level of Tumor Immunity
title_full Genotype-Dependent Tumor Regression in Marek’s Disease Mediated at the Level of Tumor Immunity
title_fullStr Genotype-Dependent Tumor Regression in Marek’s Disease Mediated at the Level of Tumor Immunity
title_full_unstemmed Genotype-Dependent Tumor Regression in Marek’s Disease Mediated at the Level of Tumor Immunity
title_short Genotype-Dependent Tumor Regression in Marek’s Disease Mediated at the Level of Tumor Immunity
title_sort genotype-dependent tumor regression in marek’s disease mediated at the level of tumor immunity
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2787926/
https://www.ncbi.nlm.nih.gov/pubmed/19308678
http://dx.doi.org/10.1007/s12307-008-0018-z
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