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CD4+ and Perivascular Foxp3+ T Cells in Glioma Correlate with Angiogenesis and Tumor Progression

BACKGROUND: Angiogenesis and immune cell infiltration are key features of gliomas and their manipulation of the microenvironment, but their prognostic significance remains indeterminate. We evaluate the interconnection between tumor-infiltrating lymphocyte (TIL) and tumor blood-vasculatures in the c...

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Autores principales: Mu, Luyan, Yang, Changlin, Gao, Qiang, Long, Yu, Ge, Haitao, DeLeon, Gabriel, Jin, Linchun, Chang, Yifan (Emily), Sayour, Elias J., Ji, Jingjing, Jiang, Jie, Kubilis, Paul S., Qi, Jiping, Gu, Yunhe, Wang, Jiabin, Song, Yuwen, Mitchell, Duane A., Lin, Zhiguo, Huang, Jianping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5673996/
https://www.ncbi.nlm.nih.gov/pubmed/29163521
http://dx.doi.org/10.3389/fimmu.2017.01451
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author Mu, Luyan
Yang, Changlin
Gao, Qiang
Long, Yu
Ge, Haitao
DeLeon, Gabriel
Jin, Linchun
Chang, Yifan (Emily)
Sayour, Elias J.
Ji, Jingjing
Jiang, Jie
Kubilis, Paul S.
Qi, Jiping
Gu, Yunhe
Wang, Jiabin
Song, Yuwen
Mitchell, Duane A.
Lin, Zhiguo
Huang, Jianping
author_facet Mu, Luyan
Yang, Changlin
Gao, Qiang
Long, Yu
Ge, Haitao
DeLeon, Gabriel
Jin, Linchun
Chang, Yifan (Emily)
Sayour, Elias J.
Ji, Jingjing
Jiang, Jie
Kubilis, Paul S.
Qi, Jiping
Gu, Yunhe
Wang, Jiabin
Song, Yuwen
Mitchell, Duane A.
Lin, Zhiguo
Huang, Jianping
author_sort Mu, Luyan
collection PubMed
description BACKGROUND: Angiogenesis and immune cell infiltration are key features of gliomas and their manipulation of the microenvironment, but their prognostic significance remains indeterminate. We evaluate the interconnection between tumor-infiltrating lymphocyte (TIL) and tumor blood-vasculatures in the context of glioma progression. METHODS: Paired tumor tissues of 44 patients from three tumor-recurrent groups: diffuse astrocytomas (DA) recurred as DA, DA recurred as glioblastomas (GBM), and GBM recurred as GBM were evaluated by genetic analysis, immunohistochemistry for tumor blood vessel density, TIL subsets, and clinical outcomes. These cells were geographically divided into perivascular and intratumoral TILs. Associations were examined between these TILs, CD34+ tumor blood vessels, and clinical outcomes. To determine key changes in TIL subsets, microarray data of 15-paired tumors from patients who failed antiangiogenic therapy- bevacizumab, and 16-paired tumors from chemo-naïve recurrent GBM were also evaluated and compared. RESULTS: Upon recurrence in primary gliomas, similar kinetic changes were found between tumor blood vessels and each TIL subset in all groups, but only CD4+ including Foxp3+ TILs, positively correlated with the density of tumor blood vessels. CD4 was the predominant T cell population based on the expression of gene-transcripts in primary GBMs, and increased activated CD4+ T cells were revealed in Bevacizumab-resistant recurrent tumors (not in chemo-naïve recurrent tumors). Among these TILs, 2/3 of them were found in the perivascular niche; Foxp3+ T cells in these niches not only correlated with the tumor vessels but were also an independent predictor of shortened recurrence-free survival (RFS) (HR = 4.199, 95% CI 1.522–11.584, p = 0.006). CONCLUSION: The minimal intratumoral T cell infiltration and low detection of CD8 transcripts expression in primary GBMs can potentially limit antitumor response. CD4+ and perivascular Foxp3+ TILs associate with tumor angiogenesis and tumor progression in glioma patients. Our results suggest that combining antiangiogenic agents with immunotherapeutic approaches may help improve the antitumor efficacy for patients with malignant gliomas.
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spelling pubmed-56739962017-11-21 CD4+ and Perivascular Foxp3+ T Cells in Glioma Correlate with Angiogenesis and Tumor Progression Mu, Luyan Yang, Changlin Gao, Qiang Long, Yu Ge, Haitao DeLeon, Gabriel Jin, Linchun Chang, Yifan (Emily) Sayour, Elias J. Ji, Jingjing Jiang, Jie Kubilis, Paul S. Qi, Jiping Gu, Yunhe Wang, Jiabin Song, Yuwen Mitchell, Duane A. Lin, Zhiguo Huang, Jianping Front Immunol Immunology BACKGROUND: Angiogenesis and immune cell infiltration are key features of gliomas and their manipulation of the microenvironment, but their prognostic significance remains indeterminate. We evaluate the interconnection between tumor-infiltrating lymphocyte (TIL) and tumor blood-vasculatures in the context of glioma progression. METHODS: Paired tumor tissues of 44 patients from three tumor-recurrent groups: diffuse astrocytomas (DA) recurred as DA, DA recurred as glioblastomas (GBM), and GBM recurred as GBM were evaluated by genetic analysis, immunohistochemistry for tumor blood vessel density, TIL subsets, and clinical outcomes. These cells were geographically divided into perivascular and intratumoral TILs. Associations were examined between these TILs, CD34+ tumor blood vessels, and clinical outcomes. To determine key changes in TIL subsets, microarray data of 15-paired tumors from patients who failed antiangiogenic therapy- bevacizumab, and 16-paired tumors from chemo-naïve recurrent GBM were also evaluated and compared. RESULTS: Upon recurrence in primary gliomas, similar kinetic changes were found between tumor blood vessels and each TIL subset in all groups, but only CD4+ including Foxp3+ TILs, positively correlated with the density of tumor blood vessels. CD4 was the predominant T cell population based on the expression of gene-transcripts in primary GBMs, and increased activated CD4+ T cells were revealed in Bevacizumab-resistant recurrent tumors (not in chemo-naïve recurrent tumors). Among these TILs, 2/3 of them were found in the perivascular niche; Foxp3+ T cells in these niches not only correlated with the tumor vessels but were also an independent predictor of shortened recurrence-free survival (RFS) (HR = 4.199, 95% CI 1.522–11.584, p = 0.006). CONCLUSION: The minimal intratumoral T cell infiltration and low detection of CD8 transcripts expression in primary GBMs can potentially limit antitumor response. CD4+ and perivascular Foxp3+ TILs associate with tumor angiogenesis and tumor progression in glioma patients. Our results suggest that combining antiangiogenic agents with immunotherapeutic approaches may help improve the antitumor efficacy for patients with malignant gliomas. Frontiers Media S.A. 2017-11-07 /pmc/articles/PMC5673996/ /pubmed/29163521 http://dx.doi.org/10.3389/fimmu.2017.01451 Text en Copyright © 2017 Mu, Yang, Gao, Long, Ge, DeLeon, Jin, Chang, Sayour, Ji, Jiang, Kubilis, Qi, Gu, Wang, Song, Mitchell, Lin and Huang. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Mu, Luyan
Yang, Changlin
Gao, Qiang
Long, Yu
Ge, Haitao
DeLeon, Gabriel
Jin, Linchun
Chang, Yifan (Emily)
Sayour, Elias J.
Ji, Jingjing
Jiang, Jie
Kubilis, Paul S.
Qi, Jiping
Gu, Yunhe
Wang, Jiabin
Song, Yuwen
Mitchell, Duane A.
Lin, Zhiguo
Huang, Jianping
CD4+ and Perivascular Foxp3+ T Cells in Glioma Correlate with Angiogenesis and Tumor Progression
title CD4+ and Perivascular Foxp3+ T Cells in Glioma Correlate with Angiogenesis and Tumor Progression
title_full CD4+ and Perivascular Foxp3+ T Cells in Glioma Correlate with Angiogenesis and Tumor Progression
title_fullStr CD4+ and Perivascular Foxp3+ T Cells in Glioma Correlate with Angiogenesis and Tumor Progression
title_full_unstemmed CD4+ and Perivascular Foxp3+ T Cells in Glioma Correlate with Angiogenesis and Tumor Progression
title_short CD4+ and Perivascular Foxp3+ T Cells in Glioma Correlate with Angiogenesis and Tumor Progression
title_sort cd4+ and perivascular foxp3+ t cells in glioma correlate with angiogenesis and tumor progression
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5673996/
https://www.ncbi.nlm.nih.gov/pubmed/29163521
http://dx.doi.org/10.3389/fimmu.2017.01451
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