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Angiopoietin-2–Dependent Spatial Vascular Destabilization Promotes T-cell Exclusion and Limits Immunotherapy in Melanoma

T-cell position in the tumor microenvironment determines the probability of target encounter and tumor killing. CD8(+) T-cell exclusion from the tumor parenchyma is associated with poor response to immunotherapy, and yet the biology that underpins this distinct pattern remains unclear. Here we show...

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Autores principales: Park, Ha-Ram, Shiva, Anahita, Cummings, Portia, Kim, Seoyeon, Kim, Sungsoo, Lee, Eunhyeong, Leong, Alessandra, Chowdhury, Subrata, Shawber, Carrie, Carvajal, Richard, Thurston, Gavin, An, Joon-Yong, Lund, Amanda W., Yang, Hee Won, Kim, Minah
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for Cancer Research 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10267677/
https://www.ncbi.nlm.nih.gov/pubmed/37093870
http://dx.doi.org/10.1158/0008-5472.CAN-22-2838
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author Park, Ha-Ram
Shiva, Anahita
Cummings, Portia
Kim, Seoyeon
Kim, Sungsoo
Lee, Eunhyeong
Leong, Alessandra
Chowdhury, Subrata
Shawber, Carrie
Carvajal, Richard
Thurston, Gavin
An, Joon-Yong
Lund, Amanda W.
Yang, Hee Won
Kim, Minah
author_facet Park, Ha-Ram
Shiva, Anahita
Cummings, Portia
Kim, Seoyeon
Kim, Sungsoo
Lee, Eunhyeong
Leong, Alessandra
Chowdhury, Subrata
Shawber, Carrie
Carvajal, Richard
Thurston, Gavin
An, Joon-Yong
Lund, Amanda W.
Yang, Hee Won
Kim, Minah
author_sort Park, Ha-Ram
collection PubMed
description T-cell position in the tumor microenvironment determines the probability of target encounter and tumor killing. CD8(+) T-cell exclusion from the tumor parenchyma is associated with poor response to immunotherapy, and yet the biology that underpins this distinct pattern remains unclear. Here we show that the vascular destabilizing factor angiopoietin-2 (ANGPT2) causes compromised vascular integrity in the tumor periphery, leading to impaired T-cell infiltration to the tumor core. The spatial regulation of ANGPT2 in whole tumor cross-sections was analyzed in conjunction with T-cell distribution, vascular integrity, and response to immunotherapy in syngeneic murine melanoma models. T-cell exclusion was associated with ANGPT2 upregulation and elevated vascular leakage at the periphery of human and murine melanomas. Both pharmacologic and genetic blockade of ANGPT2 promoted CD8(+) T-cell infiltration into the tumor core, exerting antitumor effects. Importantly, the reversal of T-cell exclusion following ANGPT2 blockade not only enhanced response to anti-PD-1 immune checkpoint blockade therapy in immunogenic, therapy-responsive mouse melanomas, but it also rendered nonresponsive tumors susceptible to immunotherapy. Therapeutic response after ANGPT2 blockade, driven by improved CD8(+) T-cell infiltration to the tumor core, coincided with spatial TIE2 signaling activation and increased vascular integrity at the tumor periphery where endothelial expression of adhesion molecules was reduced. These data highlight ANGPT2/TIE2 signaling as a key mediator of T-cell exclusion and a promising target to potentiate immune checkpoint blockade efficacy in melanoma. SIGNIFICANCE: ANGPT2 limits the efficacy of immunotherapy by inducing vascular destabilization at the tumor periphery to promote T-cell exclusion.
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spelling pubmed-102676772023-06-15 Angiopoietin-2–Dependent Spatial Vascular Destabilization Promotes T-cell Exclusion and Limits Immunotherapy in Melanoma Park, Ha-Ram Shiva, Anahita Cummings, Portia Kim, Seoyeon Kim, Sungsoo Lee, Eunhyeong Leong, Alessandra Chowdhury, Subrata Shawber, Carrie Carvajal, Richard Thurston, Gavin An, Joon-Yong Lund, Amanda W. Yang, Hee Won Kim, Minah Cancer Res Cancer Biology T-cell position in the tumor microenvironment determines the probability of target encounter and tumor killing. CD8(+) T-cell exclusion from the tumor parenchyma is associated with poor response to immunotherapy, and yet the biology that underpins this distinct pattern remains unclear. Here we show that the vascular destabilizing factor angiopoietin-2 (ANGPT2) causes compromised vascular integrity in the tumor periphery, leading to impaired T-cell infiltration to the tumor core. The spatial regulation of ANGPT2 in whole tumor cross-sections was analyzed in conjunction with T-cell distribution, vascular integrity, and response to immunotherapy in syngeneic murine melanoma models. T-cell exclusion was associated with ANGPT2 upregulation and elevated vascular leakage at the periphery of human and murine melanomas. Both pharmacologic and genetic blockade of ANGPT2 promoted CD8(+) T-cell infiltration into the tumor core, exerting antitumor effects. Importantly, the reversal of T-cell exclusion following ANGPT2 blockade not only enhanced response to anti-PD-1 immune checkpoint blockade therapy in immunogenic, therapy-responsive mouse melanomas, but it also rendered nonresponsive tumors susceptible to immunotherapy. Therapeutic response after ANGPT2 blockade, driven by improved CD8(+) T-cell infiltration to the tumor core, coincided with spatial TIE2 signaling activation and increased vascular integrity at the tumor periphery where endothelial expression of adhesion molecules was reduced. These data highlight ANGPT2/TIE2 signaling as a key mediator of T-cell exclusion and a promising target to potentiate immune checkpoint blockade efficacy in melanoma. SIGNIFICANCE: ANGPT2 limits the efficacy of immunotherapy by inducing vascular destabilization at the tumor periphery to promote T-cell exclusion. American Association for Cancer Research 2023-06-15 2023-04-24 /pmc/articles/PMC10267677/ /pubmed/37093870 http://dx.doi.org/10.1158/0008-5472.CAN-22-2838 Text en ©2023 The Authors; Published by the American Association for Cancer Research https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0) license.
spellingShingle Cancer Biology
Park, Ha-Ram
Shiva, Anahita
Cummings, Portia
Kim, Seoyeon
Kim, Sungsoo
Lee, Eunhyeong
Leong, Alessandra
Chowdhury, Subrata
Shawber, Carrie
Carvajal, Richard
Thurston, Gavin
An, Joon-Yong
Lund, Amanda W.
Yang, Hee Won
Kim, Minah
Angiopoietin-2–Dependent Spatial Vascular Destabilization Promotes T-cell Exclusion and Limits Immunotherapy in Melanoma
title Angiopoietin-2–Dependent Spatial Vascular Destabilization Promotes T-cell Exclusion and Limits Immunotherapy in Melanoma
title_full Angiopoietin-2–Dependent Spatial Vascular Destabilization Promotes T-cell Exclusion and Limits Immunotherapy in Melanoma
title_fullStr Angiopoietin-2–Dependent Spatial Vascular Destabilization Promotes T-cell Exclusion and Limits Immunotherapy in Melanoma
title_full_unstemmed Angiopoietin-2–Dependent Spatial Vascular Destabilization Promotes T-cell Exclusion and Limits Immunotherapy in Melanoma
title_short Angiopoietin-2–Dependent Spatial Vascular Destabilization Promotes T-cell Exclusion and Limits Immunotherapy in Melanoma
title_sort angiopoietin-2–dependent spatial vascular destabilization promotes t-cell exclusion and limits immunotherapy in melanoma
topic Cancer Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10267677/
https://www.ncbi.nlm.nih.gov/pubmed/37093870
http://dx.doi.org/10.1158/0008-5472.CAN-22-2838
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