Cargando…

Endothelial, pericyte and tumor cell expression in glioblastoma identifies fibroblast activation protein (FAP) as an excellent target for immunotherapy

OBJECTIVES: Targeted immunotherapies such as chimeric antigen receptor (CAR)‐T cells are emerging as attractive treatment options for glioblastoma, but rely on identification of a suitable tumor antigen. We validated a new target antigen for glioblastoma, fibroblast activation protein (FAP), by unde...

Descripción completa

Detalles Bibliográficos
Autores principales: Ebert, Lisa M, Yu, Wenbo, Gargett, Tessa, Toubia, John, Kollis, Paris M, Tea, Melinda N, Ebert, Brenton W, Bardy, Cedric, van den Hurk, Mark, Bonder, Claudine S, Manavis, Jim, Ensbey, Kathleen S, Oksdath Mansilla, Mariana, Scheer, Kaitlin G, Perrin, Sally L, Ormsby, Rebecca J, Poonnoose, Santosh, Koszyca, Barbara, Pitson, Stuart M, Day, Bryan W, Gomez, Guillermo A, Brown, Michael P
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7557106/
https://www.ncbi.nlm.nih.gov/pubmed/33082953
http://dx.doi.org/10.1002/cti2.1191
_version_ 1783594348623953920
author Ebert, Lisa M
Yu, Wenbo
Gargett, Tessa
Toubia, John
Kollis, Paris M
Tea, Melinda N
Ebert, Brenton W
Bardy, Cedric
van den Hurk, Mark
Bonder, Claudine S
Manavis, Jim
Ensbey, Kathleen S
Oksdath Mansilla, Mariana
Scheer, Kaitlin G
Perrin, Sally L
Ormsby, Rebecca J
Poonnoose, Santosh
Koszyca, Barbara
Pitson, Stuart M
Day, Bryan W
Gomez, Guillermo A
Brown, Michael P
author_facet Ebert, Lisa M
Yu, Wenbo
Gargett, Tessa
Toubia, John
Kollis, Paris M
Tea, Melinda N
Ebert, Brenton W
Bardy, Cedric
van den Hurk, Mark
Bonder, Claudine S
Manavis, Jim
Ensbey, Kathleen S
Oksdath Mansilla, Mariana
Scheer, Kaitlin G
Perrin, Sally L
Ormsby, Rebecca J
Poonnoose, Santosh
Koszyca, Barbara
Pitson, Stuart M
Day, Bryan W
Gomez, Guillermo A
Brown, Michael P
author_sort Ebert, Lisa M
collection PubMed
description OBJECTIVES: Targeted immunotherapies such as chimeric antigen receptor (CAR)‐T cells are emerging as attractive treatment options for glioblastoma, but rely on identification of a suitable tumor antigen. We validated a new target antigen for glioblastoma, fibroblast activation protein (FAP), by undertaking a detailed expression study of human samples. METHODS: Glioblastoma and normal tissues were assessed using immunostaining, supported by analyses of published transcriptomic datasets. Short‐term cultures of glioma neural stem (GNS) cells were compared to cultures of healthy astrocytes and neurons using flow cytometry. Glioblastoma tissues were dissociated and analysed by high‐parameter flow cytometry and single‐cell transcriptomics (scRNAseq). RESULTS: Compared to normal brain, FAP was overexpressed at the gene and protein level in a large percentage of glioblastoma tissues, with highest levels of expression associated with poorer prognosis. FAP was also overexpressed in several paediatric brain cancers. FAP was commonly expressed by cultured GNS cells but absent from normal neurons and astrocytes. Within glioblastoma tissues, the strongest expression of FAP was around blood vessels. In fact, almost every tumor vessel was highlighted by FAP expression, whereas normal tissue vessels and cultured endothelial cells (ECs) lacked expression. Single‐cell analyses of dissociated tumors facilitated a detailed characterisation of the main cellular components of the glioblastoma microenvironment and revealed that vessel‐localised FAP is because of expression on both ECs and pericytes. CONCLUSION: Fibroblast activation protein is expressed by multiple cell types within glioblastoma, highlighting it as an ideal immunotherapy antigen to target destruction of both tumor cells and their supporting vascular network.
format Online
Article
Text
id pubmed-7557106
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-75571062020-10-19 Endothelial, pericyte and tumor cell expression in glioblastoma identifies fibroblast activation protein (FAP) as an excellent target for immunotherapy Ebert, Lisa M Yu, Wenbo Gargett, Tessa Toubia, John Kollis, Paris M Tea, Melinda N Ebert, Brenton W Bardy, Cedric van den Hurk, Mark Bonder, Claudine S Manavis, Jim Ensbey, Kathleen S Oksdath Mansilla, Mariana Scheer, Kaitlin G Perrin, Sally L Ormsby, Rebecca J Poonnoose, Santosh Koszyca, Barbara Pitson, Stuart M Day, Bryan W Gomez, Guillermo A Brown, Michael P Clin Transl Immunology Original Articles OBJECTIVES: Targeted immunotherapies such as chimeric antigen receptor (CAR)‐T cells are emerging as attractive treatment options for glioblastoma, but rely on identification of a suitable tumor antigen. We validated a new target antigen for glioblastoma, fibroblast activation protein (FAP), by undertaking a detailed expression study of human samples. METHODS: Glioblastoma and normal tissues were assessed using immunostaining, supported by analyses of published transcriptomic datasets. Short‐term cultures of glioma neural stem (GNS) cells were compared to cultures of healthy astrocytes and neurons using flow cytometry. Glioblastoma tissues were dissociated and analysed by high‐parameter flow cytometry and single‐cell transcriptomics (scRNAseq). RESULTS: Compared to normal brain, FAP was overexpressed at the gene and protein level in a large percentage of glioblastoma tissues, with highest levels of expression associated with poorer prognosis. FAP was also overexpressed in several paediatric brain cancers. FAP was commonly expressed by cultured GNS cells but absent from normal neurons and astrocytes. Within glioblastoma tissues, the strongest expression of FAP was around blood vessels. In fact, almost every tumor vessel was highlighted by FAP expression, whereas normal tissue vessels and cultured endothelial cells (ECs) lacked expression. Single‐cell analyses of dissociated tumors facilitated a detailed characterisation of the main cellular components of the glioblastoma microenvironment and revealed that vessel‐localised FAP is because of expression on both ECs and pericytes. CONCLUSION: Fibroblast activation protein is expressed by multiple cell types within glioblastoma, highlighting it as an ideal immunotherapy antigen to target destruction of both tumor cells and their supporting vascular network. John Wiley and Sons Inc. 2020-10-14 /pmc/articles/PMC7557106/ /pubmed/33082953 http://dx.doi.org/10.1002/cti2.1191 Text en © 2020 The Authors. Clinical & Translational Immunology published by John Wiley & Sons Australia, Ltd on behalf of Australian and New Zealand Society for Immunology, Inc. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Ebert, Lisa M
Yu, Wenbo
Gargett, Tessa
Toubia, John
Kollis, Paris M
Tea, Melinda N
Ebert, Brenton W
Bardy, Cedric
van den Hurk, Mark
Bonder, Claudine S
Manavis, Jim
Ensbey, Kathleen S
Oksdath Mansilla, Mariana
Scheer, Kaitlin G
Perrin, Sally L
Ormsby, Rebecca J
Poonnoose, Santosh
Koszyca, Barbara
Pitson, Stuart M
Day, Bryan W
Gomez, Guillermo A
Brown, Michael P
Endothelial, pericyte and tumor cell expression in glioblastoma identifies fibroblast activation protein (FAP) as an excellent target for immunotherapy
title Endothelial, pericyte and tumor cell expression in glioblastoma identifies fibroblast activation protein (FAP) as an excellent target for immunotherapy
title_full Endothelial, pericyte and tumor cell expression in glioblastoma identifies fibroblast activation protein (FAP) as an excellent target for immunotherapy
title_fullStr Endothelial, pericyte and tumor cell expression in glioblastoma identifies fibroblast activation protein (FAP) as an excellent target for immunotherapy
title_full_unstemmed Endothelial, pericyte and tumor cell expression in glioblastoma identifies fibroblast activation protein (FAP) as an excellent target for immunotherapy
title_short Endothelial, pericyte and tumor cell expression in glioblastoma identifies fibroblast activation protein (FAP) as an excellent target for immunotherapy
title_sort endothelial, pericyte and tumor cell expression in glioblastoma identifies fibroblast activation protein (fap) as an excellent target for immunotherapy
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7557106/
https://www.ncbi.nlm.nih.gov/pubmed/33082953
http://dx.doi.org/10.1002/cti2.1191
work_keys_str_mv AT ebertlisam endothelialpericyteandtumorcellexpressioninglioblastomaidentifiesfibroblastactivationproteinfapasanexcellenttargetforimmunotherapy
AT yuwenbo endothelialpericyteandtumorcellexpressioninglioblastomaidentifiesfibroblastactivationproteinfapasanexcellenttargetforimmunotherapy
AT gargetttessa endothelialpericyteandtumorcellexpressioninglioblastomaidentifiesfibroblastactivationproteinfapasanexcellenttargetforimmunotherapy
AT toubiajohn endothelialpericyteandtumorcellexpressioninglioblastomaidentifiesfibroblastactivationproteinfapasanexcellenttargetforimmunotherapy
AT kollisparism endothelialpericyteandtumorcellexpressioninglioblastomaidentifiesfibroblastactivationproteinfapasanexcellenttargetforimmunotherapy
AT teamelindan endothelialpericyteandtumorcellexpressioninglioblastomaidentifiesfibroblastactivationproteinfapasanexcellenttargetforimmunotherapy
AT ebertbrentonw endothelialpericyteandtumorcellexpressioninglioblastomaidentifiesfibroblastactivationproteinfapasanexcellenttargetforimmunotherapy
AT bardycedric endothelialpericyteandtumorcellexpressioninglioblastomaidentifiesfibroblastactivationproteinfapasanexcellenttargetforimmunotherapy
AT vandenhurkmark endothelialpericyteandtumorcellexpressioninglioblastomaidentifiesfibroblastactivationproteinfapasanexcellenttargetforimmunotherapy
AT bonderclaudines endothelialpericyteandtumorcellexpressioninglioblastomaidentifiesfibroblastactivationproteinfapasanexcellenttargetforimmunotherapy
AT manavisjim endothelialpericyteandtumorcellexpressioninglioblastomaidentifiesfibroblastactivationproteinfapasanexcellenttargetforimmunotherapy
AT ensbeykathleens endothelialpericyteandtumorcellexpressioninglioblastomaidentifiesfibroblastactivationproteinfapasanexcellenttargetforimmunotherapy
AT oksdathmansillamariana endothelialpericyteandtumorcellexpressioninglioblastomaidentifiesfibroblastactivationproteinfapasanexcellenttargetforimmunotherapy
AT scheerkaitling endothelialpericyteandtumorcellexpressioninglioblastomaidentifiesfibroblastactivationproteinfapasanexcellenttargetforimmunotherapy
AT perrinsallyl endothelialpericyteandtumorcellexpressioninglioblastomaidentifiesfibroblastactivationproteinfapasanexcellenttargetforimmunotherapy
AT ormsbyrebeccaj endothelialpericyteandtumorcellexpressioninglioblastomaidentifiesfibroblastactivationproteinfapasanexcellenttargetforimmunotherapy
AT poonnoosesantosh endothelialpericyteandtumorcellexpressioninglioblastomaidentifiesfibroblastactivationproteinfapasanexcellenttargetforimmunotherapy
AT koszycabarbara endothelialpericyteandtumorcellexpressioninglioblastomaidentifiesfibroblastactivationproteinfapasanexcellenttargetforimmunotherapy
AT pitsonstuartm endothelialpericyteandtumorcellexpressioninglioblastomaidentifiesfibroblastactivationproteinfapasanexcellenttargetforimmunotherapy
AT daybryanw endothelialpericyteandtumorcellexpressioninglioblastomaidentifiesfibroblastactivationproteinfapasanexcellenttargetforimmunotherapy
AT gomezguillermoa endothelialpericyteandtumorcellexpressioninglioblastomaidentifiesfibroblastactivationproteinfapasanexcellenttargetforimmunotherapy
AT brownmichaelp endothelialpericyteandtumorcellexpressioninglioblastomaidentifiesfibroblastactivationproteinfapasanexcellenttargetforimmunotherapy