Cargando…

Evolutionary dynamics of residual disease in human glioblastoma

BACKGROUND: Glioblastoma is the most common and aggressive adult brain malignancy against which conventional surgery and chemoradiation provide limited benefit. Even when a good treatment response is obtained, recurrence inevitably occurs either locally (∼80%) or distally (∼20%), driven by cancer cl...

Descripción completa

Detalles Bibliográficos
Autores principales: Spiteri, I, Caravagna, G, Cresswell, G D, Vatsiou, A, Nichol, D, Acar, A, Ermini, L, Chkhaidze, K, Werner, B, Mair, R, Brognaro, E, Verhaak, R G W, Sanguinetti, G, Piccirillo, S G M, Watts, C, Sottoriva, A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6442656/
https://www.ncbi.nlm.nih.gov/pubmed/30452544
http://dx.doi.org/10.1093/annonc/mdy506
_version_ 1783407739792261120
author Spiteri, I
Caravagna, G
Cresswell, G D
Vatsiou, A
Nichol, D
Acar, A
Ermini, L
Chkhaidze, K
Werner, B
Mair, R
Brognaro, E
Verhaak, R G W
Sanguinetti, G
Piccirillo, S G M
Watts, C
Sottoriva, A
author_facet Spiteri, I
Caravagna, G
Cresswell, G D
Vatsiou, A
Nichol, D
Acar, A
Ermini, L
Chkhaidze, K
Werner, B
Mair, R
Brognaro, E
Verhaak, R G W
Sanguinetti, G
Piccirillo, S G M
Watts, C
Sottoriva, A
author_sort Spiteri, I
collection PubMed
description BACKGROUND: Glioblastoma is the most common and aggressive adult brain malignancy against which conventional surgery and chemoradiation provide limited benefit. Even when a good treatment response is obtained, recurrence inevitably occurs either locally (∼80%) or distally (∼20%), driven by cancer clones that are often genomically distinct from those in the primary tumour. Glioblastoma cells display a characteristic infiltrative phenotype, invading the surrounding tissue and often spreading across the whole brain. Cancer cells responsible for relapse can reside in two compartments of residual disease that are left behind after treatment: the infiltrated normal brain parenchyma and the sub-ventricular zone. However, these two sources of residual disease in glioblastoma are understudied because of the difficulty in sampling these regions during surgery. PATIENT AND METHODS: Here, we present the results of whole-exome sequencing of 69 multi-region samples collected using fluorescence-guided resection from 11 patients, including the infiltrating tumour margin and the sub-ventricular zone for each patient, as well as matched blood. We used a phylogenomic approach to dissect the spatio-temporal evolution of each tumour and unveil the relation between residual disease and the main tumour mass. We also analysed two patients with paired primary-recurrence samples with matched residual disease. RESULTS: Our results suggest that infiltrative subclones can arise early during tumour growth in a subset of patients. After treatment, the infiltrative subclones may seed the growth of a recurrent tumour, thus representing the ‘missing link’ between the primary tumour and recurrent disease. CONCLUSIONS: These results are consistent with recognised clinical phenotypic behaviour and suggest that more specific therapeutic targeting of cells in the infiltrated brain parenchyma may improve patient’s outcome.
format Online
Article
Text
id pubmed-6442656
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-64426562019-04-04 Evolutionary dynamics of residual disease in human glioblastoma Spiteri, I Caravagna, G Cresswell, G D Vatsiou, A Nichol, D Acar, A Ermini, L Chkhaidze, K Werner, B Mair, R Brognaro, E Verhaak, R G W Sanguinetti, G Piccirillo, S G M Watts, C Sottoriva, A Ann Oncol Original articles BACKGROUND: Glioblastoma is the most common and aggressive adult brain malignancy against which conventional surgery and chemoradiation provide limited benefit. Even when a good treatment response is obtained, recurrence inevitably occurs either locally (∼80%) or distally (∼20%), driven by cancer clones that are often genomically distinct from those in the primary tumour. Glioblastoma cells display a characteristic infiltrative phenotype, invading the surrounding tissue and often spreading across the whole brain. Cancer cells responsible for relapse can reside in two compartments of residual disease that are left behind after treatment: the infiltrated normal brain parenchyma and the sub-ventricular zone. However, these two sources of residual disease in glioblastoma are understudied because of the difficulty in sampling these regions during surgery. PATIENT AND METHODS: Here, we present the results of whole-exome sequencing of 69 multi-region samples collected using fluorescence-guided resection from 11 patients, including the infiltrating tumour margin and the sub-ventricular zone for each patient, as well as matched blood. We used a phylogenomic approach to dissect the spatio-temporal evolution of each tumour and unveil the relation between residual disease and the main tumour mass. We also analysed two patients with paired primary-recurrence samples with matched residual disease. RESULTS: Our results suggest that infiltrative subclones can arise early during tumour growth in a subset of patients. After treatment, the infiltrative subclones may seed the growth of a recurrent tumour, thus representing the ‘missing link’ between the primary tumour and recurrent disease. CONCLUSIONS: These results are consistent with recognised clinical phenotypic behaviour and suggest that more specific therapeutic targeting of cells in the infiltrated brain parenchyma may improve patient’s outcome. Oxford University Press 2019-03 2018-11-19 /pmc/articles/PMC6442656/ /pubmed/30452544 http://dx.doi.org/10.1093/annonc/mdy506 Text en © The Author(s) 2018. Published by Oxford University Press on behalf of the European Society for Medical Oncology. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original articles
Spiteri, I
Caravagna, G
Cresswell, G D
Vatsiou, A
Nichol, D
Acar, A
Ermini, L
Chkhaidze, K
Werner, B
Mair, R
Brognaro, E
Verhaak, R G W
Sanguinetti, G
Piccirillo, S G M
Watts, C
Sottoriva, A
Evolutionary dynamics of residual disease in human glioblastoma
title Evolutionary dynamics of residual disease in human glioblastoma
title_full Evolutionary dynamics of residual disease in human glioblastoma
title_fullStr Evolutionary dynamics of residual disease in human glioblastoma
title_full_unstemmed Evolutionary dynamics of residual disease in human glioblastoma
title_short Evolutionary dynamics of residual disease in human glioblastoma
title_sort evolutionary dynamics of residual disease in human glioblastoma
topic Original articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6442656/
https://www.ncbi.nlm.nih.gov/pubmed/30452544
http://dx.doi.org/10.1093/annonc/mdy506
work_keys_str_mv AT spiterii evolutionarydynamicsofresidualdiseaseinhumanglioblastoma
AT caravagnag evolutionarydynamicsofresidualdiseaseinhumanglioblastoma
AT cresswellgd evolutionarydynamicsofresidualdiseaseinhumanglioblastoma
AT vatsioua evolutionarydynamicsofresidualdiseaseinhumanglioblastoma
AT nichold evolutionarydynamicsofresidualdiseaseinhumanglioblastoma
AT acara evolutionarydynamicsofresidualdiseaseinhumanglioblastoma
AT erminil evolutionarydynamicsofresidualdiseaseinhumanglioblastoma
AT chkhaidzek evolutionarydynamicsofresidualdiseaseinhumanglioblastoma
AT wernerb evolutionarydynamicsofresidualdiseaseinhumanglioblastoma
AT mairr evolutionarydynamicsofresidualdiseaseinhumanglioblastoma
AT brognaroe evolutionarydynamicsofresidualdiseaseinhumanglioblastoma
AT verhaakrgw evolutionarydynamicsofresidualdiseaseinhumanglioblastoma
AT sanguinettig evolutionarydynamicsofresidualdiseaseinhumanglioblastoma
AT piccirillosgm evolutionarydynamicsofresidualdiseaseinhumanglioblastoma
AT wattsc evolutionarydynamicsofresidualdiseaseinhumanglioblastoma
AT sottorivaa evolutionarydynamicsofresidualdiseaseinhumanglioblastoma