Cargando…

Combined intracavitary thermotherapy with iron oxide nanoparticles and radiotherapy as local treatment modality in recurrent glioblastoma patients

BACKGROUND: There is an increasing interest in local tumor ablative treatment modalities that induce immunogenic cell death and the generation of antitumor immune responses. METHODS: We report six recurrent glioblastoma patients who were treated with intracavitary thermotherapy after coating the res...

Descripción completa

Detalles Bibliográficos
Autores principales: Grauer, Oliver, Jaber, Mohammed, Hess, Katharina, Weckesser, Matthias, Schwindt, Wolfram, Maring, Stephan, Wölfer, Johannes, Stummer, Walter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer US 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6341053/
https://www.ncbi.nlm.nih.gov/pubmed/30506500
http://dx.doi.org/10.1007/s11060-018-03005-x
_version_ 1783388883643269120
author Grauer, Oliver
Jaber, Mohammed
Hess, Katharina
Weckesser, Matthias
Schwindt, Wolfram
Maring, Stephan
Wölfer, Johannes
Stummer, Walter
author_facet Grauer, Oliver
Jaber, Mohammed
Hess, Katharina
Weckesser, Matthias
Schwindt, Wolfram
Maring, Stephan
Wölfer, Johannes
Stummer, Walter
author_sort Grauer, Oliver
collection PubMed
description BACKGROUND: There is an increasing interest in local tumor ablative treatment modalities that induce immunogenic cell death and the generation of antitumor immune responses. METHODS: We report six recurrent glioblastoma patients who were treated with intracavitary thermotherapy after coating the resection cavity wall with superparamagnetic iron oxide nanoparticles (“NanoPaste” technique). Patients underwent six 1-h hyperthermia sessions in an alternating magnetic field and, if possible, received concurrent fractionated radiotherapy at a dose of 39.6 Gy. RESULTS: There were no major side effects during active treatment. However, after 2–5 months, patients developed increasing clinical symptoms. CT scans showed tumor flare reactions with prominent edema around nanoparticle deposits. Patients were treated with dexamethasone and, if necessary, underwent re-surgery to remove nanoparticles. Histopathology revealed sustained necrosis directly adjacent to aggregated nanoparticles without evidence for tumor activity. Immunohistochemistry showed upregulation of Caspase-3 and heat shock protein 70, prominent infiltration of macrophages with ingested nanoparticles and CD3(+) T-cells. Flow cytometric analysis of freshly prepared tumor cell suspensions revealed increased intracellular ratios of IFN-γ to IL-4 in CD4(+) and CD8(+) memory T cells, and activation of tumor-associated myeloid cells and microglia with upregulation of HLA-DR and PD-L1. Two patients had long-lasting treatment responses > 23 months without receiving any further therapy. CONCLUSION: Intracavitary thermotherapy combined with radiotherapy can induce a prominent inflammatory reaction around the resection cavity which might trigger potent antitumor immune responses possibly leading to long-term stabilization of recurrent GBM patients. These results warrant further investigations in a prospective phase-I trial.
format Online
Article
Text
id pubmed-6341053
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Springer US
record_format MEDLINE/PubMed
spelling pubmed-63410532019-02-06 Combined intracavitary thermotherapy with iron oxide nanoparticles and radiotherapy as local treatment modality in recurrent glioblastoma patients Grauer, Oliver Jaber, Mohammed Hess, Katharina Weckesser, Matthias Schwindt, Wolfram Maring, Stephan Wölfer, Johannes Stummer, Walter J Neurooncol Clinical Study BACKGROUND: There is an increasing interest in local tumor ablative treatment modalities that induce immunogenic cell death and the generation of antitumor immune responses. METHODS: We report six recurrent glioblastoma patients who were treated with intracavitary thermotherapy after coating the resection cavity wall with superparamagnetic iron oxide nanoparticles (“NanoPaste” technique). Patients underwent six 1-h hyperthermia sessions in an alternating magnetic field and, if possible, received concurrent fractionated radiotherapy at a dose of 39.6 Gy. RESULTS: There were no major side effects during active treatment. However, after 2–5 months, patients developed increasing clinical symptoms. CT scans showed tumor flare reactions with prominent edema around nanoparticle deposits. Patients were treated with dexamethasone and, if necessary, underwent re-surgery to remove nanoparticles. Histopathology revealed sustained necrosis directly adjacent to aggregated nanoparticles without evidence for tumor activity. Immunohistochemistry showed upregulation of Caspase-3 and heat shock protein 70, prominent infiltration of macrophages with ingested nanoparticles and CD3(+) T-cells. Flow cytometric analysis of freshly prepared tumor cell suspensions revealed increased intracellular ratios of IFN-γ to IL-4 in CD4(+) and CD8(+) memory T cells, and activation of tumor-associated myeloid cells and microglia with upregulation of HLA-DR and PD-L1. Two patients had long-lasting treatment responses > 23 months without receiving any further therapy. CONCLUSION: Intracavitary thermotherapy combined with radiotherapy can induce a prominent inflammatory reaction around the resection cavity which might trigger potent antitumor immune responses possibly leading to long-term stabilization of recurrent GBM patients. These results warrant further investigations in a prospective phase-I trial. Springer US 2018-12-01 2019 /pmc/articles/PMC6341053/ /pubmed/30506500 http://dx.doi.org/10.1007/s11060-018-03005-x Text en © The Author(s) 2018 OpenAccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Clinical Study
Grauer, Oliver
Jaber, Mohammed
Hess, Katharina
Weckesser, Matthias
Schwindt, Wolfram
Maring, Stephan
Wölfer, Johannes
Stummer, Walter
Combined intracavitary thermotherapy with iron oxide nanoparticles and radiotherapy as local treatment modality in recurrent glioblastoma patients
title Combined intracavitary thermotherapy with iron oxide nanoparticles and radiotherapy as local treatment modality in recurrent glioblastoma patients
title_full Combined intracavitary thermotherapy with iron oxide nanoparticles and radiotherapy as local treatment modality in recurrent glioblastoma patients
title_fullStr Combined intracavitary thermotherapy with iron oxide nanoparticles and radiotherapy as local treatment modality in recurrent glioblastoma patients
title_full_unstemmed Combined intracavitary thermotherapy with iron oxide nanoparticles and radiotherapy as local treatment modality in recurrent glioblastoma patients
title_short Combined intracavitary thermotherapy with iron oxide nanoparticles and radiotherapy as local treatment modality in recurrent glioblastoma patients
title_sort combined intracavitary thermotherapy with iron oxide nanoparticles and radiotherapy as local treatment modality in recurrent glioblastoma patients
topic Clinical Study
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6341053/
https://www.ncbi.nlm.nih.gov/pubmed/30506500
http://dx.doi.org/10.1007/s11060-018-03005-x
work_keys_str_mv AT graueroliver combinedintracavitarythermotherapywithironoxidenanoparticlesandradiotherapyaslocaltreatmentmodalityinrecurrentglioblastomapatients
AT jabermohammed combinedintracavitarythermotherapywithironoxidenanoparticlesandradiotherapyaslocaltreatmentmodalityinrecurrentglioblastomapatients
AT hesskatharina combinedintracavitarythermotherapywithironoxidenanoparticlesandradiotherapyaslocaltreatmentmodalityinrecurrentglioblastomapatients
AT weckessermatthias combinedintracavitarythermotherapywithironoxidenanoparticlesandradiotherapyaslocaltreatmentmodalityinrecurrentglioblastomapatients
AT schwindtwolfram combinedintracavitarythermotherapywithironoxidenanoparticlesandradiotherapyaslocaltreatmentmodalityinrecurrentglioblastomapatients
AT maringstephan combinedintracavitarythermotherapywithironoxidenanoparticlesandradiotherapyaslocaltreatmentmodalityinrecurrentglioblastomapatients
AT wolferjohannes combinedintracavitarythermotherapywithironoxidenanoparticlesandradiotherapyaslocaltreatmentmodalityinrecurrentglioblastomapatients
AT stummerwalter combinedintracavitarythermotherapywithironoxidenanoparticlesandradiotherapyaslocaltreatmentmodalityinrecurrentglioblastomapatients