Microglia and glioblastoma heterocellular interplay sustains tumour growth and proliferation as an off‐target effect of radiotherapy

Author:

Alberghina Cristiana1,Torrisi Filippo1,D'Aprile Simona1,Longhitano Lucia1,Giallongo Sebastiano1,Scandura Grazia2,Mannino Giuliana3,Mele Stefania45,Sabini Maria Gabriella45,Cammarata Francesco P.56,Russo Giorgio56,Abdelhameed Ali S.7,Zappalà Agata1,Lo Furno Debora1,Giuffrida Rosario1,Li Volti Giovanni1ORCID,Tibullo Daniele1ORCID,Vicario Nunzio1ORCID,Parenti Rosalba1

Affiliation:

1. Department of Biomedical and Biotechnological Sciences University of Catania Catania Italy

2. Department of Medical, Surgical Sciences and Advanced Technologies “G.F. Ingrassia” University of Catania Catania Italy

3. Department of Chemical, Biological, Pharmaceutical and Environmental Sciences University of Messina Messina Italy

4. Medical Physics Unit Cannizzaro Hospital Catania Italy

5. Laboratori Nazionali del Sud, INFN‐LNS, National Institute for Nuclear Physics Catania Italy

6. Institute of Molecular Bioimaging and Physiology, National Research Council, IBFM‐CNR Cefalù Italy

7. Department of Pharmaceutical Chemistry College of Pharmacy, King Saud University Riyadh Saudi Arabia

Abstract

AbstractGlioblastoma (GBM), a WHO grade IV glioma, is a malignant primary brain tumour for which combination of surgery, chemotherapy and radiotherapy is the first‐line approach despite adverse effects. Tumour microenvironment (TME) is characterized by an interplay of cells and soluble factors holding a critical role in neoplastic development. Significant pathophysiological changes have been found in GBM TME, such as glia activation and oxidative stress. Microglia play a crucial role in favouring GBM growth, representing target cells of immune escape mechanisms. Our study aims at analysing radiation‐induced effects in modulating intercellular communication and identifying the basis of protective mechanisms in radiation‐naïve GBM cells. Tumour cells were treated with conditioned media (CM) derived from 0, 2 or 15 Gy irradiated GBM cells or 0, 2 or 15 Gy irradiated human microglia. We demonstrated that irradiated microglia promote an increase of GBM cell lines proliferation through paracrine signalling. On the contrary, irradiated GBM‐derived CM affect viability, triggering cell death mechanisms. In addition, we investigated whether these processes involve mitochondrial mass, fitness and oxidative phosphorylation and how GBM cells respond at these induced alterations. Our study suggests that off‐target radiotherapy modulates microglia to support GBM proliferation and induce metabolic modifications.

Funder

Fondazione Umberto Veronesi

Publisher

Wiley

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