Author:
Weidner Lorraine,Lorenz Julia,Quach Stefanie,Braun Frank K.,Rothhammer-Hampl Tanja,Ammer Laura-Marie,Vollmann-Zwerenz Arabel,Bartos Laura M.,Dekorsy Franziska J.,Holzgreve Adrien,Kirchleitner Sabrina V.,Thon Niklas,Greve Tobias,Ruf Viktoria,Herms Jochen,Bader Stefanie,Milenkovic Vladimir M.,von Baumgarten Louisa,Menevse Ayse N.,Hussein Abir,Sax Julian,Wetzel Christian H.,Rupprecht Rainer,Proescholdt Martin,Schmidt Nils O.,Beckhove Philipp,Hau Peter,Tonn Joerg-Christian,Bartenstein Peter,Brendel Matthias,Albert Nathalie L.,Riemenschneider Markus J.
Abstract
AbstractTSPO is a promising novel tracer target for positron-emission tomography (PET) imaging of brain tumors. However, due to the heterogeneity of cell populations that contribute to the TSPO-PET signal, imaging interpretation may be challenging. We therefore evaluated TSPO enrichment/expression in connection with its underlying histopathological and molecular features in gliomas. We analyzed TSPO expression and its regulatory mechanisms in large in silico datasets and by performing direct bisulfite sequencing of the TSPO promotor. In glioblastoma tissue samples of our TSPO-PET imaging study cohort, we dissected the association of TSPO tracer enrichment and protein labeling with the expression of cell lineage markers by immunohistochemistry and fluorescence multiplex stains. Furthermore, we identified relevant TSPO-associated signaling pathways by RNA sequencing.We found that TSPO expression is associated with prognostically unfavorable glioma phenotypes and that TSPO promotor hypermethylation is linked to IDH mutation. Careful histological analysis revealed that TSPO immunohistochemistry correlates with the TSPO-PET signal and that TSPO is expressed by diverse cell populations. While tumor core areas are the major contributor to the overall TSPO signal, TSPO signals in the tumor rim are mainly driven by CD68-positive microglia/macrophages. Molecularly, high TSPO expression marks prognostically unfavorable glioblastoma cell subpopulations characterized by an enrichment of mesenchymal gene sets and higher amounts of tumor-associated macrophages.In conclusion, our study improves the understanding of TSPO as an imaging marker in gliomas by unveiling IDH-dependent differences in TSPO expression/regulation, regional heterogeneity of the TSPO PET signal and functional implications of TSPO in terms of tumor immune cell interactions.
Funder
Universitätsklinikum Regensburg
Publisher
Springer Science and Business Media LLC
Subject
Cellular and Molecular Neuroscience,Neurology (clinical),Pathology and Forensic Medicine