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Epitranscriptomics & Cancer Adaptation : A.David

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Our research work focuses on the contribution of post-transcriptional mechanisms on cancer cell adaptation, in particular RNA epigenetic & translational control.

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Group name EquipeCTCS
Item Type Journal Article
Title A comprehensive profiling of the immune microenvironment of breast cancer brain metastases
Creator Griguolo et al.
Author Gaia Griguolo
Author Anna Tosi
Author Maria Vittoria Dieci
Author Susan Fineberg
Author Valentina Rossi
Author Annavera Ventura
Author Michele Bottosso
Author Luc Bauchet
Author Federica Miglietta
Author Jack Jacob
Author Matteo Fassan
Author William Jacot
Author PierFranco Conte
Author Antonio Rosato
Author Valentina Guarneri
Abstract BACKGROUND: Despite potential clinical implications, the complexity of breast cancer (BC) brain metastases (BM) immune microenvironment is poorly understood. Through multiplex immunofluorescence, we here describe the main features of BCBM immune microenvironment (density and spatial distribution) and evaluate its prognostic impact. METHODS: 60 BCBM from patients undergoing neurosurgery at three institutions (2003-2018) was comprehensively assessed using two multiplex immunofluorescence panels (CD4, CD8, Granzyme B, FoxP3, CD68, pan-cytokeratin, DAPI; CD3, PD-1, PD-L1, LAG-3, TIM-3, CD163, pan-cytokeratin, DAPI). The prognostic impact of immune subpopulations and cell-to-cell spatial interactions was evaluated. RESULTS: Subtype-related differences in BCBM immune microenvironment and its prognostic impact were observed. While in HR-/HER2- BM and HER2+ BM, higher densities of intra-tumoral CD8+ lymphocytes were associated with significantly longer OS (HR 0.16 and 0.20, respectively), in HR+/HER2- BCBMs a higher CD4+FoxP3+/CD8+ cell ratio in the stroma was associated with worse OS (HR 5.4). Moreover, a higher density of intra-tumoral CD163+ M2-polarized microglia/macrophages in BCBMs was significantly associated with worse OS in HR-/HER2- and HR+/HER2- BCBMs (HR 6.56 and 4.68, respectively), but not in HER2+ BCBMs. In HER2+ BCBMs, multiplex immunofluorescence highlighted a negative prognostic role of PD-1/PD-L1 interaction: patients with a higher percentage of PD-L1+ cells spatially interacting with (within a 20 µm radius) PD-1+ cells presented a significantly worse OS (HR 4.60). CONCLUSIONS: Our results highlight subtype-related differences in BCBM immune microenvironment and identify two potential therapeutic targets, M2 microglia/macrophage polarization in HER2- and PD-1/PD-L1 interaction in HER2+ BCBMs, which warrant future exploration in clinical trials.
Publication Neuro-Oncology
Pages noac136
Date 2022-05-24
Journal Abbr Neuro Oncol
Language eng
DOI 10.1093/neuonc/noac136
ISSN 1523-5866
Library Catalog PubMed
Extra PMID: 35609559
Tags breast cancer, immune biomarkers, immune microenvironment, marque, multiplex immunofluorescence, original
Date Added 2022/07/29 - 11:37:01
Date Modified 2022/08/01 - 11:54:59
Notes and Attachments PubMed entry (Attachment)


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