Extracellular vesicles shed by follicular lymphoma B cells promote polarization of the bone marrow stromal cell niche

Author:

Dumontet Erwan12ORCID,Pangault Céline12ORCID,Roulois David1ORCID,Desoteux Matthis3,Léonard Simon1,Marchand Tony14,Latour Maelle12,Legoix Patricia5,Loew Damarys6ORCID,Dingli Florent6ORCID,Dulong Joelle12,Flecher Erwan7,Coulouarn Cédric3,Cartron Guillaume8ORCID,Fest Thierry12ORCID,Tarte Karin12ORCID

Affiliation:

1. Unité Mixte de Recherche (UMR) 1236, INSERM, Université Rennes, EFS Bretagne, Laboratoires d'Excellence "Immunotherapy-Graft-Oncology" (LabEx IGO), Rennes, France;

2. Department of Biology, Rennes University Hospital, Rennes, France;

3. UMRS 1242 Chemistry Oncogenesis Stress Signaling, INSERM, University of Rennes, Centre de Lutte contre le Cancer Eugène Marquis, Rennes, France;

4. Department of Hematology, Rennes University Hospital, Rennes, France;

5. Institut Curie Genomics of Excellence Platform and

6. Laboratoire de Spectrométrie de Masse Protéomique, Institut Curie Research Center, Paris Sciences et Lettres (PSL) University, Paris, France;

7. Department of Thoracic and Cardiac Surgery, Rennes University Hospital, Rennes, France; and

8. Department of Hematology, Montpellier University Hospital, Montpellier, France

Abstract

Abstract Follicular lymphoma (FL) originates in the lymph nodes (LNs) and infiltrates bone marrow (BM) early in the course of the disease. BM FL B cells are characterized by a lower cytological grade, decreased proliferation, and a specific phenotypic and subclonal profile. Mesenchymal stromal cells (MSCs) obtained from FL BM display a specific gene expression profile (GEP), including enrichment for a lymphoid stromal cell signature, and an increased capacity to sustain FL B-cell growth. However, the mechanisms triggering the formation of the medullar FL permissive stromal niche have not been identified. In the current work, we demonstrate that FL B cells produce extracellular vesicles (EVs) that can be internalized by BM-MSCs, making them more efficient to support FL B-cell survival and quiescence. Accordingly, EVs purified from FL BM plasma activate transforming growth factor β–dependent and independent pathways in BM-MSCs and modify their GEP, triggering an upregulation of factors classically associated with hematopoietic stem cell niche, including CXCL12 and angiopoietin-1. Moreover, we provide the first characterization of BM FL B-cell GEP, allowing the definition of the landscape of molecular interactions they could engage with EV-primed BM-MSCs. This work identifies FL-derived EVs as putative mediators of BM stroma polarization and supports further investigation of their clinical interest for targeting the crosstalk between BM-MSCs and malignant B cells.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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