Short-range interactions between fibrocytes and CD8+ T cells in COPD bronchial inflammatory response

Author:

Eyraud Edmée12ORCID,Maurat Elise12,Sac-Epée Jean-Marc3,Henrot Pauline124,Zysman Maeva124,Esteves Pauline12,Trian Thomas12,Dupuy Jean-William1,Leipold Alexander4,Saliba Antoine-Emmanuel4,Begueret Hugues125,Girodet Pierre-Olivier125,Thumerel Matthieu125,Hustache-Castaing Romain125,Marthan Roger125,Levet Florian67,Vallois Pierre3,Contin-Bordes Cécile89,Berger Patrick125,Dupin Isabelle2ORCID

Affiliation:

1. Univ-Bordeaux, Centre de Recherche Cardio-thoracique de Bordeaux, U1045, Département de Pharmacologie, CIC1401, Proteomics Facility

2. INSERM, Centre de Recherche Cardio-thoracique de Bordeaux, U1045

3. Univ-Lorraine, Institut Elie Cartan de Lorraine

4. Helmholtz Institute for RNA-based Infection Research (HIRI), Helmholtz-Center for Infection Research (HZI)

5. CHU de Bordeaux, Service d’exploration fonctionnelle respiratoire

6. Univ. Bordeaux, CNRS, INSERM, Bordeaux Imaging Center

7. Univ. Bordeaux, CNRS, Interdisciplinary Institute for Neuroscience

8. CNRS, UMR5164 ImmunoConcEpT, Université de Bordeaux

9. CHU de Bordeaux, Laboratoire d’Immunologie et Immunogénétique

Abstract

Bronchi of chronic obstructive pulmonary disease (COPD) are the site of extensive cell infiltration, allowing persistent contact between resident cells and immune cells. Tissue fibrocytes interaction with CD8+ T cells and its consequences were investigated using a combination of in situ, in vitro experiments and mathematical modeling. We show that fibrocytes and CD8+ T cells are found in the vicinity of distal airways and that potential interactions are more frequent in tissues from COPD patients compared to those of control subjects. Increased proximity and clusterization between CD8+ T cells and fibrocytes are associated with altered lung function. Tissular CD8+ T cells from COPD patients promote fibrocyte chemotaxis via the CXCL8-CXCR1/2 axis. Live imaging shows that CD8+ T cells establish short-term interactions with fibrocytes, that trigger CD8+ T cell proliferation in a CD54- and CD86-dependent manner, pro-inflammatory cytokines production, CD8+ T cell cytotoxic activity against bronchial epithelial cells and fibrocyte immunomodulatory properties. We defined a computational model describing these intercellular interactions and calibrated the parameters based on our experimental measurements. We show the model’s ability to reproduce histological ex vivo characteristics, and observe an important contribution of fibrocyte-mediated CD8+ T cell proliferation in COPD development. Using the model to test therapeutic scenarios, we predict a recovery time of several years, and the failure of targeting chemotaxis or interacting processes. Altogether, our study reveals that local interactions between fibrocytes and CD8+ T cells could jeopardize the balance between protective immunity and chronic inflammation in the bronchi of COPD patients.

Funder

Fondation Bordeaux Université

Agence Nationale de la Recherche

AstraZeneca France

Boehringer Ingelheim

Novartis

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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