Eosinophil-derived extracellular vesicles: isolation and classification techniques and implications for disease pathophysiology

Author:

Rodrigo-Muñoz José Manuel12,Gil-Martínez Marta12,Naharro-González Sara1,del Pozo Victoria123ORCID

Affiliation:

1. Immunoallergy Laboratory, Immunology Department, Instituto de Investigación Sanitaria Fundación Jiménez Díaz (IIS-FJD, UAM) , Avda. Reyes Católicos, 228040 Madrid , Spain

2. CIBER de Enfermedades Respiratorias (CIBERES), Instituto de Salud Carlos III (ISCIII) , Av. Monforte de Lemos, 3-5. Pabellón 11. Planta 0, 28029 Madrid , Spain

3. Universidad Autónoma de Madrid , Ciudad Universitaria de Cantoblanco, 28049 Madrid , Spain

Abstract

Abstract Eosinophils are leukocytes characterized by their ability to release granule content that is highly rich in enzymes and proteins. Besides the antihelminthic, bactericidal, and antiviral properties of eosinophils and their secretory granules, these also play a prominent role in the pathophysiology of diseases such as asthma, eosinophilic esophagitis, and other hypereosinophilic conditions by causing tissue damage and airway hyperresponsiveness. Although this cell was first recognized mainly for its capacity to release granule content, nowadays other capabilities such as cytokine secretion have been linked to its physiology, and research has found that eosinophils are not only involved in innate immunity, but also as orchestrators of immune responses. Nearly 10 yr ago, eosinophil-derived extracellular vesicles (EVs) were first described; since then, the EV field has grown exponentially, revealing their vital roles in intracellular communication. In this review, we synthesize current knowledge on eosinophil-derived EVs, beginning with a description of what they are and what makes them important regulators of disease, followed by an account of the methodologies used to isolate and characterize EVs. We also summarize current understanding of eosinophil-derived vesicles functionality, especially in asthma, the disease in which eosinophil-derived EVs have been most widely studied, describing how they modulate the role of eosinophils themselves (through autocrine signaling) and the way they affect airway structural cells and airway remodeling. Deeper understanding of this cell type could lead to novel research in eosinophil biology, its role in other diseases, and possible use of eosinophil-derived EVs as therapeutic targets.

Funder

ISCIII—Instituto de Salud Carlos III

CIBER de Enfermedades Respiratorias

SEAIC

Comunidad de Madrid

FEDER

Publisher

Oxford University Press (OUP)

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