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Liquid biopsy-extracellular vesicles as potential novel players towards precision medicine in asthma

期刊

FRONTIERS IN IMMUNOLOGY
卷 13, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fimmu.2022.1025348

关键词

asthma; extracellular vesicle; exosome; precision medicine; intercellular communication; microRNA; allergy; inflammation

资金

  1. National Science Centre, Poland
  2. Medical University of Warsaw
  3. [PRELUDIUM 20 2021/41/N/NZ5/02950]

向作者/读者索取更多资源

Extracellular vesicles play a vital role in intracellular communication in the lung microenvironment, particularly in the pro-inflammatory responses related to asthma. Noninvasively collected extracellular vesicles can serve as a liquid biopsy to provide information on disease status, especially in pediatric patients. Further research on extracellular vesicles can help develop improved diagnostics and personalized treatments for asthma.
Extracellular vesicles (EVs) have emerged as vital mediators in intracellular communication in the lung microenvironment. Environmental exposure to various triggers (e.g., viruses, allergens) stimulates the EV-mediated cascade of pro-inflammatory responses that play a key role in the asthma pathomechanism. This complex EV-mediated crosstalk in the asthmatic lung microenvironment occurs between different cell types, including airway epithelial cells and immune cells. The cargo composition of EVs mirrors hereby the type and activation status of the parent cell. Therefore, EVs collected in a noninvasive way (e.g., in nasal lavage, serum) could inform on the disease status as a liquid biopsy, which is particularly important in the pediatric population. As a heterogeneous disease, asthma with its distinct endotypes and phenotypes requires more investigation to develop novel diagnostics and personalized case management. Filling these knowledge gaps may be facilitated by further EV research. Here, we summarize the contribution of EVs in the lung microenvironment as potential novel players towards precision medicine in the development of asthma. Although rapidly evolving, the EV field is still in its infancy. However, it is expected that a better understanding of the role of EVs in the asthma pathomechanism will open up new horizons for precision medicine diagnostic and therapeutic solutions.

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