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Published on: May 4, 2017
Altered microRNA profiles in bronchoalveolar lavage fluid exosomes in asthmatic patients
Bettina Levänen1, Nirav R Bhakta, Patricia Torregrosa Paredes
1Respiratory Medicine Unit, Department of Medicine, and Center for Molecular Medicine, Karolinska Institutet, Stockholm, Sweden. bettina.levanen@ki.se
Background:
Asthma is characterized by increased airway narrowing in response to nonspecific stimuli. The disorder is influenced by both environmental and genetic factors. Exosomes are nanosized vesicles of endosomal origin released from inflammatory and epithelial cells that have been implicated in asthma. In this study we characterized the microRNA (miRNA) content of exosomes in healthy control subjects and patients with mild intermittent asthma both at unprovoked baseline and in response to environmental challenge.
Objective:
To investigate alterations in bronchoalveolar lavage fluid (BALF) exosomal miRNA profiles due to asthma, and following subway air exposure.
Methods:
Exosomes were isolated from BALF from healthy control subjects (n = 10) and patients with mild intermittent asthma (n = 10) after subway and control exposures. Exosomal RNA was analyzed by using microarrays containing probes for 894 human miRNAs, and selected findings were validated with quantitative RT-PCR. Results were analyzed by using multivariate modeling.
Results:
The presence of miRNAs was confirmed in exosomes from BALF of both asthmatic patients and healthy control subjects. Significant differences in BALF exosomal miRNA was detected for 24 miRNAs with a subset of 16 miRNAs, including members of the let-7 and miRNA-200 families, providing robust classification of patients with mild nonsymptomatic asthma from healthy subjects with 72% cross-validated predictive power (Q(2) = 0.72). In contrast, subway exposure did not cause any significant alterations in miRNA profiles.
Conclusion:
These studies demonstrate substantial differences in exosomal miRNA profiles between healthy subjects and patients with unprovoked, mild, stable asthma. These changes might be important in the inflammatory response leading to bronchial hyperresponsiveness and asthma.
Insights
Exosomes from bronchoalveolar lavage fluid show distinct microRNA profiles in mild asthma patients compared to healthy individuals. These asthma-related exosomal microRNA differences are present at baseline and unaffected by subway air exposure.
Area of Science:
- Respiratory Medicine
- Molecular Biology
- Genomics
Background:
- Asthma involves airway narrowing influenced by genetic and environmental factors.
- Exosomes, released from cells, are implicated in asthma pathogenesis.
- This study investigates exosomal microRNA (miRNA) content in asthma.
Purpose of the Study:
- To identify alterations in bronchoalveolar lavage fluid (BALF) exosomal miRNA profiles in asthma patients.
- To assess the impact of subway air exposure on these exosomal miRNA profiles.
Main Methods:
- Exosomes were isolated from BALF of 10 asthma patients and 10 healthy controls.
- Exosomal RNA was analyzed using microarrays for 894 human miRNAs.
- Quantitative RT-PCR validated selected findings, with multivariate modeling for analysis.
Main Results:
- Distinct exosomal miRNA profiles were identified in mild asthma patients versus healthy controls.
- A subset of 16 miRNAs, including let-7 and miRNA-200 families, classified asthma patients with 72% accuracy.
- Subway air exposure did not significantly alter exosomal miRNA profiles.
Conclusions:
- Substantial differences exist in exosomal miRNA profiles between healthy individuals and those with mild, stable asthma.
- These exosomal miRNA alterations may contribute to the inflammatory processes underlying asthma and bronchial hyperresponsiveness.
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