Related Experiment Video
Updated: Jul 5, 2025

Exosomal miRNA Analysis in Non-small Cell Lung Cancer NSCLC Patients' Plasma Through qPCR: A Feasible Liquid Biopsy Tool
Published on: May 27, 2016
Analysis of Plasma-Derived Exosomal MicroRNAs as Potential Biomarkers for Canine Idiopathic Epilepsy
Mireya García-Gracia1, Laura Moreno-Martinez1,2,3,4, Adelaida Hernaiz1,2,3,4
1Laboratorio de Genética Bioquímica (LAGENBIO), Facultad de Veterinaria, Universidad de Zaragoza, 50013 Zaragoza, Spain.
Abstract:
Epilepsy is one of the most prevalent complex neurological diseases in both the canine and human species, with the idiopathic form as its most common diagnosis. MicroRNAs (miRNAs) are small, noncoding RNA molecules that play a role in gene regulation processes and appear to be a promising biological target for convulsion control. These molecules have been reported as constituents of the internal content of exosomes, which are small extracellular vesicles released by cells. In this study, exosome samples were isolated from the plasma of 23 dogs, including 9 dogs with epilepsy responsive to treatment, 6 dogs with drug-resistant epilepsy, and 8 control dogs. Plasma exosomes were then characterized by electron transmission microscopy, nanoparticle tracking analysis, and dot blotting. Afterwards, the microRNA-enriched RNA content of exosomes was isolated, and miRNA quantification was performed by quantitative real-time PCR. Seven circulating miRNAs that have been previously described in the literature as potential diagnostic or prognostic biomarkers for epilepsy were evaluated. We observed significant differences in miR-16 (p < 0.001), miR-93-5p (p < 0.001), miR-142 (p < 0.001), miR-574 (p < 0.01), and miR-27 (p < 0.05) levels in dogs with refractory epilepsy compared to the control group. In drug-sensitive epileptic dogs, miR-142 (p < 0.01) showed significant differences compared to healthy dogs. Moreover, distinct levels of miR-16 (p < 0.05), miR-93-5p (p < 0.01), miR-132 (p < 0.05), and miR-574 (p < 0.05) were also found between drug-sensitive and drug-resistant epileptic dogs. Our results present plasma-circulating exosomes as an advantageous source of epileptic biomarkers, highlighting the potential of miRNAs as prognostic and diagnostic biomarkers of canine idiopathic epilepsy.
Insights
MicroRNAs (miRNAs) within plasma exosomes show promise as biomarkers for canine epilepsy. Specific miRNA levels differ between healthy dogs, drug-sensitive epilepsy, and drug-resistant epilepsy, aiding diagnosis and prognosis.
Area of Science:
- Veterinary Neurology
- Molecular Biology
- Biochemistry
Background:
- Epilepsy is a common complex neurological disorder in dogs and humans.
- MicroRNAs (miRNAs) are key regulators of gene expression and potential targets for seizure control.
- Exosomes, small extracellular vesicles, carry miRNAs and can be isolated from plasma.
Purpose of the Study:
- To investigate circulating microRNAs (miRNAs) within plasma exosomes as potential biomarkers for canine idiopathic epilepsy.
- To compare miRNA profiles in dogs with drug-sensitive epilepsy, drug-resistant epilepsy, and healthy controls.
Main Methods:
- Plasma exosomes were isolated from 23 dogs (9 drug-sensitive epilepsy, 6 drug-resistant epilepsy, 8 controls).
- Exosomes were characterized using electron microscopy, nanoparticle tracking analysis, and dot blotting.
- miRNA content was extracted, and quantification was performed using quantitative real-time PCR for seven specific miRNAs.
Main Results:
- Significant differences in miR-16, miR-93-5p, miR-142, miR-574, and miR-27 levels were observed in drug-resistant epilepsy compared to controls.
- miR-142 levels were significantly different in drug-sensitive epilepsy compared to healthy dogs.
- Distinct levels of miR-16, miR-93-5p, miR-132, and miR-574 were found between drug-sensitive and drug-resistant epileptic dogs.
Conclusions:
- Plasma-circulating exosomes are a viable source for identifying epilepsy biomarkers.
- Specific miRNAs show potential as diagnostic and prognostic biomarkers for canine idiopathic epilepsy.
- This study supports the use of exosomal miRNAs for understanding and managing canine epilepsy.

