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Detection of MicroRNAs in Microglia by Real-time PCR in Normal CNS and During Neuroinflammation
Published on: July 23, 2012
Selected extracellular microRNA as potential biomarkers of multiple sclerosis activity--preliminary study
Magdalena Justyna Kacperska1, Karol Jastrzebski, Bartlomiej Tomasik
1Department of Neurology and Stroke, Medical University of Lodz, Zeromskiego 113, 90-549, Lodz, Poland, magda-kacperska@o2.pl.
Abstract:
Multiple sclerosis (MS) is an autoimmune demyelinating disease of the central nervous system (CNS). Four distinct disease courses are known, although approximately 90% of patients are diagnosed with the relapsing-remitting form (RRMS). The name "multiple sclerosis" pertains to the underlying pathology: the presence of demyelinating plaques in the CNS, in particular in the periventricular region, corpus callosum, cervical spine, and the cerebellum. There are ongoing efforts to discover biomarkers that would allow for an unequivocal diagnosis, assess the activity of inflammatory and neurodegenerative processes, or warn of disease progression. At present, small noncoding RNA particles-microRNA (miRNA, miR) seem to be particularly noteworthy, as they take part in posttranscriptional regulation of expression of various genes. Changes in composition as well as function of miRNA found in body fluids of MS patients are subjects of research, in the hope they prove accurate markers of MS activity. This preliminary study aims to evaluate the expression of selected extracellular microRNA particles (miRNA-let-7a, miRNA-92a, miRNA-684a) in patients experiencing MS relapse and remission, with healthy volunteers serving as a control group and to evaluate the correlation between miRNA expression and selected clinical parameters of those patients. Thirty-seven patients suffering from MS formed two examined groups: 20 patients undergoing relapse and 17 in remission. Thirty healthy volunteers formed the control group. All patients who were subjects to peripheral blood sampling had been hospitalized in the Department of Neurology and Stroke(1). Four milliliters of venous whole blood had been collected into EDTA tubes. The basis for the selection of the three particular miRNA investigated in this study (miRNA-let-7a, miRNA-92a, miRNA-684a) was a preliminary bioinformatic analysis of data compiled from several medical databases, including Ovid MEDLINE®, Embase, Cochrane Database of Systematic Reviews (CDSR), miRWalk, and miRBase. The isolation of extracellular microRNA from plasma was carried out using miRNeasy Mini Kit (Qiagen) reagents. The reverse transcription was carried out with TaqMan® MicroRNA Reverse Transcription Kit (Applied Biosystems), as per manufacturers' instructions. Standard microRNA TaqMan® tests (Applied Biosystems) were used for miRNA quantification. The qPCR were performed on a 7900 HT Fast Real-Time PCR System (Applied Biosystems) and analyzed using Sequence Detection System 2.3 software. In addition, all patients at the Department of Neurology and Stroke undergo a routine complete blood count with differential. The main objective of this study was to evaluate the expression of selected microRNA (has-miR-let-7a, miR-92a, and miR-648a) in the plasma of patients with MS during a relapse as well as in remission and attempt to correlate the acquired data with clinically relevant parameters of the disease. Finding such correlations may potentially lead to the use of miRNA as a biomarker of MS, which could help diagnose the disease and assess its severity and the efficacy of treatment. The difference in the expression of has-miR-let-7a in the remission group and the control group was statistically significant (p = 0.002). Similarly, the expression of miRNA-648a in patients in remission was significantly different from the expression in the control group (p = 0.02). Analysis of the correlation between the expression of miRNA-92a and the severity of the disease as measured by the EDSS scale in patients undergoing relapse showed significant negative linear correlation (r = -0.54, p = 0.01). Higher miR-648a expression correlated with more frequent flare-ups in the joint group of patients in remission and relapse (p = 0.03). This study is one of the few that demonstrate significantly changed expression of selected extracellular miRNA in plasma of MS patients and correlate those findings with clinical parameters. These observations may suggest that some miRNA subsets may be potential biomarkers for MS activity.
Insights
This study found that specific microRNAs (miRNAs) in the blood plasma of multiple sclerosis (MS) patients show altered expression levels. These microRNA changes correlate with disease activity, suggesting their potential as biomarkers for MS.
Area of Science:
- Neuroscience
- Genetics
- Biochemistry
Background:
- Multiple sclerosis (MS) is a central nervous system autoimmune disease characterized by demyelination.
- Current diagnostic and monitoring methods for MS lack specificity and sensitivity.
- MicroRNAs (miRNAs) are small noncoding RNAs involved in gene regulation and are being investigated as potential biomarkers.
Purpose of the Study:
- To evaluate the expression levels of specific extracellular microRNAs (miRNA-let-7a, miRNA-92a, miRNA-648a) in the plasma of patients with MS during relapse and remission.
- To correlate these miRNA expression levels with clinical parameters of MS disease activity and severity.
Main Methods:
- Plasma samples were collected from 37 MS patients (20 in relapse, 17 in remission) and 30 healthy controls.
- Extracellular miRNAs were isolated using a miRNeasy Mini Kit and quantified via TaqMan® microRNA assays and qPCR.
- Bioinformatic analysis guided the selection of target miRNAs based on existing literature.
Main Results:
- Statistically significant differences in has-miR-let-7a and miRNA-648a expression were observed between MS patients in remission and healthy controls.
- A significant negative linear correlation was found between miRNA-92a expression and the Expanded Disability Status Scale (EDSS) score in relapsing MS patients.
- Higher miR-648a expression correlated with increased disease flare-ups in both relapsing and remitting MS patients.
Conclusions:
- Selected extracellular miRNAs (has-miR-let-7a, miRNA-92a, miRNA-648a) show altered expression in MS patients.
- These miRNAs demonstrate potential as biomarkers for diagnosing MS, assessing disease activity, and monitoring treatment efficacy.
- Further research is warranted to validate these findings and explore their clinical utility in managing MS.

