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Isolation and Intravenous Injection of Murine Bone Marrow Derived Monocytes
Published on: December 27, 2014
Circulating microRNA after autologous bone marrow mononuclear cell (BM-MNC) injection in patients with ischemic
Fernando Mancha1,2, Irene Escudero-Martinez1,3, Elena Zapata-Arriaza4
1Neurovascular Laboratory, Instituto de Biomedicina de Sevilla, Sevilla, Spain.
Abstract:
Previous studies have shown the potential of microRNAs (miRNA) in the pathological process of stroke and functional recovery. Bone marrow mononuclear cell (BM-MNC) transplantation improves recovery in experimental models of ischemic stroke that might be related with miRNA modifications. However, its effect on circulating miRNA has not been described in patients with stroke. We aimed to evaluate the circulating levels of miRNAs after autologous BM-MNC transplantation in patients with stroke. We investigate the pattern of miRNA-133b and miRNA-34a expression in patients with ischemic stroke included in a multicenter randomized controlled phase IIb trial (http://www.clinicaltrials.gov; unique identifier: NCT02178657). Patients were randomized to 2 different doses of autologous intra-arterial BM-MNC injection (2×106/kg or 5×106/kg) or control group within the first 7 days after stroke onset. We evaluate plasma concentration of miRNA-113b and miRNA-34a at inclusion and 4, 7, and 90 days after treatment. Thirteen cases (8 with 2×106/kg BM-MNC dose and 5 with 5×106/kg dose) and 11 controls (BM-MNC non-treated) were consecutively included. Mean age was 64.1±12.3 with a mean National Institutes of Health Stroke Scale score at inclusion of 14.5. Basal levels of miRNA were similar in both groups. miR-34a-5p and miR-133b showed different expression patterns. There was a significant dose-dependent increase of miRNA-34a levels 4 days after BM-MNC injection (fold change 3.7, p<0.001), whereas miRNA-133b showed a significant increase in the low-dose BM-MNC group at 90 days. Intra-arterial BM-MNC transplantation in patients with ischemic stroke seems to modulate early circulating miRNA-34a levels, which have been related to precursor cell migration in stroke and smaller infarct volumes.
Insights
Bone marrow mononuclear cell (BM-MNC) transplantation in stroke patients modulated circulating microRNA-34a levels, showing a dose-dependent increase early after treatment. This suggests a potential mechanism for BM-MNC therapy in stroke recovery.
Area of Science:
- Neuroscience
- Regenerative Medicine
- Molecular Biology
Background:
- MicroRNAs (miRNAs) play a role in stroke pathology and recovery.
- Bone marrow mononuclear cell (BM-MNC) transplantation shows promise in experimental stroke models, potentially via miRNA modulation.
- Circulating miRNA changes after BM-MNC transplantation in human stroke patients remain largely undescribed.
Purpose of the Study:
- To evaluate circulating microRNA (miRNA) levels following autologous BM-MNC transplantation in patients with ischemic stroke.
- To investigate the expression patterns of miRNA-133b and miRNA-34a post-treatment.
Main Methods:
- A multicenter, randomized controlled phase IIb trial involving patients with ischemic stroke within 7 days of onset.
- Patients received autologous intra-arterial BM-MNC injections at two different doses (2×10^6/kg or 5×10^6/kg) or served as controls.
- Plasma concentrations of miRNA-34a and miRNA-133b were measured at baseline, and at 4, 7, and 90 days post-treatment.
Main Results:
- Basal miRNA levels were comparable between BM-MNC treated groups and controls.
- A significant, dose-dependent increase in miRNA-34a levels was observed 4 days after BM-MNC injection (fold change 3.7, p<0.001).
- MiRNA-133b showed a significant increase in the low-dose BM-MNC group at 90 days post-treatment.
Conclusions:
- Intra-arterial BM-MNC transplantation in ischemic stroke patients modulates early circulating miRNA-34a levels.
- The observed changes in miRNA-34a are linked to precursor cell migration in stroke and potentially smaller infarct volumes.
- These findings highlight a potential therapeutic mechanism of BM-MNC transplantation in stroke recovery.
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