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An In Vitro Protocol for Evaluating MicroRNA Levels, Functions, and Associated Target Genes in Tumor Cells
Published on: May 21, 2019
Micro-RNA response to imatinib mesylate in patients with chronic myeloid leukemia
Stéphane Flamant1, William Ritchie, Joëlle Guilhot
1Gene and Stem Cell Therapy Program, Centenary Institute, Locked Bag No 6, Newtown, NSW 2042, Australia.
Background:
Micro-RNAs (miRNAs) control gene expression by destabilizing targeted transcripts and inhibiting their translation. Aberrant expression of miRNAs has been described in many human cancers, including chronic myeloid leukemia. Current first-line therapy for newly diagnosed chronic myeloid leukemia is imatinib mesylate, which typically produces a rapid hematologic response. However the effect of imatinib on miRNA expression in vivo has not been thoroughly examined.
Design And Methods:
Using a TaqMan Low-Density Array system, we analyzed miRNA expression in blood samples from newly diagnosed chronic myeloid leukemia patients before and within the first two weeks of imatinib therapy. Quantitative real-time PCR was used to validate imatinib-modulated miRNAs in sequential primary chronic myeloid leukemia samples (n=11, plus 12 additional validation patients). Bioinformatic target gene prediction analysis was performed based on changes in miRNA expression.
Results:
We observed increased expression of miR-150 and miR-146a, and reduced expression of miR-142-3p and miR-199b-5p (3-fold median change) after two weeks of imatinib therapy. A significant correlation (P<0.05) between the Sokal score and pre-treatment miR-142-3p levels was noted. Expression changes in the same miRNAs were consistently found in an additional cohort of chronic myeloid leukemia patients, as compared to healthy subjects. Peripheral blood cells from chronic phase and blast crisis patients displayed a 30-fold lower expression of miR-150 compared to normal samples, which is of particular interest since c-Myb, a known target of miR-150, was recently shown to be necessary for Bcr-Abl-mediated transformation.
Conclusions:
We found that imatinib treatment of chronic myeloid leukemia patients rapidly normalizes the characteristic miRNA expression profile, suggesting that miRNAs may serve as a novel clinically useful biomarker in this disease.
Insights
Imatinib therapy for chronic myeloid leukemia (CML) rapidly normalizes micro-RNA (miRNA) expression profiles. These findings suggest miRNAs could be valuable biomarkers for CML patients undergoing treatment.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Micro-RNAs (miRNAs) regulate gene expression and are implicated in various cancers, including chronic myeloid leukemia (CML).
- Imatinib mesylate is the standard first-line therapy for newly diagnosed CML, inducing rapid hematologic responses.
- The impact of imatinib on miRNA expression in vivo remains largely unexamined.
Purpose of the Study:
- To investigate the effect of imatinib therapy on miRNA expression in patients with chronic myeloid leukemia.
- To identify specific miRNAs modulated by imatinib treatment in CML.
- To explore the potential of miRNAs as biomarkers in CML.
Main Methods:
- miRNA expression profiling using TaqMan Low-Density Array in CML patients before and after imatinib initiation.
- Quantitative real-time PCR for validation of imatinib-modulated miRNAs.
- Bioinformatic analysis to predict miRNA target genes based on expression changes.
Main Results:
- Imatinib treatment led to increased expression of miR-150 and miR-146a, and decreased expression of miR-142-3p and miR-199b-5p.
- A significant correlation was observed between pre-treatment miR-142-3p levels and the Sokal score.
- CML patients showed significantly altered miRNA expression compared to healthy individuals, with notably lower miR-150 levels.
Conclusions:
- Imatinib therapy rapidly normalizes the aberrant miRNA expression profile in chronic myeloid leukemia patients.
- These findings highlight the potential of miRNAs as novel, clinically useful biomarkers for CML.
- The modulation of specific miRNAs by imatinib offers insights into the drug's mechanism of action.
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