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Updated: Jun 8, 2026

Detection of a Circulating MicroRNA Custom Panel in Patients with Metastatic Colorectal Cancer
Published on: March 14, 2019
Specific alterations of microRNA transcriptome and global network structure in colorectal carcinoma after cetuximab
Marco Ragusa1, Alessandra Majorana, Luisa Statello
1Dipartimento di Scienze BioMediche, Sezione di Biologia Generale, Biologia Cellulare, Genetica Molecolare, Unità di BioMedicina Molecolare Genomica e dei Sistemi Complessi, Genetica, Biologia Computazionale G Sichel, 95123 Catania, Italy.
Abstract:
The relationship between therapeutic response and modifications of microRNA (miRNA) transcriptome in colorectal cancer (CRC) remains unknown. We investigated this issue by profiling the expression of 667 miRNAs in 2 human CRC cell lines, one sensitive and the other resistant to cetuximab (Caco-2 and HCT-116, respectively), through TaqMan real-time PCR. Caco-2 and HCT-116 expressed different sets of miRNAs after treatment. Specifically, 21 and 22 miRNAs were differentially expressed in Caco-2 or HCT-116, respectively (t test, P < 0.01). By testing the expression of differentially expressed miRNAs in CRC patients, we found that miR-146b-3p and miR-486-5p are more abundant in K-ras-mutated samples with respect to wild-type ones (Wilcoxon test, P < 0.05). Sixty-seven percent of differentially expressed miRNAs were involved in cancer, including CRC, whereas 19 miRNA targets had been previously reported to be involved in the cetuximab pathway and CRC. We identified 25 transcription factors putatively controlling these miRNAs, 11 of which have been already reported to be involved in CRC. On the basis of these data, we suggest that the downregulation of let-7b and let-7e (targeting K-ras) and the upregulation of miR-17* (a CRC marker) could be considered as candidate molecular markers of cetuximab resistance. Global network functional analysis (based on miRNA targets) showed a significant overrepresentation of cancer-related biological processes and networks centered on critical nodes involved in epidermal growth factor receptor internalization and ubiquitin-mediated degradation. The identification of miRNAs, whose expression is linked to the efficacy of therapy, should allow the ability to predict the response of patients to treatment and possibly lead to a better understanding of the molecular mechanisms of drug response.
Insights
Investigating microRNA (miRNA) changes in colorectal cancer (CRC) revealed potential biomarkers for cetuximab resistance. Specific miRNA alterations correlate with therapeutic response, offering insights into drug resistance mechanisms.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- The impact of microRNA (miRNA) transcriptome modifications on therapeutic response in colorectal cancer (CRC) is not well understood.
- Cetuximab is a targeted therapy for CRC, but resistance mechanisms require further elucidation.
Purpose of the Study:
- To investigate the relationship between therapeutic response to cetuximab and miRNA expression profiles in colorectal cancer.
- To identify candidate molecular markers for predicting cetuximab resistance in CRC patients.
Main Methods:
- Profiling of 667 miRNAs using TaqMan real-time PCR in cetuximab-sensitive (Caco-2) and resistant (HCT-116) CRC cell lines.
- Differential expression analysis of miRNAs in cell lines and validation in CRC patient samples.
- Bioinformatic analysis including transcription factor identification and global network functional analysis of miRNA targets.
Main Results:
- Significant differential expression of 21 and 22 miRNAs in Caco-2 and HCT-116 cell lines, respectively, post-treatment.
- miR-146b-3p and miR-486-5p were more abundant in K-ras-mutated CRC samples.
- Downregulation of let-7b/let-7e and upregulation of miR-17* were suggested as potential markers for cetuximab resistance.
Conclusions:
- Specific miRNA expression patterns are associated with cetuximab response and resistance in colorectal cancer.
- Identified miRNAs and their targets are involved in critical cancer-related pathways, including EGFR signaling.
- These findings may aid in predicting patient response to cetuximab and understanding drug resistance mechanisms.
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