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Published on: March 14, 2019
Assessment of circulating microRNA specific for patients with familial adenomatous polyposis
Tomoki Yamano1, Shuji Kubo2, Emiko Sonoda2
1Division of Lower GI Surgery, Department of Surgery, Hyogo College of Medicine, Hyogo, Japan.
Abstract:
Circulating microRNAs (miRNAs) are considered promising biomarkers for diagnosis, prognosis, and treatment efficacy of diseases. However, usefulness of circulating miRNAs as biomarkers for hereditary gastrointestinal diseases have not been confirmed yet. We explored circulating miRNAs specific for patients with familial adenomatous polyposis (FAP) as a representative hereditary gastrointestinal disease. Next-generation sequencing (NGS) indicated that plasma miR-143-3p, miR-183-5p, and miR-885-5p were candidate biomarkers for five FAP patients compared to three healthy donors due to moderate copy number and significant difference. MiR-16-5p was considered as an internal control due to minimum difference in expression across FAP patients and healthy donors. Validation studies by real-time PCR showed that mean ratios of maximum expression and minimum expression were 2.2 for miR-143-3p/miR-16-5p, 3.4 for miR-143-3p/miR-103a-3p, 5.1 for miR-183-5p/miR-16-5p, and 4.9 for miR-885-5p/miR-16-5p by using the samples collected at different time points of eight FAP patients. MiR-143-3p/16-5p was further assessed using specimens from 16 FAP patients and 7 healthy donors. MiR-143-3p was upregulated in FAP patients compared to healthy donors (P = 0.04), but not significantly influenced by clinicopathological features. However, miR-143-3p expression in colonic tumors was rare for upregulation, although there was a significant difference by existence of desmoid tumors. MiR-143-3p transfection significantly inhibited colorectal cancer cell proliferation compared to control microRNA transfection. Our data suggested regulation of miR-143-3p expression differed by samples (plasma or colonic tumors) in most FAP patients. Upregulation of plasma miR-143-3p expression may be helpful for diagnosis of FAP, although suppressive effect on tumorigenesis seemed insufficient in FAP patients.
Insights
Plasma miR-143-3p may serve as a biomarker for familial adenomatous polyposis (FAP). While upregulated in FAP patients
Area of Science:
- Molecular biology
- Genetics
- Oncology
Background:
- Circulating microRNAs (miRNAs) show potential as disease biomarkers, but their utility in hereditary gastrointestinal diseases remains unconfirmed.
- Familial adenomatous polyposis (FAP) is a representative hereditary gastrointestinal disease.
- Identifying specific circulating miRNAs for FAP can advance diagnostic capabilities.
Purpose of the Study:
- To explore and validate circulating miRNAs as potential biomarkers for familial adenomatous polyposis (FAP).
- To investigate the diagnostic utility of specific miRNAs in FAP patients.
- To assess the relationship between miRNA expression and FAP clinicopathological features.
Main Methods:
- Next-generation sequencing (NGS) was employed to identify candidate circulating miRNAs in FAP patients versus healthy donors.
- Real-time PCR (polymerase chain reaction) was used for validation of candidate miRNAs, including miR-143-3p, miR-183-5p, miR-885-5p, and miR-16-5p (internal control).
- Expression levels were analyzed in plasma samples from FAP patients and healthy donors, and correlated with clinicopathological data.
Main Results:
- NGS identified miR-143-3p, miR-183-5p, and miR-885-5p as candidate biomarkers in FAP patients.
- Real-time PCR validation confirmed upregulation of plasma miR-143-3p in FAP patients (P = 0.04) compared to healthy controls.
- miR-143-3p expression in plasma differed from colonic tumors and showed a significant association with desmoid tumors, but its suppressive effect on colorectal cancer cell proliferation was limited in FAP.
Conclusions:
- Plasma miR-143-3p upregulation shows potential as a diagnostic biomarker for FAP.
- The expression regulation of miR-143-3p differs between plasma and colonic tumors in FAP patients.
- While promising for diagnosis, miR-143-3p's role in suppressing tumorigenesis in FAP patients appears insufficient.
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