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MicroRNA Based Liquid Biopsy: The Experience of the Plasma miRNA Signature Classifier MSC for Lung Cancer Screening
Published on: October 26, 2017
Diagnostic implication of a circulating serum-based three-microRNA signature in hepatocellular carcinoma
Tahira Yousuf1,2, Sadaf Bashir Dar1, Sadaf Ali Bangri3
1Advance Centre for Human Genetics, Sher-I-Kashmir Institute of Medical Sciences (SKIMS), Srinagar, Jammu and Kashmir, India.
Insights
Hepatocellular carcinoma (HCC) diagnosis can be improved using a novel panel of three microRNAs (miRNAs) combined with alpha-fetoprotein (AFP) levels. This biomarker combination offers higher accuracy for early HCC detection and potential therapeutic targets.
Area of Science:
- Oncology
- Molecular Biology
- Biomarker Discovery
Background:
- Hepatocellular carcinoma (HCC) poses a significant global health challenge due to diagnostic difficulties and poor prognosis.
- Current diagnostic methods, including imaging and alpha-fetoprotein (AFP) levels, lack sensitivity for early-stage HCC detection.
- Novel circulating biomarkers are urgently needed to enhance diagnostic accuracy and surveillance for HCC.
Purpose of the Study:
- To investigate the diagnostic potential of ten candidate microRNAs (miRNAs) for hepatocellular carcinoma (HCC).
- To identify a miRNA signature with improved diagnostic accuracy compared to conventional methods.
- To explore the functional roles of miRNA targets in HCC pathogenesis.
Main Methods:
- Quantitative reverse transcription polymerase chain reaction (rt-PCR) was used to measure the expression of ten candidate miRNAs in serum and tissue from 33 HCC patients and 33 healthy controls.
- Receiver operating characteristic (ROC) curve analysis was employed to assess the diagnostic performance of individual miRNAs and a miRNA panel.
- Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis was performed on predicted target genes of a three-miRNA signature.
Main Results:
- Seven miRNAs (Let-7a, miR-26a, miR-124, miR-155, miR-221, miR-222, and miR-340) showed differential expression in HCC patients compared to healthy controls (p < 0.05).
- A three-miRNA panel (Let-7a, miR-221, miR-222) demonstrated high diagnostic efficiency (AUC = 0.932).
- Combining the three-miRNA panel with AFP significantly improved HCC diagnostic accuracy (AUC = 0.961) compared to AFP alone (AUC = 0.758).
Conclusions:
- A three-miRNA panel (Let-7a, miR-221, miR-222) combined with AFP serves as a highly accurate biomarker for HCC diagnosis.
- This combined classifier enhances diagnostic performance beyond conventional methods, aiding in early detection.
- Targeting predicted genes associated with HCC and cell-cycle regulation may offer novel therapeutic strategies for aggressive HCC.
Abstract:
Owing to the diagnostic dilemma, the prognosis of hepatocellular carcinoma (HCC) remains impoverished, contributing to the globally high mortality rate. Currently, HCC diagnosis depends on the combination of imaging modalities and the measurement of serum alpha-fetoprotein (AFP) levels. Nevertheless, these conventional modalities exhibit poor performance in detecting HCC at early stages. Thus, there is a pressing need to identify novel circulating biomarkers to promote diagnostic accuracy and surveillance. Circulating miRNAs are emerging as promising diagnostic tools in screening various cancers, including HCC. However, because of heterogenous and, at times, contradictory reports, the universality of miRNAs in clinical settings remains elusive. Consequently, we proposed to explore the diagnostic potential of ten miRNAs selected on a candidate-based approach in HCC diagnosis. The expression of ten candidate miRNAs (Let-7a, miR-15a, miR-26a, miR-124, miR-126, miR-155, miR-219, miR-221, miR-222, and miR-340) was investigated in serum and tissue of 66 subjects, including 33 HCC patients and 33 healthy controls (HC), by rt-PCR. Receiver operating characteristic curve (ROC) analysis was used to determine the diagnostic accuracy of the prospective serum miRNA panel. To anticipate the potential biological roles of a three-miRNA signature, the target genes were evaluated using the Kyoto Encyclopedia of Genes and Genomes (KEGG) signaling pathway. The serum and tissue expression of miRNAs (Let-7a, miR-26a, miR-124, miR-155, miR-221, miR-222, and miR-340) were differentially expressed in HCC patients (p < 0.05). The ROC analysis revealed promising diagnostic performance of Let-7a (AUC = 0.801), miR-221 (AUC = 0.786), and miR-2 (AUC = 0.758) in discriminating HCC from HC. Furthermore, in a logistic regression equation, we identified a three-miRNA panel (Let-7a, miR-221, and miR-222; AUC = 0.932) with improved diagnostic efficiency in differentiating HCC from HC. Remarkably, the combination of AFP and a three-miRNA panel offered a higher accuracy of HCC diagnosis (AUC = 0.961) than AFP alone. The functional enrichment analysis demonstrated that target genes may contribute to pathways associated with HCC and cell-cycle regulation, indicating possible crosstalk of miRNAs with HCC development. To conclude, the combined classifier of a three-miRNA panel and AFP could be indispensable circulating biomarkers for HCC diagnosis. Furthermore, targeting predicted genes may provide new therapeutic clues for the treatment of aggressive HCC.
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