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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
The Role of microRNAs in Lung Cancer: Mechanisms, Diagnostics and Therapeutic Potential
Elżbieta Bartoszewska1,2, Piotr Misiąg1,2, Melania Czapla1,2
1Faculty of Medicine, Wroclaw Medical University, Mikulicza-Radeckiego 5, 50-345 Wroclaw, Poland.
Abstract:
MicroRNAs (miRNAs) are small RNA molecules that do not have coding functions but play essential roles in various biological processes. In lung cancer, miRNAs affect the processes of tumor initiation, progression, metastasis, and resistance to treatment by regulating gene expression. Tumor-suppressive miRNAs inhibit oncogenic pathways, while oncogenic miRNAs, known as oncomiRs, promote malignant transformation and tumor growth. These dual roles position miRNAs as critical players in lung cancer biology. Studies in recent years have shown the significant potential of miRNAs as both prognostic and diagnostic biomarkers. Circulating miRNAs in plasma or sputum demonstrate specificity and sensitivity in detecting early-stage lung cancer. Liquid biopsy-based miRNA panels distinguish malignant from benign lesions, and specific miRNA expression patterns correlate with disease progression, response to treatment, and overall survival. Therapeutically, miRNAs hold promise for targeted interventions. Strategies such as miRNA replacement therapy using mimics for tumor-suppressive miRNAs and inhibition of oncomiRs with antagomiRs or miRNA sponges have shown preclinical success. Key miRNAs, including the let-7 family, miR-34a, and miR-21, are under investigation for their therapeutic potential. It should be emphasized that delivery difficulties, side effects, and limited stability of therapeutic miRNA molecules remain obstacles to their clinical use. This article examines the roles of miRNAs in lung cancer by indicating their mechanisms of action, diagnostic significance, and therapeutic potential. By addressing current limitations, miRNA-based approaches could revolutionize lung cancer management, offering precise, personalized, and minimally invasive solutions for diagnosis and treatment.
Insights
MicroRNAs (miRNAs) are crucial in lung cancer, impacting tumor growth and treatment resistance. They show promise as diagnostic biomarkers and therapeutic targets, offering personalized lung cancer management.
Area of Science:
- Molecular Biology
- Oncology
- Biochemistry
Background:
- MicroRNAs (miRNAs) are small, non-coding RNA molecules regulating gene expression in biological processes.
- In lung cancer, miRNAs influence tumor initiation, progression, metastasis, and treatment resistance.
- miRNAs exhibit dual roles: tumor-suppressive or oncogenic (oncomiRs).
Purpose of the Study:
- To examine the multifaceted roles of miRNAs in lung cancer.
- To explore their diagnostic and prognostic significance.
- To evaluate their therapeutic potential and associated challenges.
Main Methods:
- Review of current literature on miRNA mechanisms in lung cancer.
- Analysis of studies on circulating miRNAs as biomarkers.
- Investigation of miRNA-based therapeutic strategies and delivery systems.
Main Results:
- Circulating miRNAs in plasma/sputum show high sensitivity and specificity for early lung cancer detection.
- miRNA panels from liquid biopsies can differentiate malignant from benign lesions.
- Specific miRNA expression patterns correlate with prognosis and treatment response.
Conclusions:
- miRNAs are critical regulators in lung cancer, serving as potent diagnostic and prognostic biomarkers.
- Therapeutic strategies like miRNA replacement and inhibition show preclinical promise.
- Overcoming delivery and stability challenges is key for clinical translation of miRNA-based lung cancer therapies.
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