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Targeting lncRNAs to Overcome Cancer Therapy Resistance: Advances in RNA Therapeutics and Delivery Strategies
Christos Drosos1, Athina Kapsi1, Anthi Nikolaidou1
1Department of Biochemistry and Biotechnology, University of Thessaly, Biopolis, Mezourlo, 41500 Larissa, Greece.
Abstract:
Non-coding RNAs (ncRNAs) are increasingly recognized as important regulators of cancer biology. Long non-coding RNAs (lncRNAs), defined as transcripts longer than 200 nucleotides, gain particular attention due to their cancer-specific expression patterns and functional roles in tumor progression, metastasis and therapeutic resistance. Although lncRNAs have been extensively studied as diagnostic, prognostic and predictive biomarkers, growing evidence indicates that they can also act as active mediators of therapeutic resistance, supporting their potential as therapeutic candidates. Here, we summarize how lncRNAs contribute to resistance against radiotherapy, chemotherapy, immunotherapy and targeted therapy, highlighting their molecular mechanisms. Next, we discuss RNA-based therapeutics as a strategy to target disease-relevant transcripts, focusing on antisense oligonucleotides (ASOs), small interfering RNAs (siRNAs), microRNA (miRNA) mimics and antimiRs, as well as approved RNA therapeutic agents, oncology-focused candidates in clinical development and emerging preclinical approaches directed against lncRNAs or lncRNA-controlled regulatory axes. Finally, we examine delivery platforms, including lipid-based nanovectors, extracellular vesicles, polymeric systems and other approaches designed to overcome key translational barriers, such as RNA instability, off-target effects, immune activation, renal clearance and inefficient tumor-specific delivery. By connecting lncRNA-mediated resistance mechanisms with RNA therapeutic strategies and delivery technologies, this review highlights lncRNA-directed RNA therapeutics as a promising yet developing approach in oncology.
Insights
Long non-coding RNAs (lncRNAs) drive cancer therapeutic resistance. Targeting these lncRNAs with RNA therapeutics, utilizing advanced delivery systems, offers a promising new strategy to overcome treatment failure in oncology.
Area of Science:
- Oncology
- Molecular Biology
- RNA Therapeutics
Background:
- Non-coding RNAs (ncRNAs), particularly long non-coding RNAs (lncRNAs), are crucial regulators in cancer.
- lncRNAs exhibit cancer-specific expression and influence tumor progression, metastasis, and drug resistance.
- Beyond biomarkers, lncRNAs are emerging as therapeutic targets due to their active role in resistance.
Purpose of the Study:
- To review the role of lncRNAs in mediating resistance to various cancer therapies.
- To discuss RNA-based therapeutic strategies targeting lncRNAs.
- To examine delivery platforms for RNA therapeutics in oncology.
Main Methods:
- Literature review of lncRNA functions in therapeutic resistance.
- Analysis of RNA-based therapeutic modalities (ASOs, siRNAs, miRNA mimics/antimiRs).
- Evaluation of delivery systems for RNA therapeutics (lipid-based, EVs, polymeric).
Main Results:
- lncRNAs contribute to resistance against radiotherapy, chemotherapy, immunotherapy, and targeted therapy via distinct molecular mechanisms.
- Various RNA therapeutics, including approved agents and clinical candidates, are being developed to target lncRNAs.
- Delivery platforms are crucial for overcoming challenges like RNA instability and inefficient tumor delivery.
Conclusions:
- lncRNAs are key mediators of cancer therapeutic resistance.
- lncRNA-directed RNA therapeutics represent a promising, albeit developing, approach in oncology.
- Effective delivery systems are essential for the clinical translation of lncRNA-targeted therapies.
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