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Updated: Nov 3, 2025

MicroRNA Amplification and Recognition through Locked-nucleic-acid In situ Hybridization as A Novel Detection and Quantification Method
Published on: October 7, 2025
MicroRNA Therapeutics in Cancer: Current Advances and Challenges
Soha Reda El Sayed1, Justine Cristante1,2, Laurent Guyon1
1University Grenoble Alpes, INSERM, CEA, Interdisciplinary Research Institute of Grenoble (IRIG), Biology and Biotechnologies for Health UMR_1292, F-38000 Grenoble, France.
Abstract:
The discovery of microRNAs (miRNAs) in 1993 has challenged the dogma of gene expression regulation. MiRNAs affect most of cellular processes from metabolism, through cell proliferation and differentiation, to cell death. In cancer, deregulated miRNA expression leads to tumor development and progression by promoting acquisition of cancer hallmark traits. The multi-target action of miRNAs, which enable regulation of entire signaling networks, makes them attractive tools for the development of anti-cancer therapies. Hence, supplementing downregulated miRNA by synthetic oligonucleotides or silencing overexpressed miRNAs through artificial antagonists became a common strategy in cancer research. However, the ultimate success of miRNA therapeutics will depend on solving pharmacokinetic and targeted delivery issues. The development of a number of nanocarrier-based platforms holds significant promises to enhance the cell specific controlled delivery and safety profile of miRNA-based therapies. In this review, we provide among the most comprehensive assessments to date of promising nanomedicine platforms that have been tested preclinically, pertaining to the treatment of selected solid tumors including lung, liver, breast, and glioblastoma tumors as well as endocrine malignancies. The future challenges and potential applications in clinical oncology are discussed.
Insights
MicroRNAs (miRNAs) regulate gene expression and are crucial in cancer. Nanomedicine platforms show promise for targeted delivery of miRNA-based cancer therapies, addressing key delivery challenges.
Area of Science:
- Molecular Biology
- Genetics
- Oncology
Background:
- MicroRNAs (miRNAs) are key regulators of gene expression, impacting cellular processes like proliferation and differentiation.
- Deregulation of miRNA expression is implicated in cancer development and progression.
- miRNAs' ability to target multiple genes makes them promising candidates for anti-cancer therapeutics.
Purpose of the Study:
- To review nanomedicine platforms for miRNA-based cancer therapy.
- To assess preclinical data on nanomedicine delivery of miRNAs for solid tumors and endocrine malignancies.
Main Methods:
- Comprehensive literature review of nanomedicine platforms for miRNA therapeutics.
- Analysis of preclinical studies focusing on lung, liver, breast, glioblastoma, and endocrine tumors.
Main Results:
- Nanocarrier-based platforms demonstrate potential for enhanced, controlled delivery of miRNA therapeutics.
- Preclinical data suggest feasibility of miRNA-based treatments for various solid tumors.
Conclusions:
- Nanomedicine offers solutions for pharmacokinetic and delivery challenges in miRNA-based cancer therapy.
- Further development is needed to overcome future challenges for clinical application in oncology.
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