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Updated: Jul 9, 2026

MicroRNA Amplification and Recognition through Locked-nucleic-acid In situ Hybridization as a Novel Detection and Quantification Method
Published on: October 7, 2025
MicroRNAs as potential agents to alter resistance to cytotoxic anticancer therapy
Joanne B Weidhaas1, Imran Babar, Sunitha M Nallur
1Department of Therapeutic Radiology, Yale University School of Medicine, 333 Cedar Street, P. O. Box 208040, New Haven, CT 06520, USA. joanne.weidhaas@yale.edu
Abstract:
Tumor cells use preexisting prosurvival signaling pathways to evade the damaging and cytotoxic effects of anticancer agents. Radiation therapy is a primary form of cytotoxic anticancer treatment, but agents that successfully modify the radiation response in vivo are lacking. MicroRNAs (miRNA) are global gene regulators that play critical roles in oncogenesis and have been found to regulate prosurvival pathways. However, there is little understanding of how cellular miRNA expression affects the response of a cancer to cytotoxic therapy and ultimately outcome. The let-7 family of miRNAs regulates expression of oncogenes, such as RAS, and is specifically down-regulated in many cancer subtypes. In fact, low levels of let-7 predict a poor outcome in lung cancer. Here, we report that the let-7 family of miRNAs is overrepresented in a class of miRNAs exhibiting altered expression in response to radiation. More strikingly, we also can create a radiosensitive state when the select let-7 family of miRNAs is overexpressed in vitro in lung cancer cells and in vivo in a Caenorhabditis elegans model of radiation-induced cell death, whereas decreasing their levels causes radioresistance. In C. elegans, we show that this is partly through control of the proto-oncogene homologue let-60/RAS and genes in the DNA damage response pathway. These findings are the first direct evidence that miRNAs can suppress resistance to anticancer cytotoxic therapy, a common feature of cancer cells, and suggest that miRNAs may be a viable tool to augment current cancer therapies.
Insights
MicroRNAs (miRNAs) can overcome cancer
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Tumor cells evade cytotoxic anticancer treatments via prosurvival pathways.
- Effective in vivo radiation response modifiers are lacking.
- MicroRNAs (miRNAs) regulate gene expression and prosurvival pathways, but their role in therapy response is unclear.
Purpose of the Study:
- To investigate the role of miRNA expression in cancer response to cytotoxic therapy.
- To determine if the let-7 miRNA family can modify radiation sensitivity.
Main Methods:
- Analysis of miRNA expression in response to radiation.
- Overexpression and knockdown of let-7 miRNAs in vitro (lung cancer cells) and in vivo (C. elegans model).
- Assessed radiation sensitivity, cell death, and DNA damage response pathways.
Main Results:
- The let-7 miRNA family expression is altered by radiation.
- Overexpression of let-7 miRNAs induced radiosensitivity in lung cancer cells and C. elegans.
- Decreased let-7 miRNA levels led to radioresistance, partly via let-60/RAS and DNA damage response pathways.
Conclusions:
- miRNAs can suppress cancer cell resistance to cytotoxic therapy.
- The let-7 family of miRNAs plays a role in modulating radiation response.
- miRNAs represent a potential strategy to enhance current anticancer therapies.
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