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IGF1R-Targeted Delivery of a Bridged Nucleic Acid Oligonucleotide-Peptide Conjugate for MicroRNA-21 Inhibition in
Abstract:
Triple-negative breast cancer (TNBC), defined by the absence of ER, PR, and Her2, impacts over 46,000 U.S. women annually, disproportionately affecting minority ethnic groups and individuals with BRCA1 mutations. Despite advancements such as PARP inhibitors, TNBC remains highly aggressive, with frequent recurrences and a 50% mortality rate within four years, underscoring the urgent need for more effective targeted therapies. MicroRNAs (miRNAs) represent a novel therapeutic approach. In TNBC, overexpressed miR-21 drives tumor progression, immune evasion, treatment resistance, and metastasis. Targeted miR-21 inhibition could curb these effects while minimizing harm to normal cells. We developed a peptide-conjugated miR-21 inhibitor targeting TNBC cells via the overexpressed IGF1 receptor (IGF1R), associated with poor prognosis. Using aminomethyl-bridged nucleic acid (BNA) chemistry, a serum-stable, low-toxicity anti-miR-21 RNA analog was created and tested for its effects on TNBC cell proliferation, apoptosis, tumor suppressor expression, and immune checkpoint regulation. Conjugation to an IGF1 peptide analog improved delivery, demonstrating tumor-specific biodistribution, efficacy, and safety in TNBC-bearing mice. The miR-21 inhibitor-peptide conjugate reduced proliferation, induced apoptosis, elevated tumor suppressors, and suppressed immune checkpoints in TNBC cell lines. In vivo , it targeted tumors, halted growth, and showed no liver or kidney toxicity, supporting its potential as a targeted, low-toxicity TNBC therapy.
Insights
A novel peptide inhibitor targeting miR-21 shows promise for treating triple-negative breast cancer (TNBC). This targeted therapy effectively reduced tumor growth and toxicity in preclinical models, offering a potential new treatment option for aggressive TNBC.
Area of Science:
- Oncology
- Molecular Biology
- Drug Development
Background:
- Triple-negative breast cancer (TNBC) is aggressive, with high mortality and limited targeted therapies.
- MicroRNAs, specifically overexpressed miR-21, drive TNBC progression, immune evasion, and treatment resistance.
- Targeting miR-21 offers a potential strategy to overcome TNBC challenges.
Purpose of the Study:
- To develop and evaluate a novel peptide-conjugated inhibitor targeting miR-21 for TNBC treatment.
- To assess the efficacy and safety of this targeted therapy in preclinical TNBC models.
Main Methods:
- Development of a serum-stable, low-toxicity anti-miR-21 RNA analog using BNA chemistry.
- Conjugation of the anti-miR-21 analog to an IGF1 receptor-targeting peptide.
- In vitro assessment of effects on TNBC cell proliferation, apoptosis, and immune checkpoints.
- In vivo evaluation of tumor targeting, efficacy, and toxicity in TNBC-bearing mice.
Main Results:
- The peptide-conjugated miR-21 inhibitor demonstrated targeted delivery to TNBC cells via IGF1R.
- In vitro studies showed reduced proliferation, induced apoptosis, and modulated immune checkpoints.
- In vivo studies confirmed tumor-specific biodistribution, halted tumor growth, and exhibited no significant liver or kidney toxicity.
Conclusions:
- Peptide-conjugated miR-21 inhibition is a promising targeted therapy for TNBC.
- This approach offers potential for improved efficacy and reduced toxicity compared to conventional treatments.
- Further development could lead to a novel therapeutic option for patients with aggressive TNBC.
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