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Dual CRISPR-Interference Strategy for Targeting Synthetic Lethal Interactions Between Non-Coding RNAs in Cancer Cells
Published on: May 30, 2025
A dual-locked cyclopeptide-siRNA conjugate for tumor-specific gene silencing
Chen Li1, Shuaishuai Sun2, Hao Kong1
1State Key Laboratory of Analytical Chemistry for Life Sciences, Jiangsu Key Laboratory of Advanced Organic Materials, School of Chemistry and Chemical Engineering, Chemistry and Biomedicine Innovation Center (ChemBIC), Nanjing University Nanjing 210023 China njuzy@nju.edu.cn jinboli@nju.edu.cn.
Abstract:
Strategies allowing tumor-selective siRNA delivery while minimizing off-tumor gene silencing effects are highly demanded to advance cancer gene therapy, which however still remain challenging. We herein report a dual-locking bioconjugation approach to address this challenge. A dual-locked cyclopeptide-siRNA conjugate (DPRC) was designed to simultaneously endow siRNA with tumor-targeting properties and tumor-biomarker/visible-light dually controllable action. The DPRC consisted of a programmed death-ligand 1 (PD-L1)-targeting cyclopeptide as a tumor-homing ligand and B-cell lymphoma-2 (Bcl-2)-targeting siRNA as a payload. They were conjugated via a tandem-responsive cleavable linker containing a photocleavable coumarin moiety quenched by naphthylamide through a disulfide linkage. Owing to the interaction between cell-membrane PD-L1 and the cyclopeptide, the DPRC was efficiently taken up by PD-L1-positive cancer cells. Notably, the internalized DPRC could only release and restore the gene silencing activity of siBcl-2 upon GSH-mediated disulfide bond breakage followed by visible light irradiation on the coumarin moiety to induce photo-cleavage. The released siBcl-2 further silenced the expression of anti-apoptotic Bcl-2 to suppress cancer cell growth. We demonstrated the tumor-targeting and dual-locked action of siRNA by the DPRC in both two-dimensional and three-dimensional cancer cell cultures. This study thus presents a novel strategy for precise tumor-specific gene silencing by siRNA.
Insights
A novel dual-locked cyclopeptide-siRNA conjugate (DPRC) enables precise tumor-specific gene silencing. This approach enhances cancer gene therapy by targeting cancer cells and requiring dual triggers for siRNA release, minimizing off-tumor effects.
Area of Science:
- Bioconjugation Chemistry
- Cancer Gene Therapy
- Molecular Targeted Therapy
Background:
- Developing tumor-selective siRNA delivery is crucial for effective cancer gene therapy.
- Minimizing off-tumor gene silencing remains a significant challenge in current strategies.
Purpose of the Study:
- To design a dual-locking bioconjugation approach for tumor-selective siRNA delivery.
- To achieve tumor-targeting and dually controllable siRNA action for enhanced cancer treatment.
Main Methods:
- Constructed a dual-locked cyclopeptide-siRNA conjugate (DPRC) using a PD-L1-targeting cyclopeptide and Bcl-2-targeting siRNA.
- Utilized a tandem-responsive cleavable linker with photocleavable and disulfide bonds for controlled release.
- Investigated cellular uptake and gene silencing in 2D and 3D cancer cell cultures.
Main Results:
- DPRC demonstrated efficient uptake by PD-L1-positive cancer cells.
- siRNA release and gene silencing activity were triggered by GSH and visible light.
- Successful suppression of cancer cell growth through silencing of anti-apoptotic Bcl-2 was observed.
Conclusions:
- The dual-locking bioconjugation strategy offers precise tumor-specific gene silencing.
- This approach holds promise for advancing cancer gene therapy by improving selectivity and control.
- The developed DPRC system represents a novel platform for targeted siRNA delivery.
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