Modular nucleic acid-based construct for delivery of immunostimulatory agonists and oncogene-silencing oligonucleotides in tumours
- Nat Biomed Eng. 2026 Jun 3. doi: 10.1038/s41551-026-01652-4.
- 1. School of Life Sciences, Faculty of Medicine, Tianjin University, Tianjin, China.
- 2. Zhejiang Cancer Hospital, The Key Laboratory of Zhejiang Province for Aptamers and Theranostics, Hangzhou Institute of Medicine, Chinese Academy of Sciences, Hangzhou, China.
- 3. School of Molecular Medicine, Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences, Hangzhou, China.
- 4. Zhejiang Cancer Hospital, The Key Laboratory of Zhejiang Province for Aptamers and Theranostics, Hangzhou Institute of Medicine, Chinese Academy of Sciences, Hangzhou, China. [email protected].
- 5. Zhejiang Cancer Hospital, The Key Laboratory of Zhejiang Province for Aptamers and Theranostics, Hangzhou Institute of Medicine, Chinese Academy of Sciences, Hangzhou, China. [email protected].
- # Contributed equally.
Systemic delivery of nucleic acid therapeutics to tissues outside the liver remains difficult because of rapid clearance, off-target accumulation and inefficient cellular uptake. Here we developed a multifunctional construct that assembles circular nucleic acids for targeted delivery, termed circular functional molecular flare. These constructs are produced by ligase-mediated, DNA-templated polymerization: short codons encoding Aptamers, oncogene-silencing oligonucleotides, CpG motifs and drug conjugates are hybridized onto circular templates and covalently linked to form stable structures with defined composition and valence. The resulting molecules enable co-delivery of immunostimulatory agonists and cytotoxins to remodel the tumour microenvironment and activate antigen-presenting cells, eliciting potent antitumour immune responses in mouse models. Aptamer-antisense chimeras achieve selective knockdown of the oncogenic Kirsten rat sarcoma viral oncogene homologue transcript in pancreatic Cancer through RNase H-mediated degradation of its messenger RNA, suppressing tumour growth without transfection reagents. These findings establish circular functional molecular flare as a chemically programmable approach for engineering targeted nucleic acid therapeutics with improved stability, specificity and efficacy in extrahepatic disease models.
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Cat. No.Product NameDescriptionTargetResearch Area
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Research Areas: Cancer
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Research Areas: Metabolic Disease
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target: Glycosidase
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target: Toll-like Receptor (TLR)Research Areas: Inflammation/Immunology