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February 21, 2026Nano Letters2 citations

Strengthening Antisense Oligonucleotide-Mediated Anti-Tumor Immunity via Metal–Organic Framework Nanoparticles

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JNJulia A. NowakECEzra ChoMDMeredith A. Davis

Key Points

  • To explore a novel method of delivering antisense oligonucleotides (ASOs) to enhance anti-tumor immunity.
  • Used metal–organic frameworks (MOFs) to deliver PD-L1-specific ASOs.
  • Characterized the release rate of ASOs from NU-1000 MOFs.
  • Evaluated the effect on PD-L1 expression in triple negative breast cancer and melanoma.
  • Sustained ASO release for up to 7 days.
  • Reduced PD-L1 expression in targeted cancer types.
  • Increased T cell proliferation and caspase-3 expression, enhancing tumor cell killing.

Abstract

Tumor overexpression of programmed death-ligand one (PD-L1) inhibits immune recognition. Existing monoclonal antibodies are fragile and penetrate tumors poorly, leading to variable outcomes. Antisense oligonucleotides (ASOs) can reduce PD-L1 expression, but require frequent high dosing due to rapid degradation, clearance, and poor uptake. To overcome this, we harnessed metal–organic frameworks (MOFs) to protect and deliver ASOs, reducing PD-L1 expression and elevating downstream immunity. With various PD-L1-specific ASOs loaded into NU-1000 MOFs, we sustain release up to 7 days, reduce PD-L1 expression across triple negative breast cancer and melanoma, and stimulate dendritic cells to amplify T cell proliferation. This dual tumor and immune cell modulation via MOF-mediated ASO delivery increases tumor caspase-3 expression and killing of human melanoma with patient tumor-infiltrating lymphocytes, and elongates in vivo survival. This research highlights a strategy to utilize ASOs without sequence modifications and with a reduced dosing frequency, enabling broadly applicable oncogene-targeting oligonucleotide delivery.

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Cite This Study

Nowak et al. (2026) studied this question.

synapsesocial.com/papers/69990de85b97ab4c14ac27d7https://doi.org/10.1021/acs.nanolett.5c05579
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