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September 10, 2025Nature Communications17 citationsOpen Access

Modulating tumor collagen fiber alignment for enhanced lung cancer immunotherapy via inhaled RNA

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BHBin HuWSWilliam C. StewartQCQijing Chen

Key Points

  • Collagen fiber rearrangement enhances T cell infiltration, leading to improved tumor response in lung cancer.
  • In vivo models indicate that inhalation of mscFv/siPD-L1@LNP promotes tumor regression and extends survival.
  • This approach combines mRNA and siRNA in a lipid nanoparticle system to target PD-L1 and DDR1 effectively.
  • The findings support the potential for improved cancer immunotherapy by addressing the tumor microenvironment.

Abstract

The clinical effectiveness of immunotherapies for lung cancers has been greatly hindered by the immune-excluded and immunosuppressive tumor microenvironment (TME) and limited pulmonary accessibility of therapeutics. Here, we develop an inhalable lipid nanoparticle (LNP) system that enables simultaneous delivery of mRNA encoding anti-discoidin domain receptor 1 (DDR1) single-chain variable fragments (mscFv) and siRNA targeting PD-L1 (siPD-L1) into pulmonary cancer cells. The secreted anti-DDR1 scFv blocks the binding of DDR1 extracellular domain to collagen, disrupting collagen fiber alignment and reducing tumor stiffness, thereby facilitating T cell infiltration. Meanwhile, PD-L1 silencing alleviates immunosuppression and preserves T cell cytotoxicity. In vivo results demonstrate that mscFv@LNP induces collagen fiber rearrangement and diminishes tumor stiffness. In both orthotopic and metastatic mouse models of lung cancer, inhalation of mscFv/siPD-L1@LNP promotes tumor regression and extends overall survival. This strategy could be broadly applicable to solid tumors and benefit other cancer immunotherapies by addressing the universally hostile TME involved in tumor progression.

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Cite This Study

Hu et al. (2025) studied this question.

synapsesocial.com/papers/68c1dd9254b1d3bfb60fbdbehttps://doi.org/10.1038/s41467-025-63415-0
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