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April 4, 2026Advanced Science1 citationsOpen Access

Copper Depletion Nanoparticles Potentiate Cancer Immunotherapy by Avoiding Innate and Adaptive Immune Resistance

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ZZZaigang ZhouKLKe LiXLX Li

Key Points

  • The study aims to develop an effective method to regulate CD47 and PD-L1 in tumors to overcome immune resistance.
  • Developed a mitochondria-targeted copper-withdrawal nanoparticle, CYN-CDA@Alb.
  • Compared the efficacy of CYN-CDA@Alb to common copper chelators.
  • Analyzed effects on CD47 and PD-L1 expression by examining the mitochondria/AMPK/c-MYC signaling pathway.
  • Measured T cell and macrophage responses to tumor cells.
  • CYN-CDA@Alb significantly reduced CD47 and PD-L1 expression at a lower dosage than traditional treatments.
  • Increased T cell killing capacity and macrophage phagocytosis ability against tumor cells.
  • Demonstrated reduced tumor metastasis and slowed tumor growth.
  • Avoided increased immune resistance typically observed after radiotherapy.

Abstract

ABSTRACT Currently, cluster of differentiation 47 (CD47) and programmed death ligand 1 (PD‐L1) targeted bispecific antibodies have been widely studied in clinical trials to overcome innate and adaptive immune resistance simultaneously. However, the excessive immune‐related adverse events caused by the on‐target off‐tumor immune‐toxicity cast a shadow over their future clinical usage. Thus, how to safely, effectively, and selectively regulate CD47 and PD‐L1 in tumors at the same time is still a difficult issue to solve. Here, we developed a mitochondria‐targeted copper‐withdrawal nanoparticle CYN‐CDA@Alb to more efficaciously depress CD47 and PD‐L1 expression (only 1/50 dosage of common copper chelators), on account of the depression of mitochondria/Adenosine 5’‐monophosphate‐activated protein kinase (AMPK)/c‐MYC signal pathway. By doing this, CYN‐CDA@Alb reverses immune resistance by increasing T cell killing capacity and macrophage phagocytosis ability to tumor cells, leading to the following depressed tumor metastasis and slowed tumor growth. Moreover, CYN‐CDA@Alb also avoids the usually increased innate and adaptive immune resistance after radiotherapy by depressing CD47 and PD‐L1. Our findings altogether suggest the potential usage of copper ion‐depleting nanoparticles as substitutes for CD47/PD‐L1 bispecific antibodies to simultaneously overcome innate and adaptive immune‐resistance.

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Cite This Study

Zhou et al. (2026) studied this question.

synapsesocial.com/papers/69d0af36659487ece0fa521bhttps://doi.org/10.1002/advs.202524150
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