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April 1, 2026Advanced Materials4 citations

Selective Induction of Cancer Cell Pyroptosis by Erbium Nanotuner Enhances Potent Anti‐Cancer Immunity

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WDWenbin DaiZhejiang Gongshang UniversityXWXiaolong WangState Key Laboratory of Polymer Physics and ChemistryRWRouye WangChemical Synthesis Lab

Key Points

  • To evaluate the selective induction of pyroptosis in cancer cells via Erbium nanoparticles to enhance anti-cancer immunity.
  • Screened Er<sup>3+</sup>-containing nanoparticles for cancer cell pyroptosis induction.
  • Developed the Erbium-RSL3 Inflammasome-Activating System (ERIS) for targeted delivery.
  • Measured GSDMD-N cleavage and LDH release to assess pyroptosis and cell death.
  • Achieved a 3.2-fold increase in GSDMD-N cleavage indicative of pyroptosis.
  • Observed a 12.2-fold increase in LDH release compared to control cells.
  • Demonstrated tumor suppression and enhanced anti-cancer immune responses with minimal side effects.

Abstract

Pyroptosis, an immunogenic programmed cell death, is a robust way to activate anti-cancer immunity. However, it is very challenging to induce pyroptosis in cancer cells while sparing normal cells selectively. Herein, an Er3+-containing nanoparticle is screened from the whole series of lanthanides for boosting pancreatic cancer immunotherapy by selectively inducing cancer cell pyroptosis. To elicit tumor-specific inflammatory cell death, a tumor-targeting nanoplatform, termed the Erbium-RSL3 Inflammasome-Activating System (ERIS), was designed, invoking the "Greek goddess of discord" to unleash discord within tumors. ERIS has been proven to induce pyroptosis through lysosomal rupture, facilitated by a strong interaction between Er3+ and lysosomal phospholipid membranes, as evidenced by a 3.2-fold increase in GSDMD-N cleavage and a 12.2-fold increase in lactate dehydrogenase (LDH) release compared with controls. This localized inflammatory assault subverts tumor growth and promotes anti-cancer immune responses. Therefore, ERIS demonstrates remarkable tumor suppression with minimal systemic side effects across different pancreatic cancer models, achieved through pyroptosis-induced immune activation and remodeling of the immunosuppressive tumor microenvironments. This study identifies Er3+-based nanomedicine as a new class of cell-selective pyroptosis nanotuner, offering a unique opportunity to enhance the efficacy of cancer immunotherapies.

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Cite This Study

Dai et al. (2026) studied this question.

synapsesocial.com/papers/69ccb72e16edfba7beb88fdfhttps://doi.org/10.1002/adma.202522094
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