ArticleNational science review2026
A multienzyme-mimicking nanoplatform induces disulfidptosis/cuproptosis/apoptosis for tumor therapy.
Article in National science review, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Authors and funding
19 authors.
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Abstract
The distinct characteristics of the tumor microenvironment (TME) provide great potential for valuable tumor-targeting therapies using enzymes. Herein, MOF-818 with a diameter of 139 nm is synthesized and exhibits multienzyme-mimicking activities, including peroxidase, catalase, glutathione oxidase, glucose oxidase, superoxide dismutase, and tyrosinase (TYR)-like activities. Based on these enzymatic activities, MOF-818 catalyzes an entire process that progresses through self-generated substrates and cyclic catalytic reactions, and notably induces TME remodeling. Synchronously, for the first time reported in nanozymes, MOF-818 activates the prodrug acetaminophen (APAP) through its TYR-like activity, further increasing reactive oxygen species accumulation. These features contribute to MOF-818's antitumor activity by activating multiple combined programmed cell death pathways: apoptosis, disulfidptosis, and cuproptosis. The MOF-818 nanoplatform, 3-methyladenine (3-MA), THP-1 cell membranes, and a fusion protein of Fc and TNF-related apoptosis-inducing ligand (Fc-TRAIL) were integrated to construct 3-MA@MOF-818@CM-Fc-TRAIL nanoparticles (3MCT NPs). These NPs target tumor cells and, when coupled with APAP, show efficient therapeutic effects with good biosafety. Our findings indicate that the MOF-818 could function as a multienzyme-mimetic scaffold for engineering targeted nanoplatforms that co-deliver combinatorial therapeutic agents, thereby enabling combined antitumor therapy.
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