2021
DOI: 10.1002/anie.202017152
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Stimuli‐Responsive Manganese Single‐Atom Nanozyme for Tumor Therapy via Integrated Cascade Reactions

Abstract: The single‐atom enzyme (SAE) is a novel type of nanozyme that exhibits extraordinary catalytic activity. Here, we constructed a PEGylated manganese‐based SAE (Mn/PSAE) by coordination of single‐atom manganese to nitrogen atoms in hollow zeolitic imidazolate frameworks. Mn/PSAE catalyzes the conversion of cellular H2O2 to .OH through a Fenton‐like reaction; it also promotes the decomposition of H2O2 to O2 and continuously catalyzes the conversion of O2 to cytotoxic .O2− via oxidase‐like activity. The catalytic … Show more

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Cited by 291 publications
(253 citation statements)
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References 77 publications
(49 reference statements)
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“…Recently, single-atom catalysts possessing atomically dispersed metal active sites have made a breakthrough in the broad fields of catalysis owing to their maximum metal atom utilization, high selectivity, and activity. [34][35][36][37][38] As mentioned above, activating localized H 2 O 2 in the TME by biocatalytic nanoagents can achieve very high CDT antitumor efficiency; recently, the Zn, Fe, and Cu single-atoms-doped nanocarbon catalysts have been designed and studied for wound healing and antitumor therapies. [39,40] While these carbon-based nanoagents are nonbiodegradable and show a low doping amount of single atoms.…”
mentioning
confidence: 99%
“…Recently, single-atom catalysts possessing atomically dispersed metal active sites have made a breakthrough in the broad fields of catalysis owing to their maximum metal atom utilization, high selectivity, and activity. [34][35][36][37][38] As mentioned above, activating localized H 2 O 2 in the TME by biocatalytic nanoagents can achieve very high CDT antitumor efficiency; recently, the Zn, Fe, and Cu single-atoms-doped nanocarbon catalysts have been designed and studied for wound healing and antitumor therapies. [39,40] While these carbon-based nanoagents are nonbiodegradable and show a low doping amount of single atoms.…”
mentioning
confidence: 99%
“…Many Mn-based hybrid nanomaterials used for imagingguided PTT have been developed (11,48,71,(73)(74)(75)(76)(77), such as nanopetals of Mn 3 O 4 hybrid nanomaterials for multifunctional imaging-guided PTT (51), a 2-D nanoplatform based on Cu 2 MnS 2 nanoplates for MRI/multispectral optoacoustic tomography (MSOT) dual-modal imaging-guided PTT (52,78), a plasmonic modulation strategy of Gold Nanorods (GNRs) through MnO 2 coating for TME-responsive photoacoustic (PA)/MR duplex imaging guided NIR-II PTT (67), and a gold@ MnO 2 (Au@ MnO 2 ) core-shell nanostructure as a GSH-triggered smart theranostic agent for PA and MR dual imaging-guided PTT (53,68).…”
Section: Imaging-guided Photothermal Therapymentioning
confidence: 99%
“…[20] Inspired by the highly active single-atom catalysts,s uch as Mn-based singleatom enzyme, [21] we thought that the single atom nanozyme (SAzyme) with enhanced dual POD and GSHOx-mimicking enzyme activities would greatly increase the intracellular ROSl evel. [22] Furthermore,t he GSH depletion inactivates glutathione peroxidase 4( GPX4) protease,w hich finally causes the up-regulation of lethal LPO accompanied by the generation of plentiful ROSf or executing ferroptosis. [23] Notably,t he accumulation of LPO and ROSp rovides apowerful approach for cleaving HSPs.Herein, we prepared nitrogen-coordinated carbon-supported Pd SAzyme by striping single atom from metal nanoparticles (Scheme 1).…”
Section: Introductionmentioning
confidence: 99%
“…successively demonstrated the distinguished properties of single‐atom catalysts, which heralds a new era of atomic nanotechnologies [20] . Inspired by the highly active single‐atom catalysts, such as Mn‐based single‐atom enzyme, [21] we thought that the single atom nanozyme (SAzyme) with enhanced dual POD and GSHOx‐mimicking enzyme activities would greatly increase the intracellular ROS level [22] . Furthermore, the GSH depletion inactivates glutathione peroxidase 4 (GPX4) protease, which finally causes the up‐regulation of lethal LPO accompanied by the generation of plentiful ROS for executing ferroptosis [23] .…”
Section: Introductionmentioning
confidence: 99%