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Phototherapies, including photothermal therapy (PTT) and photodynamic therapy (PDT) have been potential noninvasive therapeutic modality with high efficiency, however, there still exist some intrinsic limitations that impede their clinical applications. Herein, taking the advantages of the synergistic effect and high reactivity of manganese dioxide (MnO) nanosheets and glucose oxidase (GOx), multifunctional MPDA@MnO-MB-GOx nanoamplifier was constructed for enhanced PTT, PDT, and starvation therapy. In tumor microenvironment (TME), MnO nanosheets on the surface of mesoporous polydopamine (MPDA) could react with endogenous hydrogen peroxide (HO) and generate oxygen (O) to relieve tumor hypoxia, thus enhancing the efficacy of PDT and GOx catalysis. Glucose consumption under the catalysis of GOx will enhance the acidity of TME and increase intracellular HO concentration, which in turn promotes the production of O by MnO nanosheets, thus forming efficient cascade reaction and maximizing the efficacy of the functional agents. Furthermore, the heat generated by MPDA under the irradiation of 808 nm laser can accelerate chemical reactions, thus further enhancing synergistic therapeutic efficacy. In vitro/vivo results emphasize that enhanced cancer cell death and tumor inhibition are gained by modulating unfavorable TME with the functional nanosystem, which highlights the promise of the synthesized MPDA@MnO-MB-GOx nanomaterial to overcome the limitations of phototherapy.
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http://dx.doi.org/10.1016/j.ijpharm.2021.121307 | DOI Listing |
Front Microbiol
August 2025
State Key Laboratory of Microbial Technology, Shandong University, Qingdao, China.
Introduction: Manganese-oxidizing bacteria (MOB) play a critical role in converting soluble Mn(II) to insoluble Mn(III/IV) oxides, which have been widely applied for environmental remediation, particularly in heavy metal pollution control. Therefore, the discovery of novel MOB strains is of great significance for advancing pollution mitigation and ecosystem restoration.
Methods: In this study, a manganese-oxidizing bacterial strain was isolated from Mn-contaminated soil near an electroplating factory using selective LB medium supplemented with 10 mmol/L manganese chloride (MnCl), and the Leucoberbelin Blue (LBB) assay was employed to screen and identify strains with strong Mn(II)-oxidation ability.
Luminescence
September 2025
College of Pharmacy, Fujian University of Traditional Chinese Medicine, Fuzhou, Fujian, China.
Eu-MOF with rhomboid structure and strong fluorescence was successfully synthesized in this work. By combining fluorescent Eu-MOF with peroxidase mimic MnO nanosheets, a novel ratiometric fluorescence sensing method was developed for the sensitive detection of piceatannol (PCT), a naturally occurring stilbene-type polyphenolic compound. The sensing mechanism relies on the strong antioxidant ability of PCT, which reductively decomposes MnO nanosheets into Mn and results in the attenuation of the fluorescence intensity of the o-phenylenediamine (OPD) oxidation product and the concomitant recovery of Eu-MOF fluorescence.
View Article and Find Full Text PDFNano Lett
August 2025
Agricultural Photocatalysis Laboratory, School of Materials and Chemistry, and School of Plant Protection, Anhui Agricultural University, Hefei 230036, China.
The fungicidal efficacy of hydroxyl radicals (•OH) on fungal biosynthetic pathways and metabolic processes has been well-documented, but the precise modulation of •OH generation remains a significant challenge. Herein, we engineered a dual-cocatalyst-modified BiFeO (BFO) system by loading Au nanoparticles on (010) facets and MnO nanosheets on (100) facets. Au/MnO/BFO demonstrates a 4.
View Article and Find Full Text PDFJ Colloid Interface Sci
August 2025
School of Ecological Environment and Urban Construction, Fujian University of Technology, Fuzhou 350000, China. Electronic address:
The design and catalytic potential of materials with simultaneously oxidation and reduction performance remains underexplored, particularly in three-dimensional electrochemical systems. This study developed a carbon nanosheet framework with iron insertion and nitrogen doping, as the skeleton for the deposition of. nickel‑manganese metal mixture.
View Article and Find Full Text PDFMikrochim Acta
August 2025
College of Chemistry and Chemical Engineering, Shanghai University of Engineering Science, Shanghai, 201620, China.
Manganese dioxide (MnO)-based heterogeneous catalysts have gained significant attention in nanozyme research due to their exceptional oxidase-mimicking capabilities. This work reports the rational design of MnO functionalized magnetic carbon nanotubes (FeO@C@MnO) through a multistep synthesis strategy. The magnetic N-doped hollow carbon substrate (FeO@C) was first synthesized via controlled pyrolysis of FeOOH-coated polydopamine precursors.
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