AI Article Synopsis

  • Chemodynamic therapy (CDT) is being explored as a new cancer treatment method that generates harmful reactive oxygen species (ROS) through metal ion catalysis, but reducing agents in tumors limit its effectiveness.
  • The study introduces a novel nano-delivery system (MNZ) that uses hollow manganese dioxide nanoparticles modified with copper ions, designed to first consume these reducing agents before applying CDT, enhancing overall treatment efficacy.
  • Experiments show that MNZ significantly reduces the viability of HeLa cancer cells, with the best effects when combined with heat (NIR), suggesting a promising approach for combined photothermal and chemodynamic therapies.

Article Abstract

Chemodynamic therapy (CDT) has been recognized as an emerging therapeutic strategy. It has attracted considerable attention in recent years as it can generate the most harmful reactive oxygen species (ROS)-hydroxyl radicals (•OH) through the Fenton reaction or a Fenton-like reaction under the catalysis of versatile metal cations, such as, Fe(II), Fe(III), Cu(I), Mn(II), and Mn(III). However, a large number of reducing species (, GSH) in tumors inhibit the therapeutic effects of CDT. This study proposes a nanocarrier strategy that can release versatile metal cations in the initial stage to consume the reducing substances, which can be convenient for subsequent CDT treatment. A novel nano-delivery system based on H-MnO@PDA/Cu-CD@Ad-TK-Ad@Ploy-CD (abbreviated as MNZ) was proposed to resolve the above problems. Herein, hollow mesoporous manganese dioxide nanoparticles (H-MnO) were coated with PDA and modified with copper ions on the surface of PDA. The PDA was then functionalized with β-cyclodextrin (β-CD) substitutions that were further assembled with -((1,3,5)-adamantan-1-yl)-3-((2-((3-(((3,5,7)-adamantan-1-yl)amino)-3-oxopropyl)thio)propan-2-yl)thio)propenamide (Ad-TK-Ad). Poly-CD was assembled with CD to improve the stability of the reactor. The MNZ nanotheranostic platform can release Cu(II) and Mn(II), which could react with intracellular GSH to consume the reducing substances in tumors. Subsequently, HO can be converted into •OH, and the effect is improved with increasing temperatures. Cytotoxicity of MNZ (200 μg mL) was studied by cell counting kit-8 (CCK-8) assay using HeLa cells as the models. Results indicated that cell viability was clearly reduced to 22% by the nanoparticles alone, to 18% by the nanoparticles with HO, and to 9% by the nanoparticles with HO and NIR, under weak acidic condition (pH 6.8). This work provides a beneficial exploration for the application of nano-delivery strategies for combined photothermal and chemodynamic therapy agents.

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Source
http://dx.doi.org/10.1039/d4tb01819bDOI Listing

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