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A biodegradable "Nano-donut" for magnetic resonance imaging and enhanced chemo/photothermal/chemodynamic therapy through responsive catalysis in tumor microenvironment.

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TLDR
In this paper, a biodegradable "Nano-donut" (CMPB-MoS2-PEG) is fabricated for magnetic resonance (MR) imaging and enhanced photothermal therapy (PTT)/ chemodynamic therapy (CDT)/chemotherapy through responsive catalysis in tumor microenvironment (TME).
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This article is published in Journal of Colloid and Interface Science.The article was published on 2022-02-15. It has received 42 citations till now. The article focuses on the topics: Photothermal therapy & Doxorubicin.

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Intracellular Mutual Amplification of Oxidative Stress and Inhibition Multidrug Resistance for Enhanced Sonodynamic/Chemodynamic/Chemo Therapy.

TL;DR: The as-prepared intelligent biodegradable mZMD provides an innovative strategy to enhance SDT/CDT/chemotherapy through promoting oxidative stress and overcoming the multidrug resistance.
Journal ArticleDOI

Copper-doped MOF-Based Nanocomposite for GSH Depleted Chemo/Photothermal/Chemodynamic Combination Therapy

TL;DR: In this paper , a copper-doped ZIF-8-based nanocomposite for cancer combination therapy was constructed, which could deplete over 50% of intracellular glutathione (GSH) to disturb redox homeostasis.
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Multifunctional phototheranostic nanoplatform based on polydopamine-manganese dioxide-IR780 iodide for effective magnetic resonance imaging-guided synergistic photodynamic/photothermal therapy

TL;DR: In this paper , the authors demonstrated the design and development of a multifunctional nanoplatform (PMIDA), referring to polydopamine (PDA)-manganese dioxide (MnO2)-IR780, for imaging-guided phototherapy.
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Manganese-based hollow nanoplatforms for MR imaging-guided cancer therapies

TL;DR: In this paper , a review summarizes various hollow manganese (Mn)-based nanoplatforms, including hollow MnxOy, hollow matrix-supported MnXOy and hollow Mn-doped nanoparticles.
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Mutual Promotion of Oxidative Stress Amplification and Calcium Overload by Degradable Spatially Selective Self-Cascade Catalyst for Synergistic Tumor Therapy

TL;DR: In this paper , a degradable space-selective multifunctional nanocatalyst-CMFO reached self-cascade catalysis to mutually promote oxidative stress amplification and calcium overload for synergistic tumor therapy with MRI guide.
References
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Journal ArticleDOI

Chemodynamic Therapy: Tumour Microenvironment‑Mediated Fenton and Fenton‑like Reactions

TL;DR: Various strategies based on the Fenton reaction have been employed to enhance hydroxyl radical generation, including nanomaterials selection, modulation of the reaction environment, and external energy fields stimulation, which are discussed systematically in this Minireview.
Journal ArticleDOI

Copper selenide nanocrystals for photothermal therapy.

TL;DR: In vitro photothermal heating of Cu(2-x)Se nanocrystals in the presence of human colorectal cancer cell (HCT-116) led to cell destruction after 5 min of laser irradiation at 33 W/cm(2), demonstrating the viabilitiy of Cu
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Self-Assembled Copper-Amino Acid Nanoparticles for in Situ Glutathione "AND" H2O2 Sequentially Triggered Chemodynamic Therapy.

TL;DR: Self-assembled copper-amino acid mercaptide nanoparticles (Cu-Cys NPs) for in situ glutathione-activated and H2O2-reinforced chemodynamic therapy for drug-resistant breast cancer efficiently inhibited drug- resistant breast cancer without causing obvious systemic toxicity.
Journal ArticleDOI

A chelator-free multifunctional [64Cu]CuS nanoparticle platform for simultaneous micro-PET/CT imaging and photothermal ablation therapy.

TL;DR: The combination of small diameter, strong NIR absorption, and integration of (64)Cu as a structural component makes these CuS NPs ideally suited for multifunctional molecular imaging and therapy.
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