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Journal ArticleDOI

Intelligent Hollow Pt-CuS Janus Architecture for Synergistic Catalysis-Enhanced Sonodynamic and Photothermal Cancer Therapy.

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TLDR
A novel Pt-CuS Janus composed of hollow semiconductor CuS and noble metallic Pt was rationally designed and successfully synthesized and develops a versatile nanoplatform for a multifunctional theranostic strategy and broadens the biological applications by rationally designing their structure.
Abstract
As a noninvasive treatment modality, ultrasound (US)-triggered sonodynamic therapy (SDT) shows broad and promising applications to overcome the drawbacks of traditional photodynamic therapy (PDT) in combating cancer. However, the SDT efficacy is still not satisfactory without oxygen (O2) assistance. In addition, there is also much space to explore the SDT-based synergistic therapeutic modalities. Herein, a novel Pt-CuS Janus composed of hollow semiconductor CuS and noble metallic Pt was rationally designed and successfully synthesized. The hollow CuS shows a large inner cavity for loading sonosensitizer molecules (tetra-(4-aminophenyl) porphyrin, TAPP) to implement SDT. Moreover, the deposition of Pt not only enhances photothermal performance compared with those of CuS nanoparticles (NPs) due to the effect of the local electric field enhancement but also possesses nanozyme activity for catalyzing decomposition of endogenous overexpressed hydrogen peroxide (H2O2) to produce O2 that can overcome tumor hypoxia and augment the SDT-induced highly toxic reactive oxygen species (ROS) production for efficient cancer cell apoptosis. Importantly, the generated heat of Pt-CuS by 808 nm laser irradiation can accelerate the catalytic activity of Pt and elevate the O2 level that further facilitates SDT efficacy. Interestingly, the thermally sensitive copolymer coated around the Janus can act as a smart switch to regulate the catalytic ability of Pt and control TAPP release that has a significant effect on modulating the therapeutic effect. The synergistic catalysis-enhanced SDT efficiency and highly photothermal effect almost realized complete tumor resection without obvious reoccurrence and simultaneously displayed a highly therapeutic biosafety. Furthermore, the high optical absorbance allows the as-synthesized Pt-CuS Janus for photoacoustic (PA) imaging and NIR thermal imaging. This work develops a versatile nanoplatform for a multifunctional theranostic strategy and broadens the biological applications by rationally designing their structure.

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Citations
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Porphyrin/Chlorin Derivatives as Promising Molecules for Therapy of Colorectal Cancer

TL;DR: In this paper, the most important porphyrin derivatives, alone or associated with other drugs, which have been found effective against CRC, as well as their modifications and developments through substitutions and delivery systems.
Journal ArticleDOI

Multifunctional Doxorubicin@Hollow-Cu9S8 nanoplatforms for Photothermally-Augmented Chemodynamic-Chemo therapy.

TL;DR: Wang et al. as mentioned in this paper developed the polyethylene glycol (PEG) coated hollow Cu9S8 nanoparticles, whose hollow component exhibits the photothermal effect for near-infrared (NIR) photothermal therapy (PTT), the Fenton-like catalytic activity for chemodynamic therapy (CDT), and the drugloading capacity for chemotherapy.
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Facile synthesis of hollow mesoporous nickel sulfide nanoparticles for highly efficient combinatorial photothermal-chemotherapy of cancer.

TL;DR: A category of hollow mesoporous NiS (hm-NiS) NPs with uniform spherical structure and good aqueous dispersity were innovatively developed based on a modified solvothermal reaction technique and a strong combinatorial photothermal-chemotherapeutic effect was demonstrated for tumor suppression with minimal systemic toxicity in vivo.
Journal ArticleDOI

Synthesis of porphyrin-incorporating covalent organic frameworks for sonodynamic therapy

TL;DR: Porphyrin-incorporating covalent organic frameworks were synthesized at room temperature as mentioned in this paper and the resulting products with uniform morphology and excellent crystallinity exhibited good singlet oxygen generation ability.
Journal ArticleDOI

Ultrasound and nanomaterial: an efficient pair to fight cancer

TL;DR: In this paper , a review highlights the clinical potential of these combined treatments that can improve the benefit/risk ratio of current cancer treatments and highlights the potential of combining them with various nano-systems, thus enabling a better resolution of ultrasound imaging, allowing for example the visualization of angiogenic blood vessels.
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Journal ArticleDOI

In vivo photodynamic therapy using upconversion nanoparticles as remote-controlled nanotransducers

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