Issue 22, 2023

A tumor microenvironment-responsive microneedle patch for chemodynamic therapy of oral squamous cell carcinoma

Abstract

Oral squamous cell carcinoma (OSCC) is one of the most common malignant tumors of the head and neck, and this disease has become a threat to public health due to its poor prognosis and high fatality rate. Chemodynamic therapy (CDT) is an emerging oncology treatment based on the Fenton reaction. However, the lack of endogenous hydrogen peroxide (H2O2) in tumor cells and the high concentration of glutathione (GSH) that depletes toxic hydroxyl radicals (·OH) significantly impair the efficacy of CDT. Here, we developed a polyvinyl alcohol (PVA)-based soluble microneedle patch (denoted as Fe3O4 + VC-MN) loaded with Fe3O4 nanoparticles (NPs) and vitamin C (VC) for the effective treatment of OSCC. When Fe3O4 + VC-MNs are inserted into the OSCC tissue, the Fe3O4 NPs and VC loaded in the tip of the needle are released in a targeted manner. After VC is converted into oxidized vitamin C (DHA), it can consume GSH in tumor cells and generate sufficient intracellular H2O2in situ. Moreover, by virtue of their peroxidase-like activity, Fe3O4 NPs can induce the generation of lethal ·OH through the Fenton reaction with the aforementioned H2O2, leading to tumor cell ferroptosis and apoptosis, thus achieving CDT. Collectively, this functional microneedle patch provides a more efficient and minimally invasive targeted drug delivery solution for the treatment of OSCC.

Graphical abstract: A tumor microenvironment-responsive microneedle patch for chemodynamic therapy of oral squamous cell carcinoma

Supplementary files

Article information

Article type
Paper
Submitted
14 Jul 2023
Accepted
16 Sep 2023
First published
20 Sep 2023
This article is Open Access
Creative Commons BY-NC license

Nanoscale Adv., 2023,5, 6162-6169

A tumor microenvironment-responsive microneedle patch for chemodynamic therapy of oral squamous cell carcinoma

S. Zhao, Y. Li and B. Cheng, Nanoscale Adv., 2023, 5, 6162 DOI: 10.1039/D3NA00527E

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