Upconversion Nanoparticle-Assisted Payload Delivery from TiO<sub>2</sub> under Near-Infrared Light Irradiation for Bacterial Inactivation.
basic_science · Level V
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- Record sourced from PubMed, PMID 31841305.
- Also identified by DOI 10.1021/acsnano.9b05386.
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Abstract
The low penetration depth of UV light in mammalian tissue is the critical limitation for the use of TiO<sub>2</sub>-based photocatalysis in biomedical applications. In this work, we develop an effective near-infrared (NIR)-active photocatalytic platform that consists of a shell structure of upconversion nanocrystals decorated on a core of Au/dark-TiO<sub>2</sub>. The heart of this system is the strong photocatalytic activity in the visible region enabled by the gold surface-plasmon resonance on dark TiO<sub>2</sub> (D-TiO<sub>2</sub>). Simulation and experiment demonstrate for an optimized Au/D-TiO<sub>2</sub> combination a highly enhanced light absorption in the visible range. Using ampicillin sodium (AMP) as model drug, we exemplify the effective use of this principle by demonstrating a NIR light-triggered photocatalytic payload release. Importantly, the photocatalytically generated reactive oxygen species can effectively inactivate AMP-resistant bacteria strains, thus maintaining an antibacterial effect even after all drug is released. Overall, we anticipate that the here-introduced NIR-light-active photocatalytic cascade can considerably widen TiO<sub>2</sub>-based photocatalysis and its applications into the infrared range.
Medical subject headings
- Ampicillin
- Anti-Bacterial Agents
- Drug Delivery Systems
- Escherichia coli
- Nanoparticles
- Titanium