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D-A 结构的高性能光热/光动力噻嗪-合成黑色素纳米颗粒,具有快速杀菌和伤口愈合作用。

D-A Structured High-Performance Photothermal/Photodynamic Thionin-Synthetic Melanin Nanoparticles for Rapid Bactericidal and Wound Healing Effects.

机构信息

Key Laboratory of Science and Technology of Eco-Textile, Ministry of Education, Jiangnan University, Wuxi, Jiangsu, 214122, China.

出版信息

Adv Healthc Mater. 2023 Aug;12(21):e2203303. doi: 10.1002/adhm.202203303. Epub 2023 May 1.

Abstract

Synthesized melanin nanoparticles (SMNPs) are used as advanced photothermal materials. However, their internal structures are complex and disordered, and tuning the photothermal performance of nanoparticles is still a hot spot of concern. This article presents thionin (Th)-doped SMNPs, namely Th-SMNPs, which are the first SMNPs formed using the one-pot polymerization of Th with Levodopa. Th can undergo Michael addition and Schiff base reaction between indole dihydroxy/indolequinone and their oligomers to form donor-acceptor pairs in the structure to modulate the photothermal performance of SMNPs. Structural and spectroscopic analyses and density functional theory simulations further confirm the existence of the donor-acceptor structure. Th-SMNPs exhibit excellent total photothermal efficiency (34.49%) in the near-infrared region (808 nm), which is a 60% improvement compared to SMNPs. This allows Th-SMNPs to exhibit excellent photothermal performance at low power 808 nm laser irradiation. Meanwhile, Th not only enhances the photothermal properties of SMNPs, but also imparts photodynamic effects to SMNPs. Th-SMNPs can produce O under 660 nm laser irradiation. A dual-function photothermal and photodynamic textile named Th-SMNPs@cotton is constructed based on Th-SMNPs, which can act as a rapid photothermal/photodynamic sterilization and is promising for wound healing treatment of bacterial infections under low-power dual laser irradiation.

摘要

合成黑色素纳米颗粒(SMNPs)被用作先进的光热材料。然而,它们的内部结构复杂且无序,调节纳米颗粒的光热性能仍然是一个热点问题。本文提出了硫堇(Th)掺杂的 SMNPs,即 Th-SMNPs,这是首次使用 Th 与左旋多巴一锅聚合形成的 SMNPs。Th 可以在结构中经历迈克尔加成和席夫碱反应,从而在结构中形成供体-受体对,以调节 SMNPs 的光热性能。结构和光谱分析以及密度泛函理论模拟进一步证实了供体-受体结构的存在。Th-SMNPs 在近红外区域(808nm)表现出优异的总光热效率(34.49%),比 SMNPs 提高了 60%。这使得 Th-SMNPs 能够在低功率 808nm 激光照射下表现出优异的光热性能。同时,Th 不仅增强了 SMNPs 的光热性能,而且赋予了 SMNPs 光动力效应。Th-SMNPs 在 660nm 激光照射下可以产生 O。基于 Th-SMNPs 构建了一种名为 Th-SMNPs@cotton 的双功能光热和光动力纺织品,它可以作为一种快速光热/光动力杀菌剂,有望在低功率双激光照射下用于细菌感染的伤口愈合治疗。

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