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X 射线/γ 射线/超声激活的持久发光荧光粉用于深层组织生物成像和治疗。

X-ray/γ-ray/Ultrasound-Activated Persistent Luminescence Phosphors for Deep Tissue Bioimaging and Therapy.

机构信息

The Key Lab of Health Chemistry & Molecular Diagnosis of Suzhou, College of Chemistry, Chemical Engineering & Materials Science, Soochow University, Suzhou 215123, China.

出版信息

ACS Appl Mater Interfaces. 2024 Oct 23;16(42):56519-56544. doi: 10.1021/acsami.4c11585. Epub 2024 Oct 14.

Abstract

Persistent luminescence phosphors (PLPs) can remain luminescent after excitation ceases and have been widely explored in bioimaging and therapy since 2007. In bioimaging, PLPs can efficiently avoid tissue autofluorescence and light scattering interference by collecting persistent luminescence signals after the end of excitation. Outstanding signal-to-background ratios, high sensitivity, and resolution have been achieved in bioimaging with PLPs. In therapy, PLPs can continuously produce therapeutic molecules such as reactive oxygen species after removing excitation sources, which realizes sustained therapeutic activity after a single dose of light stimulation. However, most PLPs are activated by ultraviolet or visible light, which makes it difficult to reactivate the PLPs , particularly in deep tissues. In recent years, excitation sources with deep tissue penetration have been explored to activate PLPs, including X-ray, γ-ray, and ultrasound. Researchers found that various inorganic and organic PLPs can be activated by X-ray, γ-ray, and ultrasound, making these PLPs valuable in the imaging and therapy of deep-seated tumors. These X-ray/γ-ray/ultrasound-activated PLPs have not been systematically introduced in previous reviews. In this review, we summarize the recently developed inorganic and organic PLPs that can be activated by X-ray, γ-ray, and ultrasound to produce persistent luminescence. The biomedical applications of these PLPs in deep-tissue bioimaging and therapy are also discussed. This review can provide instructions for the design of PLPs with deep-tissue-renewable persistent luminescence and further promote the applications of PLPs in phototheranostics, noninvasive biosensing devices, and energy harvesting.

摘要

持续发光磷光体 (PLP) 在激发停止后仍能持续发光,自 2007 年以来,在生物成像和治疗方面得到了广泛的探索。在生物成像中,PLP 可以在激发结束后收集持续发光信号,有效地避免组织自发荧光和光散射干扰。在使用 PLP 的生物成像中,已经实现了出色的信号背景比、高灵敏度和分辨率。在治疗中,PLP 可以在去除激发源后持续产生治疗分子,如活性氧,从而在单次光刺激后实现持续的治疗活性。然而,大多数 PLP 是由紫外光或可见光激活的,这使得很难重新激活 PLP,特别是在深部组织中。近年来,已经探索了具有深部组织穿透能力的激发源来激活 PLP,包括 X 射线、γ射线和超声波。研究人员发现,各种无机和有机 PLP 可以被 X 射线、γ射线和超声波激活,这使得这些 PLP 在深部肿瘤的成像和治疗中具有价值。这些 X 射线/γ射线/超声波激活的 PLP 在以前的综述中没有被系统介绍。在这篇综述中,我们总结了最近开发的可以被 X 射线、γ射线和超声波激活以产生持续发光的无机和有机 PLP。还讨论了这些 PLP 在深部组织生物成像和治疗中的生物医学应用。这篇综述可以为设计具有深部可再生持续发光的 PLP 提供指导,并进一步促进 PLP 在光疗、非侵入式生物传感设备和能量收集方面的应用。

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