Fluorescence Lifetime Imaging-Guided Photodynamic Therapy over Two-Photon Responsive Metal-Organic Frameworks

IF 6.1 1区 化学 Q1 CHEMISTRY, INORGANIC & NUCLEAR
Bo Li, Xin Lu, Xianshun Sun, Yupeng Tian, Zijuan Hai, Dandan Li, Hong-Ping Zhou
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Abstract

In the realm of photodynamic therapy (PDT), the incorporation of real-time feedback through two-photon fluorescence lifetime imaging poses a significant challenge, primarily due to the intricate nature of photosensitizer design. In our investigation, we have effectively constructed a versatile platform labeled as ZTBH using a post-ligand modification approach, resulting in enhanced two-photon fluorescence capabilities and notable responsiveness of fluorescence lifetime to variations in the cellular microenvironment. The distinctive synergy between intersystem crossing and linker-to-cluster charge transfer within ZTBH empowers the generation of ample reactive oxygen species (1O2 and O2•-), thereby yielding remarkable efficiency in PDT. Moreover, the capping of hyaluronic acid (HA) through coordination method confers ZTBH with cancer-specific targeting properties. Subsequently, with the aid of a two-photon fluorescence lifetime imaging microscope (TP-FLIM), ZTBH not only achieves successful two-photon photodynamic therapy but also enables real-time visualization of cellular microenvironment changes throughout the apoptosis process. This investigation underscores a viable approach in the creation of two-photon fluorescence lifetime photosensitizers for visualizing the PDT procedure.
荧光寿命成像引导光动力治疗双光子响应金属-有机框架
在光动力治疗(PDT)领域,通过双光子荧光寿命成像结合实时反馈提出了一个重大挑战,主要是由于光敏剂设计的复杂性。在我们的研究中,我们使用后配体修饰方法有效地构建了一个标记为ZTBH的多功能平台,从而增强了双光子荧光能力和显著的荧光寿命对细胞微环境变化的响应性。ZTBH内系统间交叉和连接物到簇的电荷转移之间的独特协同作用,使其能够产生充足的活性氧(1O2和O2•-),从而在PDT中产生显著的效率。此外,通过配位方法对透明质酸(HA)的封顶使ZTBH具有癌症特异性靶向特性。随后,在双光子荧光寿命成像显微镜(TP-FLIM)的帮助下,ZTBH不仅成功实现了双光子光动力治疗,还实现了凋亡过程中细胞微环境变化的实时可视化。这项研究强调了一种可行的方法,在创建双光子荧光寿命光敏剂可视化PDT过程。
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来源期刊
Inorganic Chemistry Frontiers
Inorganic Chemistry Frontiers CHEMISTRY, INORGANIC & NUCLEAR-
CiteScore
10.40
自引率
7.10%
发文量
587
审稿时长
1.2 months
期刊介绍: The international, high quality journal for interdisciplinary research between inorganic chemistry and related subjects
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