Northeastern University, Shenyang 110819, Liaoning, China.
Northeastern University, Shenyang 110819, Liaoning, China.
Spectrochim Acta A Mol Biomol Spectrosc. 2024 Dec 15;323:124910. doi: 10.1016/j.saa.2024.124910. Epub 2024 Jul 30.
An ultrasensitive strategy for in-situ visual monitoring of ATP in a single living tumor cell during mitochondria-targeted photodynamic therapy (PDT) process with high spatiotemporal resolution was proposed using surface-enhanced Raman scattering (SERS) 3D imaging technique. The nanostructures consisting of Au-AgS Janus nanoparticles functionalized with both Au nanoparticles linked by a DNA chain and a mitochondrial-targeting peptide (JMDA NPs) were deliberately employed to target mitochondria. The JMDA NPs exhibit excellent SERS activity and remarkable antitumor activity. The quantization of ATP relies on the intensity of the SERS probes bonded to the DNA, which shows a strong correlation with the generated hot spot between the Janus and the Au. Consequently, spatiotemporally controlled monitoring of ATP in the mitochondria of single living cells during the PDT process was achieved. Additionally, the JMDA NPs demonstrated remarkable capability for mitochondria-targeted PDT, providing significant antitumor effects and superior therapeutic safety both in vitro and in vivo. Our work presents an effective JMDA NPs-based SERS imaging strategy for in-situ and real-time 3D visualization of intracellular ATP in living tumor cells during the mitochondria-targeted PDT process, which enables significant information on the time point of PDT treatment and is beneficial to precious PDT applications in tumor therapy.
提出了一种利用表面增强拉曼散射(SERS)3D 成像技术在单个活肿瘤细胞内进行线粒体靶向光动力治疗(PDT)过程中对 ATP 进行原位可视化监测的超灵敏策略,具有高时空分辨率。该策略使用由通过 DNA 链连接的金纳米粒子和线粒体靶向肽功能化的 Au-AgS 双面纳米粒子(JMDA NPs)组成的纳米结构来靶向线粒体。JMDA NPs 表现出优异的 SERS 活性和显著的抗肿瘤活性。ATP 的量化依赖于与 DNA 结合的 SERS 探针的强度,这与 Janus 和 Au 之间产生的热点之间具有很强的相关性。因此,在 PDT 过程中单个活细胞线粒体中 ATP 的时空控制监测得以实现。此外,JMDA NPs 表现出显著的线粒体靶向 PDT 能力,在体外和体内均表现出显著的抗肿瘤效果和优异的治疗安全性。我们的工作提出了一种基于 JMDA NPs 的 SERS 成像策略,用于在活肿瘤细胞的线粒体靶向 PDT 过程中对细胞内 ATP 进行原位和实时 3D 可视化,为 PDT 治疗的时间点提供了重要信息,有利于在肿瘤治疗中应用宝贵的 PDT。