A Glutathione-Responsive Luminescence Sensor Based on Dual-Emissive Persistent Luminescent Nanoparticles for Ratiometric Tumor Imaging

IF 3.4 Q2 CHEMISTRY, ANALYTICAL Analysis & sensing Pub Date : 2023-07-23 DOI:10.1002/anse.202300045
Xue-Mei Gao, Tian-Yue Gu, Ke-Lin Chen, Dr. Xu Zhao, Prof. Xiu-Ping Yan
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Abstract

Persistent luminescent nanoparticles (PLNP) have outstanding advantages in low-background imaging. However, avoiding exogenous interference and false positive signals to achieve precise imaging is still a problem. In addition, it is also a great challenge to intelligently control the size of PLNP. Herein, we report an intelligent luminescence ratiometric sensor based on ultra-small dual-emissive PLNP for precise tumor-targeted imaging. ZnGa2O4:Cr PLNP with a particle size of c.a. 5–10 nm and two emission peaks at 708 nm and 501 nm were firstly synthesized by thermal decomposition method along with systematical controlling the amount of chromium. [email protected] sensor was further constructed with a constant ratio (I708/I501) which is not interfered by exogenous factors such as detection time window and probe concentration. However, high concentrations of glutathione in the tumor microenvironment can specifically trigger the change of I708/I501 and cause the sensor to self-assemble into clusters at tumor site, thus realizing long-term retention and specificity imaging.

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基于双发光持久性发光纳米粒子的谷胱甘肽响应型发光传感器,用于肿瘤比率成像
持久性发光纳米粒子(PLNP)在低背景成像方面具有突出优势。然而,如何避免外源干扰和假阳性信号以实现精确成像仍是一个问题。此外,如何智能控制 PLNP 的大小也是一个巨大的挑战。在此,我们报告了一种基于超小双发射 PLNP 的智能发光比率测量传感器,用于肿瘤靶向精确成像。首先通过热分解法合成了 ZnGa2O4:Cr PLNP,其粒径约为 5-10 nm,在 708 nm 和 501 nm 处有两个发射峰。[email protected] 传感器的比率(I708/I501)保持恒定,不受检测时间窗口和探针浓度等外源因素的干扰。然而,肿瘤微环境中高浓度的谷胱甘肽会特异性地触发 I708/I501 的变化,使传感器在肿瘤部位自组装成团,从而实现长期保留和特异性成像。
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