3D dynamic tracking Aβ plaques in live brains using vinyl-bridged dyes with two-photon excitation/NIR emission and large Stokes shifts

双光子激发显微术 荧光 血脑屏障 荧光寿命成像显微镜 神经影像学 斯托克斯位移 临床前影像学 体内 材料科学 核磁共振 生物物理学 近红外光谱 生物医学工程 化学 光学 神经科学 医学 生物 物理 中枢神经系统 生物技术
作者
Xueao Wang,Yani Liu,Xueting Wang,Xiaolian Ye,Wei Cheng,Guiquan Chen,Hai‐Liang Zhu,Jing Zhao,Yong Qian
出处
期刊:Biosensors and Bioelectronics [Elsevier]
卷期号:238: 115563-115563 被引量:15
标识
DOI:10.1016/j.bios.2023.115563
摘要

Real-time studies of biomarkers for neurological disorders present significant opportunities for diagnosing and treating related diseases, and fluorescent probes offer a promising approach to brain imaging. However, intracerebral fluorescence imaging is often limited by blood-brain barrier permeability and penetration depth. Moreover, only very few probes have rapid intracerebral metabolic properties, which are critical for in vivo imaging. Here, we developed a novel class of fluorescent dyes with two-photon excitation and near-infrared (NIR) emission (920/705 nm). The representative WAPP-4 probe exhibits a large Stokes shift (Δλ = 324 nm in ethanol) and excellent blood-brain barrier permeability. Notably, using WAPP-4, we achieved in vivo 3D dynamic imaging of Aβ plaques in the brains of living mice with Alzheimer's disease (AD). In addition, super-resolution imaging showed that WAPP-4 could effectively characterize the distribution and shape of Aβ plaques in isolated brain slices. This study demonstrates that newly developed fluorescent dyes with large Stokes shifts and blood-brain barrier permeability enable real-time imaging of amyloid plaques, which will contribute to the development of other valuable tools for near-infrared imaging and super-resolution imaging in the brain.
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