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A quadrupolar two-photon fluorescent probe for in vivo imaging of amyloid-β plaques

机译:四极双光子荧光探针用于体内β-淀粉样蛋白斑块成像

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摘要

The formation of beta amyloid (Aβ) plaques in specific brain regions is one of the early pathological hallmarks of Alzheimer's disease (AD). To enable the early detection of AD and related applications, a method for real-time, clear 3D visualization of Aβ plaques in vivo is highly desirable. Two-photon microscopy (TPM) which utilizes two near-infrared photons is an attractive tool for such applications. However, this technique needs a sensitive and photostable two-photon (TP) probe possessing bright TP exited fluorescence to impart high signal-to-noise (S/N) visualization of Aβ plaques. Herein, we report a quadrupolar TP fluorescent probe (>QAD1) having large TP action cross section (Φδmax = 420 GM) and its application for in vivo TPM imaging of Aβ plaques. This probe, designed with a centrosymmetric D–A–D motif with a cyclic conjugating bridge and solubilizing unit, displays bright TP excited fluorescence, appreciable water solubility, robust photostability, and high sensitivity and selectivity for Aβ plaques. Using the real-time TPM imaging of transgenic 5XFAD mice after intravenous injection of >QAD1, we show that this probe readily enters the blood brain barrier and provides high S/N ratio images of individual Aβ plaques in vivo. We also used >QAD1 in dual-color TPM imaging for 3D visualization of Aβ plaques along with blood vessels and cerebral amyloid angiopathy (CAA) inside living mouse brains. These findings demonstrate that this probe will be useful in biomedical applications including early diagnosis and treatments of AD.
机译:在特定的大脑区域中形成β淀粉样蛋白(Aβ)斑块是阿尔茨海默氏病(AD)的早期病理标志之一。为了能够及早发现AD和相关应用,非常需要一种用于体内Aβ斑块实时,清晰3D可视化的方法。利用两个近红外光子的双光子显微镜(TPM)是此类应用的一种有吸引力的工具。然而,该技术需要灵敏且光稳定的两光子(TP)探针,该探针具有明亮的TP出射荧光,以赋予Aβ斑块高信噪比(S / N)可视化。本文中,我们报道了具有大TP作用横截面(Φδmax= 420 GM)的四极TP荧光探针(> QAD1 )及其在Aβ斑块的体内TPM成像中的应用。该探针设计为具有环状共轭桥和增溶单元的中心对称D–A–D基序,显示出明亮的TP激发荧光,可观的水溶性,强大的光稳定性以及对Aβ斑块的高灵敏度和选择性。静脉内注射> QAD1 后,使用转基因5XFAD小鼠的实时TPM成像,我们显示该探针易于进入血脑屏障,并提供体内单个Aβ斑块的高信噪比图像。我们还使用了> QAD1 进行双色TPM成像,以对活的小鼠大脑内的Aβ斑块以及血管和脑淀粉样血管病(CAA)进行3D可视化。这些发现表明,该探针在包括AD的早期诊断和治疗在内的生物医学应用中将是有用的。

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