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用于光声成像的化学遗传远红标签和钙指示剂的优化

Chemigenetic Far-Red Labels and Ca Indicators Optimized for Photoacoustic Imaging.

机构信息

European Molecular Biology Laboratory, Meyerhofstraße 1, 69117 Heidelberg, Germany.

出版信息

J Am Chem Soc. 2024 Aug 28;146(34):23963-23971. doi: 10.1021/jacs.4c07080. Epub 2024 Aug 19.

Abstract

Photoacoustic imaging is an emerging modality with significant promise for biomedical applications such as neuroimaging, owing to its capability to capture large fields of view deep inside complex scattering tissue. However, widespread adoption of this technique has been hindered by a lack of suitable molecular reporters for this modality. In this work, we introduce chemigenetic labels and calcium sensors specifically tailored for photoacoustic imaging, using a combination of synthetic dyes and HaloTag-based self-labeling proteins. We rationally design and engineer far-red "acoustogenic" dyes, showing high photoacoustic turn-ons upon binding to HaloTag, and develop a suite of tunable calcium indicators based on these scaffolds. These first-generation photoacoustic reporters show excellent performance in tissue-mimicking phantoms, with the best variants outperforming existing sensors in terms of signal intensity, sensitivity, and photostability. We demonstrate the application of these ligands for labeling HaloTag-expressing neurons in mouse brain tissue, producing strong, specifically targeted photoacoustic signal, and provide a first example of labeling with these chemigenetic photoacoustic probes. Together, this work establishes a new approach for the design of photoacoustic reporters, paving the way toward deep tissue functional imaging.

摘要

光声成像是一种新兴的模态,具有在神经成像等生物医学应用中实现重大突破的潜力,这主要得益于其在复杂散射组织深处捕获大视场的能力。然而,由于缺乏适用于这种模态的分子报告物,该技术的广泛应用受到了阻碍。在这项工作中,我们使用合成染料和基于 HaloTag 的自标记蛋白的组合,引入了专门为光声成像设计的化学生物标记物和钙传感器。我们通过合理设计和工程设计,得到了远红光“声敏”染料,这些染料在与 HaloTag 结合后表现出高的光声开启,并且基于这些支架开发了一系列可调谐的钙指示剂。这些第一代光声报告物在组织模拟体中表现出优异的性能,最好的变体在信号强度、灵敏度和光稳定性方面均优于现有的传感器。我们证明了这些配体在标记小鼠脑组织中表达 HaloTag 的神经元方面的应用,产生了强、特异性靶向的光声信号,并提供了使用这些化学生物光声探针进行标记的第一个实例。总的来说,这项工作为光声报告物的设计建立了一种新的方法,为深层组织功能成像铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/982a/11363013/fb968a3b26a8/ja4c07080_0001.jpg

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