Tamura Iori, Sakamoto Daichi M, Yi Bo, Saito Yutaro, Yamada Naoki, Morimoto Jumpei, Takakusagi Yoichi, Kuroda Masafumi, Kubota Shimpei I, Yatabe Hiroyuki, Kobayashi Minoru, Harada Hiroshi, Tainaka Kazuki, Sando Shinsuke
Department of Chemistry and Biotechnology, Graduate School of Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-8656, Japan.
Quantum Hyperpolarized MRI Research Team, Institute for Quantum Life Science, National Institutes for Quantum Science and Technology, 4-9-1 Anagawa, Inage-ku, Chiba 263-8555, Japan.
Sci Adv. 2024 Jul 19;10(29):eado8471. doi: 10.1126/sciadv.ado8471. Epub 2024 Jul 17.
Click chemistry offers various applications through efficient bioorthogonal reactions. In bioimaging, pretargeting strategies have often been used, using click reactions between molecular probes with a click handle and reporter molecules that make them observable. Recent efforts have integrated tissue-clearing techniques with fluorescent labeling through click chemistry, allowing high-resolution three-dimensional fluorescence imaging. Nevertheless, these techniques have faced a challenge in limited staining depth, confining their use to imaging tissue sections or partial organs. In this study, we introduce Click3D, a method for thoroughly staining whole organs using click chemistry. We identified click reaction conditions that improve staining depth with our custom-developed assay. The Click3D protocol exhibits a greater staining depth compared to conventional methods. Using Click3D, we have successfully achieved whole-kidney imaging of nascent RNA and whole-tumor imaging of hypoxia. We have also accomplished whole-brain imaging of hypoxia by using the clickable hypoxia probe, which has a small size and, therefore, has high permeability to cross the blood-brain barrier.
点击化学通过高效的生物正交反应提供了各种应用。在生物成像中,预靶向策略经常被使用,利用带有点击手柄的分子探针与使它们可被观察到的报告分子之间的点击反应。最近的研究通过点击化学将组织透明化技术与荧光标记相结合,实现了高分辨率的三维荧光成像。然而,这些技术在染色深度有限方面面临挑战,限制了它们仅用于对组织切片或部分器官进行成像。在本研究中,我们介绍了Click3D,一种使用点击化学对整个器官进行全面染色的方法。我们通过自行开发的检测方法确定了能提高染色深度的点击反应条件。与传统方法相比,Click3D方案具有更大的染色深度。使用Click3D,我们成功实现了新生RNA的全肾成像和缺氧的全肿瘤成像。我们还通过使用可点击的缺氧探针完成了缺氧的全脑成像,该探针体积小,因此对穿过血脑屏障具有高渗透性。