Tissue clearing has been widely used for fluorescence imaging of fixed tissues, but its application to live tissues has been limited by toxicity. Here we develop minimally invasive optical clearing media for fluorescence imaging of live mammalian tissues. Light scattering is minimized by adding spherical polymers with low osmolarity to the extracellular medium. A clearing medium containing bovine serum albumin (SeeDB-Live) is compatible with live cells, enabling structural and functional imaging of live tissues, such as spheroids, organoids, acute brain slices and the mouse brains in vivo. SeeDB-Live minimally affects neuronal electrophysiological properties and sensory responses in vivo, and facilitates fluorescence imaging of deep cortical layers in live animals without detectable toxicity to neurons or behavior. We further demonstrate its utility to epifluorescence voltage imaging in acute brain slices and in vivo preparations. Thus, SeeDB-Live expands both the depth and modality range of fluorescence imaging in live mammalian tissues.
Isotonic and minimally invasive optical clearing media for live cell imaging ex vivo and in vivo.
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作者:Inagaki Shigenori, Nakagawa-Tamagawa Nao, Huynh Nathan Zechen, Kambe Yuki, Yagasaki Rei, Manita Satoshi, Fujimoto Satoshi, Noda Takahiro, Mori Misato, Teranishi Aki, Takeshima Hikari, Ishikawa Koki, Naitou Yuki, Yokoyama Tatsushi, Sakamoto Masayuki, Hayashi Katsuhiko, Kitamura Kazuo, Tagawa Yoshiaki, Okuda Satoru, Sato Tatsuo K, Imai Takeshi
| 期刊: | Nature Methods | 影响因子: | 32.100 |
| 时间: | 2026 | 起止号: | 2026 Apr;23(4):839-853 |
| doi: | 10.1038/s41592-026-03023-y | ||
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