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用于无溶剂和防褪色的 3D 成像的固态透明组织。

Transparent tissue in solid state for solvent-free and antifade 3D imaging.

机构信息

Institute of Biotechnology, National Tsing Hua University, Hsinchu, Taiwan.

Department of Medical Science, National Tsing Hua University, Hsinchu, Taiwan.

出版信息

Nat Commun. 2023 Jun 9;14(1):3395. doi: 10.1038/s41467-023-39082-4.

Abstract

Optical clearing with high-refractive-index (high-n) reagents is essential for 3D tissue imaging. However, the current liquid-based clearing condition and dye environment suffer from solvent evaporation and photobleaching, causing difficulties in maintaining the tissue optical and fluorescent features. Here, using the Gladstone-Dale equation [(n-1)/density=constant] as a design concept, we develop a solid (solvent-free) high-n acrylamide-based copolymer to embed mouse and human tissues for clearing and imaging. In the solid state, the fluorescent dye-labeled tissue matrices are filled and packed with the high-n copolymer, minimizing scattering in in-depth imaging and dye fading. This transparent, liquid-free condition provides a friendly tissue and cellular environment to facilitate high/super-resolution 3D imaging, preservation, transfer, and sharing among laboratories to investigate the morphologies of interest in experimental and clinical conditions.

摘要

高折射率(高 n)试剂的光学透明化对于 3D 组织成像至关重要。然而,当前基于液体的透明化条件和染料环境存在溶剂蒸发和光漂白的问题,这给维持组织的光学和荧光特性带来了困难。在这里,我们使用 Gladstone-Dale 方程 [(n-1)/密度=常数] 作为设计理念,开发了一种固态(无溶剂)高 n 丙烯酰胺基共聚物,用于嵌入小鼠和人类组织以进行透明化和成像。在固态下,荧光染料标记的组织基质被高 n 共聚物填充和包装,最大限度地减少了深层成像中的散射和染料褪色。这种透明、无液体的条件为组织和细胞提供了一个友好的环境,有助于进行高/超分辨率 3D 成像、保存、转移和实验室之间的共享,以在实验和临床条件下研究感兴趣的形态。

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