Ouyang Qianqian, Qin Ruixiu, Li Qian, Huang Peixin, Lin Changmei, Xu Qingbao, Quan Weiyan, Fang Fang, Zhu Yuzhen, Liao Jing, Wu Kefeng
The second Affiliated Hospital of Guangdong Medical University, Zhanjiang 524023, China; Marine Biomedical Research Institution, Guangdong Medical University, Zhanjiang 524023, PR China; The Marine Biomedical Research Institute of Guangdong Zhanjiang, Zhanjiang 524023, PR China.
Marine Biomedical Research Institution, Guangdong Medical University, Zhanjiang 524023, PR China; The Marine Biomedical Research Institute of Guangdong Zhanjiang, Zhanjiang 524023, PR China.
Colloids Surf B Biointerfaces. 2025 Jan;245:114262. doi: 10.1016/j.colsurfb.2024.114262. Epub 2024 Sep 18.
Hydrogel-based tissue clearing technologies have shown significant promise for deep-tissue imaging and subcellular-level optical 3D reconstruction of whole organs. This study proposes a novel approach utilizing a deep eutectic solvent (DES) formulated with glucose and m-xylylene-diamine (MXDA) to create a highly efficient tissue-clearing hydrogel system named the passive hydrogel clearing system (PHCS). PHCS achieved efficient tissue clearing through a single-step tissue gelation process. The resulting hydrogel-tissue complex exhibited thermoreversible properties, transitioning into a sol state upon heating and vice versa upon cooling. Notably, PHCS enabled media embedding, facilitating immunofluorescence histopathology. Additionally, the system demonstrated compatibility with various fluorescent probes, particularly lipophilic dyes. Our study successfully employed PHCS for the reconstruction of vascular structures within the intestine, enabling the generation of a 3D pathology model. These findings suggest that PHCS is a promising novel method for fabricating hydrogels for tissue clearing and holds great potential for application as a mounting medium for morphological imaging.
基于水凝胶的组织透明化技术在深层组织成像和全器官亚细胞水平光学三维重建方面显示出巨大潜力。本研究提出了一种新方法,利用由葡萄糖和间二甲苯二胺(MXDA)配制的深共熔溶剂(DES)来创建一种高效的组织透明化水凝胶系统,称为被动水凝胶透明化系统(PHCS)。PHCS通过单步组织凝胶化过程实现了高效的组织透明化。所得的水凝胶-组织复合物表现出热可逆特性,加热时转变为溶胶状态,冷却时则反之。值得注意的是,PHCS实现了介质包埋,便于进行免疫荧光组织病理学研究。此外,该系统与各种荧光探针兼容,尤其是亲脂性染料。我们的研究成功地将PHCS用于肠道内血管结构的重建,生成了一个三维病理学模型。这些发现表明,PHCS是一种用于制备组织透明化水凝胶的有前景的新方法,作为形态学成像的封固介质具有巨大的应用潜力。