Nantes Université, CHU Nantes, Inserm, TENS, The Enteric Nervous System in Gut and Brain Diseases, IMAD, Nantes, France.
Nantes Université, CNRS, INSERM, l'institut du thorax, F-44000, Nantes, France.
Commun Biol. 2023 Mar 2;6(1):236. doi: 10.1038/s42003-023-04593-9.
Major advances have been achieved in imaging technologies but most methodological approaches currently used to study the enteric neuronal functions rely on exogenous contrast dyes that can interfere with cellular functions or survival. In the present paper, we investigated whether full-field optical coherence tomography (FFOCT), could be used to visualize and analyze the cells of the enteric nervous system. Experimental work on whole-mount preparations of unfixed mouse colons showed that FFOCT enables the visualization of the myenteric plexus network whereas dynamic FFOCT enables to visualize and identify in situ individual cells in the myenteric ganglia. Analyzes also showed that dynamic FFOCT signal could be modified by external stimuli such veratridine or changes in osmolarity. These data suggest that dynamic FFOCT could be of great interest to detect changes in the functions of enteric neurons and glia in normal and disease conditions.
在成像技术方面取得了重大进展,但目前用于研究肠神经元功能的大多数方法都依赖于外源性对比染料,这些染料可能会干扰细胞功能或存活。在本文中,我们研究了全视野光相干断层扫描(FFOCT)是否可用于可视化和分析肠神经系统的细胞。对未固定的小鼠结肠整体标本进行的实验工作表明,FFOCT 可使肠肌神经丛网络可视化,而动态 FFOCT 则可使肠神经节中的单个细胞原位可视化和识别。分析还表明,动态 FFOCT 信号可以通过外部刺激(如藜芦碱或渗透压变化)进行修饰。这些数据表明,动态 FFOCT 可能对检测正常和疾病条件下肠神经元和神经胶质细胞功能的变化非常有意义。