School of Basic Medical Science, Guangzhou Medical University, Guangzhou, China.
State Key Laboratory of Precision Electronic Manufacturing Technology and Equipment, School of Electromechanical Engineering, Guangdong University of Technology, Guangzhou, China.
J Biophotonics. 2019 Dec;12(12):e201900235. doi: 10.1002/jbio.201900235. Epub 2019 Oct 2.
Retina, the only light sensor in the human eye, is hidden and extremely fragile. Optimized animal models and efficient imaging techniques are very important for the study of retinopathy. In this work, the rapid retinal injury process and the long-term retinal repair process were in vivo continuously evaluated with a novel imaging technology spectral-domain optical coherence tomography (SD-OCT) in a unique animal model zebrafish. Acute retinal injury was constructed on adult zebrafish by needle injection surgery. SD-OCT imaging was carried out immediately after the mechanical injury. The retinal hemorrhage, which lasted only 5 seconds, could be visualized dynamically by SD-OCT. The process of blood clearance and retinal repair was also evaluated because SD-OCT imaging is nondestructive. Both SD-OCT imaging results and behavioral analyzing results demonstrated that zebrafish retina could be repaired by itself within 15 days, which was confirmed by the results of pathological experiment.
视网膜是人类眼睛中唯一的光传感器,它隐藏在深处且极其脆弱。优化的动物模型和高效的成像技术对于研究视网膜病变非常重要。在这项工作中,一种新型的成像技术——光谱域光相干断层扫描(SD-OCT),在一种独特的动物模型斑马鱼中,对快速的视网膜损伤过程和长期的视网膜修复过程进行了连续的体内评估。通过针注射手术在成年斑马鱼上构建急性视网膜损伤,然后立即进行 SD-OCT 成像。通过 SD-OCT 可以动态可视化持续仅 5 秒的视网膜出血。由于 SD-OCT 成像是非破坏性的,因此还评估了血液清除和视网膜修复的过程。SD-OCT 成像结果和行为分析结果都表明,在 15 天内,斑马鱼的视网膜可以自行修复,这一结果通过病理实验得到了证实。