Babaei Fatemeh, Hong Tony Liu Chi, Yeung Kelvin, Cheng Shuk Han, Lam Yun Wah
1 Department of Biology and Chemistry, City University of Hong Kong , Hong Kong SAR, China .
2 Department of Biomedical Sciences, City University of Hong Kong , Hong Kong SAR, China .
Zebrafish. 2016 Aug;13(4):310-6. doi: 10.1089/zeb.2016.1245. Epub 2016 Apr 8.
One attractive quality of zebrafish as a model organism for biological research is that transparency at early developmental stages allows the optical imaging of cellular and molecular events. However, this advantage cannot be applied to adult zebrafish. In this study, we explored the use of contrast-enhanced X-ray micro-computed tomography (microCT) on adult zebrafish in which the organism was stained with iodine, a simple and economical contrasting agent, after fixation. Tomographic reconstruction of the microCT data allowed the three-dimensional (3D) volumetric analyses of individual organs in adult zebrafish. Adipose tissues showed a higher affinity to iodine and were more strongly contrasted in microCT. As traditional histological techniques often involve dehydration steps that remove tissue lipids, iodine-contrasted microCT offers a convenient method for visualizing fat deposition in fish. Utilizing this advantage, we discovered a transient accumulation of lipids around the heart after ventricular amputation, suggesting a correlation between lipid distribution and heart regeneration. Taken together, microCT is a versatile technique that enables the 3D visualization of zebrafish organs, as well as other fish models, in their anatomical context. This simple method is a valuable new addition to the arsenal of techniques available to this model organism.
斑马鱼作为生物研究的模式生物,其一个吸引人的特质是在早期发育阶段具有透明性,这使得细胞和分子事件的光学成像成为可能。然而,这一优势无法应用于成年斑马鱼。在本研究中,我们探索了在成年斑马鱼上使用对比增强型X射线显微计算机断层扫描(microCT)技术,具体做法是在固定后用碘(一种简单且经济的对比剂)对鱼体进行染色。对microCT数据进行断层重建后,可以对成年斑马鱼的各个器官进行三维(3D)体积分析。脂肪组织对碘具有更高的亲和力,在microCT中对比度更强。由于传统组织学技术通常涉及脱水步骤,会去除组织脂质,因此碘对比microCT为观察鱼类脂肪沉积提供了一种便捷方法。利用这一优势,我们发现心室切断术后心脏周围会出现脂质的短暂积累,这表明脂质分布与心脏再生之间存在关联。综上所述,microCT是一种通用技术,能够在解剖学背景下对斑马鱼器官以及其他鱼类模型进行3D可视化。这种简单方法是该模式生物现有技术手段中的一项有价值的新补充。