Yu Richard M K, Lin Chun Chi, Chan P K, Chow Elly Suk Hen, Murphy Margaret B, Chan Barbara P, Müller Ferenc, Strähle Uwe, Cheng S H
Department of Biology and Chemistry, City University of Hong Kong, Hong Kong.
Toxicol Sci. 2006 Apr;90(2):529-38. doi: 10.1093/toxsci/kfj115. Epub 2006 Jan 24.
Four-dimensional (4D) imaging is a powerful tool for studying three-dimensional (3D) changes in an organism through time. Different imaging systems for obtaining 3D data from in vivo specimens have been developed but usually involved large and expensive machines. We successfully used a simple inverted compound microscope and a commercially available program to study and quantify in vivo changes in sonic hedgehog (shh) expression during early development in a green fluorescence protein (GFP) transgenic zebrafish (Danio rerio) line. We applied the 4D system to study the effect of 100 microM cadmium exposure on shh expression. In control zebrafish embryos, shh:GFP expression was detected at about 9 h post-fertilization (hpf) and increased steadily in the next 7 h, peaking at about 17 hpf and decreasing in the following 4 h. In the same time period, different shh expression volumes were observed in cadmium-treated and control embryos. Embryos affected by cadmium-exposure demonstrated a down-regulation in shh expression. The number of GFP-expressing cells measured by flow cytometry decreased, and expression of neurogenin-1, a downstream target of the shh signaling pathway, was down-regulated, providing additional supporting data on the effects of cadmium on shh. In summary, we demonstrated the setup of a 4D imaging system and its application to the quantification of gene expression.
四维(4D)成像技术是一种通过时间研究生物体三维(3D)变化的强大工具。目前已经开发出了不同的成像系统用于从体内样本获取三维数据,但这些系统通常都体积庞大且价格昂贵。我们成功地使用了一台简单的倒置复合显微镜和一个商业软件,来研究和量化绿色荧光蛋白(GFP)转基因斑马鱼(Danio rerio)品系早期发育过程中sonic hedgehog(shh)基因表达的体内变化。我们应用4D系统研究了100微摩尔镉暴露对shh表达的影响。在对照斑马鱼胚胎中,受精后约9小时(hpf)检测到shh:GFP表达,并在接下来的7小时内稳步增加,在约17 hpf时达到峰值,随后4小时下降。在同一时间段内,镉处理组和对照组胚胎中观察到不同的shh表达量。受镉暴露影响的胚胎显示出shh表达下调。通过流式细胞术测量的GFP表达细胞数量减少,并且shh信号通路的下游靶点neurogenin-1的表达也下调,这为镉对shh的影响提供了额外的支持数据。总之,我们展示了一个4D成像系统的设置及其在基因表达定量中的应用。