使用桌面3D打印技术生成用于斑马鱼自动筛选试验的定向工具。
Generation of orientation tools for automated zebrafish screening assays using desktop 3D printing.
作者信息
Wittbrodt Jonas N, Liebel Urban, Gehrig Jochen
机构信息
Acquifer AG, Karlsruhe, Germany.
出版信息
BMC Biotechnol. 2014 May 1;14:36. doi: 10.1186/1472-6750-14-36.
BACKGROUND
The zebrafish has been established as the main vertebrate model system for whole organism screening applications. However, the lack of consistent positioning of zebrafish embryos within wells of microtiter plates remains an obstacle for the comparative analysis of images acquired in automated screening assays. While technical solutions to the orientation problem exist, dissemination is often hindered by the lack of simple and inexpensive ways of distributing and duplicating tools.
RESULTS
Here, we provide a cost effective method for the production of 96-well plate compatible zebrafish orientation tools using a desktop 3D printer. The printed tools enable the positioning and orientation of zebrafish embryos within cavities formed in agarose. Their applicability is demonstrated by acquiring lateral and dorsal views of zebrafish embryos arrayed within microtiter plates using an automated screening microscope. This enables the consistent visualization of morphological phenotypes and reporter gene expression patterns.
CONCLUSIONS
The designs are refined versions of previously demonstrated devices with added functionality and strongly reduced production costs. All corresponding 3D models are freely available and digital design can be easily shared electronically. In combination with the increasingly widespread usage of 3D printers, this provides access to the developed tools to a wide range of zebrafish users. Finally, the design files can serve as templates for other additive and subtractive fabrication methods.
背景
斑马鱼已成为用于全生物体筛选应用的主要脊椎动物模型系统。然而,斑马鱼胚胎在微孔板孔内缺乏一致的定位,仍然是自动筛选实验中所采集图像进行比较分析的一个障碍。虽然存在解决定向问题的技术方案,但由于缺乏简单且廉价的工具分发和复制方式,这些方案的推广常常受阻。
结果
在此,我们提供一种经济高效的方法,使用桌面3D打印机生产与96孔板兼容的斑马鱼定向工具。打印出的工具能够使斑马鱼胚胎在琼脂糖形成的腔室内进行定位和定向。通过使用自动筛选显微镜获取微孔板内排列的斑马鱼胚胎的侧视图和背视图,证明了其适用性。这使得形态学表型和报告基因表达模式能够得到一致的可视化。
结论
这些设计是先前已展示设备的改进版本,具有新增功能且生产成本大幅降低。所有相应的3D模型均可免费获取,并且数字设计可以轻松地通过电子方式共享。结合3D打印机日益广泛的使用,这使得广大斑马鱼研究人员能够获得所开发的工具。最后,设计文件可作为其他增材和减材制造方法的模板。