Russo Giulio, Lehne Franziska, Pose Méndez Sol M, Dübel Stefan, Köster Reinhard W, Sassen Wiebke A
Division of Cellular and Molecular Neurobiology, Zoological Institute, Braunschweig University of Technology; Department of Biotechnology, Institute of Biochemistry, Biotechnology and Bioinformatics, Braunschweig University of Technology.
Division of Cellular and Molecular Neurobiology, Zoological Institute, Braunschweig University of Technology.
J Vis Exp. 2018 Aug 17(138):57872. doi: 10.3791/57872.
Zebrafish embryos are transparent and develop rapidly outside the mother, thus allowing for excellent in vivo imaging of dynamic biological processes in an intact and developing vertebrate. However, the detailed imaging of the morphologies of distinct cell types and subcellular structures is limited in whole mounts. Therefore, we established an efficient and easy-to-use protocol to culture live primary cells from zebrafish embryos and adult tissue. In brief, 2 dpf zebrafish embryos are dechorionated, deyolked, sterilized, and dissociated to single cells with collagenase. After a filtration step, primary cells are plated onto glass bottom dishes and cultivated for several days. Fresh cultures, as much as long term differenciated ones, can be used for high resolution confocal imaging studies. The culture contains different cell types, with striated myocytes and neurons being prominent on poly-L-lysine coating. To specifically label subcellular structures by fluorescent marker proteins, we also established an electroporation protocol which allows the transfection of plasmid DNA into different cell types, including neurons. Thus, in the presence of operator defined stimuli, complex cell behavior, and intracellular dynamics of primary zebrafish cells can be assessed with high spatial and temporal resolution. In addition, by using adult zebrafish brain, we demonstrate that the described dissociation technique, as well as the basic culturing conditions, also work for adult zebrafish tissue.
斑马鱼胚胎是透明的,在母体外发育迅速,因此能够对完整且正在发育的脊椎动物体内的动态生物学过程进行出色的成像。然而,在整体标本中,对不同细胞类型和亚细胞结构形态的详细成像受到限制。因此,我们建立了一种高效且易于使用的方案,用于培养来自斑马鱼胚胎和成年组织的原代活细胞。简而言之,将2天龄的斑马鱼胚胎去卵膜、去卵黄、消毒,并用胶原酶解离成单细胞。经过过滤步骤后,将原代细胞接种到玻璃底培养皿上并培养数天。新鲜培养物以及长期分化的培养物均可用于高分辨率共聚焦成像研究。该培养物包含不同的细胞类型,在聚-L-赖氨酸包被上,横纹肌细胞和神经元较为突出。为了通过荧光标记蛋白特异性标记亚细胞结构,我们还建立了一种电穿孔方案,该方案可将质粒DNA转染到包括神经元在内的不同细胞类型中。因此,在操作者定义的刺激存在下,可以高空间和时间分辨率评估原代斑马鱼细胞的复杂细胞行为和细胞内动力学。此外,通过使用成年斑马鱼大脑,我们证明所描述的解离技术以及基本培养条件也适用于成年斑马鱼组织。