Costa Filipa J, Dias Marta S, Costa Rui O, Pedro Joana R, Almeida Ramiro D
Institute of Biomedicine, Department of Medical Sciences - iBiMED, University of Aveiro.
CNC - Center for Neuroscience and Cell Biology, University of Coimbra.
J Vis Exp. 2020 Aug 8(162). doi: 10.3791/61431.
Chick ciliary ganglia (CG) are part of the parasympathetic nervous system and are responsible for the innervation of the muscle tissues present in the eye. This ganglion is constituted by a homogenous population of ciliary and choroidal neurons that innervate striated and smooth muscle fibers, respectively. Each of these neuronal types regulate specific eye structures and functions. Over the years, neuronal cultures of the chick ciliary ganglia were shown to be effective cell models in the study of muscle-nervous system interactions, which communicate through cholinergic synapses. Ciliary ganglion neurons are, in its majority, cholinergic. This cell model has been shown to be useful comparatively to previously used heterogeneous cell models that comprise several neuronal types, besides cholinergic. Anatomically, the ciliary ganglion is localized between the optic nerve (ON) and the choroid fissure (CF). Here, we describe a detailed procedure for the dissection, dissociation and in vitro culture of ciliary ganglia neurons from chick embryos. We provide a step-by-step protocol in order to obtain highly pure and stable cellular cultures of CG neurons, highlighting key steps of the process. These cultures can be maintained in vitro for 15 days and, hereby, we show the normal development of CG cultures. The results also show that these neurons can interact with muscle fibers through neuro-muscular cholinergic synapses.
鸡睫状神经节(CG)是副交感神经系统的一部分,负责支配眼部的肌肉组织。该神经节由睫状神经元和脉络膜神经元组成,它们分别支配横纹肌纤维和平滑肌纤维。这些神经元类型各自调节特定的眼部结构和功能。多年来,鸡睫状神经节的神经元培养物已被证明是研究肌肉 - 神经系统相互作用的有效细胞模型,它们通过胆碱能突触进行通讯。睫状神经节神经元大多数是胆碱能的。与先前使用的包含多种神经元类型(除胆碱能神经元外)的异质细胞模型相比,这种细胞模型已被证明是有用的。从解剖学上讲,睫状神经节位于视神经(ON)和脉络膜裂(CF)之间。在这里,我们描述了从鸡胚胎中解剖、解离和体外培养睫状神经节神经元的详细程序。我们提供了一个逐步的方案,以获得高度纯净和稳定的睫状神经节神经元细胞培养物,突出该过程的关键步骤。这些培养物可以在体外维持15天,在此,我们展示了睫状神经节培养物的正常发育。结果还表明,这些神经元可以通过神经 - 肌肉胆碱能突触与肌肉纤维相互作用。