Source: Sanchez, K. R., et al., Assessment of the Effects of Endocrine Disrupting Compounds on the Development of Vertebrate Neural Network Function Using Multi-electrode Arrays. J. Vis. Exp.(2018)
This video demonstrates a method to isolate neurons from the forebrain of an early-stage chick embryo and culture them on a microelectrode array to form a neuronal network.
All procedures involving animal models have been reviewed by the local institutional animal care committee and the JoVE veterinary review board.
1. Material Setup
2. Chick Embryonic Neuron Culture and Network Activity
Figure 1: Schematic of the protocol depicting the steps from dissection of chick forebrain to dissociation, plating, and recording of network activity.
The authors have nothing to disclose.
#5 foreceps | Fine Science Tools | 11251-10 | |
Axion Muse MEA | Axion Biosystems | M64-GL1-30Pt200 | |
Curved forceps | Fine Science Tools | 11272-50 | |
Ethanol | Sigma-Aldrich | 64-17-5 | |
HBSS | Fisher | 14170112 | |
Hemacytometer | Fisher | 02-671-6 | |
Matrigel Growth Factor Reduced, Phenol Red-Free | BD Biosciences | 356231 | |
Neurobasal medium | BrainBits | Nb4-500 | |
Pasteur pipettes | Fisher | 13-678-20A | |
Spring scissors | Fine Science Tools | 15514-12 | |
Sylgard bottom dissection dishes | Living Systems Instrumentaion | DD-90-S-BLK-3PK | |
Trypan Blue dye | Fisher | 15-250-061 | |
Trypsin-EDTA | Fisher | 15400054 |