Source: Stern, S., et al., External Excitation of Neurons Using Electric and Magnetic Fields in One- and Two-dimensional Cultures. J. Vis. Exp. (2017)
This video demonstrates a method for stimulating neuronal cultures grown in a patterned circular ring on a coverslip, using a time-varying magnetic field.
1. Preparation of coverslips for 1D cultures.
2. Maintenance of the neuronal cultures.
3. Imaging of spontaneous or evoked activity in neuronal cultures with fluorescent dyes.
4. Magnetic Stimulation of Cultures
Note: The basic setup for magnetic stimulation is shown in Figure 1. On the top right is shown an inverted fluorescence microscope that is used to image calcium-sensitive dyes in the neurons. The magnetic coil (blue circles) is positioned about 5 mm concentrically above a neuronal ring culture, (blue outline). A pickup coil (red circle) on the circumference of the Petri dish monitors the voltage induced by the magnetic pulse. On the top left is shown the measured dynamics of the magnetic stimulator (MS) coil with a capacitor voltage load of 5,000 kV, as integrated from the pickup coil. The induced electric field (calculated for a ring radius of 14 mm) is depicted in green while the magnetic field is depicted in blue. On the bottom are shown images of the neuronal culture. At bottom left is a bright field image of a patterned 24-mm coverslip. The white areas are the neurons. The photographed pattern consists of concentric ring cultures with different radii. At the bottom right is a zoom onto a short segment of the rings, showing individual neurons. For a scale, the rings' width is about 200 µm.
Figure 1: Schematic of the Setup Used for Magnetic Stimulation of Neuronal Cultures. A. At the top is shown the magnetic coil (blue circles), which is located 5 mm concentrically above the neuronal ring culture, placed in a Petri dish (blue outline). A pickup coil (red circle) positioned on the circumference of the Petri dish measures the voltage induced by the magnetic pulse. At the bottom, the measured dynamics of the magnetic stimulator coil are shown (using an MS capacitor voltage load of 5,000 kV), as integrated from the pickup coil. The induced electric field (calculated for a ring radius of 14 mm) is depicted in green while the magnetic field is depicted in blue B. An inverted microscope images fluorescent dyes sensitive to calcium transients of neurons reacting to magnetic pulses. C. Neurons grown on a pattern of concentric rings, used for effective stimulation by the ring magnetic stimulator. D. Bright field microscope image of neurons grown on one line of the pattern.
Figure 2: Examples of Patterns of 1D Neuronal Cultures Used for Orienting the Electric Field with the Direction of Axonal Growth. A. circular pattern is used for the circular magnetic coil, when the induced electric field has a circular orientation. B. Line patterns are used when the induced or direct electric field has a single orientation.
Figure 3: Example Traces of Calcium Transients Imaged During Synchronous Network Bursts. A. An image of neurons that were dyed previous to the experiment with a calcium dye. B. Traces of intensity vs. time of the ROIs in A with the color of the trace representing the color of the border of the ROI in A. A large increase in intensity synchronized within the three ROIs represents a network burst.
The authors have nothing to disclose.
CaCl2 , 1M | Fluka | 21098 | Extracellular recording solution |
D-(+)-Glucose, 1M | Sigma-Aldrich | 65146 | Plating medium, Extracellular recording solution |
D-PBS | Sigma-Aldrich | D8537 | Cell Cultures |
Fibronectin | Sigma-Aldrich | F1141 | Bio Coating |
Fluo4, AM | Life technologies | F14201 | Imaging of spontaneous or evoked activity |
FUDR | Sigma-Aldrich | F0503 | Changing medium |
Gentamycin | Sigma-Aldrich | G1272 | Plating medium, Changing medium, Final medium. |
Hepes, 1M | Sigma-Aldrich | H0887 | Extracellular recording solution |
HI HS | BI | 04-124-1A | Plating medium, Changing medium, Final medium |
KCl, 3M | Merck | 1049361000 | Extracellular recording solution |
Laminin | Sigma-Aldrich | L2020 | Bio Coating. |
MEM x 1 | Gibco | 21090-022 | Plating medium, Changing medium, Final medium |
Magnesium chloride , 1M | Sigma-Aldrich | M1028 | Extracellular recording solution |
NaCl, 4M | Bio-Lab | 19030591 | Extracellular recording solution |
Octadecanethiol | Sigma-Aldrich | 1858 | Cleaning Cr-Au coated coverslips (1D cultures) |
Sucrose, 1M | Sigma-Aldrich | S1888 | Extracellular recording solution |
Uridine | Sigma-Aldrich | U3750 | Changing medium |
Sputtering machine | AJA International, Inc | ATC Orion-5Series | Coating glass with thin layers of metal |
Pen plotter | Hewlett Packard | HP 7475A | Etching of pattern to the coated coverslip |
Power supply | Matrix | MPS-3005 LK-3 | Power supply to the sputtering machine |
Epoxy | Cognis | Versamid 140 | Casting of homemade coils |
Epoxy | Shell | EPON 815 | Casting of homemade coils |