Source: Heidemann, M., et al. Investigating Functional Regeneration in Organotypic Spinal Cord Co-cultures Grown on Multi-electrode Arrays. J. Vis. Exp. (2015).
The video demonstrates the functional regeneration of propriospinal connections using a multi-electrode array (MEA)-based assay. The spinal cord slices are placed on the MEA and are allowed to fuse. The fused slices are mechanically separated by creating a lesion, inducing propriospinal neurons to grow over the lesion and connect the slices. The electrical activity of the slices is assessed to identify the regeneration of functional connections.
1. Preparation of MEAs
Note: MEAs are composed of a glass substrate, micro-fabricated metal electrodes and a SU-8 polymer insulation layer. For the purpose of this study, commercially available MEAs were ordered with a customized electrode array layout (Figure 1 A&B). The 68 electrodes are arranged in a rectangular grid that is split into two zones by a 300 µm wide groove free of electrodes, electrical leads and insulation. Each electrode is 40 x 40 µm in size and they are spaced apart by 200 µm from center to center. Four large ground electrodes are positioned around the recording site. They differ from other commercially available standard MEAs in their size (21 mm x 21 mm) and they have no fixed recording chamber.
2. Ingredients Required for the Preparation and Growth of Organotypic Cultures
3. Spinal Cord Tissue Dissection
Note: Procedure yields, depending on the number of embryos, spinal cord slices for about 25 – 35 co-cultures and is prepared inside a laminar flow hood under sterile conditions.
4. Mounting Spinal Cord Tissue Slices on MEAs
5. Mechanical Lesions
6. Electrophysiological Recordings of Spontaneous Activity
Figure 1. Display and Analysis of Spontaneous Activity. (A) Diagram of a MEA. The platinum covered electrodes are depicted in black, the transparent wires in red and the groove in the middle of the MEA in yellow. (B) Close-up of the electrode array located in the center of the MEA. The diagrams are kindly provided by Dr. M. Heuschkel. (C) Bright-field image of an 8 DIV old culture. The slices have grown and fused along the sides facing each other. The yellow bar represents the electrode- and insulation-free groove of the MEA. Scale bar = 400 µm (D) Timeline of experiments. Two spinal cord slices of E14 rat embryos are placed next to each other on MEAs. Within a few days, the slices grow and fuse along the sides facing each other. In a time frame of 8 – 28 DIV, complete lesions are performed through the fusion site. Two to three weeks later the spontaneous activity is recorded and the cultures are fixed for immunohistochemical stainings. (E) Spontaneous activity traces of each individual electrode of a 23 DIV old culture. For clearer visualization, only every second trace is illustrated. Orange traces depict activity that has been recorded from the slice on the right side, blue traces from the left side. Most of the bursts are synchronized between the two. The arrow points to a burst occurring in the left slice that only partially propagated to the right slice. The activity in the right slice however did not reach the chosen threshold of at least 25% of the averaged maximal peak activity of the according side and therefore, is not detected as a burst. Magnifications on the right depict the last synchronized burst pair. (F) Raster plot of the activity shown in (E). (G) Network activity plot with defined bursts (bars below baseline) of the activity shown in (E).
The authors have nothing to disclose.
Planar multielectrode array | Qwane Biosciences | custom-made according to the design of our lab | |
Nutrient medium | For 100 ml | ||
Dulbeccos modified Eagle's medium | Gibco | 31966-021 | 80 ml |
Horse serum | Gibco | 26050-070 | 10 ml |
distilled, sterile water | 10 ml | ||
Nerve growth factor-7S [5ng/mL] | Sigma-Aldrich | N0513 | 200 µl |
reconstituted in wash solution with 1% BSA | |||
Coating solution | |||
Extracellular matrix gel | BD Biosciences | 356230 | Must stay cold at all times; dilute 1:50 with medium optimized for prenatal and embryonic neurons |
medium optimized for prenatal and embryonic neurons | Gibco | 21103-049 | |
Wash solution | [mg/L] | ||
MgCl2-6H2O | 100 | ||
MgSO4-7H2O | 100 | ||
KCl | 400 | ||
KH2PO4 | 60 | ||
NaCl | 8000 | ||
Na2HPO4 anhydrous | 48 | ||
D-Glucose (Dextrose) | 1000 | ||
According to the protocol on http://www.lifetechnologies.com/ch/en/home/technical-resources/media-formulation.152.html | |||
Extracellular solution (pH 7.4) | [mM] | ||
NaCl | 145 | ||
KCl | 4 | ||
MgCl2 | 1 | ||
CaCl2 | 2 | ||
HEPES | 5 | ||
Na-pyruvate | 2 | ||
Glucose | 5 | ||
Chicken Plasma | Sigma-Aldrich | P2366 | Lyophilized, reconstitute with wash solution |
Micropipette | World Precision Instruments, Inc. | MF28G-5 | |
Thrombin | Merck Millipore | 1123740001 | irritant, sensitizing, reconstitute with wash solution |
Tissue culture flat tube 10 (= roller tube) | Techno Plastic Products AG | 91243 |