Source: Carvalho, M. et al., A Model of Epileptogenesis in Rhinal Cortex-Hippocampus Organotypic Slice Cultures. J. Vis. Exp. (2021).
This video describes the technique for recording the epileptiform activity of rhinal cortex-hippocampus organotypic slices ex vivo using electrophysiology or EEG set-up. This helps to study the dynamics and progression of epileptogenesis and screen potential therapeutic targets to treat epilepsy.
All procedures involving animal models have been reviewed by the local institutional animal care committee and the JoVE veterinary review board.
1. Preparation of rhinal cortex-hippocampus slices
NOTE: The preparation of rhinal cortex-hippocampus slices uses P6-7 Sprague-Dawley rats.
2. Electrophysiological recordings
NOTE: Electrophysiological recordings were performed in rhinal cortex-hippocampus organotypic slices at 7, 14, and 21 DIV in an interface-type chamber. Recordings were obtained with an amplifier, digitized, and analyzed with software. All recordings were band-pass filtered (eight-pole Bessel filter at 60 Hz and Gaussian filter at 600 Hz).
Figure 1: Detailed procedure for the preparation of rhinal cortex-hippocampus organotypic slices. (A) Remove the brain from the head and place it in ice-cold GBSS with the dorsal surface faced up. (B) Insert the forceps into the cerebellum. Open the brain through the midline and remove the excess tissue over the hippocampus. (C) With a spatula cut below the hippocampus, as indicated by the arrows. (D) Place both hippocampi facing up and parallel to each other onto the filter paper and cut 350 µm slices on the tissue chopper. (E) Place the sliced hippocampus in ice-cold GBSS. (F) Separate the slices with the help of round-tipped glass electrodes. (G) Choose only the slices that depict an intact rhinal cortex and hippocampus. (H, I) With the help of a round-tipped glass electrode push each slice to the spatula and place it on the insert. (J) Remove the GBSS surrounding the slice. (K) Place four slices per insert. (L) To change the medium, lift the insert and aspirate the medium with a glass pipette. (M) Add fresh medium by placing the pipette between the insert and the walls of the 6-wells plate. Make sure there are no air bubbles beneath the slices.
The authors have nothing to disclose.
Artificial cerebrospinal fluid (aCSF) | Homemade | ||
B-27™ Supplement (50X), serum free | Thermo Fisher Scientific | 17504-044 | |
Blades for scalpel handle | Fine Science Tools | 10011-00 | |
Bovine Serum Albumin (BSA) | NZYTech | MB04602 | 5% BSA is used to dilute the primary antibodies. Add 0.5g BSA in 10 mL PBS. |
Brain/Tissue Slice Chamber System | Warner Instruments | ||
Cell culture inserts, 30 mm, hydrophilic PTFE | Millipore SAS | PICM03050 | |
Conventional incubator | Thermo Scientific Heraeus | BB15, Function Line | Set to 37 °C and 5% CO2 |
Gey’s Balanced Salt Solution (GBSS) | Biological Industries | 01-919-1A | |
Glass Electrodes | Science Products | GB150F-10 | Round tips homemade |
Interface chamber | Warner Instruments | BSC-HT Haas Top | |
Iris Spatula Curved | Fine Science Tools | 10092-12 | |
Lens Cleaning Paper | TIFFEN | ||
L-Glutamine solution 200 mM (Q) | Thermo Fisher Scientific | 25030-024 | |
Tissue Chopper | The Mickle Laboratory Engineering CO. LTD. | MTC/2 | Set to 350 μm |