Source: Silic, M. R., et al. Visualization of Cellular Electrical Activity in Zebrafish Early Embryos and Tumors. J. Vis. Exp. (2018)
In this video, we demonstrate a procedure to generate a stable zebrafish transgenic line constitutively expressing a fluorescent voltage indicator protein following the co-injection of the Tol2 transposon system comprising the transposase mRNA and Tol2 transposon construct encoding the fluorescent voltage indicator.
All procedures involving animal models have been reviewed by the local institutional animal care committee and the JoVE veterinary review board.
1. Microinjection
The authors have nothing to disclose.
Agarose RA | Amresco | N605-500G | For making the injection gels |
Bright field dissection scope | Nikon | SMZ 745 | Dechorionation, microinjection, mounting |
Disposable transfer pipette 3.4 ml | Thermo Scientific | 13-711-9AM | Fish embryos and water transfer |
Forceps #5 | WPI | 500342 | Dechorionation and needle breaking |
Loading tip | Eppendorf | 930001007 | For loading injection solution into capilary needles |
Microinjection mold | Adaptive Science Tools | TU-1 | To prepare agaorse mold tray for holding fish embryos during injection |
Microinjector | WPI | Pneumatic Picopump PV820 | Microinjection injector |
Micro-manipulator | WPI | Microinjector MM3301R | Microinjection operation |
Micropipette puller | Sutter instrument | P-1000 | For preparing capillary needle |
Mineral oil | Amresco | J217-500ml | For calibrating injection volume |
Plastic Petri dishes | VWR | 25384-088 | For holding fish or fish embryos during imaging process |
Stage Micrometer | Am Scope | MR100 | Microinjection volume calibration |
Thin wall glass capillaries | WPI | TW100F-4 | Raw glass for making cappilary needle |