The ECM 830 is a versatile electroporation system suitable for applications for gene, drug and protein delivery including: CRISPR, mammalian cells, in vivo, ex vivo, in ovo tissue, ex plant and nuclear transfer. The ECM 830 is a square wave pulse generator designed for in vitro and in vivo applications. The versatility of the ECM 830 applications for gene, drug and protein delivery include; mammalian cells, in vivo, ex vivo tissue, zebrafish tissue and embryos, nuclear transfer, embryo manipulation, plant protoplast and basic bacteria and yeast transformations. The ECM 830 can be used in combination with a wide array of BTX specialty electrodes and accessories to enhance your molecular and drug delivery experiments. This instrument is intended for research and pre-clinical use only and is not for use in diagnostic or clinical procedures.
Features:
- A wide range of voltages from 5 to 3000V
- Pulse durations from 10µsec to 999ms
- Pre-pulse resistance check, over-current pulse abort, and instrument arc protection safety features
- Easy to use touchscreen user interface
- Logs of every pulse delivered for QC and troubleshooting
In vivo applications:
- Mammalian cell transfection
- In vitro, in vivo, ex vivo and in ovo tissue transfection
- Nuclear transfer
- Ex plant tissue transfection
- Plant protoplast transfection
- siRNA libraries
- High throughput 25- and 96-well electroporation
Contents:
- 452052: ECM 830 generator, safety dome, 30 x cuvettes (10 x 1mm, 10 x 2mm, 10 x 4mm), and cuvette rack 660
- 450661: ECM 830 generator, 630B safety stand, 30 x cuvettes (10 x 1mm, 10 x 2mm, 10 x 4mm), and cuvette rack 660
- 450662: ECM 830 generator only
- 450666: ECM 830 generator, safety dome, 30 x cuvettes (10 x 1mm, 10 x 2mm, 10 x 4mm), cuvette rack 660, 2 x 96 well plates (4mm gap), plate seals, HT-200 plate handler, and plate adaptor
- 450669: ECM 830 generator, pulse switcher, power supply and USB connector cable, safety stand, 30 x cuvettes (10 x 1mm, 10 x 2mm, 10 x 4mm), and cuvette rack
This product has met the following criteria: