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4D-Nucleofector 96-well Unit 4D-Nucleofector 96-well Unit
FEATURES: • Up to 96 independent programs can be run per plate, processed automatically in • Modular 6 × 16 NucleocuvetteTM Plate for scalable throughput • Fulfills pre-requisites for liquid handling integration PRODUCT OVERVIEW The...
4D-Nucleofector™ LV Unit 4D-Nucleofector™ LV Unit
PRODUCT OVERVIEW: Large-Scale Transfection Using the 4D-NucleofectorTM LV Unit. The LV Unit allows for closed, scalable transfection of larger cell numbers in the range of 1x107 to 1x109 cells. Transfection protocols can be established...
4D-Nucleofector Core Unit 4D-Nucleofector Core Unit
The 4D-Nucleofector Core Unit is the controlling unit of the 4D-Nucleofector System. The different functional units can be added in a modular way to the 4D-Nucleofector Core Unit and each is suited for different applications: X Unit: •...
4D Nucleofector X Unit 4D Nucleofector X Unit
The 4D-Nucleofector X Unit is one of the three functional modules of the 4D-Nucleofector System. It supports Nucleofection of various cell numbers in different formats. The 4D-Nucleofector X Unit is also required in order to run the...
4D-Nucleofector Y Unit 4D-Nucleofector Y Unit
Adherent Nucleofection Using the Y Unit - Electroporation-based methods have so far required cells to be in suspension for transfection. The Nucleofector Technology entered a new era and allows direct Nucleofection of cells in adherence....
384-well Nucleofector system plate handler, power supply and PC 384-well Nucleofector system plate handler,...
The 384-well Nucleofector System is an independent platform for high-throughput Nucleofection in a 384-well format. With an extremely fast plate processing time of 1 minute per plate, it is perfectly suited for screening applications...
Nucleofector 2b Device Nucleofector 2b Device
FEATURES: • basic, single cuvette based NucleofectorTM System for efficient transfection of hard-to-transfect cell lines and primary cells • Different substrates (e.g., DNA vectors or siRNA oligonucleotides) in low-throughput format •...