Cellectricon - Cellaxess Elektra Discovery Platform
Manufactured by Cellectricon
Enables in-situ manipulation and monitoring of cell cultures directly in HCA compatible 96- and 384-well microplates at any cellular stage
The Cellaxess® Elektra technology can be accessed for your particular research and discovery applications through direct purchase, with separate assay and protocol development services for fast technology enablement, or through outsourcing of assay development and/or screening services to Cellectricon labs.
Applications for the Cellaxess® Elektra include stimulation & voltage control of cultures in small molecule screening, transfection of siRNA and cDNA to primary cell cultures in genomic screening applications, as well as delivery of small molecules and antibodies in lead identification and target validation. The Cellaxess® Elektra Discovery Platform can be equipped with an imaging-based microplate reader for recording of transient fluorescence and luminescence signals from living cells.
Applications for the Cellaxess® Elektra include stimulation & voltage control of cultures in small molecule screening, transfection of siRNA and cDNA to primary cell cultures in genomic screening applications, as well as delivery of small molecules and antibodies in lead identification and target validation. The Cellaxess® Elektra Discovery Platform can be equipped with an imaging-based microplate reader for recording of transient fluorescence and luminescence signals from living cells.
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Features of Cellaxess Elektra Discovery Platform
Cellaxess® Elektra represents a revolutionary concept in automated electric field manipulation of adherent cells. Developed in close collaboration with leading pharmaceutical and biotechnology companies, the platform is highly diverse and can be applied to a wide variety of cellular manipulations in cell biology research. The platform enables in-situ manipulation & monitoring of cell cultures directly in HCA compatible 96- and 384-well microplates at any cellular developmental stage with excellent viability and completely retained cellular morphology.
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