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Overview of the benefits of the Agilent Seahorse XF tissue metabolism workflow using the Seahorse XF Flex Analyzer and the Seahorse XF Flex 3D Capture Microplates-L
An optimized Agilent XF 3D tissue workflow that allows for detection and quantitative assessment of energy metabolism in tissue materials is presented.
Agilent Seahorse XF 3D Mito Stress Test Tissue workflow quick start guide for use with the Agilent Seahorse XF Flex Analyzer and the Agilent Seahorse XF
Flex 3D Capture Microplate-L.
Discover Agilent's automated imaging-based method for robust analysis of CAR T cell cytotoxicity, enhancing cancer treatment efficacy and research efficiency.
Demonstration of the wide range of metabolic rates that can be quantified on the Agilent Seahorse XF Flex analyzer through the use of different Seahorse XF microplates and in vitro differentiation of adipocytes.
This flyer describes the new Seahorse XF Flex 3D Capture Microplate, and the improvements it includes over other plates in the Seahorse cell culture plate portfolio.It also includes data generated with the plate, and ordering information.
There is a need for functional potency assays that can be used to rapidly test the efficacy of different immunotherapy approaches, including but not limited tosmall molecules, biologics, cell therapies, or combinations of these agents
This quick reference guide provides detailed instructions on how to prepare, perform, and evaluate the impedance-based TCID50 protocol using the xCELLigence RTCA
Software Pro Virology module to determine viral titer
The invasion of the 3D spheroid in the presence or absence of drug treatment was monitored and quantified using the brightfield and fluorescence live cell time-lapse
we demonstrated consistent production of CAR T-cells using the functionally closed and automated cell manufacturing Lonza Cocoon platform, using a novelcombination of cell analysis parameters obtained from an Agilent xCELLigence RTCA system, a...
Automated viral infectivity application leveraging Agilent BioTek Cytation automated live-cell imaging and the AVIA AI-based analysis platform from ViQi, Inc.
This application note presents an automated imaging and analysis workflow for genetically-encoded fluorescent biosensors yielding quantitative insight into live-cell metabolism.