
xCELLigence eSight Reagents
Agilent xCELLigence eSight Reagents for live-cell imaging are amenable to use with a wide variety of effector cell types and expressing target cells. Monitor cell behavior, cell function, and cell biology processes using impedance-based and image-based measurements simultaneously.
- RTCA Reagents, Kits & Accessories
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Product Details
- Efficiently monitor cell health and behavior with ready to use xCELLigence RTCA eSight live-cell imaging reagents
- Streamline your workflow with information about successfully deployed reagent kits in specific applications
- Enjoy increased confidence in your results with high quality reagents from a reliable source
- Combine with other Agilent fluorescent live imaging reagents and dyes for multiplexed measurements, including cell viability, apoptosis, and/or cytotoxicity in a single well
Cellular Impedance Explained
The functional unit of a cellular impedance assay is a set of gold microelectrodes fused to the bottom surface of a microtiter plate well. When submersed in an electrically conductive solution (such as buffer or standard tissue culture medium), the application of an electric potential across these electrodes causes electrons to exit the negative terminal, pass through bulk solution, and then deposit onto the positive terminal to complete the circuit.
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Improving T-Cell Activation and Serial Killing Through Metabolic Modulation
This editorial showcases Agilent solutions for metabolic modulation enhancing CAR T-cell activation, persistence, and serial killing for improved cancer immunotherapy
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Agilent xCELLigence RTCA Instrumentation Supports Potency Assay Development in Recent FDA Approval
Agilent xCELLigence Real-Time Cell Analysis (RTCA) technology supports the testing of accuracy and reliability in AUCATZYL, a recently approved CAR T therapy by Autolus Therapeutics. The xCELLigence RTCA technology supported the development and implementation of the potency assay. By providing precise and reliable cell analysis capabilities, Agilent supported Autolus's efforts in establishing robust analytical methods.
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