Built to enable rapid scale up to higher throughput drug screening models, the idenTx 9 Plate replaces the capacity of three individual idenTx 3 Chips, now fully integrated into a standard SBS plate format that enables 9 simultaneous experiments on a single plate.
The idenTx 9 Plate retains the same ease-of-use as our idenTx 3Chips and is a seamless way to progress through feasibility while maintaining the common handling features and laboratory automation compatibility that comes with the standard lab plate format.
The AIM System makes it easy to create 3D microphysiological systems for your molecular research, drug discovery & development, and design of targeted therapeutics. At its core is the Identix chip, a specialized microfluidics device for performing multicellular 3D cell culture in 3D and 2D compartments. The modular system fits into your labs current workflow without requiring the purchase or installation of dedicated equipment. Available accessories include plate holders that conform to 384 well plates, and luer connectors for modular expansion. Quickly and easily create your own assays or apply validated assay protocols, which include angiogenesis, vasculogenesis, metastasis (spheroid dispersion, intra- & extravasation), immuno-oncology (immune checkpoint, T-cell killing efficiency), 3D culture of tumor spheroids/ biopsies/ organoids, and other organotypic models.
Features
A single idenTx 9 Plate replaces three individual idenTx 3 Chips, enabling 9 independent experiments
Experiment channels are identical to idenTx 3 Chips
Compliance with the SBS/ANSI 384-well plate standard
Stackable to minimize incubator space usage
Built-in fluid reservoirs and plate cover for evaporation control
Gas permeable laminate for effective gas exchange
Excellent optical clarity
Sterile & ready-to-use
Benefits
Easily transfer to other idenTx systems for future higher throughput assays
Compatible with a wide range of imaging modalities
Compatible with all polymerizable gels
Enables monotypic or organotypic co-culture models
Enables the control of interstitial flow across the 3D gel region
Enables the control of chemical gradients across the 3D gel region
Designed for rapid media exchange through vacuum aspiration with no risk of over-aspiration
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