ThinCert® 96 Well HTS Insert
Scale-up for membrane-based cell culture applications

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The ThinCert® 96 well HTS insert offers a high-throughput solution for cell-based membrane applications. Whether starting anew or transitioning from less effective options, you will benefit from clear research advantages including reliable performance, higher throughput, and significantly reduced assay expenses.
The product family offers a diverse selection of membrane specifications (pore size and density) that - depending on the pore density- allow for increased membrane transparency for best-in-class imaging.
The automation-compatible 96 well inserts are highly versatile and can be utilised for various applications such as transport, secretion, and diffusion studies, migration/invasion experiments, co-cultures, and the generation of tissue models (e.g., endothelia and epithelia).
Catalogue numbers: 655630, 655640, 655641, 655680, 655167, 655169
High-throughput in vitro airway modelling with ThinCert 96 Well HTS Insert
Growing cells in an air-liquid interface (ALI) is a popular method to generate a stable and functional model of the respiratory tract by recreating a pseudostratified epithelium in vitro. Greiner Bio-One explores how ALI cell cultures are cultivated on a porous membrane insert (ThinCert® 96 well HTS Insert).
High-throughput cell migration assay with ThinCert 96 Well HTS Insert
The ThinCert® 96 Well HTS Insert presents a novel high-throughput solution for conducting migration studies with unprecedented efficiency through the parallelization and miniaturization of experimental setups. The transparent porous membrane establishes consistent chemotactic gradients, providing researchers with the opportunity to delve into cell migration dynamics with improved precision and minimized experimental variability. In this application note, Greiner Bio-One presents a comprehensive step-by-step protocol detailing the utilization of the HTS Insert for migration studies emphasizing its seamless integration into high-throughput workflows.
Driving drug discovery with enhanced cell culture capabilities
Philipp Wachter discusses the potential for innovative cell culture membrane inserts to supercharge drug discovery efforts












