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Webinar
Learn how Formulatrix PC Solutions enable end-to-end automation in protein crystallization—from experiment design to AI-powered data analysis—for faster, more reliable results.
Webinar
Learn how using the µPulse enables faster buffer exchange compared to equilibrium dialysis, gel filtration chromatography, and dead-end filtration—leading to increased productivity and reduced costs.
Webinar
Introducing aµtoPulse: a fully automated TFF system for high-throughput concentration and buffer exchange, featuring a record-low 250 µL hold-up volume.
Webinar
This webinar will explore how the Mantis enhances throughput and reliability in a clinical proteomics research setting.
Webinar
Join us in this webinar to learn more about how combining the advantages of the microfluidic format with high-throughput imaging opens exciting perspectives in protein crystallization studies.
Webinar
In this webinar, we will discuss the effectiveness of the µPulse – TFF system for cell harvesting. Compared to centrifugation, the µPulse yielded a significantly higher number of cells, demonstrating superior harvesting efficiency.
Webinar
In this webinar, we will introduce the aµtoPulse, our newest tangential flow filtration (TFF) system. The aµtoPulse is a fully automated, high throughput, walk-away TFF system for sample concentration and buffer exchange at the lowest TFF hold-up volume in history: 250 µL.
Webinar
Join us in this webinar to learn more about how Sherlock can enhance the scoring of your crystallization experiments, saving you time and providing you confidence in your results.
Webinar
In this webinar, we will discuss how the Olink Explore HT workflow, coupled with Formulatrix’s automated low-volume liquid handler, the F.A.S.T.TM, facilitates the quantification of over 5,000 proteins from as little as three microliters of sample.
Webinar
In this webinar, we will present case studies utilizing the µPulse TFF system in exosome production workflows. We will highlight how the µPulse workflow is a fast, gentle, and walk-away approach compared to dead-end filtration for exosome harvesting from culture media.