Molecular biology surface plasmon resonance system Octet® SF3
high-throughput

Molecular biology surface plasmon resonance system - Octet® SF3 - Sartorius Group - high-throughput
Molecular biology surface plasmon resonance system - Octet® SF3 - Sartorius Group - high-throughput
Molecular biology surface plasmon resonance system - Octet® SF3 - Sartorius Group - high-throughput - image - 2
Molecular biology surface plasmon resonance system - Octet® SF3 - Sartorius Group - high-throughput - image - 3
Molecular biology surface plasmon resonance system - Octet® SF3 - Sartorius Group - high-throughput - image - 4
Molecular biology surface plasmon resonance system - Octet® SF3 - Sartorius Group - high-throughput - image - 5
Molecular biology surface plasmon resonance system - Octet® SF3 - Sartorius Group - high-throughput - image - 6
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Characteristics

Applications
for molecular biology
Other characteristics
high-throughput

Description

To keep pace with the current global demand for antibody fragment characterization, vaccine research and whole cell biologics, continuous technological advances are crucial in helping turn initial research hypotheses into actionable results. This is especially true within the field of label-free protein analysis. Accordingly, Sartorius now offers complete bio-layer interferometry (BLI) and surface plasmon resonance (SPR) label-free protein analysis solutions to match your current and future research requirements. With exceptional sensitivity for both small and large molecules, low baseline noise and drift, large injection volumes and novel OneStep® and NeXtStep™ Gradient Injection technologies, the new Octet® SF3 allows users to generate high-quality binding kinetics and affinity data in a fraction of the time compared to standard multi-cycle or single-cycle kinetics. Combined with software designed by users for users, the Octet® SF3 offers a robust, high-throughput, low maintenance SPR solution for the rapid characterization of a wide variety of biomolecular interactions. OneStep® Injection Technology Two standard injection formats: OneStep® Injection Technology and industry standard multi-cycle kinetics (MCK) Eliminate the need to prepare concentration dilution series for each analyte, saving on time, reagents and plate space Diffuse a single concentration of analyte into a stream of buffer to create an analyte concentration gradient of at least three orders of magnitude Accurate measurement of molecule kinetics and affinity from a single analyte concentration

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