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Protein A Chromatography

High-Throughput Purification and Desalting of His-Tagged Proteins on the Analytik Jena CyBio Felix

October 23, 2025

Generating assay-ready proteins depends on two key steps: isolating the
protein of interest from complex starting material and ensuring the purified protein is in an appropriate buffer. Here we describe a high-throughput workflow for the purification and buffer exchange of his6-tagged proteins. Using Ni-IMAC IMCStips® followed by SizeX150 IMCStips® on the Analytik Jena CyBio FeliX, his6-tagged GFP was successfully isolated from bacterial lysate with >80% recovery and >95% purity from affinity purification and >96% reduction in small molecule contaminants with SizeX buffer exchange. This streamlined approach provides a reproducible and efficient route to prepare proteins suitable for downstream applications, reducing the variability and labor typically associated with manual workflows.

Read moreHigh-Throughput Purification and Desalting of His-Tagged Proteins on the Analytik Jena CyBio Felix

Automated Antibody Purification and Buffer Exchange Using Protein A and SizeX150 IMCStips® on the Opentrons Flex® 

September 22, 2025

High-quality antibody preparation requires both efficient purification and effective buffer exchange, but conventional workflows are often time-consuming and inconsistent. IMCS has developed validated, automation-ready methods that combine Protein A IMCStips® for selective IgG capture with SizeX150 IMCStips® for rapid buffer exchange and small molecule removal. Implemented on the Opentrons Flex®, these methods deliver >80% recovery and >95% purity in a streamlined workflow that minimizes operator time while supporting flexible throughput. By reducing complexity and ensuring reproducible results, these methods enable laboratories to achieve formulation-ready antibodies faster and more reliably than manual approaches.

Read moreAutomated Antibody Purification and Buffer Exchange Using Protein A and SizeX150 IMCStips® on the Opentrons Flex® 

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IMCS recognizes our customers’ needs vary, which is why we provide tailored tools and services to help you reach your laboratory’s goals.

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ABOUT IMCS

INTEGRATED MICRO-CHROMATOGRAPHY SYSTEMS, INC. (IMCS) IS A BIOTECHNOLOGY COMPANY FOCUSED ON DELIVERING TOOLS AND SERVICES THAT HELP PAVE THE WAY FOR THE FUTURE OF PRECISION MEDICINE. WE STRIVE TO ADDRESS THE GROWING NEEDS OF CLINICAL AND RESEARCH LABORATORIES THROUGH ADVANCED TECHNOLOGIES THAT INCREASE TESTING EFFICIENCY AND ACCURACY.

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Caleb R. Schlachter, Ph.D.

Principal Scientist
Caleb R. Schlachter, Ph.D., as the Principal Scientist at IMCS, leads and provides guidance for several research and development projects that involve proteins, including enzymes for glycan hydrolysis and glycan synthesis. He has co-authored multiple patents, posters, and peer-reviewed articles on β-glucuronidases and sulfatases.
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Gray D. Amick, Ph.D.

Director of Operations
Gray D. Amick, Ph.D., is the Director of Operations at IMCS with over 26 years of experience in forensic DNA analysis and toxicology. Prior to joining IMCS, he led forensic DNA testing for the Richland County Sheriff’s Department as technical leader and lab director. He has been court-qualified as an expert over 100 times and has authored and co-authored multiple posters and peer-reviewed articles.
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Amanda C. McGee

Research Scientist
Amanda C. McGee is a Research Scientist at IMCS involved with enzyme characterizations, new analytical method developments, and advanced technical support. She joined IMCS with several years of experience in analytical testing for active pharmaceutical ingredients as per cGMP, USP and ICH guidelines. She has co-authored peer reviewed articles in the Journal of Analytical Toxicology and presented research at national and international conferences.
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L. Andrew Lee, Ph.D.

Co-Founder and Chief Scientific Officer
L. Andrew Lee, Ph.D. co-founded IMCS and leads research and development efforts in enzyme engineering and automated micro-chromatography workflows. He directs new market efforts in glycan synthesis, supported by three NIH Fast-Track awards.

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