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HumanZyme, Inc. is the global leader in providing highly authentic recombinant human proteins from human cells. Our process is cost-effective and scalable making our proteins suitable for the research, diagnostic, drug discovery and biopharmaceutical markets. HumanZyme leverages its proprietary engineered human cells, expression vector, and cell culture media to ensure high-yield production of recombinant proteins with native human post-translational modifications, such as disulfide bonds and glycosylation.
How we collect information about you: When you register with HumanZyme via this Site, we may collect and retain personal information (such as your name, organization, address, phone number, fax number, email address, billing information, transaction and credit card information, and so on) to enable you to order our products or services, make requests, or register for customized communications programs. We may ask you to provide additional information so that we can tailor our subsequent communications to you and improve our products and services through this website or other means.
HumanZyme was founded in 2005 to develop a line of authentic human recombinant proteins for various life science applications. Prior to 2005, commercially available “human” proteins were predominantly limited to protein molecules manufactured in E. coli, insect cells (Sf9), or alternative mammalian cells (CHO). Such non-human expression systems, while adept at producing large quantities of protein, often cannot make a native human protein.
Below, please find data sheets on our current products. If you have questions about our products, or require more information, please email orders@humanzyme.com . For G4 Protocol please check here .
Below, please find data sheets on our current products. If you have questions about our products, or require more information, please email orders@humanzyme.com . HumanKine ® proteins are expressed in human cells and therefore are truly native human proteins with proper human structure, glycosylation, folding, and other post-translational modifications. Antibodies derived from HumanKine proteins, therefore, can serve as better detection reagents than antibodies raised against proteins from non-human expression systems.
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