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Multiplex genome editing of mammalian cells for producing recombinant heparin

Metab Eng. 2022-01; 
Bryan E Thacker, Kristen J Thorne, Colin Cartwright, Jeeyoung Park, Kimberly Glass, Annie Chea, Benjamin P Kellman, Nathan E Lewis, Zhenping Wang, Anna Di Nardo, Susan T Sharfstein, Walter Jeske, Jeanine Walenga, John Hogwood, Elaine Gray, Barbara Mulloy, Jeffrey D Esko, Charles A Glass
Products/Services Used Details Operation
Custom Vector Construction transductions were performed using lentivirus produced by the UC San Diego Vector Development Core Laboratory with open reading frame and lentiviral constructs produced by GenScript. Get A Quote

摘要

Heparin is an essential anticoagulant used for treating and preventing thrombosis. However, the complexity of heparin has hindered the development of a recombinant source, making its supply dependent on a vulnerable animal population. In nature, heparin is produced exclusively in mast cells, which are not suitable for commercial production, but mastocytoma cells are readily grown in culture and make heparan sulfate, a closely related glycosaminoglycan that lacks anticoagulant activity. Using gene expression profiling of mast cells as a guide, a multiplex genome engineering strategy was devised to produce heparan sulfate with high anticoagulant potency and to eliminate contaminating chondroitin sulfate from mast... More

关键词

Anticoagulation, Heparan sulfate, Heparin, Mastocytoma, Metabolic engineering, Synthetic biology