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Site-specific PEGylation crosslinking of L-asparaginase subunits to improve its therapeutic efficiency

biorxiv. 2018; 
Josell Ramirez-Paz,  Manoj Saxena,  Louis J. Delinois,  Freisa M. Joaquín-Ovalle,  Shiru Lin,  Zhongfang Chen,  Virginia A. Rojas-Nieves,   View Kai Griebenow
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Molecular Biology Reagents The plasmid pET-22b(+) was purchased from Novagen (Darmstadt, Germany). The vector pET22b-AspII was synthetized by GenScript (Piscataway, NJ, USA). Gibson’s assembling kit was purchased from New England BioLabs (Ipswich, MA, USA). Primers were synthetized and DNA sequencing was performed by MCLAB (San Francisco, CA, USA).  Get A Quote

Abstract

L-Asparaginase is an enzyme successfully being used in the treatment of acute lymphoblastic leukemia, acute myeloid leukemia, and non-Hodgkin’s lymphoma. However, some disadvantages still limit its full application potential, e.g., allergic reactions, pancreatitis, and blood clotting impairment. Therefore, much effort has been directed at improving its performance. A popular strategy is to randomly conjugate L-asparaginase with mono-methoxy polyethylene glycol, which became a commercial FDA approved formulation widely used in recent years. To improve this formulation by PEGylation, herein we performed cysteine-directed site-specific conjugation of the four L-asparaginase subunits to prevent dissociation-induc... More

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