Enzyme purification using silica-based supported ionic liquid-like phase materials

Enzymes are widely studied biomolecules with relevant applications in several industries. Specifically, L-asparaginase (ASNase) is an aminohydrolase enzyme widely applied as a biopharmaceutical, as an acrylamide reduction agent, and as an enzyme-based biosensor for L-asparagine quantification. While...

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Bibliographic Details
Main Author: Nunes, João C. F. (author)
Other Authors: Almeida, Mafalda R. (author), Santos-Ebinuma, Valéria C. (author), Neves, Márcia C. (author), Freire, Mara G. (author), Tavares, Ana P. M. (author)
Format: conferenceObject
Language:eng
Published: 2022
Subjects:
Online Access:http://hdl.handle.net/10773/34094
Country:Portugal
Oai:oai:ria.ua.pt:10773/34094
Description
Summary:Enzymes are widely studied biomolecules with relevant applications in several industries. Specifically, L-asparaginase (ASNase) is an aminohydrolase enzyme widely applied as a biopharmaceutical, as an acrylamide reduction agent, and as an enzyme-based biosensor for L-asparagine quantification. While widely distributed in nature, e.g., plants, animals, and microorganisms, most commercial ASNase are from recombinant microorganisms, whose production can be performed through fermentation. However, downstream processing of ASNase accounts for up to 80% of total production cost. Thus, a novel cost-effective downstream process is of emerging concern to allow its widespread use. This work aims the development of a cost-effective purification process for ASNase from recombinant Bacillus subtilis cell lysates obtained through ultrasound sonication. Silica-based supported ionic liquid-like phase materials were studied as cost-effective ASNase purification supports by a simple adsorption method. The optimization of experimental conditions, e.g., medium pH and material/cell lysate ratio was performed regarding ASNase purity. Through this approach, process costs, energy consumption, and waste produced, may be significantly reduced, leading to ASNase price decrease, thereby allowing its widespread application.