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  • Polyethyleneimine-Functionalized Carbon Nanotubes Enabling Potent Antimycotic Activity of Lyticase.

Polyethyleneimine-Functionalized Carbon Nanotubes Enabling Potent Antimycotic Activity of Lyticase.

Polymers (2022-03-11)
Weibing Liang, Ming Chen, Lin Li, Liqiang Yan, Xiuli Wang, Xiongzhi Wu, Chenghong Lei
ABSTRACT

In this work, the positively-charged polymer polyethyleneimine was used to functionalize carbon nanotubes and activated carbon to load antimycotic enzyme lyticase. Interestingly, polyethyleneimine played a dual role functionalizing carbon materials to synergistically enhance antimycotic activity of loaded lyticase as well as exhibiting its own apparent antimycotic activity, where the enhanced enzymatic activity of loaded lyticase on functionalized carbon nanotubes was more than 2.8 times as high as the activity of free enzyme in solution. The actual activity of loaded lyticase on functionalized carbon nanotubes was applied with Penicillium janthinellum, exhibiting much faster digesting lysis of the bacteria in comparison with free lyticase. The synergistic and potent antimycotic activities from combined action of antimycotic lyticase and polyethyleneimine on carbon nanotubes provides a new antimycotic protection for medicine, food industry, and other biochemical processes.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Yeast, powder, slightly brown
Sigma-Aldrich
Lyticase from Arthrobacter luteus, lyophilized powder, ≥2,000 units/mg protein, Protein ≥20 % by biuret