Literature DB >> 23237546

Light-triggered biocatalysis using thermophilic enzyme-gold nanoparticle complexes.

Matthew D Blankschien1, Lori A Pretzer, Ryan Huschka, Naomi J Halas, Ramon Gonzalez, Michael S Wong.   

Abstract

The use of plasmonic nanoparticle complexes for biomedical applications such as imaging, gene therapy, and cancer treatment is a rapidly emerging field expected to significantly improve conventional medical practices. In contrast, the use of these types of nanoparticles to noninvasively trigger biochemical pathways has been largely unexplored. Here we report the light-induced activation of the thermophilic enzyme Aeropyrum pernix glucokinase, a key enzyme for the decomposition of glucose via the glycolysis pathway, increasing its rate of reaction 60% with light by conjugating the enzyme onto Au nanorods. The observed increase in enzyme activity corresponded to a local temperature increase within a calcium alginate encapsulate of ~20 °C when compared to the bulk medium maintained at standard, nonthermophilic temperatures. The encapsulated nanocomplexes were reusable and stable for several days, making them potentially useful in industrial applications. This approach could significantly improve how biochemical pathways are controlled for in vitro and, quite possibly, in vivo use.

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Year:  2012        PMID: 23237546     DOI: 10.1021/nn3048445

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  9 in total

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Review 7.  Stimulus-Responsive Regulation of Enzyme Activity for One-Step and Multi-Step Syntheses.

Authors:  Christiane Claaßen; Tim Gerlach; Dörte Rother
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8.  Near-Infrared Light-Enhanced Protease-Conjugated Gold Nanorods As A Photothermal Antimicrobial Agent For Elimination Of Exotoxin And Biofilms.

Authors:  Wei Li; Xu Geng; Dongni Liu; Zhengqiang Li
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9.  Radiofrequency remote control of thermolysin activity.

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  9 in total

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