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Proton diffusion and hydrolysis enzymatic reaction in 100 nm scale biomimetic nanochannels
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Proton diffusion and hydrolysis enzymatic reaction in 100 nm scale biomimetic nanochannels

Takashi Saruko, Kyojiro Morikawa, Takehiko KitamoriKazuma Mawatari
Biomicrofluidics, 卷.16(4), 頁.044109
07/2022

摘要

nanofluidics Biomedical Engineering Materials Science (all) Condensed Matter Physics Fluid Flow and Transfer Processes Colloid and Surface Chemistry

Liquids in 10-100 nm spaces are expected to play an important role in biological systems. However, the liquid properties and their influence on biological activity have been obscured due to the difficulty in nanoscale measurements, either in vivo or in vitro. In this study, an in vitro analytical platform for biological systems is established. The nanochannels were modified with lipid bilayers, thereby serving as a model for biological confinement, e.g., the intercellular or intracellular space. As a representative property, the proton diffusion coefficient was measured by a nanofluidic circuit using fluorescein as a pH probe. It was verified that proton conduction was enhanced for channel widths less than 330 nm. A proton-related enzymatic reaction, the hydrolysis reaction, was also investigated, and a large confinement effect was observed.

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