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Ionic Species Affect the Self-Propulsion of Urease-Powered Micromotors

Authors :
Xavier Arqué
Xavier Andrés
Rafael Mestre
Bernard Ciraulo
Jaime Ortega Arroyo
Romain Quidant
Tania Patiño
Samuel Sánchez
Source :
Research, Vol 2020 (2020)
Publication Year :
2020
Publisher :
American Association for the Advancement of Science (AAAS), 2020.

Abstract

Enzyme-powered motors self-propel through the catalysis of in situ bioavailable fuels, which makes them excellent candidates for biomedical applications. However, fundamental issues like their motion in biological fluids and the understanding of the propulsion mechanism are critical aspects to be tackled before a future application in biomedicine. Herein, we investigated the physicochemical effects of ionic species on the self-propulsion of urease-powered micromotors. Results showed that the presence of PBS, NaOH, NaCl, and HEPES reduced self-propulsion of urease-powered micromotors pointing towards ion-dependent mechanisms of motion. We studied the 3D motion of urease micromotors using digital holographic microscopy to rule out any motor-surface interaction as the cause of motion decay when salts are present in the media. In order to protect and minimize the negative effect of ionic species on micromotors’ performance, we coated the motors with methoxypolyethylene glycol amine (mPEG) showing higher speed compared to noncoated motors at intermediate ionic concentrations. These results provide new insights into the mechanism of urease-powered micromotors, study the effect of ionic media, and contribute with potential solutions to mitigate the reduction of mobility of enzyme-powered micromotors.

Subjects

Subjects :
Science

Details

Language :
English
ISSN :
26395274
Volume :
2020
Database :
Directory of Open Access Journals
Journal :
Research
Publication Type :
Academic Journal
Accession number :
edsdoj.61cd728473fa41d0a126d56a5810dc49
Document Type :
article
Full Text :
https://doi.org/10.34133/2020/2424972