Mobile microrobots for bioengineering applications
Мобильные микророботы для применения в биоинженерии
2017-01-01
SCID: 54.1/kpsjm7fc
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bioengineering applicationsmobile microrobotsorgan-on-a-chip microfluidicstargeted drug deliveryuntethered mobile robots
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Abstract (AI)
Untethered micron-scale mobile robots can navigate and non-invasively perform specific tasks inside unprecedented and hard-to-reach inner human body sites and inside enclosed organ-on-a-chip microfluidic devices with live cells. They are aimed to operate robustly and safely in complex physiological environments where they will have a transforming impact in bioengineering and healthcare. Research along this line has already demonstrated significant progress, increasing attention, and high promise over the past several years. The first-generation microrobots, which could deliver therapeutics and other cargo to targeted specific body sites, have just been started to be tested inside small animals toward clinical use. Here, we review frontline advances in design, fabrication, and testing of untethered mobile microrobots for bioengineering applications. We convey the most impactful and recent strategies in actuation, mobility, sensing, and other functional capabilities of mobile microrobots, and discuss their potential advantages and drawbacks to operate inside complex, enclosed and physiologically relevant environments. We lastly draw an outlook to provide directions in the veins of more sophisticated designs and applications, considering biodegradability, immunogenicity, mobility, sensing, and possible medical interventions in complex microenvironments.
Key Findings
1
First-generation microrobots have begun testing in small animals, marking early progress toward clinical applications.
2
Future development must address biodegradability, immunogenicity, mobility, sensing, and safe medical intervention in complex physiological microenvironments.
3
Microrobots enable non-invasive, site-specific tasks, including targeted delivery of therapeutics and other cargo.
4
Recent advances span microrobot actuation, mobility, sensing, fabrication, and functional capabilities for bioengineering environments.
5
Untethered micron-scale mobile robots can navigate inaccessible internal body sites and enclosed organ-on-chip devices containing live cells.
Research Object
untethered micron-scale mobile robots for bioengineering applications
Research Subject
their design, fabrication, actuation, mobility, sensing, functional capabilities, and safe operation in complex physiological and enclosed microfluidic environments
Publication Details
Publication Date
2017-01-01
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