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Ultrasound-triggered local anaesthesia

Author(s)
Rwei, Alina Y; Paris, Juan L.; Wang, Bruce; Wang, Weiping; Axon, Christopher D.; Vallet-Regí, María; Langer, Robert S; Kohane, Daniel S.; ... Show more Show less
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Abstract
On-demand relief of local pain would allow patients to control the timing, intensity and duration of nerve blocks in a safe and non-invasive manner. Ultrasound would be a suitable trigger for such a system, as it is in common clinical use and can penetrate deeply into the body. Here, we demonstrate that ultrasound-triggered delivery of an anaesthetic from liposomes allows the timing, intensity and duration of nerve blocks to be controlled by ultrasound parameters. On insonation, the encapsulated sonosensitizer protoporphyrin IX produced reactive oxygen species that reacted with the liposomal membrane, leading to the release of the potent local anaesthetic tetrodotoxin. Repeatable ultrasound-triggered nerve blocks were achieved in vivo, with the nerve-block duration depending on the extent and intensity of insonation. There was no detectable systemic toxicity and tissue reaction was benign in all groups. On-demand, personalized local anaesthesia could be beneficial for the management of relatively localized pain states and could potentially minimize opioid use. ©2017 The Author(s).
Date issued
2017-08
URI
https://hdl.handle.net/1721.1/130004
Department
Massachusetts Institute of Technology. Department of Materials Science and Engineering; Massachusetts Institute of Technology. Department of Chemical Engineering; Koch Institute for Integrative Cancer Research at MIT
Journal
Nature Biomedical Engineering
Publisher
Springer Nature America, Inc
Citation
Rwei, Alina Y. et al., "Ultrasound-triggered local anaesthesia." Nature Biomedical Engineering 1, 8 (August 2017): 644–53 ©2017 Authors
Version: Author's final manuscript
ISSN
2157-846X

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