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Nanodroplet-mediated catheter-directed sonothrombolysis of retracted blood clots

Medicine and Health

Nanodroplet-mediated catheter-directed sonothrombolysis of retracted blood clots

L. Goel, H. Wu, et al.

This groundbreaking research by Leela Goel et al. reveals the innovative use of a sub-megahertz, forward-viewing intravascular transducer for nanodroplet-mediated sonothrombolysis. The study highlights a significant enhancement in retracted clot lysis, providing a safer and more effective treatment strategy compared to traditional methods. Discover the future of clot therapy!... show more
Abstract
One major challenge in current microbubble (MB) and tissue plasminogen activator (tPA)-mediated sonothrombolysis techniques is effectively treating retracted blood clots, owing to the high density and low porosity of retracted clots. Nanodroplets (NDs) have the potential to enhance retracted clot lysis owing to their small size and ability to penetrate into retracted clots to enhance drug delivery. For the first time, we demonstrate that a sub-megahertz, forward-viewing intravascular (FVI) transducer can be used for ND-mediated sonothrombolysis, in vitro. In this study, we determined the minimum peak negative pressure to induce cavitation with low-boiling point phase change nanodroplets and clot lysis. We then compared nanodroplet mediated sonothrombolysis to MB and tPA mediate techniques. The clot lysis as a percent mass decrease in retracted clots was 9 ± 8%, 9±5%, 16±5%, 14 ± 9%, 17 ± 9%, 30 ± 8%, and 40 ± 9% for the control group, tPA alone, tPA + US, MB + US, MB + PA + US, ND + US, and ND + PA + US groups, respectively. In retracted blood clots, combined ND- and tPA-mediated sonothrombolysis was able to significantly enhance retracted clot lysis compared with traditional MB and tPA-mediated sonothrombolysis techniques. Combined nanodroplet with tPA-mediated sonothrombolysis may provide a feasible strategy for safely treating retracted clots.
Publisher
Microsystems & Nanoengineering
Published On
Jan 01, 2021
Authors
Leela Goel, Huaiyu Wu, Bohua Zhang, Jinwook Kim, Paul A. Dayton, Zhen Xu, Xiaoning Jiang
Tags
nanodroplet
sonothrombolysis
intravascular transducer
clot lysis
cavitation
tPA
medical technology
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