Investigation of surface anticoagulation in electrically active mechanical mitral valve in swine model

Prosthetic mechanical heart valve (MHV) implantation requires lifelong anticoagulation. Overdosage of anticoagulation increases the risk of bleeding, while suboptimal therapy may induce thromboembolism. Inspired by the negative charge of the endothelial glycocalyx, which repels platelets and anionic proteins, we developed an MHV assembly that applies a negative potential to the valve’s blood‑contacting surfaces. Early in vitro work showed that imposing ~ 0.5 V across a bileaflet MHV reproduces the anti-thrombotic behavior of the endothelium. Here we test this MHV assembly in vivo using a swine model. Four Pigs were implanted in the standardization phase with the first design of the MHV assembly; In the experimental phase, three pigs (test group) received the redesigned MHV assembly, and three control pigs received the MHV without electrical activation. Pigs were monitored for 20 weeks after cessation of dual antiplatelet therapy. All four standardization phase test animals succumbed to valve thrombosis. Following the implantation of the redesigned electrically activated MHV assembly, the three test animals survived to the end of the study without valve thrombosis, while two of the three controls died with valve thrombosis. These findings support electrical neo‑endothelialization as a viable strategy to eliminate the need for long-term systemic anticoagulation after MHV implantation.

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Publication Details

Journal
Scientific Reports
Published
2026-10-07
DOI
https://doi.org/10.1038/s41598-026-74647-5
Primary Topic
Cardiac Valve Diseases and Treatments
Type
article
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article

Investigation of surface anticoagulation in electrically active mechanical mitral valve in swine model

Aditya Koppula, Lokeswara Rao Sajja, Thomas Mathew
Scientific Reports
Cardiac Valve Diseases and Treatments
article

Investigation of surface anticoagulation in electrically active mechanical mitral valve in swine model

Aditya Koppula, Lokeswara Rao Sajja, Thomas Mathew
article en

Abstract

Prosthetic mechanical heart valve (MHV) implantation requires lifelong anticoagulation. Overdosage of anticoagulation increases the risk of bleeding, while suboptimal therapy may induce thromboembolism. Inspired by the negative charge of the endothelial glycocalyx, which repels platelets and anionic proteins, we developed an MHV assembly that applies a negative potential to the valve’s blood‑contacting surfaces. Early in vitro work showed that imposing ~ 0.5 V across a bileaflet MHV reproduces the anti-thrombotic behavior of the endothelium. Here we test this MHV assembly in vivo using a swine model. Four Pigs were implanted in the standardization phase with the first design of the MHV assembly; In the experimental phase, three pigs (test group) received the redesigned MHV assembly, and three control pigs received the MHV without electrical activation. Pigs were monitored for 20 weeks after cessation of dual antiplatelet therapy. All four standardization phase test animals succumbed to valve thrombosis. Following the implantation of the redesigned electrically activated MHV assembly, the three test animals survived to the end of the study without valve thrombosis, while two of the three controls died with valve thrombosis. These findings support electrical neo‑endothelialization as a viable strategy to eliminate the need for long-term systemic anticoagulation after MHV implantation.

Scientific Reports
CARE Hospitals (IN), Apollo Hospitals (IN), ESIC Hospital (IN), Star Hospitals (IN)
Openalex Percentile: Top 11%
Cardiac Valve Diseases and Treatments
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Investigation of surface anticoagulation in electrically active mechanical mitral valve in swine model — Aditya Koppula, Lokeswara Rao Sajja, et al. · Scientific Reports (2026) | TGRS Research Map | TGRS