Author
Listed:
- Zhirong Liu
(Chinese Academy of Sciences
University of Chinese Academy of Sciences
Beijing Institute of Technology)
- Chuyu Tang
(Chinese Academy of Sciences
University of Chinese Academy of Sciences)
- Nannan Han
(Shanghai Jiao Tong University School of Medicine)
- Zhuoheng Jiang
(Chinese Academy of Sciences
University of Chinese Academy of Sciences)
- Xi Liang
(Chinese Academy of Sciences
University of Chinese Academy of Sciences)
- Shaobo Wang
(Chinese Academy of Sciences)
- Quanhong Hu
(Chinese Academy of Sciences)
- Cheng Xiong
(Chinese Academy of Sciences)
- Shuncheng Yao
(Chinese Academy of Sciences
University of Chinese Academy of Sciences)
- Zhuo Wang
(Chinese Academy of Sciences)
- Zhong Lin Wang
(Chinese Academy of Sciences
University of Chinese Academy of Sciences
Yonsei University)
- Duohong Zou
(Shanghai Jiao Tong University School of Medicine)
- Linlin Li
(Chinese Academy of Sciences
University of Chinese Academy of Sciences)
Abstract
Patients suffering from coronary artery disease (CAD) or peripheral arterial disease (PAD) can benefit from bypass graft surgery. For this surgery, arterial vascular grafts have become promising alternatives when autologous grafts are inaccessible but suffer from numerous postimplantation challenges, particularly delayed endothelialization, intimal hyperplasia, high risk of thrombogenicity and restenosis, and difficulty in timely detection of these subtle pathological changes. We present an electronic vascular conduit that integrates flexible electronics into bionic vascular grafts for in situ, real-time and long-term monitoring for hemadostenosis and thrombosis concurrent with postoperative vascular repair. Following bypass surgery, the integrated bioelectronic sensor based on the triboelectric effect enables monitoring of the blood flow in the vascular graft and identification of lesions in real time for up to three months. In male nonhuman primate cynomolgus monkeys, the electronic vascular conduit, with an integrated wireless signal transmission module, enables wireless and real-time hemodynamic monitoring and timely identification of thrombi. This electronic vascular conduit demonstrates potential as a treatment-monitoring platform, providing a sensitive and intuitive monitoring technique during the critical period after bypass surgery in patients with CAD and PAD.
Suggested Citation
Zhirong Liu & Chuyu Tang & Nannan Han & Zhuoheng Jiang & Xi Liang & Shaobo Wang & Quanhong Hu & Cheng Xiong & Shuncheng Yao & Zhuo Wang & Zhong Lin Wang & Duohong Zou & Linlin Li, 2025.
"Electronic vascular conduit for in situ identification of hemadostenosis and thrombosis in small animals and nonhuman primates,"
Nature Communications, Nature, vol. 16(1), pages 1-14, December.
Handle:
RePEc:nat:natcom:v:16:y:2025:i:1:d:10.1038_s41467-025-58056-2
DOI: 10.1038/s41467-025-58056-2
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