Janus‐Structured Poly(Lipoic Acid‐co‐Caffeic Acid) Patch for Asymmetric Underwater Adhesion in Sutureless Gastric Perforation Treatment

Bioadhesives for internal organ repair suffer from weak underwater adhesion, poor mechanical compatibility and indiscriminate tissue adhesion. Herein, we report the synthesis of poly(lipoic acid-co-caffeic acid) (poly(LA-CA)) exhibiting tunable adhesive and mechanical properties according to the polymer configuration. By copolymerization of caffeic acid, thermal polymerization of lipoic acid yields branched copolymer of poly(LA-CA), which is viscous and highly adhesive in wet conditions, while radical polymerization initiated by ammonium persulphate produces elastic and non-adhesive linear poly(LA-CA). Robust asymmetrically adhesive Janus patch is then fabricated by coating a branched poly(LA-CA) layer on a linear copolymer substrate. The patch demonstrates combined performances, particularly showing universal, tough, and sustained adhesion in various environments, together with antioxidant, anti-inflammatory and antibacterial properties. Using the Janus poly(LA-CA) patch, gastric perforations of as large as 1 cm in diameter are cured in Bama miniature pigs without suturing. The sutureless treatment simultaneously prevents postoperative adhesion and gastric fluid leakage, resulting in 100% survival of the animals, superior to conventional suture repair method. The poly(LA-CA) material is promising for soft tissue injury repair with high clinical translation potential.

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Publication Details

Journal
Advanced Healthcare Materials
Published
2026-09-30
DOI
https://doi.org/10.1002/adhm.71781
Primary Topic
Surgical Sutures and Adhesives
Type
article
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article

Janus‐Structured Poly(Lipoic Acid‐co‐Caffeic Acid) Patch for Asymmetric Underwater Adhesion in Sutureless Gastric Perforation Treatment

Xiaozhong Qu, Shili Ai, Shanyue Guan, Xiaochen Qiu et al.
Advanced Healthcare Materials
Surgical Sutures and Adhesives
article

Janus‐Structured Poly(Lipoic Acid‐co‐Caffeic Acid) Patch for Asymmetric Underwater Adhesion in Sutureless Gastric Perforation Treatment

Xiaozhong Qu, Shili Ai, Shanyue Guan, Xiaochen Qiu, Feiyu Zhao, B Liu, 徐文通, Pengfei Zhong, Fenglin Zhang
article en

Abstract

Bioadhesives for internal organ repair suffer from weak underwater adhesion, poor mechanical compatibility and indiscriminate tissue adhesion. Herein, we report the synthesis of poly(lipoic acid-co-caffeic acid) (poly(LA-CA)) exhibiting tunable adhesive and mechanical properties according to the polymer configuration. By copolymerization of caffeic acid, thermal polymerization of lipoic acid yields branched copolymer of poly(LA-CA), which is viscous and highly adhesive in wet conditions, while radical polymerization initiated by ammonium persulphate produces elastic and non-adhesive linear poly(LA-CA). Robust asymmetrically adhesive Janus patch is then fabricated by coating a branched poly(LA-CA) layer on a linear copolymer substrate. The patch demonstrates combined performances, particularly showing universal, tough, and sustained adhesion in various environments, together with antioxidant, anti-inflammatory and antibacterial properties. Using the Janus poly(LA-CA) patch, gastric perforations of as large as 1 cm in diameter are cured in Bama miniature pigs without suturing. The sutureless treatment simultaneously prevents postoperative adhesion and gastric fluid leakage, resulting in 100% survival of the animals, superior to conventional suture repair method. The poly(LA-CA) material is promising for soft tissue injury repair with high clinical translation potential.

Advanced Healthcare Materials
Chinese Academy of Sciences (CN), Chinese PLA General Hospital (CN), First Affiliated Hospital of Chinese PLA General Hospital (CN), Technical Institute of Physics and Chemistry (CN), University of Chinese Academy of Sciences (CN)
Life below water
Openalex Percentile: Top 9%
Surgical Sutures and Adhesives
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