Poly(lipoic acid)-Based Bioresorbable Antiswelling Bioadhesive for Wet/Underwater Tissue Adhesion

  • Biomacromolecules. 2026 Jun 8;27(6):3984-3996. doi: 10.1021/acs.biomac.6c00576.
Xiaoyu Yang  1 Miaomiao Jiang  2 Zongxuan Huang  3 Yuchen Zhang  1 Hu Zhao  3 Haiqing Liu  1
Affiliations
  • 1. College of Chemistry and Materials Science, Fujian Key Laboratory of Polymer Materials, Fujian Normal University, Fuzhou, Fujian 350007, China.
  • 2. Academy of Integrative Medicine, Fujian University of Traditional Chinese Medicine, Fuzhou, Fujian 350122, China.
  • 3. Department of General Surgery, Fuzhou General Teaching Hospital, Fujian University of Traditional Chinese Medicine (900TH Hospital of Joint Logistics Support Force), Fuzhou, Fujian 350025, China.
Abstract

Wound closure by suture and staple demands surgical skills and carries risks of traumatic complications, whereas current tissue adhesives exhibit insufficient wet adhesion strength, unsatisfactory in vivo biodegradability, and durability. Inspired by the robust underwater adhesion of mussels, whose underwater adhesion derives from the synergy of hydrophobic and adhesive matrix, a tough bioadhesive (PLD) was developed by coassembly of lipoic acid (LA) and a dopamine-functionalized lipoic acid derivative (LAD). Mimicking the mussel's adhesion mechanism, PLD expelled interfacial water via hydrophobic chains, enabling catechol and carboxyl groups to form robust bonds with wet tissue. It exhibited water-strengthened underwater adhesion (approximately from 37.06 to 50.23 kPa after 180 min water immersion) due to water-activated aggregation of hydrophobic chains. Owing to the combined effect of hydrogen bonds, π-π interaction, and hydrophobic associations, PLD displayed durable wet adhesion because it had exceptional antiswelling properties with a remarkably low swelling ratio of 2.07% after 72 h in a physiological environment. In addition, it was bioresorbable, cytocompatible, and histocompatible. The PLD adhesive may offer a promising and multifunctional alternative to conventional sutures for wound closure.

Products