Sprayable asymmetric hydrogel prevents postoperative pleural adhesions via physical and biological dual therapy

  • Mater Today Bio. 2026 May 30:38:103297. doi: 10.1016/j.mtbio.2026.103297.
Ni Li  1 Zherui Shao  1 Nuo Cheng  2 Yongbin Wang  2 Bin Wu  1 Bingchuan Hu  1 Qinning Wang  1 Yanggang Dan  1 Yuwei Zhou  1 Kanghao Zhu  1 Renyuan Xiao  1 Caoyun Ju  2 Cong Wang  2 Dawei Zheng  1
Affiliations
  • 1. Department of Thoracic Surgery, Ningbo Medical Center (Lihuili Hospital Affiliated to Ningbo University), Lihuili Hospital Affiliated to Ningbo University, Ningbo, 315040, China.
  • 2. State Key Laboratory of Natural Medicines, Jiangsu Key Laboratory of Drug Discovery for Metabolic Diseases, Center of Advanced Pharmaceuticals and Biomaterials, China Pharmaceutical University, Nanjing, 211198, China.
Abstract

Postoperative pleural adhesions represent a prevalent complication that causes chronic pain, impaired pulmonary function, and escalated reoperation risks. Current preventions strategies remain limited by inadequate multifunctionality and an underestimated fibro-inflammatory microenvironment. Here, we report a powder-based asymmetric adhesive hydrogel integrated with dual-drug liposomes for adhesion prophylaxis. Upon contact with body fluids, the powder rapidly forms an asymmetric adhesive hydrogel within 20 s, exhibiting strong wet-tissue adhesion (∼26 kPa), effective hemostasis, sealing, Antibacterial and ROS scavenging capabilities, which display superiority over the commercial absorbable adhesion barrier (INTERCEED®). Embedded liposomes co-loaded with miR-124-3p (an identified critical miRNA from adhesive tissues) and simvastatin enable sustained release, synergistically disrupting the fibro-inflammatory cascade-miR-124-3p attenuates fibrosis via targeting TGFBR1 while simvastatin suppresses pro-inflammatory signaling. In pleural injury rats, the system markedly reduces adhesion, inflammation and fibrosis, while promoting alveolar repair. This study combines an easy-to-apply hydrogel with rationally designed combination therapy, offering a promising strategy for preventing postoperative adhesions with broad potential for translation to Other fibrotic disorders.

Keywords
Anti-adhesions; Combination therapy; Hydrogel powders; MicroRNA; Simvastatin.
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