Zhou Hao, Fan Yue, Huang Jiajun, Huang Hanwen, Li He, Liang Zhi, Cai Zhaopeng, Tang Youchen, Wang Peng
Guangdong Provincial Clinical Research Center for Orthopedic Diseases, The Eighth Affiliated Hospital, Sun Yat-sen University, Shenzhen, 518033, P. R. China.
Adv Healthc Mater. 2025 Jun;14(16):e2500761. doi: 10.1002/adhm.202500761. Epub 2025 May 10.
Dural tears and subsequent cerebrospinal fluid leakage are common and intractable in spinal surgery. However, the existing clinical treatments are still unsatisfactory and the effective closure and repair of dural tears remain a huge challenge. Herein, a bilayer wet-adhesive hydrogel patch (denoted as BMTP) with rapid-adhesion, anti-swelling, and pro-healing properties is developed, which comprises a tough poly(vinyl alcohol) (PVA) dissipative layer and a functionalized poly(acrylic acid)-based wet-adhesive layer modified with methyl acrylate (MA) and tannic acid (TA). Owing to the hydrophobic effect of MA moieties and the strong intermolecular hydrogen bonding interaction facilitated by TA, BMTP has a unique low swelling property (24.2%) without compromising wet adhesion. Meanwhile, attributed to the high mechanical strength of the PVA dissipative layer and its mechanical interlocking with the wet-adhesive layer, BMTP exhibits durable sealing capacities with a burst pressure tolerance of 325 mm Hg. Moreover, the TA-mediated promotion of fibroblast proliferation enables BMTP to accelerate the healing of dura wounds. The rabbit dural tear model demonstrates that the BMTP can effectively seal and promote the healing of the damaged dura without postoperative adhesion within 3 weeks. Therefore, this work may offer a promising solution for the sutureless treatment of dural tears.
硬脊膜撕裂及随后的脑脊液漏在脊柱手术中很常见且难以处理。然而,现有的临床治疗仍不尽人意,硬脊膜撕裂的有效封闭和修复仍然是一个巨大的挑战。在此,我们开发了一种具有快速粘附、抗肿胀和促进愈合特性的双层湿粘性水凝胶贴片(称为BMTP),它由一个坚韧的聚(乙烯醇)(PVA)耗散层和一个用丙烯酸甲酯(MA)和单宁酸(TA)改性的基于聚丙烯酸的湿粘性层组成。由于MA基团的疏水作用以及TA促进的强分子间氢键相互作用,BMTP具有独特的低肿胀特性(24.2%),同时不影响湿粘性。此外,由于PVA耗散层的高机械强度及其与湿粘性层的机械互锁,BMTP表现出持久的密封能力,爆破压力耐受性为325毫米汞柱。而且,TA介导的成纤维细胞增殖促进作用使BMTP能够加速硬脊膜伤口的愈合。兔硬脊膜撕裂模型表明,BMTP能够有效封闭并促进受损硬脊膜的愈合,且在3周内无术后粘连。因此,这项工作可能为硬脊膜撕裂的无缝合治疗提供一个有前景的解决方案。