Liu Yangyang, Zheng Zhiqiang, Liu Yutong, Song Shurui, Li Ruojing, Song Lei, Zhao Yeying, Ren Huajian, Wang Peige
Department of Emergency Surgery, The Affiliated Hospital of Qingdao University 16 Jiangsu Road Qingdao 266000 P. R. China
Medical Records Management Center, The Affiliated Hospital of Qingdao University 16 Jiangsu Road Qingdao 266000 P. R. China.
RSC Adv. 2025 Jan 27;15(4):2571-2581. doi: 10.1039/d4ra08008d. eCollection 2025 Jan 23.
The use of mesh repair is a frequently employed technique in the clinical management of abdominal wall defects. However, for intraperitoneal onlay mesh (IPOM), the traditional mesh requires additional fixation methods, and these severely limit its application in the repair of abdominal wall defects. We drew inspiration from the adhesion properties of mussels for the present study, functionalized carboxymethyl cellulose (CMC) with dopamine (DA), and added polyvinyl alcohol (PVA) to the composite to further improve the wet adhesive ability of hydrogels. The CMC-DA/PVA hydrogel microneedles (MNs) were fabricated using an inverse molding technique, incorporating a 3D-printed thermoplastic polyurethane mesh to enhance mechanical strength. The tensile test and porcine skin adhesion test demonstrated that the hydrogel mesh exhibited satisfactory mechanical properties and adhesion , thus replacing the traditional fixed mesh in the treatment of rat full-thickness abdominal wall defects. The results of animal experiments revealed that the hydrogel mesh promoted the growth of new granulation tissue and inhibited inflammatory responses, thereby paving the way for a novel approach in treating full-thickness abdominal wall defects.
使用补片修复是腹壁缺损临床治疗中常用的技术。然而,对于腹腔内植入补片(IPOM),传统补片需要额外的固定方法,这严重限制了其在腹壁缺损修复中的应用。在本研究中,我们从贻贝的黏附特性中获得灵感,用多巴胺(DA)对羧甲基纤维素(CMC)进行功能化处理,并在复合材料中添加聚乙烯醇(PVA)以进一步提高水凝胶的湿黏附能力。采用反向成型技术制备了CMC-DA/PVA水凝胶微针(MNs),并结合3D打印热塑性聚氨酯网片以增强机械强度。拉伸试验和猪皮黏附试验表明,水凝胶网片具有令人满意的机械性能和黏附性,从而在大鼠全层腹壁缺损治疗中取代了传统的固定补片。动物实验结果显示,水凝胶网片促进了新肉芽组织的生长并抑制了炎症反应,从而为治疗全层腹壁缺损的新方法铺平了道路。