Liu Yuqing, Guan Ge, Li Yinghao, Tan Ju, Cheng Panke, Yang Mingcan, Li Bingyun, Wang Quan, Zhong Wen, Mequanint Kibret, Zhu Chuhong, Xing Malcolm
Department of Mechanical Engineering, University of Manitoba, Winnipeg, MB R3T 2N2, Canada.
Department of Anatomy, Key Laboratory for Biomechanics and Tissue Engineering of Chongqing Army Medical University (Third Military Medical University), Chongqing 400038, China.
Sci Adv. 2022 May 20;8(20):eabm9744. doi: 10.1126/sciadv.abm9744.
Although strong underwater bioadhesion is important for many biomedical applications, designing adhesives to perform in the presence of body fluids proves to be a challenge. To address this, we propose an underwater and in situ applicable hydrophobic adhesive (UIHA) composed of polydimethylsiloxane, entangled macromolecular silicone fluid, and a reactive silane. The hydrophobic fluid displaced the boundary water, formed an in situ gel, bonded to tissues, and achieved exceptional underwater adhesion strength. Its underwater lap shear adhesion on porcine skin was significantly higher than that of cyanoacrylate and fibrin glues, demonstrating excellent water resistance. The burst pressure of UIHA on porcine skin was 10 times higher than that of fibrin glue. The cytocompatible UIHA successfully sealed ruptured arteries, skin, and lungs in rats, pigs, rabbits, and dogs. Together, the gelation of highly entangled hydrophobic macromolecular fluid provided a means to prepare underwater bioadhesives with strong bonding to tissues and excellent water resistance.
尽管强大的水下生物粘附力对许多生物医学应用都很重要,但设计能在体液存在的情况下发挥作用的粘合剂却是一项挑战。为了解决这个问题,我们提出了一种由聚二甲基硅氧烷、缠结的大分子硅油和反应性硅烷组成的水下原位适用疏水性粘合剂(UIHA)。这种疏水性流体置换了边界水,形成原位凝胶,与组织结合,并实现了出色的水下粘附强度。它在猪皮上的水下搭接剪切粘附力明显高于氰基丙烯酸酯和纤维蛋白胶,显示出优异的耐水性。UIHA在猪皮上的爆破压力比纤维蛋白胶高10倍。具有细胞相容性的UIHA成功地封闭了大鼠、猪、兔和狗的破裂动脉、皮肤和肺部。总之,高度缠结的疏水性大分子流体的凝胶化提供了一种制备与组织有强结合力且具有优异耐水性的水下生物粘合剂的方法。