Tian Yu, Guan Pengfei, Wen Chaoyao, Lu Manjia, Li Tong, Fan Lei, Yang Qinfeng, Guan Youjun, Kang Xinchang, Jiang Yuhe, Ning Chengyun, Fu Rumin, Tan Guoxin, Zhou Lei
School of Chemical Engineering and Light Industry, Guangdong University of Technology, Guangzhou 510006, P. R. China.
Department of Pediatric Orthopedic, Center for Orthopedic Surgery, The Third Affiliated Hospital of Southern Medical University, Guangzhou 510515, P. R. China.
ACS Appl Mater Interfaces. 2022 Dec 14;14(49):54488-54499. doi: 10.1021/acsami.2c14103. Epub 2022 Dec 3.
Bioadhesives are widely used in a variety of medical settings due to their ease of use and efficient wound closure and repair. However, achieving both strong adhesion and removability/reusability is highly needed but challenging. Here, we reported an injectable mesoporous bioactive glass nanoparticle (MBGN)-incorporated biopolymer hydrogel bioadhesive that demonstrates a strong adhesion strength (up to 107.55 kPa) at physiological temperatures that is also removable and reusable. The incorporation of MBGNs in the biopolymer hydrogel significantly enhances the tissue adhesive strength due to an increased cohesive and adhesive property compared to the hydrogel adhesive alone. The detachment of bioadhesive results from temperature-induced weakening of interfacial adhesive strength. Moreover, the bioadhesive displays injectability, self-healing, and excellent biocompatibility. We demonstrate potential applications of the bioadhesive in vitro, ex vivo, and in vivo for hemostasis and intestinal leakage closure and accelerated skin wound healing compared to surgical wound closures. This work provides a novel design of strong and removable bioadhesives.
生物粘合剂因其使用方便以及能有效闭合和修复伤口而广泛应用于各种医疗场景。然而,实现强粘附性以及可移除性/可重复使用性是迫切需要但又具有挑战性的。在此,我们报道了一种可注射的、包含介孔生物活性玻璃纳米颗粒(MBGN)的生物聚合物水凝胶生物粘合剂,其在生理温度下展现出高达107.55 kPa的强粘附强度,且具有可移除和可重复使用的特性。与单独的水凝胶粘合剂相比,在生物聚合物水凝胶中加入MBGNs可显著增强组织粘附强度,这是由于内聚性和粘附性增加所致。生物粘合剂的分离是由温度引起的界面粘附强度减弱导致的。此外,该生物粘合剂具有可注射性、自愈性和优异的生物相容性。与手术伤口闭合相比,我们证明了该生物粘合剂在体外、离体和体内用于止血、肠道渗漏闭合以及加速皮肤伤口愈合方面的潜在应用。这项工作提供了一种新型的强粘附且可移除生物粘合剂的设计。