Tianjin Key Lab for Rare Earth Materials and Applications, Center for Rare Earth and Inorganic Functional Materials, Sensing Interdisciplinary Science Center, School of Materials Science and Engineering & National Institute for Advanced Materials, Nankai University, Tianjin, 300350, P. R. China.
College of Chemistry, Nankai University, Tianjin, 300071, P. R. China.
Adv Mater. 2023 Jun;35(25):e2300313. doi: 10.1002/adma.202300313. Epub 2023 May 2.
Osteosarcoma occurs in children and adolescents frequently and leads to a high fatality rate. Although surgical resection is the most common methods in clinic, patients always suffer from tumor metastasis and recurrence and it is difficult for them to self-repair large bone defects. Furthermore, the postoperative infection from bacteria triggers an inflammatory response and hinders the bone-repair process. This work demonstrates a gadolinium (Gd)-complex and molybdenum sulfide (MoS ) co-doped N-acryloyl glycinamide (NAGA)/gelatin methacrylate (Gel-MA) multifunctional hydrogel (GMNG). The combination between NAGA and Gel-MA endows the GMNG with attractive mechanical properties and controllable degradation ability. The MoS improves the hydrogel system, which has excellent photothermal ability to kill tumor cells and inhibit bacterial infection both in vitro and in vivo. Based on the Gd-complex, the magnetic resonance imaging (MRI) effect can be used to monitor the position and degradation situation of the hydrogel. Notably, accompanied by the degradation of GMNG hydrogel, the gradually released Gd from the hydrogel exhibits osteogenic property and could promote new bone formation efficiently in vivo. Therefore, this strategy supplies a method to prepare multifunctional bone-defect-repair materials and is expected to represent a significant guidance and reference to the development of biomaterials for bone tissue engineering.
骨肉瘤常发生于儿童和青少年,致死率较高。尽管手术切除是临床上最常用的方法,但患者常遭受肿瘤转移和复发的困扰,且难以自我修复大的骨缺损。此外,细菌引发的术后感染会引发炎症反应,阻碍骨修复过程。本工作展示了一种钆(Gd)配合物和硫化钼(MoS )共掺杂 N-丙烯酰基甘氨酸酰胺(NAGA)/甲基丙烯酰化明胶(Gel-MA)多功能水凝胶(GMNG)。NAGA 和 Gel-MA 的结合赋予 GMNG 具有吸引力的机械性能和可控的降解能力。MoS 改善了水凝胶系统,具有优异的光热能力,可在体外和体内杀死肿瘤细胞并抑制细菌感染。基于 Gd 配合物,磁共振成像(MRI)效应可用于监测水凝胶的位置和降解情况。值得注意的是,随着 GMNG 水凝胶的降解,水凝胶中逐渐释放的 Gd 表现出成骨特性,可在体内有效促进新骨形成。因此,该策略提供了一种制备多功能骨缺损修复材料的方法,有望为骨组织工程生物材料的发展提供重要的指导和参考。