Liu Jiayu, Zeng Hongli, Xiao Peng, Yang Anqun, Situ Xingxian, Wang Yao, Zhang Xiang, Li Wenqiang, Pan Weiyi, Wang Yulong
Department of Rehabilitation Medicine, Dapeng New District Nan'ao People's Hospital, Shenzhen 518121, China.
Department of Pediatric Rehabilitation, The Women and Children's Hospital of Dapeng New District, Shenzhen 518000, China.
ACS Omega. 2020 Sep 16;5(38):24477-24486. doi: 10.1021/acsomega.0c02946. eCollection 2020 Sep 29.
Hydrogel scaffolds are promising and widely applicable platforms for various therapeutic agents to facilitate bone tissue regeneration due to their biocompatibility and low immunogenicity. Nevertheless, the improvement of local administration efficiency and on-demand release of drugs from a hydrogel system is still an obstacle. In this work, we reported that a novel injectable hydrogel system was fabricated based on coordination of multiarm thiolated polyethylene glycol (PEG-SH) and magnesium ions for bone marrow-derived mesenchymal stem cell (BMSC) proliferation and differentiation. The dynamic nature coordination bond of Mg-S and the dynamic disulfide bond of S-S provide hydrogels with good mechanical performance and typical rheological behavior and thus endow the hydrogels with a satisfactory swelling rate and degradation property. Mg was incorporated in the system not only to act as an effective cross-linker to enhance the hydrogel network structure but also to mediate the sustained release of Mg. Due to the controlled release of Mg, the PEG-SH/Mg hydrogel can effectively improve BMSC proliferation and osteoblastic activity via the PI3K/Akt/GSK3β/β-catenin signal pathway in vitro. These findings indicated that the novel hydrogel controlled release of a Mg ion is viewed as a promising and flexible platform for bone regeneration clinically.
水凝胶支架因其生物相容性和低免疫原性,是用于多种治疗剂以促进骨组织再生的有前景且广泛适用的平台。然而,提高水凝胶系统的局部给药效率和按需释放药物仍然是一个障碍。在这项工作中,我们报道了一种基于多臂硫醇化聚乙二醇(PEG-SH)与镁离子配位制备的新型可注射水凝胶系统,用于骨髓间充质干细胞(BMSC)的增殖和分化。Mg-S的动态配位键和S-S的动态二硫键赋予水凝胶良好的机械性能和典型的流变行为,从而使水凝胶具有令人满意的溶胀率和降解性能。Mg掺入该系统不仅作为有效的交联剂增强水凝胶网络结构,还介导Mg的持续释放。由于Mg的控释,PEG-SH/Mg水凝胶在体外可通过PI3K/Akt/GSK3β/β-连环蛋白信号通路有效改善BMSC增殖和成骨细胞活性。这些发现表明,新型Mg离子控释水凝胶被视为临床上用于骨再生的有前景且灵活的平台。