Yuan Shiguo, Zheng Boyuan, Zheng Kai, Lai Zhiheng, Chen Zihang, Zhao Jing, Li Shaoping, Zheng Xiaofei, Wu Peng, Wang Huajun
Department of Orthopaedic, Hainan Traditional Chinese Medicine Hospital, Hainan Medical University, Haikou, 571924, China.
Department of Orthopaedic, Guangdong Provincial Hospital of Chinese Medicine, Hainan Hospital, Guangzhou University of Chinese Medicine, Guangzhou, 510388, China.
Biomater Res. 2024 Sep 6;28:0074. doi: 10.34133/bmr.0074. eCollection 2024.
Skull defect repair is a complex and critical medical challenge, and there is an urgent need to develop multifunctional tissue engineering scaffolds for skull regeneration. The success of bone tissue engineering depends on the construction of scaffolds that can regulate the immune microenvironment of bone regeneration and mimic the liquid crystal and viscoelastic properties of natural bone extracellular matrix. Hence, a smart hydrogel (PEGDA5/AM15/CLC-BMP-4@MBG) with good biocompatibility and the ability to modulate the wound immune microenvironment has been developed for the repair of skull defects. The hydrogel consists of chitin liquid crystal hydrogel (PEGDA5/AM15/CLC) and mesoporous bioactive glasses (MBGs) loaded with bone morphogenetic protein-4 (BMP-4). The liquid crystal hydrogel not only offers the necessary biological support and mechanical properties but also maintains the stability of the liquid crystal state, facilitating adhesion and regeneration of surrounding bone tissue. In addition, BMP-4@MBG intelligently regulates the release rate of BMP-4 in response to changes in wound microenvironment, thus effectively promoting the transformation of macrophages from M1 to M2 macrophages. At the same time, Ca and Si released by MBG degradation and BMP-4 synergically promote bone repair process. The PEGDA5/AM15/CLC-BMP-4@MBG hydrogel shows excellent immunomodulatory and osteogenic properties of bone microenvironment and is a promising scaffold material for bone tissue engineering.
颅骨缺损修复是一项复杂且关键的医学挑战,迫切需要开发用于颅骨再生的多功能组织工程支架。骨组织工程的成功取决于构建能够调节骨再生免疫微环境并模拟天然骨细胞外基质液晶和粘弹性特性的支架。因此,已开发出一种具有良好生物相容性和调节伤口免疫微环境能力的智能水凝胶(PEGDA5/AM15/CLC-BMP-4@MBG)用于修复颅骨缺损。该水凝胶由几丁质液晶水凝胶(PEGDA5/AM15/CLC)和负载骨形态发生蛋白-4(BMP-4)的介孔生物活性玻璃(MBG)组成。液晶水凝胶不仅提供必要的生物支持和机械性能,还维持液晶态的稳定性,促进周围骨组织的粘附和再生。此外,BMP-4@MBG可根据伤口微环境的变化智能调节BMP-4的释放速率,从而有效促进巨噬细胞从M1型向M2型转变。同时,MBG降解释放的钙和硅与BMP-4协同促进骨修复过程。PEGDA5/AM15/CLC-BMP-4@MBG水凝胶在骨微环境中表现出优异的免疫调节和成骨特性,是骨组织工程中有前景的支架材料。