Mansouri Moghaddam Melika, Jooybar Elaheh, Imani Rana
Department of Biomedical Engineering, Amirkabir University of Technology (Tehran Polytechnic), Tehran, Iran.
Biofabrication. 2025 Apr 22;17(3). doi: 10.1088/1758-5090/adcc58.
Injectable microgels, made from both natural and synthetic materials, are promising platforms for the encapsulation of cells or bioactive agents, such as drugs and growth factors, for delivery to injury sites. They can also serve as effective micro-scaffolds in bone tissue engineering (BTE), offering a supportive environment for cell proliferation or differentiation into osteoblasts. Microgels can be injected in the injury sites individually or in the form of aggregated/jammed ones named micro-granular hydrogels. This review focuses on common materials and fabrication techniques for preparing injectable microgels, as well as their characteristics and applications in BTE. These applications include their use as cell carriers, delivery systems for bioactive molecules, micro-granular hydrogels, bio-inks for bioprinting, three-dimensional microarrays, and the formation of microtissues. Furthermore, we discuss the current and potential future applications of microgels in bone tissue regeneration.
由天然材料和合成材料制成的可注射微凝胶,是用于封装细胞或生物活性剂(如药物和生长因子)以输送到损伤部位的有前景的平台。它们还可以作为骨组织工程(BTE)中有效的微支架,为细胞增殖或分化成成骨细胞提供支持环境。微凝胶可以单独注射到损伤部位,也可以以聚集/堵塞形式(称为微颗粒水凝胶)注射。本综述重点关注制备可注射微凝胶的常用材料和制造技术,以及它们在骨组织工程中的特性和应用。这些应用包括用作细胞载体、生物活性分子的递送系统、微颗粒水凝胶、生物打印的生物墨水、三维微阵列以及微组织的形成。此外,我们还讨论了微凝胶在骨组织再生中的当前和潜在未来应用。