明胶
纳米技术
材料科学
制造工程
系统工程
工艺工程
工程类
化学
有机化学
作者
Zhenwu Wang,Lin Zeng,Xuan Mei,Ling Cai,Kezhi Lin,J.A. Virseda Rodríguez,Zixin Ye,Ximena Salazar Parraguez,Emilio Mireles Guajardo,Pedro Cortés García Luna,Jingyi Zhang,Yu Shrike Zhang
标识
DOI:10.1002/adma.202416260
摘要
Engineered living systems (ELSs) represent purpose-driven assemblies of living components, encompassing cells, biomaterials, and active agents, intricately designed to fulfill diverse biomedical applications. Gelatin and its derivatives have been used extensively in ELSs owing to their mature translational pathways, favorable biological properties, and adjustable physicochemical characteristics. This review explores the intersection of gelatin and its derivatives with fabrication techniques, offering a comprehensive examination of their synergistic potential in creating ELSs for various applications in biomedicine. It offers a deep dive into gelatin, including its structures and production, sources, processing, and properties. Additionally, the review explores various fabrication techniques employing gelatin and its derivatives, including generic fabrication techniques, microfluidics, and various 3D printing methods. Furthermore, it discusses the applications of ELSs based on gelatin in regenerative engineering as well as in cell therapies, bioadhesives, biorobots, and biosensors. Future directions and challenges in gelatin fabrication are also examined, highlighting emerging trends and potential areas for improvements and innovations. In summary, this comprehensive review underscores the significance of gelatin-based ELSs in advancing biomedical engineering and lays the groundwork for guiding future research and developments within the field.
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