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微凝胶用于生物打印:最新进展和挑战。

Microgels for bioprinting: recent advancements and challenges.

机构信息

Plastic and Reconstructive Surgery Center, Department of Plastic and Reconstructive Surgery, Zhejiang Provincial People's Hospital, Affiliated People's Hospital, Hangzhou Medical College, Hangzhou, Zhejiang, China, 310014.

State Key Laboratory of Fluid Power and Mechatronic Systems, School of Mechanical Engineering, Zhejiang University, Hangzhou 310027, China.

出版信息

Biomater Sci. 2024 Apr 16;12(8):1950-1964. doi: 10.1039/d3bm01733h.

Abstract

Microgels have become a popular and powerful structural unit in the bioprinting field due to their advanced properties, ranging from the tiny size and well-connected hydrogel (nutrient) network to special rheological properties. Different microgels can be fabricated by a variety of fabrication methods including bulk crushing, auxiliary dripping, multiphase emulsion, and lithography technology. Traditionally, microgels can encapsulate specific cells and are used for disease models and organ regeneration. Furthermore, microgels can serve as a drug carrier to realize controlled release of drug molecules. Apart from being used as an independent application unit, recently, these microgels are widely applied as a specific bioink component in 3D bioprinting for tissue repair or building special 3D structures. In this review, we introduce different methods used to generate microgels and the microgel-based bioink for bioprinting. Besides, the further tendency of microgel development in future is introduced and predicted to provide guidance for related researchers in exploring more effective ways to fabricate microgels and more potential bioprinting application cases as multifunctional bioink components.

摘要

微凝胶由于其先进的特性,已成为生物打印领域中一种流行且强大的结构单元,其特性范围从微小的尺寸和连通良好的水凝胶(营养物)网络到特殊的流变特性。不同的微凝胶可以通过多种制造方法制造,包括大块粉碎、辅助滴落、多相乳液和光刻技术。传统上,微凝胶可以包封特定的细胞,用于疾病模型和器官再生。此外,微凝胶可用作药物载体,实现药物分子的控制释放。除了用作独立的应用单元外,最近,这些微凝胶还广泛用作 3D 生物打印中特定生物墨水成分,用于组织修复或构建特殊的 3D 结构。在这篇综述中,我们介绍了生成微凝胶的不同方法和基于微凝胶的生物墨水用于生物打印。此外,还介绍了微凝胶未来的发展趋势,并对相关研究人员探索更有效的微凝胶制造方法和更有潜力的生物打印应用案例作为多功能生物墨水成分提供了指导。

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