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The Synergy of Biomimetic Design Strategies for Tissue Constructs

机译:组织结构仿生设计策略的协同作用

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摘要

The regeneration and repair of complex structures, interfaces, and mechanical properties present in natural tissues remains a challenge. To move beyond simplified tissue engineered constructs, nature is a source of inspiration for complex, hierarchical scaffold designs. Recent advances in additive manufacturing allow for increasingly complex fabrication of architectures that better mimic the multiscale structure-function relationship found in natural tissues. In this review, scaffold-based and scaffold-free approaches and the synergistic use of fabrication technologies (two things make a third) to produce more biomimetic implants are described. Recent advanced scaffold designs such as auxetic mechanical metamaterials and induced fibrillar alignment are highlighted. Next, the pre-programmed assembly of spheroids, tissue strands, and other modular building blocks without the need for permanent exogenous scaffold support are discussed. Furthermore, the application of hybridized manufacturing processes to fabricate hierarchical functional constructs is outlined for the osteochondral unit, vascular grafts, and peripheral nerves.
机译:天然组织中存在的复杂结构、界面和机械性能的再生和修复仍然是一个挑战。为了超越简化的组织工程结构,大自然是复杂、分层支架设计的灵感来源。增材制造的最新进展使得结构的制造越来越复杂,可以更好地模拟天然组织中发现的多尺度结构-功能关系。在这篇综述中,描述了基于支架和无支架的方法以及制造技术的协同使用(两件事构成了第三件事)来生产更多的仿生植入物。重点介绍了最近的先进支架设计,例如辅助机械超材料和诱导纤维排列。接下来,讨论了球状体、组织链和其他模块化构建块的预编程组装,而无需永久性的外源性支架支撑。此外,还概述了杂交制造工艺在骨软骨单元、血管移植物和周围神经中制造分层功能结构的应用。

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