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用于构建基于梯度的骨软骨和半月板组织替代物的生物墨水:综述

Bioinks for engineering gradient-based osteochondral and meniscal tissue substitutes: a review.

作者信息

Heydarigoojani Mahdieh, Farokhi Maryam, Simorgh Sara

机构信息

Department of Mechanical Engineering, University of Ottawa, Ottawa, ON, Canada.

Department of Biomedical Engineering, Amirkabir University of Technology (Tehran Polytechnic), Tehran, Iran.

出版信息

Biofabrication. 2025 Feb 13;17(2). doi: 10.1088/1758-5090/adb0f4.

Abstract

Gradient tissues are anisotropic structure with gradual transition in structural and biological properties. The gradient in structural, mechanical and biochemical properties of osteochondral and meniscal tissues play a major role in defining tissue functions. Designing tissue substitutes that replicate these gradient properties is crucial to facilitate regeneration of tissue functions following injuries. Advanced manufacturing technologies such as 3D bioprinting hold great potentials for recreating gradient nature of tissues through using zone-specific bioinks and layer-by-layer deposition of spatially defined biomaterials, cell types and bioactive cues. This review highlighted the gradients in osteochondral and meniscal tissues in detail, elaborated on individual components of the bioink, and reviewed recent advancements in 3D gradient-based osteochondral and meniscal tissue substitutes. Finally, key challenges of the field and future perspectives for developing gradient-based tissue substitutes were discussed. The insights from these advances can broaden the possibilities for engineering gradient tissues.

摘要

梯度组织是一种各向异性结构,其结构和生物学特性呈逐渐过渡状态。骨软骨组织和半月板组织在结构、力学和生化特性方面的梯度在决定组织功能中起着主要作用。设计能够复制这些梯度特性的组织替代物对于促进损伤后组织功能的再生至关重要。诸如3D生物打印等先进制造技术通过使用区域特异性生物墨水以及对空间定义的生物材料、细胞类型和生物活性线索进行逐层沉积,在重现组织的梯度特性方面具有巨大潜力。本综述详细阐述了骨软骨组织和半月板组织中的梯度,阐述了生物墨水的各个成分,并综述了基于3D梯度的骨软骨和半月板组织替代物的最新进展。最后,讨论了该领域的关键挑战以及开发基于梯度的组织替代物的未来前景。这些进展所带来的见解可以拓宽工程化梯度组织的可能性。

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