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骨软骨再生的生物力学方面:三维生物打印的意义和策略。

Biomechanical Aspects of Osteochondral Regeneration: Implications and Strategies for Three-Dimensional Bioprinting.

机构信息

Fischell Department of Bioengineering, University of Maryland, College Park, Maryland, USA.

Center for Engineering Complex Tissues, University of Maryland, College Park, Maryland, USA.

出版信息

Tissue Eng Part B Rev. 2022 Aug;28(4):766-788. doi: 10.1089/ten.TEB.2021.0101. Epub 2021 Nov 2.

Abstract

Osteoarthritis is among the most prevalent of musculoskeletal disorders in the world that causes joint pain, deformity, and limited range of movement. The resulting osteochondral defect can significantly decrease the patient's quality of life, but current treatment options have not demonstrated the capacity to fully regenerate the entire osteochondral microenvironment. Structurally, the osteochondral unit is a composite system composed of three layers-articular cartilage, calcified cartilage, and subchondral bone. Collectively these distinct layers contribute to the distinct biomechanical properties that maintain the health and aid in load transfer during joint articulation. The purpose of this review was to examine the role of the osteochondral interface in tissue engineering. Topics of discussion include the biomechanics of the osteochondral unit and an overview of various strategies for osteochondral interface tissue engineering, with a specific focus on three-dimensional bioprinting. The goal of this review was to elucidate the importance of the osteochondral interface and overview some strategies of developing an interface layer within tissue engineered scaffolds. Impact Statement This review provides an overview of interface tissue engineering for osteochondral regeneration. It offers a detailed investigation into the biomechanics of the osteochondral unit as it relates to tissue engineering, and highlights the strategies that have been utilized to develop the osteochondral interface within tissue engineering scaffolds.

摘要

骨关节炎是世界上最常见的肌肉骨骼疾病之一,会导致关节疼痛、畸形和活动范围受限。由此产生的骨软骨缺损会显著降低患者的生活质量,但目前的治疗选择还没有显示出能够完全再生整个骨软骨微环境的能力。从结构上看,骨软骨单元是由三个层次组成的复合系统——关节软骨、钙化软骨和软骨下骨。这些不同的层次共同构成了维持关节运动时健康和有助于负载传递的独特生物力学特性。本综述的目的是探讨骨软骨界面在组织工程中的作用。讨论的主题包括骨软骨单元的生物力学以及各种骨软骨界面组织工程策略的概述,特别关注三维生物打印。本综述的目的是阐明骨软骨界面的重要性,并概述在组织工程支架中开发界面层的一些策略。

影响描述

本综述提供了骨软骨再生的界面组织工程概述。它详细研究了与组织工程相关的骨软骨单元的生物力学,并强调了在组织工程支架中开发骨软骨界面所采用的策略。

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本文引用的文献

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Influence of the Mechanical Environment on the Regeneration of Osteochondral Defects.力学环境对骨软骨缺损再生的影响
Front Bioeng Biotechnol. 2021 Jan 27;9:603408. doi: 10.3389/fbioe.2021.603408. eCollection 2021.
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Cartilage Injury in the Knee: Assessment and Treatment Options.膝关节软骨损伤:评估与治疗选择。
J Am Acad Orthop Surg. 2020 Nov 15;28(22):914-922. doi: 10.5435/JAAOS-D-20-00266.
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Osteoarthritis year in review 2019: epidemiology and therapy.2019 年骨关节炎年度回顾:流行病学和治疗。
Osteoarthritis Cartilage. 2020 Mar;28(3):242-248. doi: 10.1016/j.joca.2020.01.002. Epub 2020 Jan 13.

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