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AFM-Nanomechanical Test: An Interdisciplinary Tool That Links the Understanding of Cartilage and Meniscus Biomechanics Osteoarthritis Degeneration and Tissue Engineering

机译:AFM-纳米力学测试:一种跨学科的工具可将对软骨和半月板生物力学骨关节炎变性和组织工程的理解联系起来

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摘要

Our objective is to provide an in-depth review of the recent technical advances of atomic force microscopy (AFM)-based nanomechanical tests and their contribution to a better understanding and diagnosis of osteoarthritis (OA), as well as the repair of tissues undergoing degeneration during OA progression. We first summarize a range of technical approaches for AFM-based nanoindentation, including considerations in both experimental design and data analysis. We then provide a more detailed description of two recently developed modes of AFM-nanoindentation, a high-bandwidth nanorheometer system for studying poroviscoelasticity and an immunofluorescence-guided nanomechanical mapping technique for delineating the pericellular matrix (PCM) and territorial/interterritorial matrix (T/IT-ECM) of surrounding cells in connective tissues. Next, we summarize recent applications of these approaches to three aspects of joint-related healthcare and disease: cartilage aging and OA, developmental biology and OA pathogenesis in murine models, and nanomechanics of the meniscus. These studies were performed over a hierarchy of length scales, from the molecular, cellular to the whole tissue level. The advances described here have contributed greatly to advancing the fundamental knowledge base for improved understanding, detection, and treatment of OA.
机译:我们的目标是对基于原子力显微镜(AFM)的纳米力学测试的最新技术进展及其对更好地了解和诊断骨关节炎(OA)以及修复变性组织的贡献做出深入综述。在OA进展中。我们首先总结了一系列基于AFM的纳米压痕技术方法,包括实验设计和数据分析中的考虑因素。然后,我们将对两种最新开发的AFM纳米压痕模式,用于研究孔黏弹性的高带宽纳米流变仪系统以及用于描绘细胞周围基质(PCM)和区域/区域间基质(T /结缔组织中周围细胞的IT-ECM)。接下来,我们总结这些方法在关节相关保健和疾病的三个方面的最新应用:软骨衰老和OA,鼠模型中的发育生物学和OA发病机理以及半月板的纳米力学。这些研究是在从分子,细胞到整个组织水平的长度尺度层次上进行的。此处描述的进步极大地促进了基础知识基础的发展,以增进对OA的理解,检测和治疗。

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