在完全完整的小鼠软骨外植体中对机械负荷导致的软骨细胞损伤进行实时可视化和分析。

Real-time Visualization and Analysis of Chondrocyte Injury Due to Mechanical Loading in Fully Intact Murine Cartilage Explants.

作者信息

Kotelsky Alexander, Carrier Joseph S, Buckley Mark R

机构信息

Department of Biomedical Engineering, University of Rochester.

Department of Biomedical Engineering, University of Rochester;

出版信息

J Vis Exp. 2019 Jan 7(143). doi: 10.3791/58487.

Abstract

Homeostasis of articular cartilage depends on the viability of resident cells (chondrocytes). Unfortunately, mechanical trauma can induce widespread chondrocyte death, potentially leading to irreversible breakdown of the joint and the onset of osteoarthritis. Additionally, maintenance of chondrocyte viability is important in osteochondral graft procedures for optimal surgical outcomes. We present a method to assess the spatial extent of cell injury/death on the articular surface of intact murine synovial joints after application of controlled mechanical loads or impacts. This method can be used in comparative studies to investigate the effects of different mechanical loading regimens, different environmental conditions or genetic manipulations, as well as different stages of cartilage degeneration on short- and/or long-term vulnerability of in situ articular chondrocytes. The goal of the protocol introduced in the manuscript is to assess the spatial extent of cell injury/death on the articular surface of murine synovial joints. Importantly, this method enables testing on fully intact cartilage without compromising native boundary conditions. Moreover, it allows for real-time visualization of vitally stained articular chondrocytes and single image-based analysis of cell injury induced by application of controlled static and impact loading regimens. Our representative results demonstrate that in healthy cartilage explants, the spatial extent of cell injury depends sensitively on load magnitude and impact intensity. Our method can be easily adapted to investigate the effects of different mechanical loading regimens, different environmental conditions or different genetic manipulations on the mechanical vulnerability of in situ articular chondrocytes.

摘要

关节软骨的内环境稳定取决于驻留细胞(软骨细胞)的活力。不幸的是,机械创伤可导致广泛的软骨细胞死亡,这可能会导致关节不可逆转的破坏以及骨关节炎的发作。此外,在骨软骨移植手术中,维持软骨细胞的活力对于获得最佳手术效果也很重要。我们提出了一种方法,用于评估在施加可控机械负荷或撞击后,完整小鼠滑膜关节关节表面细胞损伤/死亡的空间范围。该方法可用于比较研究,以探究不同机械负荷方案、不同环境条件或基因操作的影响,以及软骨退变的不同阶段对原位关节软骨细胞短期和/或长期易损性的影响。本文介绍的方案的目标是评估小鼠滑膜关节关节表面细胞损伤/死亡的空间范围。重要的是,该方法能够在不破坏天然边界条件的情况下,对完全完整的软骨进行测试。此外,它还能实时可视化经活染的关节软骨细胞,并基于单幅图像分析由施加可控静态和撞击负荷方案所诱导的细胞损伤。我们的代表性结果表明,在健康的软骨外植体中,细胞损伤的空间范围对负荷大小和撞击强度敏感。我们的方法可以很容易地进行调整,以研究不同机械负荷方案、不同环境条件或不同基因操作对原位关节软骨细胞机械易损性的影响。

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