Oliveira Silva Mateus, Gregory Julia L, Ansari Niloufar, Stok Kathryn S
Department of Biomedical Engineering, University of Melbourne, Parkville, VIC, Australia.
Front Cell Dev Biol. 2020 Aug 19;8:750. doi: 10.3389/fcell.2020.00750. eCollection 2020.
Articular joints are comprised of different tissues, including cartilage and bone, with distinctive structural and mechanical properties. Joint homeostasis depends on mechanical and biological integrity of these components and signaling exchanges between them. Chondrocytes and osteocytes actively sense, integrate, and convert mechanical forces into biochemical signals in cartilage and bone, respectively. The osteochondral interface between the bone and cartilage allows these tissues to communicate with each other and exchange signaling and nutritional molecules, and by that ensure an integrated response to mechanical stimuli. It is currently not well known how molecules are transported between these tissues. Measuring molecular transport is highly desirable for tracking cartilage degeneration and osteoarthritis progression. Since transport of contrast agents, which are used for joint imaging, also depend on diffusion through the cartilage extracellular matrix, contrast agent enhanced imaging may provide a high resolution, non-invasive method for investigating molecular transport in the osteochondral unit. Only a few techniques have been developed to track molecular transport at the osteochondral interface, and there appear opportunities for development in this field. This review will describe current knowledge of the molecular interactions and transport in the osteochondral interface and discuss the potential of using contrast agents for investigating molecular transport and structural changes of the joint.
关节由不同组织组成,包括软骨和骨骼,具有独特的结构和力学特性。关节稳态取决于这些组成部分的力学和生物学完整性以及它们之间的信号交换。软骨细胞和骨细胞分别在软骨和骨骼中积极感知、整合并将机械力转化为生化信号。骨与软骨之间的骨软骨界面使这些组织能够相互交流并交换信号和营养分子,从而确保对机械刺激的综合反应。目前尚不清楚分子如何在这些组织之间运输。测量分子运输对于追踪软骨退变和骨关节炎进展非常有必要。由于用于关节成像的造影剂的运输也依赖于通过软骨细胞外基质的扩散,造影剂增强成像可能为研究骨软骨单元中的分子运输提供一种高分辨率、非侵入性的方法。目前仅开发了少数几种技术来追踪骨软骨界面处的分子运输,该领域似乎仍有发展空间。本综述将描述骨软骨界面分子相互作用和运输的当前知识,并讨论使用造影剂研究关节分子运输和结构变化的潜力。