Department of Biomedical Engineering, Indiana University Purdue University Indianapolis, Indianapolis, IN 46202, USA.
Curr Osteoporos Rep. 2011 Dec;9(4):237-42. doi: 10.1007/s11914-011-0067-y.
Bone remodeling and cartilage maintenance are strongly influenced by biomechanical signals generated by mechanical loading. Although moderate loading is required to maintain bone mass and cartilage homeostasis, loading can cause deleterious effects such as bone fracture and cartilage degradation. Because a tight coupling exists between cartilage and bone, alterations in one tissue can affect the other. Bone marrow lesions are often associated with an increased risk of developing cartilage defects, and changes in the articular cartilage integrity are linked to remodeling responses in the underlying bone. Although mechanisms regulating the maintenance of these two tissues are different, compelling evidence indicates that the signal pathways crosstalk, particularly with the Wnt pathway. A better understanding of the complex tempero-spatial interplay between bone remodeling and cartilage degeneration will help develop a therapeutic loading strategy that prevents bone loss and cartilage degeneration.
骨重塑和软骨维持受机械加载产生的生物力学信号的强烈影响。虽然需要适度的加载来维持骨量和软骨内稳态,但加载也会导致有害影响,如骨折和软骨降解。由于软骨和骨之间存在紧密的耦合,一种组织的改变会影响另一种组织。骨髓病变通常与发生软骨缺陷的风险增加有关,而关节软骨完整性的变化与骨下骨重塑反应有关。尽管调节这两种组织维持的机制不同,但有确凿的证据表明信号通路相互作用,特别是与 Wnt 通路。更好地理解骨重塑和软骨退变之间复杂的时空调控相互作用将有助于开发一种治疗性加载策略,以防止骨丢失和软骨退变。