Ivković Alan, Vuletić Filip, Petrović Tadija, Bukvić Frane, Janković Saša
Department of Orthopaedic Surgery, University Hospital "Sveti Duh", Zagreb, Croatia.
School of Medicine, University of Zagreb, Croatia.
Acta Clin Croat. 2023 Aug;62(Suppl3):106-114. doi: 10.20471/acc.2023.62.s3.14.
A common magnetic resonance imaging pattern of bone marrow lesion has been described in numerous pathological entities. However, despite intensive research, its etiopathological pathways and repercussions on disease progression remain controversial. From our current knowledge, subchondral bone represents an active site of remodelling fulfilling both mechanical and biological joint requirements. Alteration of bone remodelling activity, as one of the major characteristics of bone marrow lesions, can potentially lead to biological and structural impairment of the affected tissue and consequently the entire joint. The discovered close connection between subchondral bone biology and its structural changes together with parallel changes in overlying cartilage is setting the scene for a potentially new concept. In this "Two Pillar" concept both structure and biology of subchondral bone (and its biomechanical and biochemical interference with the layer above) represent the foundations of the structure and function of articular cartilage. In light of the proposed concept, we will review current knowledge on aetiology, pathogenesis, and clinical presentation of BML and correlate it to existing and emerging treatment options.
多种病理实体中均已描述了一种常见的骨髓病变磁共振成像模式。然而,尽管进行了深入研究,其病因病理途径及其对疾病进展的影响仍存在争议。根据我们目前的认识,软骨下骨是一个活跃的重塑部位,满足机械和生物学方面的关节需求。骨髓病变的主要特征之一是骨重塑活动的改变,这可能会导致受影响组织乃至整个关节的生物学和结构损伤。软骨下骨生物学与其结构变化以及上方软骨的平行变化之间发现的紧密联系,为一个潜在的新概念奠定了基础。在这个“双支柱”概念中,软骨下骨的结构和生物学(及其对上方层的生物力学和生化干扰)代表了关节软骨结构和功能的基础。鉴于所提出的概念,我们将回顾关于骨髓病变的病因、发病机制和临床表现的现有知识,并将其与现有的和新出现的治疗选择相关联。