Department of Graduate School, Guangzhou University of Chinese Medicine, Guangzhou, China.
Guangdong Key Lab of Orthopedic Technology and Implant, General Hospital of Southern Theater Command of PLA, Guangzhou, China.
Orthop Surg. 2024 Oct;16(10):2475-2487. doi: 10.1111/os.14176. Epub 2024 Aug 2.
Cartilage and meniscus are important structures that maintain the health of the knee joint. Early detection of changes in the internal components of cartilage and meniscus before morphological changes occur is essential to prevent and delay the development of osteoarthritis (OA). This study was designed to determine the changes in the matrix composition of morphologically intact cartilage and meniscus during the acute phase of an anterior cruciate ligament (ACL) rupture, as well as the effect of different states of meniscus (intact or tear) on adjacent cartilage during the acute phase.
This cross-sectional study compared and analyzed 50 patients in the acute phase of ACL rupture who underwent surgical treatment and 66 age-, weight- and height-matched healthy volunteers from May 2022 to May 2023 at our institution. Mean T2 relaxation times and effect sizes in different regions of tibiofemoral articular cartilage and meniscus were compared between the two groups using the Mann-Whitney nonparametric t-test, and correlations between different meniscal states and adjacent cartilage were analyzed.
Both in the lateral and medial compartments of the knee, T2 relaxation times were significantly higher in all subregions of cartilage and meniscus in the ACL rupture group (p < 0.05), and the site of injury was predominantly centered in the medial compartment (femur, p = 0.000; tibia, p = 0.000; anterior horn, p = 0.000). In the respective compartments, the posterior horn of the lateral meniscus showed a significant positive correlation with the mid-cartilage of the femoral and tibial (r = 0.566, p = 0.035; r = 0.611, p = 0.02); and the posterior horn of the medial meniscus showed a significant positive correlation with the posterior tibial cartilage (r = 0.668, p = 0.018).
During the acute phase of ACL rupture, the internal composition of the cartilage and meniscus undergoes significant changes, even if the morphology is intact. More importantly, the state of the meniscus significantly affects the internal composition of the adjacent cartilage. This is an early warning sign of OA, which should be closely monitored and carefully managed in clinical practice.
软骨和半月板是维持膝关节健康的重要结构。在软骨和半月板的形态结构发生变化之前,早期发现其内部成分的变化对于预防和延缓骨关节炎(OA)的发展至关重要。本研究旨在确定前交叉韧带(ACL)断裂的急性期内形态完整的软骨和半月板的基质组成变化,以及半月板不同状态(完整或撕裂)对急性期内相邻软骨的影响。
本横断面研究比较分析了 2022 年 5 月至 2023 年 5 月在我院接受手术治疗的 50 例 ACL 断裂急性期患者和 66 例年龄、体重和身高匹配的健康志愿者。使用 Mann-Whitney 非参数 t 检验比较两组患者的胫骨股骨关节软骨和半月板不同区域的平均 T2 弛豫时间和效应量,并分析不同半月板状态与相邻软骨之间的相关性。
在膝关节的外侧和内侧间隙中,ACL 断裂组软骨和半月板的所有亚区的 T2 弛豫时间均显著升高(p<0.05),损伤部位主要集中在内侧间隙(股骨,p=0.000;胫骨,p=0.000;前角,p=0.000)。在相应的间隙中,外侧半月板后角与股骨和胫骨的中软骨呈显著正相关(r=0.566,p=0.035;r=0.611,p=0.02);内侧半月板后角与胫骨后软骨呈显著正相关(r=0.668,p=0.018)。
在 ACL 断裂的急性期,软骨和半月板的内部成分会发生显著变化,即使形态完整。更重要的是,半月板的状态会显著影响相邻软骨的内部成分。这是 OA 的早期预警信号,在临床实践中应密切监测并谨慎管理。