Arokoski Mikko E A, Tiitu Virpi, Jurvelin Jukka S, Korhonen Rami K, Fick James M
School of Medicine, University of Eastern Finland, Kuopio, FI-70211, Finland.
Institute of Biomedicine, Anatomy, University of Eastern Finland, Kuopio, FI-70211, Finland.
J Orthop Res. 2015 Sep;33(9):1278-86. doi: 10.1002/jor.22906. Epub 2015 May 21.
In this study, we explore topographical changes in proteoglycan distribution from femoral condylar cartilage in early osteoarthritis, acquired from both the lateral and medial condyles of anterior cruciate ligament transected (ACLT) and contralateral (CNTRL) rabbit knee joints, at 4 weeks post operation. Four sites across the cartilage surface in a parasagittal plane were defined across tissue sections taken from femoral condyles, and proteoglycan (PG) content was quantified using digital densitometry. The greatest depth-wise change in PG content due to an ACLT (compared to the CNTRL group) was observed anteriorly (site C) from the most weight-bearing location within the lateral compartment. In the medial compartment, the greatest change was observed in the most weight-bearing location (site B). The depth-wise changes in PG content were observed up to 48% and 28% depth from the tissue surface at these aforementioned sites, respectively (p < 0.05). The smallest depth-wise change in PG content was observed posteriorly (site A) from the most weight-bearing location within both femoral condyles (up to 20% and up to 5% depth from the tissue surface at lateral and medial compartments, respectively). This study gives further insight into how early cartilage deterioration progresses across the parasagittal plane of the femoral condyle.
在本研究中,我们探究了前交叉韧带横断(ACLT)兔膝关节的外侧和内侧髁以及对侧(CNTRL)兔膝关节的股骨髁软骨在术后4周早期骨关节炎中蛋白聚糖分布的地形学变化。在取自股骨髁的组织切片上,在矢状旁平面的软骨表面定义了四个位点,并使用数字密度测定法定量蛋白聚糖(PG)含量。与CNTRL组相比,由于ACLT导致的PG含量在深度方向上的最大变化在外侧间室最负重位置的前方(位点C)观察到。在内侧间室,最大变化在最负重位置(位点B)观察到。在上述位点,PG含量在深度方向上的变化分别在距组织表面48%和28%深度处观察到(p < 0.05)。在两个股骨髁最负重位置的后方(位点A)观察到PG含量在深度方向上的最小变化(外侧和内侧间室分别距组织表面20%和5%深度)。本研究进一步深入了解了早期软骨退变如何在股骨髁的矢状旁平面上进展。