Cowie Raelene M, Macri-Pellizzeri Laura, McLaren Jane, Sanderson William J, Felfel Reda M, Scotchford Colin A, Scammell Brigitte E, Grant David M, Sottile Virginie, Jennings Louise M
Institute of Medical and Biological Engineering, University of Leeds, Leeds, UK.
Academic Unit Translational Medical Sciences, School of Medicine, University of Nottingham, Nottingham, UK.
R Soc Open Sci. 2024 Jan 10;11(1):230431. doi: 10.1098/rsos.230431. eCollection 2024 Jan.
Osteochondral grafts are used for repair of focal osteochondral lesions. Autologous grafts are the gold standard treatment; however, limited graft availability and donor site morbidity restrict use. Therefore, there is a clinical need for different graft sources/materials which replicate natural cartilage function. Chitosan has been proposed for this application. The aim of this study was to assess the biomechanics and biotribology of a bioresorbable chitosan/chitosan-nano-hydroxyapatite osteochondral construct (OCC), implanted in an porcine knee experimental simulation model. The OCC implanted in different surgical positions (flush, proud and inverted) was compared to predicate grafts in current clinical use and a positive control consisting of a stainless steel graft implanted proud of the cartilage surface. After 3 h (10 800 cycles) wear simulation under a walking gait, subsidence occurred in all OCC samples irrespective of surgical positioning, but with no apparent loss of material and low meniscus wear. Half the predicate grafts exhibited delamination and scratching of the cartilage surfaces. No graft subsidence occurred in the positive controls but wear and deformation of the meniscus were apparent. Implanting a new chitosan-based OCC either optimally (flush), inverted or proud of the cartilage surface resulted in minimal wear, damage and deformation of the meniscus.
骨软骨移植用于修复局限性骨软骨损伤。自体移植是金标准治疗方法;然而,可用移植物有限以及供体部位发病率限制了其应用。因此,临床上需要不同的移植物来源/材料来复制天然软骨的功能。壳聚糖已被提议用于此应用。本研究的目的是评估一种可生物吸收的壳聚糖/壳聚糖-纳米羟基磷灰石骨软骨构建体(OCC)在猪膝关节实验模拟模型中的生物力学和生物摩擦学特性。将植入不同手术位置(平齐、突出和倒置)的OCC与当前临床使用的对照移植物以及由突出于软骨表面植入的不锈钢移植物组成的阳性对照进行比较。在步行步态下进行3小时(10800次循环)的磨损模拟后,无论手术位置如何,所有OCC样本均出现下沉,但无明显材料损失且半月板磨损较小。一半的对照移植物表现出软骨表面分层和划痕。阳性对照中未出现移植物下沉,但半月板磨损和变形明显。以最佳方式(平齐)、倒置或突出于软骨表面植入新型壳聚糖基OCC会导致半月板磨损、损伤和变形最小。