Wimmer Markus A, Pacione Carol, Yuh Catherine, Chan Yuet-Ming, Kunze Joachim, Laurent Michel P, Chubinskaya Susan
Department of Orthopedic Surgery, Rush University Medical Center, Chicago, IL, USA.
Department of Orthopedic Surgery, Rush University Medical Center, Chicago, IL, USA.
J Mech Behav Biomed Mater. 2020 Mar;103:103531. doi: 10.1016/j.jmbbm.2019.103531. Epub 2019 Nov 11.
There is interest in minimally invasive solutions that reduce osteoarthritic symptoms and restore joint mobility in the early stages of cartilage degeneration. The aim of the present study was to evaluate an alumina-zirconia composite (AZC) as a counterface for articulation against live cartilage explants in comparison to the clinically relevant cobalt-chromium (CoCrMo) alloy.
A four-station bioreactor designed to articulate against living tissue in an incubator was used for testing. Twelve 32 mm AZC and twelve 32 mm CoCrMo femoral heads with equal surface roughness made up both test groups. Each head articulated against a cartilage disk harvested from stifle joints of 24-week old steers. Test samples and free-swelling control cartilage samples were cultured in Mini ITS medium. Testing was conducted 3 h daily over 10 days applying a contact load of approximately 2 MPa. PG/GAG and hydroxyproline were analyzed using biochemical assays. Additionally, chondrocyte survival and Mankin score analyses were performed on histological slides.
Cells stayed alive during the course of the experiment, with cell survival values close to 80% at test completion in the superficial zone. There was no significant difference between AZC and free-swelling control tissue. However, cell count values were inferior for CoCrMo (p = 0.003). Tested tissue suffered mostly structural abnormalities. The PG/GAG content in medium was not different between CoCrMo and AZC (p = 0.315); however, the hydroxyproline release into medium was nearly 30% higher for CoCrMo (p = 0.024).
Based on average values, AZC induces less cell and tissue damage than CoCrMo. However, only the hydroxyproline measurements reached statistical significance, partially due to substantial scatter within both groups.
人们对微创解决方案很感兴趣,这类方案可减轻骨关节炎症状并在软骨退变早期恢复关节活动度。本研究的目的是评估氧化铝-氧化锆复合材料(AZC)作为与活软骨外植体进行关节运动的配对表面,并与临床常用的钴铬(CoCrMo)合金进行比较。
使用一种设计用于在培养箱中与活组织进行关节运动的四站生物反应器进行测试。两组测试均使用了十二个表面粗糙度相同的32毫米AZC股骨头和十二个32毫米CoCrMo股骨头。每个股骨头与从24周龄公牛膝关节采集的软骨盘进行关节运动。测试样品和自由肿胀的对照软骨样品在Mini ITS培养基中培养。在10天内每天进行3小时测试,施加约2MPa的接触载荷。使用生化分析方法分析蛋白聚糖/糖胺聚糖(PG/GAG)和羟脯氨酸。此外,对组织学切片进行软骨细胞存活和曼金评分分析。
在实验过程中细胞保持存活,实验结束时表层区域的细胞存活率接近80%。AZC与自由肿胀的对照组织之间无显著差异。然而,CoCrMo的细胞计数较低(p = 0.003)。测试组织大多出现结构异常。CoCrMo和AZC培养基中的PG/GAG含量无差异(p = 0.315);然而,CoCrMo释放到培养基中的羟脯氨酸高出近30%(p = 0.024)。
基于平均值,AZC比CoCrMo对细胞和组织的损伤更小。然而,只有羟脯氨酸测量结果具有统计学意义,部分原因是两组内的数据离散度较大。