Department of Mechanical Engineering, Stanford University, Stanford, CA, 94305.
J Orthop Res. 2020 Apr;38(4):785-792. doi: 10.1002/jor.24521. Epub 2019 Nov 22.
Determining the influence of tissue composition on the osmotic swelling stress of articular cartilage and meniscus fibrocartilage is important to enhance our understanding of physiology and disease. This osmotic swelling stress is critical for the load-bearing capability of both tissues and results in part due to the interactions between the negatively charged sulfated glycosaminoglycan (sGAG) chains and the ionic interstitial fluid. Changes in sGAG content, as those occurring during the progression of degenerative joint disease, alter such interactions. Here, we compare the time-varying effects of altered osmotic environments on the confined compression swelling behavior of bovine tissues spanning a range of sGAG concentrations: juvenile articular cartilage, juvenile and adult meniscus, and juvenile cartilage enzymatically degraded to reduce its sGAG content. The transient response to changes in bath conditions was evaluated for explants assigned to one of three compressive offsets (5%, 10%, or 15% strain) and one of three bath conditions (0.1X, 1X, or 10X phosphate-buffered saline). Our results show that relative responses to alterations to the osmotic environment are consistent across native tissues but differ for degraded juvenile cartilage, demonstrating that changes in sGAG do not completely recapitulate the native swelling behaviors. Further, we found a strong correlation between aggregate modulus and sGAG/collagen, as well as between sGAG and collagen contents across native tissue types, suggesting some conservation of composition-function relationships across a range of tissue types with varying sGAG concentrations. © 2019 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 38:785-792, 2020.
确定组织成分对关节软骨和半月板纤维软骨渗透肿胀压力的影响对于增强我们对生理学和疾病的理解很重要。这种渗透肿胀压力对于两种组织的承载能力至关重要,部分原因是带负电荷的硫酸化糖胺聚糖 (sGAG) 链与离子间质液之间的相互作用。退行性关节疾病进展过程中 sGAG 含量的变化会改变这种相互作用。在这里,我们比较了改变渗透环境对跨越一系列 sGAG 浓度的牛组织的约束压缩肿胀行为的时变影响:幼年关节软骨、幼年和成年半月板以及通过酶降解来减少 sGAG 含量的幼年软骨。评估了分配到三种压缩偏移量(5%、10%或 15%应变)和三种浴条件(0.1X、1X 或 10X 磷酸盐缓冲盐水)之一的外植体对浴条件变化的瞬态响应。我们的结果表明,对渗透环境变化的相对响应在天然组织中是一致的,但对于降解的幼年软骨则不同,这表明 sGAG 的变化并不能完全再现天然的肿胀行为。此外,我们发现聚集模量与 sGAG/胶原之间以及天然组织类型之间的 sGAG 与胶原含量之间存在很强的相关性,这表明在具有不同 sGAG 浓度的一系列组织类型中,组成-功能关系存在一定程度的保守性。版权所有 2019 年矫形研究学会。由 Wiley Periodicals, Inc. 出版。J Orthop Res 38:785-792, 2020.