Department of Internal Medicine (Rheumatology), Rush University Medical Center, Chicago, IL, USA.
Department of Anatomy and Cell Biology, Rush University Medical Center, Chicago, IL, USA.
Adv Exp Med Biol. 2023;1402:3-29. doi: 10.1007/978-3-031-25588-5_1.
Cartilages are unique in the family of connective tissues in that they contain a high concentration of the glycosaminoglycans, chondroitin sulfate and keratan sulfate attached to the core protein of the proteoglycan, aggrecan. Multiple aggrecan molecules are organized in the extracellular matrix via a domain-specific molecular interaction with hyaluronan and a link protein, and these high molecular weight aggregates are immobilized within the collagen and glycoprotein network. The high negative charge density of glycosaminoglycans provides hydrophilicity, high osmotic swelling pressure and conformational flexibility, which together function to absorb fluctuations in biomechanical stresses on cartilage during movement of an articular joint. We have summarized information on the history and current knowledge obtained by biochemical and genetic approaches, on cell-mediated regulation of aggrecan metabolism and its role in skeletal development, growth as well as during the development of joint disease. In addition, we describe the pathways for hyaluronan metabolism, with particular focus on the role as a "metabolic rheostat" during chondrocyte responses in cartilage remodeling in growth and disease.Future advances in effective therapeutic targeting of cartilage loss during osteoarthritic diseases of the joint as an organ as well as in cartilage tissue engineering would benefit from 'big data' approaches and bioinformatics, to uncover novel feed-forward and feed-back mechanisms for regulating transcription and translation of genes and their integration into cell-specific pathways.
软骨在结缔组织家族中是独一无二的,因为它们含有高浓度的糖胺聚糖,如软骨素硫酸盐和硫酸角质素,这些糖胺聚糖附着在蛋白聚糖核心蛋白聚糖的核心蛋白上。多个聚集蛋白聚糖分子通过与透明质酸和链接蛋白的特定分子相互作用在细胞外基质中进行组织,这些高分子量的聚集物被固定在胶原和糖蛋白网络中。糖胺聚糖的高负电荷密度提供了亲水性、高渗透压膨胀压和构象灵活性,这些共同作用有助于吸收关节运动时软骨生物力学应力的波动。我们总结了通过生化和遗传方法获得的关于聚集蛋白聚糖代谢的历史和当前知识,以及细胞介导的聚集蛋白聚糖代谢调节及其在骨骼发育、生长以及关节疾病发展中的作用。此外,我们描述了透明质酸代谢途径,特别关注其在软骨细胞对生长和疾病中软骨重塑的反应中的“代谢变阻器”作用。未来在骨关节炎等关节疾病中有效靶向软骨丢失的治疗方法以及软骨组织工程方面的进展将受益于“大数据”方法和生物信息学,以揭示调节基因转录和翻译及其整合到细胞特异性途径的新型前馈和反馈机制。