Salter D M, Godolphin J L, Gourlay M S
Edinburgh University Department of Pathology, UK.
J Histochem Cytochem. 1995 Apr;43(4):447-57. doi: 10.1177/43.4.7897185.
During development and at maturity different forms of cartilage vary in morphology and macromolecular content. This reflects heterogeneity of chondrocyte activity, in part involving differential interactions with the adjacent extracellular matrix via specialized cell surface receptors such as integrins. We undertook an immunohistological study on a series of human fetal knee joints to assess variation in the expression of integrins by chondrocytes and potential matrix ligands in articular, epiphyseal, growth plate, and meniscal cartilage. The results show that articular chondrocytes (beta 1+, beta 5 alpha V+, alpha 1+, alpha 2+/-, alpha 5+, weakly alpha 6+, alpha V+) differed from epiphyseal (beta 1+, beta 5 alpha V+, alpha 1+/-, alpha 2+/-, alpha 5+, alpha 6+, alpha V+) growth plate (beta 1+, beta 5 alpha V+, alpha 1-, alpha 2-, alpha 5+, alpha 6+, alpha V+), and meniscal cells (beta 1+, beta 5 alpha V+, alpha 1+, strongly alpha 2+, alpha 5+, alpha 6+, alpha V+ in expression of integrin subunits. There was no expression of beta 3, beta 4, beta 6, or alpha 3 by chondrocytes. These results differ from previous reports on the expression of integrins by adult articular cartilage, where alpha 2 and alpha 6 are not seen. Variation in distribution of matrix ligands was also seen. Fibronectin, laminin and Type VI collagen were expressed in all cartilages but there was restricted expression of tenascin, ED-A and ED-B fibronectin isoforms (articular cartilage and meniscus), and vitronectin (absent from growth plate cartilage). Regulated expression of integrins by chondrocytes, associated with changes in the pericellular matrix composition, is of potential importance in control of cartilage differentiation and function in health and disease.
在发育过程中和成熟时,不同形式的软骨在形态和大分子含量上存在差异。这反映了软骨细胞活性的异质性,部分涉及通过诸如整合素等特殊细胞表面受体与相邻细胞外基质的差异相互作用。我们对一系列人类胎儿膝关节进行了免疫组织学研究,以评估软骨细胞中整合素及其在关节软骨、骨骺软骨、生长板软骨和半月板软骨中的潜在基质配体表达的变化。结果显示,关节软骨细胞(β1 +、β5αV +、α1 +、α2 +/ -、α5 +、弱α6 +、αV +)与骨骺软骨细胞(β1 +、β5αV +、α1 +/ -、α2 +/ -、α5 +、α6 +、αV +)、生长板软骨细胞(β1 +、β5αV +、α1 -、α2 -、α5 +、α6 +、αV +)以及半月板细胞(β1 +、β5αV +、α1 +、强α2 +、α5 +、α6 +、αV +)在整合素亚基表达上存在差异。软骨细胞未表达β3、β4、β6或α3。这些结果与先前关于成人关节软骨中整合素表达的报道不同,在成人关节软骨中未观察到α2和α6。在基质配体的分布上也存在差异。纤连蛋白、层粘连蛋白和VI型胶原在所有软骨中均有表达,但腱生蛋白、ED - A和ED - B纤连蛋白异构体(关节软骨和半月板)以及玻连蛋白(生长板软骨中不存在)的表达受限。软骨细胞对整合素的调控表达,与细胞周围基质组成的变化相关,在健康和疾病状态下对软骨分化和功能的控制具有潜在重要性