Peptide growth factors and their interactions during chondrogenesis

D.J. Hill , A. Logan
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引用次数: 86

Abstract

Peptide growth factors have been implicated in three aspects of cartilage growth and metabolism; the induction of mesoderm and differentiation of a cartilaginous skeleton in the early embryo, the growth and differentiation of chondrocytes within the epiphyseal growth plates leading to endochondral calcification, and the processes of articular cartilage damage and repair. Three peptide growth factor classes have been strongly implicated in these processes, the fibroblast growth factor family (FGF), the insulin-like growth factors (IGFs) including insulin, and transforming growth factor-β (TGF-β) and related molecules. Each of these peptide groups are expressed in the early embryo. Basic FGF, TGF-β and the related activin have been shown to induce the appearance of mesoderm from primitive neuroectoderm. TGF-β and related bone morphometric proteins can induce the differentiation of cartilage from primitive mesenchyme, and together with basic FGF and IGFs promote cartilage growth. Each class of growth factor is expressed within the epiphyseal growth plate where their autocrine/paracrine interactions regulate the rate of chondrocyte proliferation, matrix protein synthesis and terminal differentiation and mineralization. Basic FGF may prove useful in articular cartilage repair, while basic FGF, IGFs and TGF-β are among a number of growth factors and cytokines that have been implicated in cartilage disease.

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肽生长因子及其在软骨形成过程中的相互作用
肽生长因子涉及软骨生长和代谢的三个方面;早期胚胎中胚层软骨骨骼的诱导和分化,骨骺生长板内软骨细胞的生长和分化导致软骨内钙化,以及关节软骨损伤和修复的过程。三种肽生长因子类在这些过程中密切相关,成纤维细胞生长因子家族(FGF),胰岛素样生长因子(IGFs)包括胰岛素,转化生长因子-β (TGF-β)和相关分子。这些肽群中的每一个都在胚胎早期表达。基础FGF、TGF-β和相关激活素可诱导原始神经外胚层出现中胚层。TGF-β及相关骨形态测定蛋白可诱导软骨向原始间质分化,并与碱性FGF、IGFs共同促进软骨生长。每一类生长因子都在骨骺生长板内表达,它们的自分泌/旁分泌相互作用调节软骨细胞增殖、基质蛋白合成和终末分化和矿化的速度。基础FGF可能被证明在关节软骨修复中有用,而基础FGF、IGFs和TGF-β是与软骨疾病有关的许多生长因子和细胞因子。
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Author index Contents Subject word index Editorial Board Biochemical and mitogenic properties of the heparin-binding growth factor HARP
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