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The mechanisms and consequences of the maturation and ageing of collagen

机译:胶原蛋白成熟和老化的机制和后果

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The stabilisation of collagen fibres during development and through growth to maturation is now fairly well understood. It is a carefully controlled enzymic process which produces intermolecular cross-links at specific locations. In marked contrast, the changes in the physical properties that occur towards old age are stochastic and involve oxidative reactions that result in the formation of glucose mediated cross-links. This excessive and random cross-linking leads to a devastating loss of tissue functionality and deterioration of vital organs. In addition, specific residues involved in cell-matrix interactions may become modified. This can affect the expression of cells and lead to the formation of an inappropriate collagen matrix during its slower tumover in old age. This is exemplified in the ubiquitous disorders osteoporosis and osteoarthritis, age-related diseases in which we have noted gene regulated changes in the collagen deposited and also post-translational changes such as over-hydroxylation of lysine residues. Both of these effects can have a profound deleterious effect on the function of the matrix tissue.
机译:现在已经相当了解胶原蛋白纤维在发育过程中以及从生长到成熟的稳定性。这是一个经过仔细控制的酶促过程,在特定位置产生分子间交联。与之形成鲜明对比的是,随着年龄的增长,物理性质的变化是随机的,并且涉及氧化反应,导致形成葡萄糖介导的交联。这种过度和随机的交联导致破坏性的组织功能丧失和重要器官的退化。另外,参与细胞-基质相互作用的特定残基可能被修饰。这可能会影响细胞的表达,并导致老年时肿瘤生长缓慢,导致形成不合适的胶原蛋白基质。这在普遍存在的疾病骨质疏松症和骨关节炎,与年龄有关的疾病中得到了体现,在这些疾病中,我们注意到基因调节胶原蛋白沉积的变化以及翻译后的变化,例如赖氨酸残基的过度羟基化。这两种作用都可能对基质组织的功能产生深远的有害作用。

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