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Catabolism of hyaluronan: involvement of transition metals

机译:透明质酸的分解代谢:过渡金属的参与

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摘要

One of the very complex structures in the vertebrates is the joint. The main component of the joint is the synovial fluid with its high-molar-mass glycosaminoglycan hyaluronan, which turnover is approximately twelve hours. Since the synovial fluid does not contain any hyaluronidases, the fast hyaluronan catabolism is caused primarily by reductive-oxidative processes.Eight transition metals – V23, Mn25, Fe26, Co27, Ni28, Cu29, Zn30, and Mo42 – naturally occurring in living organism are essential for the control of various metabolic and signaling pathways. They are also the key elements in catabolism of hyaluronan in the joint.In this overview, the role of these metals in physiological and pathophysiological catabolism of hyaluronan is described. The participation of these metals in the initiation and propagation of the radical degradation hyaluronan is critically reviewed.
机译:脊椎动物中非常复杂的结构之一是关节。关节的主要成分是滑液及其高摩尔质量的糖胺聚糖透明质酸,其周转时间约为十二小时。由于滑液不含任何透明质酸酶,因此快速的透明质酸分解代谢主要由还原-氧化过程引起。八种过渡金属-V 23 ,Mn 25 ,Fe 26 ,Co 27 ,Ni 28 ,Cu 29 ,Zn 30 和Mo < sup> 42 –天然存在于生物体内对于控制各种代谢和信号通路至关重要。它们也是关节中透明质酸分解代谢的关键元素。在本概述中,描述了这些金属在透明质酸的生理和病理生理分解代谢中的作用。严格审查了这些金属在自由基降解透明质酸的引发和扩散中的参与。

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