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Protective effects of manganese(II) chloride on hyaluronan degradation by oxidative system ascorbate plus cupric chloride

机译:氯化锰对氧化型抗坏血酸加氯化铜对乙酰透明质酸降解的保护作用

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摘要

The degradation of several high-molar-mass hyaluronan samples was investigated in the presence of ascorbic acid itself and further by an oxidative system composed of ascorbic acid plus transition metal ions, i.e. Fe(II) or Cu(II) ions. The latter oxidative system imitates conditions in a joint synovial fluid during early phase of acute joint inflammation and can be used as a model for monitoring oxidative degradation of hyaluronan under pathophysiological conditions. The system Cu(II) plus ascorbate (the Weissberger oxidative system) resulted in a more significant decrease of hyaluronan molar mass compared to the oxidative system Fe(II) plus ascorbate. Addition of manganese(II) chloride was found to decrease the rate of the oxidative damage of hyaluronan initiated by ascorbate itself and by the Weissberger system.
机译:在抗坏血酸本身存在下,并进一步通过由抗坏血酸加过渡金属离子(即Fe(II)或Cu(II)离子)组成的氧化系统,研究了几种高摩尔质量的透明质酸样品的降解。后者的氧化系统在急性关节发炎的早期模仿关节滑液中的状况,并且可以用作在病理生理条件下监测透明质酸氧化降解的模型。与氧化系统Fe(II)加抗坏血酸盐相比,系统Cu(II)加抗坏血酸盐(Weissberger氧化系统)导致透明质酸摩尔质量的降低更为显着。发现添加氯化锰(II)可以降低抗坏血酸本身和Weissberger系统引发的透明质酸氧化损伤的速率。

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