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Enhanced catalytic activity of enzymes interacting with nanometric titanate nanosheets

机译:增强与纳米钛酸盐纳米片相互作用的酶的催化活性

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摘要

The effect of the coexistence of titanate nanosheets (TNS) with nanometric lateral dimensions (ca. 3 nm), which were prepared through a hydrolysis reaction of titanium tetraisopropoxide, on the catalytic activity of horseradish peroxidase (HRP) was investigated as a function of solution pH. Especially in diluted HRP solutions with a pH range of 7-8, enzymatic reaction rate, i.e. maximum velocity (Vmax), in the conventional Michaelis-Menten equation, was significantly enhanced more than 2 times in the presence of TNS. In contrast, the increase in Vmax was not very large in acidic (pH = 4.0) and basic solutions (pH = 9.0). It was demonstrated that the TNS brought about peptization of aggregates composed of several HRP molecules in a diluted solution, causing an increase in the apparent HRP concentration participating in the enzymatic reaction. Moreover, the TNS activated superoxide dismutase (SOD) with O2 - scavenging performance.
机译:研究了通过四异丙氧基钛水解反应制备的纳米级横向尺寸(约3 nm)的钛酸酯纳米片(TNS)的共存对辣根过氧化物酶(HRP)催化活性的影响。 pH值尤其是在pH值为7-8的稀释HRP溶液中,在传统的Michaelis-Menten方程中,在TNS存在下,酶促反应速率(即最大速度(Vmax))显着提高了2倍以上。相反,在酸性(pH = 4.0)和碱性溶液(pH = 9.0)中,Vmax的增加不是很大。证实TNS在稀释溶液中引起由数种HRP分子组成的聚集体的胶溶,引起参与酶促反应的表观HRP浓度增加。而且,TNS激活了具有清除O2的超氧化物歧化酶(SOD)。

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