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Rapid immobilization of enzymes onto solid supports by ultrasound waves

机译:通过超声波将酶快速固定在固体支持物上

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Herein, we describe a non-conventional method for immobilization of enzymes onto different solid surfaces using ultrasound as a source of energy. When horseradish peroxidase (HRP) was taken on the surface of an activated support and allowed to float on a sonicator bath operating at a frequency of 40 KHz, it readily started binding itself to the surface. Maximum binding was observed in 10 min whereas a control experiment carried out similarly without ultrasound waves showed insignificant immobilization. Ultrasound wave-mediated immobilization is rapid and reproducible and is better suitable for versatile applications in different fields, including fabrication of enzyme-based biosensors or bioreactors.
机译:在这里,我们描述了一种使用超声作为能源将酶固定在不同固体表面上的非常规方法。当辣根过氧化物酶(HRP)放在活化载体的表面上并使其漂浮在以40 KHz频率运行的超声浴上时,它很容易开始将自身结合到表面上。在10分钟内观察到最大结合,而类似地在没有超声波的情况下进行的对照实验显示不明显的固定。超声波介导的固定化快速且可重现,并且更适合于不同领域的多功能应用,包括基于酶的生物传感器或生物反应器的制造。

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