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原子力显微镜研究蒸汽流经锥形盘管换热器对酶性质的影响

AFM Investigation of the Influence of Steam Flow through a Conical Coil Heat Exchanger on Enzyme Properties.

作者信息

Ivanov Yuri D, Shumov Ivan D, Tatur Vadim Y, Valueva Anastasia A, Kozlov Andrey F, Ivanova Irina A, Ershova Maria O, Ivanova Nina D, Stepanov Igor N, Lukyanitsa Andrei A, Ziborov Vadim S

机构信息

Institute of Biomedical Chemistry, Pogodinskaya Str., 10 Build. 8, Moscow 119121, Russia.

Joint Institute for High Temperatures of the Russian Academy of Sciences, Moscow 125412, Russia.

出版信息

Micromachines (Basel). 2022 Nov 22;13(12):2041. doi: 10.3390/mi13122041.

Abstract

The present study is aimed at the revelation of subtle effects of steam flow through a conical coil heat exchanger on an enzyme, incubated near the heat exchanger, at the nanoscale. For this purpose, atomic force microscopy (AFM) has been employed. In our experiments, horseradish peroxidase (HRP) was used as a model enzyme. HRP is extensively employed as a model in food science in order to determine the influence of electromagnetic fields on enzymes. Adsorption properties of HRP on mica have been studied by AFM at the level of individual enzyme macromolecules, while the enzymatic activity of HRP has been studied by spectrophotometry. The solution of HRP was incubated either near the top or at the side of the conically wound aluminium pipe, through which steam flow passed. Our AFM data indicated an increase in the enzyme aggregation on mica after its incubation at either of the two points near the heat exchanger. At the same time, in the spectrophotometry experiments, a slight change in the shape of the curves, reflecting the HRP-catalyzed kinetics of ABTS oxidation by hydrogen peroxide, has also been observed after the incubation of the enzyme solution near the heat exchanger. These effects on the enzyme adsorption and kinetics can be explained by alterations in the enzyme hydration caused by the influence of the electromagnetic field, induced triboelectrically by the flow of steam through the heat exchanger. Our findings should thus be considered in the development of equipment involving conical heat exchangers, intended for either research or industrial use (including miniaturized bioreactors and biosensors). The increased aggregation of the HRP enzyme, observed after its incubation near the heat exchanger, should also be taken into account in analysis of possible adverse effects from steam-heated industrial equipment on the human body.

摘要

本研究旨在揭示蒸汽流经锥形盘管热交换器时,在纳米尺度上对置于热交换器附近的一种酶所产生的细微影响。为此,采用了原子力显微镜(AFM)。在我们的实验中,辣根过氧化物酶(HRP)被用作模型酶。HRP在食品科学中被广泛用作模型,以确定电磁场对酶的影响。通过AFM在单个酶大分子水平上研究了HRP在云母上的吸附特性,同时通过分光光度法研究了HRP的酶活性。将HRP溶液置于锥形缠绕铝管顶部附近或侧面,蒸汽从中流过。我们的AFM数据表明,在热交换器附近的两个点之一孵育后云母上的酶聚集增加。同时,在分光光度法实验中,在酶溶液在热交换器附近孵育后,也观察到反映HRP催化过氧化氢氧化ABTS动力学的曲线形状略有变化。对酶吸附和动力学的这些影响可以通过蒸汽流经热交换器时摩擦电感应产生的电磁场对酶水合作用的改变来解释。因此,在开发用于研究或工业用途的涉及锥形热交换器的设备(包括小型化生物反应器和生物传感器)时应考虑我们的研究结果。在分析蒸汽加热工业设备对人体可能产生的不利影响时,也应考虑在热交换器附近孵育后观察到的HRP酶聚集增加的情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3348/9784692/5b6a3ed561f3/micromachines-13-02041-g001.jpg

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