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首页> 外文期刊>Scientific reports. >Effects and Mechanism of Atmospheric-Pressure Dielectric Barrier Discharge Cold Plasma on Lactate Dehydrogenase (LDH) Enzyme
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Effects and Mechanism of Atmospheric-Pressure Dielectric Barrier Discharge Cold Plasma on Lactate Dehydrogenase (LDH) Enzyme

机译:大气压介质阻挡放电冷等离子体对乳酸脱氢酶(LDH)酶的影响及其机理

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摘要

Proteins are carriers of biological functions and the effects of atmospheric-pressure non-thermal plasmas on proteins are important to applications such as sterilization and plasma-induced apoptosis of cancer cells. Herein, we report our detailed investigation of the effects of helium-oxygen non-thermal dielectric barrier discharge (DBD) plasmas on the inactivation of lactate dehydrogenase (LDH) enzyme solutions. Circular dichroism (CD) and dynamic light scattering (DLS) indicate that the loss of activity stems from plasma-induced modification of the secondary molecular structure as well as polymerization of the peptide chains. Raising the treatment intensity leads to a reduced alpha-helix content, increase in the percentage of the beta-sheet regions and random sequence, as well as gradually decreasing LDH activity. However, the structure of the LDH plasma-treated for 300 seconds exhibits a recovery trend after storage for 24?h and its activity also increases slightly. By comparing direct and indirect plasma treatments, plasma-induced LDH inactivation can be attributed to reactive species (RS) in the plasma, especially ones with a long lifetime including hydrogen peroxide, ozone, and nitrate ion which play the major role in the alteration of the macromolecular structure and molecular diameter in lieu of heat, UV radiation, and charged particles.
机译:蛋白质是生物学功能的载体,大气压非热血浆对蛋白质的影响对于诸如灭菌和血浆诱导的癌细胞凋亡等应用非常重要。在此,我们报告了对氦氧非热电介质阻挡放电(DBD)等离子体对乳酸脱氢酶(LDH)酶溶液失活的影响的详细研究。圆二色性(CD)和动态光散射(DLS)表明,活性的损失源于血浆诱导的二级分子结构的修饰以及肽链的聚合。提高治疗强度会导致降低的α-螺旋含量,增加β-折叠区域和随机序列的百分比,以及逐渐降低LDH活性。然而,经300秒等离子体处理的LDH的结构在储存24小时后显示出恢复趋势,其活性也略有增加。通过比较直接和间接等离子体处理,可以将血浆诱导的LDH失活归因于血浆中的反应性物种(RS),尤其是具有长寿命的那些,包括过氧化氢,臭氧和硝酸根离子,它们在改变LDH中起主要作用。代替热,紫外线辐射和带电粒子的大分子结构和分子直径。

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