首页> 外文期刊>Journal of clinical biochemistry and nutrition. >Formation of reactive oxygen species by irradiation of cold atmospheric pressure plasma jet to water depends on the irradiation distance
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Formation of reactive oxygen species by irradiation of cold atmospheric pressure plasma jet to water depends on the irradiation distance

机译:通过照射冷大气压等离子体喷射到水的反应性氧物质取决于照射距离

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摘要

Because application of cold atmospheric pressure plasma jet (CAPPJ) to biological samples have taken large attentions, it is important to examine the effects of various CAPPJ parameters on the generation of reactive species. Here, we investigated the generation of reactive species in water by CAPPJ irradiation by changing the following parameters: irradiation time, sample volume, and irradiation distance between the sample surface and plasma jet tip. We measured 1) change in the ESR signal intensity of 4-hydroxy-2,2,6,6-tetrametylpeperidine-1-oxyl (Tempol), 2) spin trapping with 5,5-dimethyl-1-pyrroline N-oxide (DMPO), 3) Fricke dosimeter reaction, and 4) hydrogen peroxide (H2O2) formation induced by CAPPJ irradiation. By the experiment of volume dependency, it is suggested that the reactive species detected in water are formed largely in the plasma gas phase. The reduction of ESR signal intensity of Tempol and the formation of DMPO-OH were strongly dependent on irradiation distance, but the relationship between H2O2 generation and distance was weak. The formation of species that oxidize Fe2+ to Fe3+ was shown by the Fricke dosimeter reaction, and reactions at irradiation distances longer than 3 cm were mainly attributable to H2O2. It may be possible to apply different reactive species to the samples by changing the CAPPJ irradiation distance.
机译:由于冷大气压等离子体喷射(CAPPJ)的应用已经缩短了较大的注意,因此重要的是检查各种CAPP参数对反应性物种产生的影响。在这里,我们通过CAPPJ辐射研究了通过改变以下参数:照射时间,样品体积和样品表面和等离子体喷射尖端的照射距离来通过CAPPJ辐射产生反应性物种。我们测量了1)在4-羟基-2,6,6-四乙基哌啶-1-氧基(Tempol),2)的ESR信号强度的变化用5,5-二甲基-1-吡咯啉N-氧化物旋转捕获( DMPO),3)Fricke剂量计反应,4)CAPPJ辐照诱导的过氧化氢(H2O2)形成。通过体积依赖性的实验,建议在水中检测到的反应性物质在很大程度上在血浆气相中形成。 Tempol的ESR信号强度的降低和DMPO-OH的形成强烈依赖于辐照距离,但H2O2代和距离之间的关系弱。通过FRICKE剂量计反应显示氧化Fe2 +至Fe3 +的物种的形成,并且照射距离长于3cm的反应主要是归因于H 2 O 2。可以通过改变CAPPJ照射距离将不同的活性物质应用于样品。

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