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首页> 外文期刊>Journal of Photopolymer Science and Technology >In-situ UV Absorption Spectroscopy for Monitoring Transport of Plasma Reactive Species through Agarose as Surrogate for Tissue
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In-situ UV Absorption Spectroscopy for Monitoring Transport of Plasma Reactive Species through Agarose as Surrogate for Tissue

机译:原位紫外吸收光谱法监测血浆反应性物种通过琼脂糖作为组织的替代物的运输

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摘要

We demonstrated the efficacy of using a simple experimental approach, involving UV absorption spectroscopy, to monitor the transport of reactive oxygen and nitrogen species (RONS) through an agarose film (as surrogate for real tissue) into deionized (DI) water. The experiment involved placing a 4 nun thick agarose film over a quartz cuvette filled with DI water. The agarose film was exposed to a non-thermal, He atmospheric-pressure plasma jet (APPJ) and the UV absorption of the DI water was recorded in real-time. Our results indicate an accumulation of RONS within the agarose film during APPJ exposure and a subsequent time-lapsed release of RONS into the DI water. Curve fitting of the UV spectra suggested the APPJ transported and / or generated at least four RONS (HNO2, HNO3, H2O2 and O-2) through the 4 mm thick agarose film. Our approach of analyzing the delivery depth of RONS through synthetic tissue targets might find use in the future development of APPJ medical therapies and for improving our understanding of APPJ interactions with soft tissue.
机译:我们证明了使用简单的实验方法(包括紫外线吸收光谱法)来监测活性氧和氮物质(RONS)通过琼脂糖膜(作为真实组织的替代物)到去离子(DI)水中的传输的功效。实验涉及在充满去离子水的石英比色皿上放置一个4尼厚的琼脂糖膜。将琼脂糖膜暴露于非热氦大气压等离子体射流(APPJ)中,并实时记录去离子水的紫外线吸收。我们的结果表明,在APPJ暴露过程中,琼脂糖膜中RONS积累,随后RONS随时间流逝释放到去离子水中。紫外光谱的曲线拟合表明,APPJ通过4毫米厚的琼脂糖膜运输和/或产生了至少四个RONS(HNO2,HNO3,H2O2和O-2)。我们分析RONS通过合成组织靶标的输送深度的方法可能会在APPJ药物治疗的未来发展中使用,并有助于增进我们对APPJ与软组织相互作用的了解。

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