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Correlations between gaseous and liquid phase chemistries induced by cold atmospheric plasmas in a physiological buffer

机译:生理缓冲液中冷常压血浆诱导的气态和液相化学的相关性

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The understanding of plasma-liquid interactions is of major importance, not only in physical chemistry, chemical engineering and polymer science, but in biomedicine as well as to better control the biological processes induced on/in biological samples by Cold Atmospheric Plasmas (CAPs). Moreover, plasma-air interactions have to be particularly considered since these CAPs propagate in the ambient air. Herein, we developed a helium-based CAP setup equipped with a shielding-gas device, which allows the control of plasma-air interactions. Thanks to this device, we obtained specific diffuse CAPs, with the ability to propagate along several centimetres in the ambient air at atmospheric pressure. Optical Emission Spectroscopy (OES) measurements were performed on these CAPs during their interaction with a liquid medium (phosphate-buffered saline PBS 10 mM, pH 7.4) giving valuable information about the induced chemistry as a function of the shielding gas composition (variable O-2/(O-2 + N-2) ratio). Several excited species were detected including N-2(+) (First Negative System, FNS), N-2(Second Positive System, SPS) and HO center dot radical. The ratios between nitrogen/oxygen excited species strongly depend on the O-2/(O-2 + N-2) ratio. The liquid chemistry developed after CAP treatment was investigated by combining electrochemical and UV-visible absorption spectroscopy methods. We detected and quantified stable oxygen and nitrogen species (H2O2, NO2-, NO3-) along with Reactive Nitrogen Species (RNS) such as the peroxynitrite anion ONOO center dot. It appears that the RNS/ROS (Reactive Oxygen Species) ratio in the treated liquid depends also on the shielding gas composition. Eventually, the composition of the surrounding environment of CAPs seems to be crucial for the induced plasma chemistry and consequently, for the liquid chemistry. All these results demonstrate clearly that for physical, chemical and biomedical applications, which are usually achieved in ambient air environments, it is necessary to realize an effective control of plasma-air interactions.
机译:对等离子体液相相的理解具有重要意义,不仅是物理化学,化学工程和聚合物科学,而且在生物医学中,并更好地通过冷大气浆料(帽)控制生物样品上诱导的生物学过程。此外,由于这些帽在环境空气中繁殖,因此必须特别考虑等离子体空气相互作用。这里,我们开发了一种配备有屏蔽气体装置的基于氦的帽设置,其允许控制等离子体空气相互作用。由于该装置,我们获得了特定的漫射帽,能够在大气压下沿着环境空气中的几厘米传播。在它们与液体介质(磷酸盐缓冲盐水PBS 10mm,pH 7.4)相互作用期间对这些盖进行光发射光谱(OES)测量,其作为屏蔽气体组合物的函数的诱导化学的有价值信息(可变O- 2 /(O-2 + N-2)比率)。检测到几种激发物种,包括N-2(+)(+)(第一负系统,FNS),N-2(第二正系统,SPS)和HO中心点自由基。氮/氧激发物质之间的比率强烈取决于O-2 /(O-2 + N-2)比。通过组合电化学和UV可见吸收光谱法研究后研制帽处理后的液体化学。我们检测和定量稳定的氧气和氮物质(H 2 O 2,NO2-,NO3-)以及反应性氮物质(RNS),例如过氧基亚硫酸根阴离子ONOO中心点。似乎处理过的液体中的RNS / ROS(反应性氧物质)比也取决于屏蔽气体组合物。最终,帽的周围环境的组成对于诱导的血浆化学以及因此对于液体化学来说至关重要。所有这些结果清楚地表明,对于通常在环境空气环境中实现的物理,化学和生物医学应用,必须实现对等离子体空气相互作用的有效控制。

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    UPPA IPREM CNRS UMR 5254 2 Ave President Angot F-64000 Pau France;

    UPPA IPREM CNRS UMR 5254 2 Ave President Angot F-64000 Pau France;

    UPPA IPREM CNRS UMR 5254 2 Ave President Angot F-64000 Pau France;

    Univ BORDEAUX ISM CNRS NSysA Grp ENSCBP UMR 5255 16 Ave Pey Berland F-33607 Pessac France;

    UPPA IPREM CNRS UMR 5254 2 Ave President Angot F-64000 Pau France;

    UPPA IPREM CNRS UMR 5254 2 Ave President Angot F-64000 Pau France;

    Univ Lorraine CNRS UMR 7198 Inst Jean Lamour Site Artem CS 50840 F-54011 Nancy France;

    Univ Lorraine CNRS UMR 7198 Inst Jean Lamour Site Artem CS 50840 F-54011 Nancy France;

    UPPA Atelier Phys Ave Univ BP1155 F-64013 Pau France;

    Univ Paul Sabatier Hop Rangueil Lab Hematol Bat L2 1 Ave Prof Jean Poulhes TSA 50032 F-31059 Toulouse 9 France;

    UPPA IPREM CNRS UMR 5254 2 Ave President Angot F-64000 Pau France;

    Univ BORDEAUX ISM CNRS NSysA Grp ENSCBP UMR 5255 16 Ave Pey Berland F-33607 Pessac France;

    Univ Pau &

    Pays Adour Pau France;

    Univ BORDEAUX ISM CNRS NSysA Grp ENSCBP UMR 5255 16 Ave Pey Berland F-33607 Pessac France;

    UPPA IPREM CNRS UMR 5254 2 Ave President Angot F-64000 Pau France;

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  • 正文语种 eng
  • 中图分类 物理学;化学;
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