首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Delivery and quantification of hydrogen peroxide generated via cold atmospheric pressure plasma through biological material
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Delivery and quantification of hydrogen peroxide generated via cold atmospheric pressure plasma through biological material

机译:通过生物材料通过冷大气压等离子体产生的过氧化氢的递送和定量

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The ability of plasma-generated hydrogen peroxide (H2O2) to traverse bacterial biofilms and the subsequent fate of the generated H2O2 has been investigated. An in vitro model, comprising a nanoporous membrane impregnated with artificial wound fluid and biofilms of varying maturity was treated with a helium-driven, cold atmospheric pressure plasma (CAP) jet. The concentration of H2O2 generated below the biofilms was quantified. The results showed that the plasma-generated H2O2 interacted significantly with the biofilm, thus exhibiting a reduction in concentration across the underlying nanoporous membrane. Biofilm maturity exhibited a significant effect on the penetration depth of H2O2, suggesting that well established, multilayer biofilms are likely to offer a shielding effect with respect to cells located in the lower layers of the biofilm, thus rendering them less susceptible to plasma disinfection. This may prove clinically significant in the plasma treatment of chronic, deep tissue infections such as diabetic and venous leg ulcers. Our results are discussed in the context of plasma-biofilm interactions, with respect to the fate of the longer lived reactive species generated by CAP, such as H2O2.
机译:研究了等离子体产生的过氧化氢(H 2 O 2)遍历细菌生物膜和后续排气的能力。包含浸渍有人工伤口流体的纳米多孔膜的体外模型,用氦气驱动的冷大气压等离子体(帽)喷射处理不同成熟的生物膜。定量了生物膜下方产生的H 2 O 2的浓度。结果表明,等离子体产生的H2O2与生物膜显着相互作用,从而表现出底层纳米多孔膜的浓度的降低。生物膜成熟度对H 2 O 2的渗透深度表现出显着影响,提示已经确定,多层生物膜可能为位于生物膜的下层的细胞提供屏蔽效果,因此使它们易受血浆消毒的影响更少。这可能在慢性,深层组织感染等血浆治疗如糖尿病和静脉腿部溃疡的血浆治疗中临床上显着。我们的结果在血浆 - 生物膜相互作用的上下文中讨论,相对于盖子产生的较长寿命的活性物质的命运,例如H 2 O 2。

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