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Oxidative modification of skin lipids by cold atmospheric plasma (CAP): A standardizable approach using RP-LC/MS2 and DI-ESI/MS2

机译:冷气氛血浆(帽)氧化改性皮肤脂质(帽):使用RP-LC / MS2和DI-ESI / MS2的可标记方法

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摘要

Cold atmospheric plasma (CAP) is an emerging source for the locally defined delivery of reactive species, and its clinical potential has been identified in the control of inflammatory processes, such as acute and chronic wounds, or cancerous lesions. Lipids, due to their localization and chemical structure as ideal targets for oxidative species, are relevant modifiers of physiological processes. Human forehead lipids collected on a target were treated by an argon plasma jet and immediately analyzed by direct-infusion high-resolution tandem mass spectrometry (DI-MS2) or liquid chromatography-tandem MS (RP-LC/MS2). Subsequent data analysis was performed by LipidHunter (University of Leipzig), LipidXplorer (Max Planck Institute of Molecular Cell Biology and Genetics, Dresden), and LipidSearch (Thermo Scientific). With either MS method, all major lipid classes of sebum lipids were detected. Significant differences regarding triacylglycerols (predominantly identified in RP-LC/MS2) and ceramides (predominantly identified in DI-MS2) indicate experimental-or approach-inherent distinctions. A CAP-driven oxidation of triacyclglycerols, ceramides, and cholesteryl esters was detected such as truncations and hydroperoxylations, but at a significantly lower extent than expected. Scavenging of reactive species due to naturally present antioxidants in the samples and the absence of a liquid interphase to allow reactive species deposition by the CAP will have contributed to the limited amount of oxidation products observed. In addition, limitations of the software's capability of identifying unexpected oxidized lipids potentially led to an underestimation of the CAP impact on skin lipids, indicating a need for further software development. With respect to the clinical application of CAP, the result indicates that intact skin with its sebum/epidermal lipid overlay is well protected and that moderate treatment will yield limited (if any) functional consequences in the dermal tissue.
机译:冷大气等离子体(盖子)是用于局部定义的反应物种递送的新兴源,并在炎症过程中鉴定其临床电位,例如急性和慢性伤口,或癌变病变。由于它们的定位和化学结构作为氧化物种的理想靶标,脂质是生理过程的相关改性剂。收集在靶标上的人额头脂质被氩等离子体射流处理,并立即通过直接输注高分辨率串联质谱(DI-MS2)或液相色谱 - 串联MS(RP-LC / MS2)分析。随后的数据分析由Lipidhunter(Leipzig大学),Lipidxplorer(Max Planck Cell生物学和遗传学研究所,德累斯顿)和Lipidsearch(Thermo Scientific)进行。通过MS方法,检测到皮脂脂质的所有主要脂质类别。关于三酰基甘油(主要鉴定在RP-LC / MS2)和神经酰胺(主要鉴定在DI-MS2)中的显着差异表明实验或接近固有的区别。检测到三酰基甘油,神经聚酰胺和胆固醇酯的帽驱动的氧化,例如截短和氢激氧基化,但在范围明显低于预期。由于天然存在于样品中的抗氧化剂和液相中的抗氧化剂引起的可活性物质的清除,以允许盖帽的反应物质沉积将有助于观察到的有限量的氧化产物。此外,软件识别意外氧化脂质的软件能力可能导致低估对皮肤脂质的影响,表明需要进一步的软件开发。关于帽的临床应用,结果表明,具有其皮脂/表皮脂质覆盖物的完整性皮肤受到良好的保护,并且中等治疗将产生有限(如果有)在皮肤组织中的功能后果。

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