用于蚊媒控制应用的人体皮肤表面的质谱研究

ty10086 提交于 周三, 08/25/2021 - 16:09
文章英文标题
Mass spectral studies on the human skin surface for mosquito vector control applications
正文
人皮肤表面化学线索包括蚊子根据人体内和人体内化学轮廓的变化来定位和选择其宿主的复杂混合物。由于皮肤表面基质的复杂性,需要先进的分析技术来分离和鉴定生物标志物,这些生物标志物可作为局部吸引剂和驱避剂应用于未来的蚊媒控制方案。本研究通过比较皮肤表面化学轮廓,考察了20名志愿者之间感知到的蚊子吸引力以及蚊子咬人宿主某些区域的偏好,即脚踝和手腕。将离子迁移率与高分辨率质谱联用,为生物标志物的发现和人体皮肤表面化合物的鉴定提供了更多的信心。本研究采用聚二甲基硅氧烷( PDMS )采样器非侵入式采样方案,采用超高效液相色谱-离子迁移高分辨质谱( UPLC- IMS- HRMS )进行溶剂解吸分析,通过统计学方法识别出14个识别蚊子感知吸引力差异的生物标志物和20个与采样皮肤区域相关的生物标志物。从多种类别(包括糖类、甾体类、脂肪酸类、肽类和肽类衍生物,以及食品来源的化合物)中检测到广泛的化学化合物( m / z 96.0437 ~ 788.6095 )。10种化合物在人体皮肤表面被明确鉴定,咖啡因首次在人体皮肤表面被报道。此外,利用准确的质量、碰撞截面( CCS )值和碎片模式,在人体皮肤表面检测到77种化合物,其中64种作者以前未曾报道过。该方法使人皮肤表面的化学分析得以全面展开,并提供了广泛的初步鉴定的皮肤表面化合物列表以及精确的质量值和加合物及其相应的CCS值。
文章内容(英文)
Human skin surface chemical cues comprise a complex mixture of compounds that mosquitoes use to locate and select their human host, based on inter‐ and intra‐human variation in chemical profiles. The complexity of the skin surface matrix calls for advanced analytical techniques to enable separation and identification of biomarkers, which may be used as topical attractants and repellants in future mosquito vector control programmes. The perceived mosquito attractiveness between 20 volunteers and the preference of mosquitoes to bite certain regions, namely, ankle versus wrist, of the human host were investigated in this study, by comparing skin surface chemical profiles. Ion mobility was combined with high resolution mass spectrometry to provide additional confidence in biological marker discovery and identification of human skin surface compounds. This study employed a non‐intrusive sampling scheme using a polydimethylsiloxane (PDMS) sampler and solvent desorption analysed with ultra‐performance liquid chromatography with ion mobility high‐resolution mass spectrometry (UPLC‐IMS‐HRMS). Statistical approaches guided the identification of 14 biological markers discerning difference in perceived mosquito attractiveness and 20 biomarkers associated with the different skin regions sampled. A broad range (m/z 96.0437 to 788.6095) of chemical compounds was detected from a variety of classes (including sugars, steroids, fatty acids, peptides and peptide derivatives, and compounds of food origin). Ten compounds were unequivocally identified on the human skin surface, and caffeine was reported on the human skin surface for the first time. Furthermore, 77 compounds, of which 64 to the authors' knowledge have not previously been reported, were detected on the human skin surface using accurate mass, collision cross section (CCS) values and fragmentation patterns. This approach enabled comprehensive human skin surface chemical profiling and provides an extensive list of tentatively identified skin surface compounds together with accurate mass values and adducts with their corresponding CCS values.
来源出处
Journal|[J]Biological Mass SpectrometryVolume 56, Issue 2. 2021.
DOI
https://doi.org/10.1002/JMS.4686

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