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J Am Soc Mass Spectrom. 2019 Oct;30(10):2082-2091. doi: 10.1007/s13361-019-02277-5. Epub 2019 Aug 12.
Keratinocyte organization and biochemistry are important in forming the skin's protective barrier. Intrinsic and extrinsic factors can affect skin barrier function at the cellular and molecular levels. Matrix-assisted laser desorption/ionization (MALDI) mass spectrometric imaging, a technique which combines both molecular aspects and histological details, has proven to be a valuable method in various disciplines including pharmacology, dermatology and cosmetology. It typically requires ex vivo samples, prepared following frozen tissue sectioning. This paper demonstrates the feasibility of performing MALDI analysis on tape strips collected non-invasively on skin. The aim is to obtain molecular imaging of corneocytes on tapes towards novel biological insights. Tapes were collected from two skin sites (volar forearm and cheek) of human volunteers. Ten molecules relating to skin barrier function were detected with a single mode of acquisition at high spatial resolution with a 7 T MALDI-Fourier transform ion cyclotron resonance (FTICR) instrument. The method sensitivity was adequate to create molecular maps which could be overlaid on transmission microscopy images of the same area of the tape. Analysis of the molecular distributions from tapes at the two skin sites was consistent with the known skin properties of the two sites, confirming the validity of the observations. Hierarchical clustering analysis was used to differentiate corneocyte populations based on their molecular profiles. Furthermore, morphological analysis provided a new way of considering statistical populations of corneocytes on the same tape, rather than measuring a single averaged value, providing additional useful information relating to their structure-function relationship.
角朊细胞的组织和生化特性对于形成皮肤的保护屏障非常重要。内在和外在因素都可能在细胞和分子水平上影响皮肤屏障功能。基质辅助激光解吸/电离(MALDI)质谱成像技术结合了分子和组织学细节,已被证明是一种在药理学、皮肤病学和化妆品学等多个学科中非常有价值的方法。它通常需要离体样本,通过冷冻组织切片进行制备。本文展示了在皮肤表面非侵入性采集的胶带条上进行 MALDI 分析的可行性,目的是获得角朊细胞的分子成像,以获得新的生物学见解。从人类志愿者的两个皮肤部位(前臂掌侧和脸颊)采集了胶带。使用单一采集模式在高空间分辨率下,用 7T MALDI-傅里叶变换离子回旋共振(FTICR)仪器检测到 10 种与皮肤屏障功能相关的分子。该方法的灵敏度足以创建分子图谱,可以与同一胶带区域的透射显微镜图像叠加。对来自两个皮肤部位的胶带的分子分布进行分析,与两个部位的已知皮肤特性一致,证实了观察结果的有效性。层次聚类分析用于根据角朊细胞的分子特征对其进行分类。此外,形态分析为在同一胶带上考虑角朊细胞的统计群体提供了一种新方法,而不是测量单个平均值,从而提供了与其结构-功能关系相关的其他有用信息。