Structural analysis of the outermost hair surface using TOF-SIMS with gas cluster ion beam sputtering

节肢动物角质层 表皮(毛发) 化学 溅射 二次离子质谱法 离子 静态二次离子质谱 飞镖离子源 分析化学(期刊) 材料科学 薄膜 纳米技术 色谱法 电离 有机化学 解剖 生态学 生物 昆虫 电子电离 医学
作者
Kazutaka lshikawa,Masayuki Okamoto,Satoka Aoyagi
出处
期刊:Biointerphases [American Institute of Physics]
卷期号:11 (2) 被引量:16
标识
DOI:10.1116/1.4940770
摘要

A hair cuticle, which consists of flat overlapping scales that surround the hair fiber, protects inner tissues against external stimuli. The outermost surface of the cuticle is covered with a thin membrane containing proteins and lipids called the epicuticle. In a previous study, the authors conducted a depth profile analysis of a hair cuticle's amino acid composition to characterize its multilayer structure. Time-of-flight secondary ion mass spectrometry with a bismuth primary ion source was used in combination with the C60 sputtering technique for the analysis. It was confirmed that the lipids and cysteine-rich layer exist on the outermost cuticle surface, which is considered to be the epicuticle, though the detailed structure of the epicuticle has not been clarified. In this study, depth profile analysis of the cuticle surface was conducted using the argon gas cluster ion beam (Ar-GCIB) sputtering technique, in order to characterize the structure of the epicuticle. The shallow depth profile of the cuticle surface was investigated using an Ar-GCIB impact energy of 5 keV. Compared to the other amino acid peaks rich in the epicuticle, the decay of 18-methyleicosanic acid (18-MEA) thiolate peak was the fastest. This result suggests that the outermost surface of the hair is rich in 18-MEA. In conclusion, our results indicate that the outermost surfaces of cuticles have a multilayer (lipid and protein layers), which is consistent with the previously proposed structure.
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