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利用纳米级红外光谱和成像技术对人发结构脂质进行定位

Localization of human hair structural lipids using nanoscale infrared spectroscopy and imaging.

作者信息

Marcott Curtis, Lo Michael, Kjoller Kevin, Fiat Françoise, Baghdadli Nawel, Balooch Guive, Luengo Gustavo S

机构信息

Light Light Solutions, LLC, P.O. Box 81486, Athens, GA 30608-1484, USA.

出版信息

Appl Spectrosc. 2014;68(5):564-9. doi: 10.1366/13-07328.

Abstract

Atomic force microscopy (AFM) and infrared (IR) spectroscopy have been combined in a single instrument (AFM-IR) capable of producing IR spectra and absorption images at a sub-micrometer spatial resolution. This new device enables human hair to be spectroscopically characterized at levels not previously possible. In particular, it was possible to determine the location of structural lipids in the cuticle and cortex of hair. Samples of human hair were embedded, cross-sectioned, and mounted on ZnSe prisms. A tunable IR laser generating pulses of the order of 10 ns was used to excite sample films. Short duration thermomechanical waves, due to infrared absorption and resulting thermal expansion, were studied by monitoring the resulting excitation of the contact resonance modes of the AFM cantilever. Differences are observed in the IR absorbance intensity of long-chain methylene-containing functional groups between the outer cuticle, middle cortex, and inner medulla of the hair. An accumulation of structural lipids is clearly observed at the individual cuticle layer boundaries. This method should prove useful in the future for understanding the penetration mechanism of substances into hair as well as elucidating the chemical nature of alteration or possible damage according to depth and hair morphology.

摘要

原子力显微镜(AFM)和红外(IR)光谱已被整合到一台能够在亚微米空间分辨率下产生红外光谱和吸收图像的仪器(AFM-IR)中。这种新设备能够以前所未有的水平对人类头发进行光谱表征。特别是,可以确定头发角质层和皮质中结构脂质的位置。将人类头发样本进行包埋、切片,并安装在ZnSe棱镜上。使用产生10纳秒量级脉冲的可调谐红外激光来激发样本薄膜。通过监测AFM悬臂梁接触共振模式的激发情况,研究了由于红外吸收和由此产生的热膨胀而导致的短持续时间热机械波。在头发的外角质层、中间皮质和内髓质之间,观察到含长链亚甲基官能团的红外吸光度强度存在差异。在各个角质层边界处明显观察到结构脂质的积累。这种方法未来应会在理解物质渗透到头发中的机制以及根据深度和头发形态阐明改变或可能损伤的化学性质方面发挥作用。

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