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使用拉曼光谱分析化学处理导致的角蛋白纤维结构变化。

Analysis of structural change in keratin fibers resulting from chemical treatments using Raman spectroscopy.

作者信息

Kuzuhara Akio

机构信息

Central Research Laboratories, Mandom Corp., 5-12, Juniken-cho, Chuo-ku, Osaka 540-8530, Japan.

出版信息

Biopolymers. 2005 Apr 15;77(6):335-44. doi: 10.1002/bip.20221.

DOI:10.1002/bip.20221
PMID:15739182
Abstract

In order to investigate the influence of chemical treatments (reduction, heating, and oxidation) on keratin fibers, the structure of virgin white human hair resulting from a permanent hair straightening process at various depths of cross-sectional samples was directly analyzed without isolating the cuticle and cortex, using Raman spectroscopy. The band shape of the cuticle was different from that of the cortex, and the cuticle had a more amorphous structure, compared with the cortex. The S-S band intensity existing in the hair surface remarkably decreased, while the S-S band intensity in the hair center was not changed by performing the reduction process. In the case of heating the keratin fibers after the reduction process, this tendency was unchanged. On the other hand, the amide III (unordered) band intensity in the cortex region increased, indicating that proteins existing throughout the cortex region caused a change to the random coil form. Moreover, approximately 95% of the disconnected -SS- groups were clearly reconnected by performing the oxidation process after heating (the degree of reconnection of -SS- groups was about 90%, in the case of oxidizing after reduction). From these experiments, we concluded that the heat treatment process in the permanent hair straightening treatment caused the randomization of proteins existing throughout the cortex region, thereby contributing to the acceleration of the reconnection of -SS- groups during the oxidation process.

摘要

为了研究化学处理(还原、加热和氧化)对角蛋白纤维的影响,使用拉曼光谱法,在不分离角质层和皮质的情况下,直接分析了在永久性直发过程中获得的原始白色人发在不同横截面深度处的结构。角质层的谱带形状与皮质不同,与皮质相比,角质层具有更无定形的结构。进行还原处理后,毛发表面存在 的S-S谱带强度显著降低,而毛发中心的S-S谱带强度没有变化。在还原处理后对角蛋白纤维进行加热的情况下,这种趋势没有改变。另一方面,皮质区域的酰胺III(无序)谱带强度增加,表明存在于整个皮质区域的蛋白质转变为无规卷曲形式。此外,在加热后进行氧化处理时,约95%断开的-S-S-基团明显重新连接(在还原后氧化的情况下,-S-S-基团的重新连接程度约为90%)。从这些实验中,我们得出结论,永久性直发处理中的热处理过程导致了整个皮质区域中蛋白质的无序化,从而有助于在氧化过程中加速-S-S-基团的重新连接。

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Int J Cosmet Sci. 2019 Jun;41(3):203-212. doi: 10.1111/ics.12528. Epub 2019 May 26.