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首页> 外文期刊>International Journal of Cosmetic Science >Conformation changes in human hair keratin observed using confocal Raman spectroscopy after active ingredient application
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Conformation changes in human hair keratin observed using confocal Raman spectroscopy after active ingredient application

机译:在活性成分施用后使用辅助拉曼光谱观察人毛角蛋白的构象变化

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Objective In hair care cosmetic products' evaluation, one commonly used method is to evaluate the hair appearance as a gold standard in order to determine the effect of an active ingredient on the final state of the hair via visual appreciation. Although other techniques have been proposed for a direct analysis of the hair fibres, they give only surface or structural information, without any accurate molecular information. A different approach based on confocal Raman spectroscopy has been proposed for tracking in situ the molecular change in the keratin directly in the human hair fibres. It presents a high molecular specificity to detect chemical interactions between molecules and can provide molecular information at various depths at the cortex and cuticle levels. Methods To evaluate the potential of confocal Raman spectroscopy in testing the efficiency of cosmetic ingredients on keratin structure, we undertook a pilot study on the effectiveness of a smoothing shampoo on natural human hair, by analysing alpha-helix and beta-sheet spectral markers in the Amide I band and spectral markers specific to the cystin sulfur content. Results We confirmed that an active proved to be effective on a gold standard decreases alpha-helix keratin conformation and promotes beta-sheet keratin conformation in the hair fibres. We also showed that treatment with the effective active decreases the intensity of covalent disulfide (S-S at 510 cm(-1)) cross-linking bands of cysteine. These data confirm that the effective active also acts on the tertiary structure of keratin. Conclusion From these experiments, we concluded that the effective active has a smoothing effect on the human hair fibres by acting on alpha-helix and beta-sheet keratin conformation and on the tertiary structure of keratin. Based on these results, confocal Raman spectroscopy can be considered a powerful technique for investigating the influence of hair cosmetic ingredients on keratin structure in human hair fibres. Moreover, this analytical technique has the advantage of being non-destructive and label free; in addition, it does not require sample extraction or purification and it can be applied routinely in cosmetic laboratories.
机译:目的在护发化妆品的评价中,一种常用的方法是评估作为金标的头发外观,以便通过视觉欣赏来确定活性成分对头发最终状态的影响。尽管已经提出了对毛纤维的直接分析的其他技术,但它们仅提供表面或结构信息,而无需任何准确的分子信息。已经提出了一种基于共焦拉曼光谱的不同方法,用于在人毛纤维中直接出于角蛋白的分子变化。它呈现高分子特异性以检测分子之间的化学相互作用,并且可以在皮质和角质层水平的各种深度下提供分子信息。评价共聚环谱潜力在测试角蛋白结构中化妆品成分效率的方法,通过分析α-螺旋和β-薄板光谱标记来对天然人发的平滑洗发水有效性进行试验研究酰胺I带和囊蛋白硫含量的光谱标记。结果我们确认证明在黄金标准上有效的主动性降低了α-螺旋角蛋白构象,并促进了毛发纤维中的β-片状角蛋白构象。我们还表明,具有有效活性的处理降低了共价二硫化物的强度(在510cm(-1)的S-S)的半胱氨酸的交联带。这些数据证实,有效的活性还在角蛋白的三级结构上起作用。结论来自这些实验,我们得出的结论是,通过作用于α-螺旋和β-片状角蛋白构象和角蛋白的三级结构,有效活性对人毛纤维具有平滑效应。基于这些结果,共聚焦拉曼光谱可以被认为是一种强大的技术,用于研究人毛纤维角蛋白结构对角蛋白结构的影响。此外,这种分析技术具有非破坏性和无标签的优点;此外,它不需要样品提取或纯化,并且可以在化妆品实验室常规应用。

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