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直发剂和/或漂白剂对头发微观结构的改变。

Alterations promoted by acid straightening and/or bleaching in hair microstructures.

作者信息

Lima C R R C, Lima R J S, Bandeira A C C, Couto R A A, Velasco M V R, Bordallo H N, Oliveira C L P

机构信息

Institute of Physics, University of São Paulo, São Paulo 05508-090, SP, Brazil.

Academic Unit of Physics, Federal University of Campina Grande, Campina Grande 58429-900, PB, Brazil.

出版信息

J Appl Crystallogr. 2023 Aug 1;56(Pt 4):1002-1014. doi: 10.1107/S1600576723005599.

Abstract

Human hair is a biopolymer constituted mainly of keratin intermediate filaments, lipids, pigments and water. Cosmetic treatments usually interact with the hair at the molecular level, inducing changes in its components and modifying the physicochemical and mechanical properties of the fibers. Here, the effect of acid straightening on the morphology and ultrastructure of Caucasian hair was investigated by a group of complementary experimental methods: wide-, small- and ultra-small-angle X-ray scattering; high-resolution 3D X-ray microscopy; quasi-elastic neutron scattering and inelastic neutron scattering; thermogravimetry-mass spectrometry; and differential scanning calorimetry (DSC). X-ray diffraction patterns showed that acid straightening associated with a flat iron (∼180°C) changed the cortex of the fiber, shown by denaturation of the intermediate filaments (measured by DSC). The increase in the spacing of the lipid layers and the observation of the dehydration behavior of the fiber provided indications that water may be confined between these layers, while neutron spectroscopy showed alterations in the vibration mode of the CH groups of the lipids and an increase of the proton (H) mobility in the hair structure. The latter may be associated with the extremely low pH of the formulation (pH ≃ 1). Additionally, this investigation showed that bleached hair (one-time bleached) is more damaged by the action of acid straightening than virgin hair, which was shown by a threefold increase in the percentage of total porosity of the tresses. The obtained results demonstrate that the investigation approach proposed here can provide very important thermodynamic and structural information on induced changes of hair structure, and certainly can be applied for the evaluation of the action mode and efficiency of cosmetic treatments.

摘要

人类头发是一种生物聚合物,主要由角蛋白中间丝、脂质、色素和水组成。化妆品处理通常在分子水平上与头发相互作用,引起其成分变化,改变纤维的物理化学和机械性能。在此,通过一组互补的实验方法研究了酸性直发对高加索人头发形态和超微结构的影响:广角、小角和超小角X射线散射;高分辨率3D X射线显微镜;准弹性中子散射和非弹性中子散射;热重-质谱联用;以及差示扫描量热法(DSC)。X射线衍射图谱表明,与直发器(约180°C)结合的酸性直发改变了纤维的皮质,中间丝变性(通过DSC测量)表明了这一点。脂质层间距的增加以及对纤维脱水行为的观察表明,水可能被困在这些层之间,而中子光谱显示脂质CH基团的振动模式发生了变化,头发结构中质子(H)的迁移率增加。后者可能与配方的极低pH值(pH≃1)有关。此外,这项研究表明,经过漂白的头发(一次性漂白)在酸性直发作用下比原生头发受损更严重,发束总孔隙率百分比增加了两倍就表明了这一点。所得结果表明,本文提出的研究方法可以提供关于头发结构诱导变化的非常重要的热力学和结构信息,当然可用于评估化妆品处理的作用方式和效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0b3/10405601/4302beb84a5c/j-56-01002-fig1.jpg

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