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首页> 外文期刊>International Journal of Cosmetic Science >The physical and chemical disruption of human hair after bleaching - studies by transmission electron microscopy and redox proteomics
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The physical and chemical disruption of human hair after bleaching - studies by transmission electron microscopy and redox proteomics

机译:漂白后人发的物理和化学破坏 - 透射电子显微镜和氧化还原蛋白质组学研究

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摘要

Objective To understand the structural and chemical effects of cosmetic peroxide bleaching on human hair. Methods Human hair was progressively bleached using alkaline peroxide-persulphate treatment. Proteins lost through leaching were examined using amino acid analysis and mass spectrometric sequencing. Fibre damage was assessed using transmission electron microscopy, amino acid analysis and redox proteomics. Results Protein loss through leaching increased with bleaching severity. Leached proteins were not limited to the cuticle, but also included cortical intermediate filaments and matrix keratin-associated proteins. The leached proteins were progressively oxidized as bleaching severity increased. Bleached fibres demonstrated substantial damage to the cuticle layers and to the cortex. Extensive melanin granule degradation was present after the mildest bleach treatment. Protein oxidation in bleached fibres was principally in cortical intermediate filaments - the most abundant hair proteins - and targeted the sulphur-containing amino acids, particularly the conversion of cystine disulphide bonds to cysteic acid. Conclusion Peroxide chemical treatments quickly access the cortex, causing untargeted oxidative damage across the fibre in addition to the desired loss of melanin. Peroxide ingress is likely facilitated by the considerable structural degradation caused to the cuticle layers of hair fibres. The consequences of the peroxide action within the cuticle and cortex are oxidation of the proteins, and subsequent protein loss from the fibre that correlates to bleaching severity.
机译:目的了解化妆品过氧化物漂白对人毛的结构和化学效果。方法使用碱性过氧化物 - 脱脂处理逐渐漂白人毛。使用氨基酸分析和质谱测序检查通过浸出损失的蛋白质。使用透射电子显微镜,氨基酸分析和氧化还原蛋白质组学评估纤维损伤。结果通过浸出的严重程度浸出通过浸出蛋白质损失。浸出的蛋白质不限于角质层,而且还包括皮质中间细丝和基质角蛋白相关蛋白。浸出的蛋白质逐渐被氧化,因为漂白严重程度增加。漂白纤维对角质层层和皮质造成了重大损害。在最温和的漂白剂处理后,存在广泛的黑色素颗粒颗粒降解。漂白纤维中的蛋白质氧化主要是皮质中间细丝 - 最丰富的毛发蛋白 - 并靶向含硫氨基酸,特别是胱氨酸二硫代酮与浑浊酸的转化率。结论过氧化氧化物化学处理迅速进入皮质,除了所需的黑色素损失外,纤维对纤维的抗氧化损伤是未明确的氧化损伤。通过对头发纤维的角质层层引起的相当大的结构降解,可能促进过氧化氧化物进入。过氧化物作用在角质质和皮质内的后果是蛋白质的氧化,随后与漂白严重程度相关的纤维的蛋白质损失。

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