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首页> 外文期刊>Journal of cosmetic science >The effect of various cosmetic pretreatments on protecting hair from thermal damage by hot flat ironing
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The effect of various cosmetic pretreatments on protecting hair from thermal damage by hot flat ironing

机译:各种化妆品预处理通过热平烫保护头发免受热损伤的效果

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摘要

Hot flat irons are used to create straight hair styles. As these devices operate at temperatures over 200 ℃ they can cause significant damage to hair keratin. In this study, hair thermal damage and the effect of various polymeric pretreatments were investigated using FTIR imaging spectroscopy, DSC, dynamic vapor sorption (DVS), AFM, SEM, and thermal image analysis. FTIR imaging spectroscopy of hair cross sections provides spatially resolved molecular information such as protein distribution and structure. This approach was used to monitor thermally induced modification of hair protein, including the conversion of α-helix to β-sheet and protein degradation. DSC measurements of thermally treated hair also demonstrated degradation of hair keratin. DVS of thermally treated hair shows the reduced water regain and lower water retention, compared to the non-thermally treated hair, which might be attributed to the protein conformation changes due to heat damage. The protection of native protein structure associated with selected polymer pretreatments leads to improved moisture restoration and water retention of hair. This contributes to heat control on repeated hot flat ironing. Thermally stressing hair led to significantly increased hair breakage when subjected to combing. These studies indicate that hair breakage can be reduced significantly when hair is pretreated with selected polymers such as VP/acrylates/lauryl methacrylate copolymer, polyquaternium-55, and a polyelectrolyte complex of PVM/MA copolymer and polyquaternium-28. In addition, polymeric pretreatments provide thermal protection against thermal degradation of keratin in the cortex as well as hair surface damage. The morphological improvement in cuticle integrity and smoothness with the polymer pretreatment plays an important role in their anti-breakage effect. Insights into structure-property relationships necessary to provide thermal protection to hair are presented.
机译:热扁铁用于创造直发。由于这些设备在超过200℃的温度下工作,因此可能会对头发角蛋白造成重大损害。在这项研究中,使用FTIR成像光谱,DSC,动态蒸气吸附(DVS),AFM,SEM和热图像分析研究了头发热损伤和各种聚合物预处理的效果。头发横截面的FTIR成像光谱提供了空间分辨的分子信息,例如蛋白质分布和结构。该方法用于监测头发蛋白的热诱导修饰,包括α-螺旋向β-折叠的转化和蛋白降解。经热处理的头发的DSC测量结果也证明了头发角蛋白的降解。与未经热处理的头发相比,经热处理的头发的DVS显示出降低的回水率和较低的保水率,这可能归因于由于热损伤引起的蛋白质构象变化。与选定的聚合物预处理相关的天然蛋白质结构的保护可改善头发的水分恢复和保水能力。这有助于在反复进行热扁熨烫时进行热控制。在梳理时,对头发施加热应力会大大增加头发的断发率。这些研究表明,当用选定的聚合物(例如VP /丙烯酸酯/甲基丙烯酸月桂酯共聚物,Polyquaternium-55以及PVM / MA共聚物和polyquaternium-28的聚电解质复合物)预处理头发时,可以大大减少断发。另外,聚合物预处理可提供热保护,防止皮质中角蛋白的热降解以及头发表面受损。聚合物预处理对表皮完整性和光滑度的形态改善在其抗断裂作用中起重要作用。介绍了对头发提供热保护所必需的结构-属性关系。

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  • 来源
    《Journal of cosmetic science》 |2011年第2期|p.265-282|共18页
  • 作者单位

    International Specialty Products, Wayne NJ (Y.Z., R.R., D.K., G.Z.,T.W.G., L.F.), and ISP Shanghai Global R&D, Shanghai, China (X.Q., C.S.);

    International Specialty Products, Wayne NJ (Y.Z., R.R., D.K., G.Z.,T.W.G., L.F.), and ISP Shanghai Global R&D, Shanghai, China (X.Q., C.S.);

    International Specialty Products, Wayne NJ (Y.Z., R.R., D.K., G.Z.,T.W.G., L.F.), and ISP Shanghai Global R&D, Shanghai, China (X.Q., C.S.);

    International Specialty Products, Wayne NJ (Y.Z., R.R., D.K., G.Z.,T.W.G., L.F.), and ISP Shanghai Global R&D, Shanghai, China (X.Q., C.S.);

    International Specialty Products, Wayne NJ (Y.Z., R.R., D.K., G.Z.,T.W.G., L.F.), and ISP Shanghai Global R&D, Shanghai, China (X.Q., C.S.);

    International Specialty Products, Wayne NJ (Y.Z., R.R., D.K., G.Z.,T.W.G., L.F.), and ISP Shanghai Global R&D, Shanghai, China (X.Q., C.S.);

    International Specialty Products, Wayne NJ (Y.Z., R.R., D.K., G.Z.,T.W.G., L.F.), and ISP Shanghai Global R&D, Shanghai, China (X.Q., C.S.);

    International Specialty Products, Wayne NJ (Y.Z., R.R., D.K., G.Z.,T.W.G., L.F.), and ISP Shanghai Global R&D, Shanghai, China (X.Q., C.S.);

    International Specialty Products, Wayne NJ (Y.Z., R.R., D.K., G.Z.,T.W.G., L.F.), and ISP Shanghai Global R&D, Shanghai, China (X.Q., C.S.);

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