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内部脂质在头发健康中的作用。

Role of Internal Lipids in Hair Health.

作者信息

Marsh Jennifer M, Whitaker Shane, Felts Tim, Shearouse William, Vatter Mike, Määttä Arto, Thompson Matthew, Hawkins Timothy J

机构信息

The Procter & Gamble Company, Mason Business Center, Mason, Ohio (J.M.M., S.W., T.F., M.V.), The Procter & Gamble Company, Ivorydale Technical Center, Cincinnati, Ohio (W.S.), Department of Biosciences, Durham University, Durham DH1 3DT, UK (A.M., M.T., T.J.H.).

出版信息

J Cosmet Sci. 2018 Sep/Oct;69(5):347-356.

Abstract

Saturated and unsaturated fatty acids make up 85% of the total hair lipid content and are found in the cuticle and cortical cell membrane complex. Although these lipids only make up 2-6% of the hair's overall weight, they play a crucial role in keeping hair healthy, influencing shine, feel, manageability, and strength. The objective of this work was to understand the mechanisms of how these lipids are lost on exposure to external stressors, such as chemical treatments, washing, and UV exposure and to understand how their loss impacts hair strength. The experimental approach was to measure these lipids and oxidation products, lipid peroxides (LPOs) and correlate their loss with fatigue strength measurements. The results show lipids are lost over time by washing, exposure to chemical treatments, such as coloring, and environmental insults, such as UV, and it was confirmed that a mechanism of degradation is via oxidation of unsaturated lipids to form LPOs. In addition, it was shown that replenishment of these lipids is possible by incorporating lipids, such as fatty alcohols (FaOHs), into a gel network with anionic surfactants to create a delivery system that can efficiently penetrate FaOHs into hair and increase internal strength as measured by fatigue.

摘要

饱和脂肪酸和不饱和脂肪酸占头发脂质总含量的85%,存在于角质层和皮质细胞膜复合体中。尽管这些脂质仅占头发总重量的2 - 6%,但它们在保持头发健康方面起着至关重要的作用,影响头发的光泽、手感、易梳理性和强度。这项工作的目的是了解这些脂质在暴露于外部应激源(如化学处理、洗涤和紫外线照射)时如何流失,以及它们的流失如何影响头发强度。实验方法是测量这些脂质和氧化产物、脂质过氧化物(LPOs),并将它们的流失与疲劳强度测量结果相关联。结果表明,随着时间的推移,通过洗涤、暴露于化学处理(如染发)和环境损伤(如紫外线),脂质会流失,并且证实了一种降解机制是不饱和脂质氧化形成LPOs。此外,研究表明,通过将脂肪醇(FaOHs)等脂质与阴离子表面活性剂结合到凝胶网络中,形成一种能够有效地将FaOHs渗透到头发中并增加疲劳测量所显示的内部强度的递送系统,可以补充这些脂质。

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