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ID 119211
著者
Hirai, Takeru Kyoto Pharmaceutical University|Tokushima University
Ikeda-Imafuku, Mayumi Wakayama Medical University
Tasaka, Nanami Tokushima University
Chuang, Victor Tuan Giam Curtin University
Xian, Ming Brown University
Akaike, Takaaki Tohoku University
異島, 優 Kyoto Pharmaceutical University 徳島大学 教育研究者総覧
キーワード
Human hair
Supersulfides
Reactive sulfur
Cysteine persulfide
Keratin
Human hair damage
Oxidative stress
Polysulfide
資料タイプ
学術雑誌論文
抄録
Keratin is a central component of human hair proteins, which explicitly possesses many cysteine residues (Cys-SH). For a long time, these Cys-SH residues were believed to contribute to human hair strength by forming intra-and inter-molecular disulfide bond crosslinks. However, we detected that many polysulfide bonds (R-SS(n)H or R-SS(n)S-R’) exist in keratin. Polysulfide is one of the reactive sulfur and supersulfides, similar to cysteine persulfide (Cys-SSH), that regulates oxidative stress and redox signaling. In the present study, we elucidated the distribution of polysulfide in human hair and the reaction of polysulfide to various oxidative stress, such as heat shock and ultraviolet radiation. The decrease of the polysulfides in hair leads to the loss of antioxidant activity. Additionally, we demonstrated the effect of sulfur supplementation on human hair strength and hair cuticle structure. All types of oxidative stresses decreased the polysulfide in human hair, and hair polysulfide positively correlated with human hair strength. Intriguingly, sulfur supplementation improved human hair strength and the structure of hair cuticles. In conclusion, polysulfide in human hair keratin contributes to hair strength and antioxidant activity against oxidative stresses such as ultraviolet radiation and maintains hair homeostasis.
掲載誌名
Advances in Redox Research
ISSN
26671379
出版者
Elsevier
10
開始ページ
100091
発行日
2023-12-21
権利情報
This is an open access article under the CC BY-NC-ND license (https://creativecommons.org/licenses/by-nc-nd/4.0/).
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言語
eng
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出版社版
部局
薬学系