Promotion of glyoxylic acid penetration into human hair by glycolic acid

Author:

Uyama Makoto1ORCID,Okabe Shinya2,Kurashima Takumi3,Kurinobu Rie3,Takechi Miwa3,Yoshiba Ryo3,Miyoshi Rina3,Noda Seigi3,Kaneko Mio3,Ikemoto Yuka4,Takahara Atsushi5,Higaki Yuji6,Hama Tetsuya7

Affiliation:

1. Shiseido Co., Ltd. MIRAI Technology Institute Yokohama Kanagawa Japan

2. Shiseido Professional Inc. Minato‐ku Tokyo Japan

3. Shiseido Co., Ltd. Brand Value R&D Institute Yokohama Kanagawa Japan

4. Japan Synchrotron Radiation Research Institute/SPring‐8 Sayo‐gun Hyogo Japan

5. Institute for Materials Chemistry and Engineering Kyushu University Nishi‐ku Fukuoka Japan

6. Department of Integrated Science and Technology, Faculty of Science and Technology Oita University Dannoharu Oita Japan

7. Komaba Institute for Science The University of Tokyo Meguro‐ku Tokyo Japan

Abstract

AbstractObjectiveGlyoxylic acid (GA) is widely used as a straight perming agent for hair care products, however, advanced GA penetration‐enhancing agents are desired due to the peculiar odour and hair colour fading caused by the continuous use of GA products. Hence, it is important to develop a penetration‐enhancing agent that helps minimize the GA concentration. We have found that the combined use of GA and glycolic acid (GCA) has a strong hair straightening effect.MethodsStraightening hair test was carried out to the evaluation of the effect of additives. Liquid chromatography‐mass spectrometry (LC/MS) was performed to quantify the GA penetration amount into human hair. Attenuated total reflection (ATR) Fourier transform‐infrared spectroscopy (FT‐IR) and FT‐IR microscope were implemented to estimate the localization of GA in the hair.ResultsStraightening hair tests indicated that the hair straightening effect by GA was enhanced by the presence of GCA. LC/MS results showed that the addition of GCA enhanced the amount of GA that penetrated human hair by about four times. ATR FT‐IR and FT‐IR microscope measurements indicated that GA was localized more in the innermost region of hair (medulla) than the cortex and cuticle. The GA accumulated in the medulla disappeared after a hair straightener treatment at 180°C due to the chemical reaction.ConclusionsThe GA penetration‐enhancing effect of GCA is worth investigating to reduce the GA concentration in products for more comfortable use.

Publisher

Wiley

Subject

Colloid and Surface Chemistry,Dermatology,Drug Discovery,Pharmaceutical Science,Aging,Chemistry (miscellaneous)

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