Programa de Pós-graduação em Biofotônica Aplicada às Ciências da Saúde, Universidade Nove de Julho (UNINOVE), São Paulo, Brasil.
Departamento de Bioquímica, Instituto de Química - Universidade de São Paulo, São Paulo, Brasil.
Int J Cosmet Sci. 2018 Dec;40(6):596-603. doi: 10.1111/ics.12503. Epub 2018 Dec 11.
Methods that can be used to analyse hair damage and to support a claim of hair protection are important for the cosmetic industry. There are many approaches available, but they are usually laborious and expensive. The researchers propose a simple fluorescence method that is based upon the emissive properties of damaged hair.
Hair fluorescence was observed when using both fluorimetry and microscopic procedures. The method was developed by comparing native hair with hair that was damaged by UVA and visible light.
Spectroscopic properties (absorption and emission) of hair in the visible range are presented. The changes in the emissive properties of hair during irradiation were characterized and they were correlated with photobleaching, which is due to the generation of singlet oxygen. Emissions were also obtained in the hair shafts that had been previously treated with chamomile extract and this treatment was able to avoid hair bleaching.
The emissive properties of hair in the visible range can be used as a tool for the evaluation of hair damage and protection. This method can be useful as a tool in order to claim substantiation.
能够分析头发损伤并支持头发保护主张的方法对化妆品行业很重要。有许多方法可供选择,但它们通常繁琐且昂贵。研究人员提出了一种基于受损头发发光特性的简单荧光方法。
使用荧光计和显微镜程序观察头发的荧光。该方法通过比较天然头发和 UVA 和可见光损伤的头发来开发。
呈现了头发在可见范围内的光谱特性(吸收和发射)。在辐照过程中,头发发光特性的变化特征与其光漂白相关联,这是由于单线态氧的产生所致。在先前用洋甘菊提取物处理过的头发轴中也获得了发射,这种处理能够避免头发漂白。
头发在可见范围内的发光特性可用于评估头发损伤和保护。该方法可用作声称的依据。