Dipartimento di Fisica e Chimica, Università degli Studi di Palermo, Viale delle Scienze, pad. 17, Palermo 90128, Italy.
Consorzio Interuniversitario Nazionale per la Scienza e Tecnologia dei Materiali, INSTM, Via G. Giusti, 9, Firenze I-50121, Italy.
ACS Appl Mater Interfaces. 2020 May 27;12(21):24348-24362. doi: 10.1021/acsami.0c05252. Epub 2020 May 13.
We propose a novel keratin treatment of human hair by its aqueous mixtures with natural halloysite clay nanotubes. The loaded clay nanotubes together with free keratin produce micrometer-thick protective coating on hair. First, colloidal and structural properties of halloysite/keratin dispersions and the nanotube loaded with this protein were investigated. Above the keratin isoelectric point (pH = 4), the protein adsorption into the positive halloysite lumen is favored because of the electrostatic attractions. The ζ-potential magnitude of these core-shell particles increased from -35 (in pristine form) to -43 mV allowing for an enhanced colloidal stability (15 h at pH = 6). This keratin-clay tubule nanocomposite was used for the immersion treatment of hair. Three-dimensional-measuring laser scanning microscopy demonstrated that 50-60% of the hair surface coverage can be achieved with 1 wt % suspension application. Hair samples have been exposed to UV irradiation for times up to 72 h to explore the protection capacity of this coating by monitoring the cysteine oxidation products. The nanocomposites of halloysite and keratin prevent the deterioration of human hair as evident by significant inhibition of cysteic acid. The successful hair structure protection was also visually confirmed by atomic force microscopy and dark-field hyperspectral microscopy. The proposed formulation represents a promising strategy for a sustainable medical coating on the hair, which remediates UV irradiation stress.
我们提出了一种通过其与天然埃洛石纳米管的水混合物对人发进行新型角蛋白处理的方法。负载的粘土纳米管与游离角蛋白一起在头发上产生了几微米厚的保护层。首先,研究了埃洛石/角蛋白分散体的胶体和结构特性,以及负载这种蛋白质的纳米管。在角蛋白等电点(pH = 4)以上,由于静电吸引力,蛋白质被吸附到正埃洛石管腔中。这些核壳颗粒的 ζ-电位绝对值从-35 mV(原始形式)增加到-43 mV,从而提高了胶体稳定性(在 pH = 6 下可稳定 15 小时)。这种角蛋白-粘土管纳米复合材料用于头发的浸入处理。三维测量激光扫描显微镜表明,用 1wt%悬浮液处理可实现 50-60%的头发表面覆盖率。将头发样品暴露于 UV 辐射中长达 72 小时,通过监测半胱氨酸氧化产物来探索这种涂层的保护能力。埃洛石和角蛋白的纳米复合材料可防止人发恶化,明显抑制半胱氨酸酸的形成。原子力显微镜和暗场高光谱显微镜也直观地证实了头发结构得到了成功保护。该配方代表了一种在头发上进行可持续医学涂层的有前途的策略,可修复 UV 辐射引起的损伤。