Breakspear S, Nöcker B, Popescu C
KAO Germany GmbH, Darmstadt, Germany.
Int J Cosmet Sci. 2024 Oct;46(5):806-814. doi: 10.1111/ics.12967. Epub 2024 May 11.
When undertaking any review of the structure of the hair and its mechanical properties it becomes apparent that the overall behaviour of keratin fibres is commonly attributed to the presence of hydrogen, disulfide and ionic bonds. The action of physico-chemical agents used during various cosmetic treatments is viewed as the result of an interaction with these bonds. Thus, the breaking of bonds by chemical agents, or via mechanical or thermal stresses, affects the relative balance of disulfide and hydrogen bonds and the contribution of hydrophobic interactions, which are all important factors that may alter hair behaviour. Generally, these chemical bonds are considered as responding homogeneously to the environmental and cosmetic factors. This unitary image is challenged, however, by evaluating the results of chemical, nanomechanical, tensile and thermal measurements, which suggest that disulfide bonds may be grouped into several types, according to their location within the fibre and the way they respond to various agents. A compensatory effect of newly formed hydrogen bonds for broken disulfide bonds may also be seen, and additionally involves different types of hydrogen bonds. As a result, the picture of chemical bonding in hair appears to be far from a homogeneous one. In addition, it is apparent that further investigation is required for clarifying the action of ionic bonds and hydrophobic interactions within the hair fibre. The present review aims, thus, at offering a deeper background for understanding how the hair behaves under various conditions.
在对头发结构及其力学性能进行任何研究时,很明显角蛋白纤维的整体行为通常归因于氢键、二硫键和离子键的存在。各种美容治疗过程中使用的物理化学制剂的作用被视为与这些键相互作用的结果。因此,化学制剂或通过机械或热应力破坏这些键,会影响二硫键和氢键的相对平衡以及疏水相互作用的贡献,而这些都是可能改变头发性能的重要因素。一般来说,这些化学键被认为对环境和美容因素的反应是均匀的。然而,通过评估化学、纳米力学、拉伸和热测量的结果,这种单一的观点受到了挑战,这些结果表明,二硫键可能根据其在纤维中的位置以及它们对各种制剂的反应方式分为几种类型。还可以看到新形成的氢键对断裂的二硫键的补偿作用,并且还涉及不同类型的氢键。因此,头发中的化学键情况似乎远非单一。此外,很明显需要进一步研究以阐明头发纤维中离子键和疏水相互作用的作用。因此,本综述旨在为理解头发在各种条件下的行为提供更深入的背景知识。