Gunia-Krzyżak A, Słoczyńska K, Popiół J, Koczurkiewicz P, Marona H, Pękala E
Faculty of Pharmacy, Department of Bioorganic Chemistry, Chair of Organic Chemistry, Jagiellonian University Medical College, Medyczna 9, Kraków, Poland.
Faculty of Pharmacy, Department of Pharmaceutical Biochemistry, Jagiellonian University Medical College, Medyczna 9, Kraków, Poland.
Int J Cosmet Sci. 2018 Aug;40(4):356-366. doi: 10.1111/ics.12471. Epub 2018 Aug 24.
Cinnamic acid derivatives are widely used in cosmetics and possess various functions. This group of compounds includes both naturally occurring and synthetic substances. On the basis of the Cosmetic Ingredient Database (CosIng) and available literature, this review summarizes their functions in cosmetics, including their physicochemical and biological properties as well as reported adverse effects. A perfuming function is typical of many derivatives of cinnamaldehyde, cinnamyl alcohol, dihydrocinnamyl alcohol and cinnamic acid itself; these substances are commonly used in cosmetics all over the world. Some of them show allergic and photoallergic potential, resulting in restrictions in maximum concentrations and/or a requirement to indicate the presence of some substances in the list of ingredients when their concentrations exceed certain fixed values in a cosmetic product. Another important function of cinnamic acid derivatives in cosmetics is UV protection. Ester derivatives such as ethylhexyl methoxycinnamate (octinoxate), isoamyl p-methoxycinnamte (amiloxiate), octocrylene and cinoxate are used in cosmetics all over the world as UV filters. However, their maximum concentrations in cosmetic products are restricted due to their adverse effects, which include contact and a photocontact allergies, phototoxic contact dermatitis, contact dermatitis, estrogenic modulation and generation of reactive oxygen species. Other rarely utilized functions of cinnamic acid derivatives are as an antioxidant, in skin conditioning, hair conditioning, as a tonic and in antimicrobial activities. Moreover, some currently investigated natural and synthetic derivatives of cinnamic acid have shown skin lightening and anti-ageing properties. Some of them may become new cosmetic ingredients in the future. In particular, 4-hydroxycinnamic acid, which is currently indexed as a skin-conditioning cosmetics ingredient, has been widely tested in vitro and in vivo as a new drug candidate for the treatment of hyperpigmentation.
肉桂酸衍生物广泛应用于化妆品中,具有多种功能。这类化合物包括天然存在的和合成的物质。基于化妆品成分数据库(CosIng)和现有文献,本综述总结了它们在化妆品中的功能,包括其物理化学和生物学特性以及报道的不良反应。许多肉桂醛、肉桂醇、二氢肉桂醇和肉桂酸本身的衍生物都具有加香功能;这些物质在世界各地的化妆品中普遍使用。其中一些显示出过敏和光过敏的可能性,导致对其最大浓度的限制和/或当某些物质在化妆品中的浓度超过特定固定值时,要求在成分列表中注明其存在。肉桂酸衍生物在化妆品中的另一个重要功能是紫外线防护。酯衍生物如甲氧基肉桂酸乙基己酯(桂皮酸盐)、对甲氧基肉桂酸异戊酯(阿美昔酯)、奥克立林和西诺沙酯在世界各地的化妆品中用作紫外线过滤剂。然而,由于它们的不良反应,包括接触性和光接触性过敏、光毒性接触性皮炎、接触性皮炎、雌激素调节和活性氧的产生,它们在化妆品中的最大浓度受到限制。肉桂酸衍生物的其他很少使用的功能是作为抗氧化剂、用于皮肤调理、头发调理、作为滋补剂和具有抗菌活性。此外,目前研究的一些肉桂酸天然和合成衍生物已显示出美白和抗衰老特性。其中一些将来可能会成为新的化妆品成分。特别是,4-羟基肉桂酸目前被列为一种皮肤调理化妆品成分,作为治疗色素沉着过度的新药候选物已在体外和体内进行了广泛测试。