Wójciak Magdalena, Drozdowski Piotr, Skalska-Kamińska Agnieszka, Zagórska-Dziok Martyna, Ziemlewska Aleksandra, Nizioł-Łukaszewska Zofia, Latalska Małgorzata
Department of Analytical Chemistry, Medical University of Lublin, Chodźki 4a, 20-093 Lublin, Poland.
Department of Plastic Surgery, Specialist Medical Centre, 57-320 Polanica-Zdrój, Poland.
Molecules. 2024 Dec 7;29(23):5790. doi: 10.3390/molecules29235790.
Isoflavones are found in numerous plant species within the Leguminosae family; however, soy isoflavones are particularly significant in practice and have been extensively studied in recent years. The health-promoting potential of orally administered soy isoflavones is widely documented in the scientific literature, and many review articles have been developed to highlight their significance. However, it should be noted that soy-isoflavone-rich extracts and isolated soy isoflavones, such as genistein and daidzein, are also often applied topically as ingredients in many formulations, including face creams, tonics, and emulsions. New delivery systems are continuously being developed to enhance the skin permeability of isoflavones, thus improving their efficacy. In this context, their direct activity on skin cells is an important aspect of scientific research. The anti-inflammatory, protective, and antioxidant properties of isoflavones and soy extracts make them promising cosmetic ingredients with anti-aging potential because inflammation and the accumulation of reactive oxygen species (ROS) can lead to structural and functional changes in skin cells, accelerating the aging process. This review provides an overview of research on the impact of the application of soy isoflavone extract and soy-derived isoflavones on skin cells, with a focus on the documented molecular mechanisms underlying their effects. This study aims to offer essential insights to aid in the development of functional cosmetics and future clinical applications.
异黄酮存在于豆科植物的众多物种中;然而,大豆异黄酮在实际应用中尤为重要,近年来已得到广泛研究。口服大豆异黄酮对健康的促进潜力在科学文献中有广泛记载,许多综述文章也强调了它们的重要性。然而,需要注意的是,富含大豆异黄酮的提取物以及分离出的大豆异黄酮,如染料木黄酮和大豆苷元,也经常作为成分局部应用于许多配方中,包括面霜、滋补品和乳液。人们不断研发新的递送系统以提高异黄酮的皮肤渗透性,从而增强其功效。在此背景下,它们对皮肤细胞的直接作用是科学研究的一个重要方面。异黄酮和大豆提取物的抗炎、保护和抗氧化特性使其成为具有抗老化潜力的有前景的化妆品成分,因为炎症和活性氧(ROS)的积累会导致皮肤细胞的结构和功能变化,加速衰老过程。本综述概述了大豆异黄酮提取物和大豆衍生异黄酮对皮肤细胞作用的研究,重点关注其作用背后已记录的分子机制。本研究旨在提供重要见解,以协助功能性化妆品的开发和未来的临床应用。