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玫瑰的有益药用功效及物质应用。

Beneficial medicinal effects and material applications of rose.

作者信息

Wang Hsiuying

机构信息

Institute of Statistics, National Yang Ming Chiao Tung University, Hsinchu, 300093, Taiwan.

出版信息

Heliyon. 2023 Dec 10;10(1):e23530. doi: 10.1016/j.heliyon.2023.e23530. eCollection 2024 Jan 15.

Abstract

Rose is a beautiful and fragrant plant with a variety of medicinal and substance uses. Various parts of rose such as fruits, flowers, leaves, and bark can be used in various product development, including cosmetics, food, pharmaceuticals, and engineering. The medical benefits of roses include the treatment of inflammation, diabetes, dysmenorrhea, depression, stress, seizures, and aging. Rose water is precious beauty water for skin care and has antibacterial effects on various microbiota. The surface of a rose petal exhibits a hierarchical structure comprising microscale papillae, with each papilla further featuring intricate nanofolds. With this structural feature, rose petals have high water contact angles together with antagonistic wetting properties. The hierarchical structures of rose petals were shown to have anti-reflection and light-harvesting abilities, which have the potential to be materials for various electronic products. Rose petals are an excellent biomimetic/bioinspired material that can be applied to the popular material graphene. This paper reviews the medical function and material application of roses. During the COVID-19 pandemic, medical materials or food shortages have become a global issue. Natural biomaterials could be a good alternative. Roses, with so many benefits, definitely deserve more exploration and promotion.

摘要

玫瑰是一种美丽且芬芳的植物,具有多种药用和物质用途。玫瑰的各个部分,如果实、花朵、叶子和树皮,可用于各种产品开发,包括化妆品、食品、药品和工程领域。玫瑰的药用功效包括治疗炎症、糖尿病、痛经、抑郁症、压力、癫痫和衰老。玫瑰水是珍贵的护肤美容水,对各种微生物群具有抗菌作用。玫瑰花瓣表面呈现出一种包含微米级乳头状突起的分级结构,每个乳头状突起还具有复杂的纳米褶皱。具有这种结构特征,玫瑰花瓣具有高水接触角以及相反的润湿特性。玫瑰花瓣的分级结构显示出具有抗反射和光捕获能力,这有可能成为各种电子产品的材料。玫瑰花瓣是一种出色的仿生/受生物启发的材料,可应用于热门材料石墨烯。本文综述了玫瑰的医学功能和材料应用。在新冠疫情期间,医疗物资或食品短缺已成为一个全球性问题。天然生物材料可能是一个很好的替代品。玫瑰具有如此多的益处,绝对值得更多的探索和推广。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1858/10758878/293bcfc0aaa5/gr1.jpg

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