Department of Pharmacognosy, NITTE Gulabi Shetty Memorial Institute of Pharmaceutical Sciences, NITTE Deemed-to-be University, 575018, Mangalore, India.
Department of Pharmaceutics, NITTE Gulabi Shetty Memorial Institute of Pharmaceutical Sciences, NITTE Deemed-to-be University, Mangalore, 575018, India.
Environ Sci Pollut Res Int. 2020 Nov;27(31):38446-38471. doi: 10.1007/s11356-020-10100-y. Epub 2020 Aug 6.
Natural products have been used to protect the skin from harmful UV radiation for decades. Due to the ecotoxicological implications of synthetic sunscreen exposure in aquatic ecosystems, there is a greater need to explore alternative sources of UV filters. Recent research has focused on discovering novel UV absorbing photoprotective molecules from nature. In response to the excessive damage caused by UVB rays, plants induce the production of high concentrations of phytoprotective secondary metabolites and anti-oxidative enzymes. Despite promising UV absorbing and photoprotective properties, plant secondary metabolites have been underutilized in topical delivery due to low solubility and high instability. Numerous phytochemicals have been effectively nanosized, incorporated in formulations, and studied for their sustained effects in photoprotection. The present review outlines recent developments in nanosizing and delivering photoprotective crude plant extract and phytochemicals from a phytochemical perspective. We searched for articles using keywords: "UV damage," "skin photoprotection," "photodamage," and "nano delivery" in varied combinations. We identified and reviewed literature from 43 original research articles exploring nanosized phytochemicals and crude plant extracts with photoprotective activity. Nanosized phytochemicals retained higher amounts of bioactive compounds in the skin and acted as depots for their sustained release. Novel approaches in nanosizing considerably improved the photostability, efficacy, and water resistance of plant secondary metabolites. We further discuss the need for broad-spectrum sunscreen products, potential challenges, and future growth in this area.
天然产物已被用于保护皮肤免受有害的紫外线辐射数十年。由于合成防晒霜在水生生态系统中的生态毒性影响,因此更需要探索紫外线滤光剂的替代来源。最近的研究集中在从自然界中发现新的吸收紫外线的光保护分子。为了应对 UVB 射线造成的过度损害,植物会诱导产生高浓度的植物保护次生代谢物和抗氧化酶。尽管植物次生代谢物具有有前途的紫外线吸收和光保护特性,但由于溶解度低和高不稳定性,它们在局部递送上的应用一直受到限制。许多植物化学物质已被有效地纳米化,纳入配方,并研究其在光保护中的持续效果。本综述从植物化学的角度概述了纳米化和传递光保护粗植物提取物和植物化学物质的最新进展。我们使用关键词“UV 损伤”、“皮肤光保护”、“光损伤”和“纳米传递”在不同组合中搜索文章。我们确定并回顾了 43 篇探索具有光保护活性的纳米化植物化学物质和粗植物提取物的原始研究文章的文献。纳米化的植物化学物质在皮肤中保留了更多的生物活性化合物,并作为其持续释放的储存库。纳米化的新方法极大地提高了植物次生代谢物的光稳定性、功效和耐水性。我们进一步讨论了广谱防晒霜产品的需求、潜在挑战以及该领域的未来发展。