EPI Unit, Department of Epidemiological Research, Institute of Public Health of University of Porto (ISPUP), Rua das Taipas 135, 4050-600 Porto, Portugal.
Department of Pharmacy, Quaid-i-Azam University, Islamabad 45320, Pakistan.
Biomolecules. 2023 Mar 7;13(3):493. doi: 10.3390/biom13030493.
Excessive UV radiation exposure is harmful to skin cells since sunburn is accompanied by oxidative burst, leading to a rapid increase in skin cancer. However, the insufficient UV photoprotection of approved sunscreens and the negative impact of their compositions on ecosystems and human health makes the utility of sunscreen a questionable recommendation. Therefore, discovering UV filters with significant antioxidant activity and improved topical performance and photostability is an urgent need. Recently, the use of nanosized natural molecules incorporated in sunscreens has been a scientific hot topic, as it has been suggested that they provide a synergistic effect with synthetic UV filters, improving overall SPF and antioxidant activity, higher retention on the epidermis, and less toxicity. The aim of this review was to verify the usefulness of sunscreens incorporating flavonoid-loaded nanoparticles. A literature review was performed, where original and review articles published in the last 6 years were analyzed. Formulations containing nanosized flavonoids with improved UVA photoprotection and safer toxicological profiles, associated or not with synthetic filters, are promising sunscreens and more clinical investigation must be performed to validate these findings.
过度的紫外线辐射暴露对皮肤细胞是有害的,因为晒伤伴随着氧化爆发,导致皮肤癌迅速增加。然而,经批准的防晒霜的紫外线防护不足,以及其成分对生态系统和人类健康的负面影响,使得防晒霜的使用成为一个值得怀疑的建议。因此,发现具有显著抗氧化活性和改善局部性能和光稳定性的紫外线滤光剂是当务之急。最近,将纳米尺寸的天然分子纳入防晒霜中的使用已成为一个科学热点话题,因为有人提出它们与合成紫外线滤光剂具有协同作用,可提高整体 SPF 和抗氧化活性、增加表皮保留率,并降低毒性。本综述的目的是验证含有负载类黄酮纳米颗粒的防晒霜的有效性。进行了文献回顾,分析了过去 6 年发表的原始和综述文章。含有纳米尺寸类黄酮的配方具有改善的 UVA 光保护作用和更安全的毒理学特性,与合成滤光剂相关或不相关,是有前途的防晒霜,必须进行更多的临床研究来验证这些发现。