College of Science, Northeast Forestry University, Harbin 150040, China.
College of Science, Northeast Forestry University, Harbin 150040, China.
Spectrochim Acta A Mol Biomol Spectrosc. 2024 Jan 5;304:123325. doi: 10.1016/j.saa.2023.123325. Epub 2023 Sep 1.
With the continued depletion of the ozone layer, the sun protection consciousness of humans has gradually enhanced. Long-term ultraviolet (UV) rays exposure will lead to skin tanning, even skin cancer in severe cases, and generate free radicals to cause skin aging. To better protect human skin against UV rays, this work explores the absorption capacities and antioxidant activities of four stilbene derivatives (EHDB, EDMB, EAPD, and HPTP) through the computational chemistry method and DPPH radical scavenging experiment. The research results indicate that their absorption spectra cover the entire UV region, and can effectively protect against UVB radiation. Moreover, three prevailing antioxidant mechanisms: hydrogen atom transfer, sequential proton loss electron transfer, and single electron transfer followed by proton transfer mechanisms, were used to evaluate their antioxidant activities in the ground state. It can be concluded that the OH sites of EHDB and HPTP are the most active, and the SPLET mechanism is the most preferred for the four compounds in ethanol solvent. Furthermore, the DPPH radical scavenging experiment compensates for the theoretical calculation deficiency in the excited state, revealing that the EHDB and HPTP are the most suitable for sunscreen due to their excellent performance on antioxidant capacities, whether before or after sunlight. This work will facilitate EHDB and HPTP to be applied in sunscreen and provide a novel idea in sunscreen research.
随着臭氧层的持续消耗,人类的防晒意识逐渐增强。长期暴露在紫外线下会导致皮肤晒黑,严重情况下甚至会导致皮肤癌,并产生自由基导致皮肤衰老。为了更好地保护人体皮肤免受紫外线伤害,本工作通过计算化学方法和 DPPH 自由基清除实验,探索了四种二苯乙烯衍生物(EHDB、EDMB、EAPD 和 HPTP)的吸收能力和抗氧化活性。研究结果表明,它们的吸收光谱涵盖了整个 UV 区域,能够有效防护 UVB 辐射。此外,采用三种主要的抗氧化机制:氢原子转移、连续质子丢失电子转移和单电子转移后质子转移机制,在基态下评估了它们的抗氧化活性。可以得出结论,EHDB 和 HPTP 的 OH 位是最活跃的,对于四种化合物在乙醇溶剂中,SPLET 机制是最优先的。此外,DPPH 自由基清除实验弥补了激发态理论计算的不足,表明 EHDB 和 HPTP 是最适合防晒的,因为它们在抗氧化能力方面表现出色,无论是在阳光之前还是之后。这项工作将促进 EHDB 和 HPTP 在防晒霜中的应用,并为防晒霜研究提供新的思路。