Park Jong Il, Kim Sung Jae, Kim Yong Jae, Lee Seung Ji
Creation & Innovation Research Center, IN2BIO, Hwaseong-si, Korea.
J Cosmet Dermatol. 2022 Dec;21(12):7025-7034. doi: 10.1111/jocd.15354. Epub 2022 Sep 25.
Ultraviolet (UV) radiation is a well-known factor that causes skin aging. Recently, with the development of technology, the skin has been exposed to not only the UV radiation but also the blue light from electronic devices. Blue light is a high-energy visible light that penetrates deep into the dermal layer, producing reactive oxygen species (ROS) and resulting in skin aging. In this study, we searched for candidate materials that can inhibit blue light-induced skin aging and found Caesalpinia sappan extract (CSE) to be effective.
Human dermal fibroblasts (HDFs) were treated with various concentrations of CSE and brazilin and exposed to blue light. We measured that antioxidant activity, MMP-1 levels using MMP-1 ELISA, changes in collagen type 1, collagen type 3, MMP-1, and MMP-3 mRNA expressions, and ROS generation.
We confirmed that CSE has high absorption of blue light and antioxidant activity. Blue light irradiation at 30 J/cm decreased the expression of collagen types 1 and 3, increased the expression of matrix metalloproteinase (MMP)-1 and 3, and decreased the production of ROS in human dermal fibroblasts as compared to those of the nonirradiated group. However, pretreatment with CSE protected against the damage caused by the blue light. Brazilin, a major constituent of C. sappan, had high absorbance in the blue light region and antioxidant activities. Pretreatment with brazilin also inhibited the damage caused by the blue light in the cells.
CSE and brazilin are potential agents for inhibiting skin aging caused by blue light-induced damage.
紫外线辐射是导致皮肤衰老的一个众所周知的因素。近年来,随着技术的发展,皮肤不仅暴露于紫外线辐射,还暴露于电子设备发出的蓝光。蓝光是一种高能可见光,可深入真皮层,产生活性氧(ROS),从而导致皮肤衰老。在本研究中,我们寻找了能够抑制蓝光诱导的皮肤衰老的候选材料,并发现苏木提取物(CSE)具有有效性。
用不同浓度的CSE和巴西苏木素处理人皮肤成纤维细胞(HDFs),并使其暴露于蓝光下。我们测量了抗氧化活性、使用MMP-1酶联免疫吸附测定法检测MMP-1水平、1型胶原蛋白、3型胶原蛋白、MMP-1和MMP-3 mRNA表达的变化以及ROS的产生。
我们证实CSE对蓝光具有高吸收性和抗氧化活性。与未照射组相比,30 J/cm的蓝光照射降低了人皮肤成纤维细胞中1型和3型胶原蛋白的表达,增加了基质金属蛋白酶(MMP)-1和3的表达,并降低了ROS的产生。然而,用CSE预处理可防止蓝光造成的损伤。巴西苏木素是苏木的主要成分,在蓝光区域具有高吸光度和抗氧化活性。用巴西苏木素预处理也可抑制蓝光对细胞造成的损伤。
CSE和巴西苏木素是抑制蓝光诱导损伤所致皮肤衰老的潜在药物。