Department of Nanoscience and Engineering, Inje University, Gimhae, 50834, Republic of Korea.
School of Biomedical Engineering, Inje University, Gimhae, 50834, Republic of Korea.
Nanotechnology. 2021 Jul 23;32(41). doi: 10.1088/1361-6528/ac027b.
Overexpression of collagenase, elastase, and tyrosinase is caused by external factors such as ultraviolet (UV) radiation and stress, resulting in wrinkle formation and freckles through the loss of skin elasticity and skin pigmentation. In this study, we developed novel carbon quantum dots (CQDs) with antioxidant and anti-aging properties using tannic acid as a carbon source through a simple microwave-assisted pyrolysis method. The synthesized tannic acid-derived CQDs (T-CQDs) showed bright blue fluorescence (QY = 28.2 ± 4.0%), exhibiting maximum emission at 430 nm under 350 nm excitation. Even though small amount of the T-CQDs (3g ml) was used, they exhibited excellent free radical scavenging ability (82.8 ± 4.3%). Also, the T-CQDs (10g ml) revealed remarkable inhibitory activity against skin aging-related collagenase (77.6 ± 4.8%), elastase (52.6 ± 1.0%), and tyrosinase (44.2 ± 1.3%), demonstrating their antioxidant and anti-aging effects. Furthermore, their antioxidant and anti-aging properties were superior to those of tannic acid, L-ascorbic acid, and quercetin used as positive controls. Finally, the T-CQDs effectively suppressed UV-induced reactive oxygen species generation by 30% at the cellular levels and showed high cell viability (99.7 ± 0.8%) even at 500g ml. These results demonstrate that the T-CQDs with superior antioxidant, anti-aging properties, and low cytotoxicity can be utilized as novel anti-aging materials in cosmetic and nanomedicine fields.
胶原酶、弹性蛋白酶和酪氨酸酶的过度表达是由紫外线 (UV) 辐射和应激等外部因素引起的,导致皮肤弹性丧失和皮肤色素沉着,从而形成皱纹和雀斑。在这项研究中,我们使用单宁酸作为碳源,通过简单的微波辅助热解法开发了具有抗氧化和抗衰老性能的新型碳量子点 (CQD)。合成的单宁酸衍生的 CQD(T-CQD)具有明亮的蓝色荧光(QY=28.2±4.0%),在 350nm 激发下最大发射波长为 430nm。即使使用少量的 T-CQD(3g ml),它们也表现出出色的自由基清除能力(82.8±4.3%)。此外,T-CQD(10g ml)对皮肤老化相关的胶原酶(77.6±4.8%)、弹性蛋白酶(52.6±1.0%)和酪氨酸酶(44.2±1.3%)表现出显著的抑制活性,表明其具有抗氧化和抗衰老作用。此外,其抗氧化和抗衰老性能优于作为阳性对照的单宁酸、L-抗坏血酸和槲皮素。最后,T-CQD 在细胞水平上有效抑制了 30%的 UV 诱导的活性氧生成,并且即使在 500g ml 时也表现出高细胞活力(99.7±0.8%)。这些结果表明,具有优异抗氧化、抗衰老性能和低细胞毒性的 T-CQD 可作为新型抗衰老材料应用于化妆品和纳米医学领域。