Department of Chemical Engineering (BK21 FOUR), Dong-A University, Busan 49315, Republic of Korea.
Department of Chemistry, Dong-A University, Busan 49315, Republic of Korea.
ACS Appl Mater Interfaces. 2024 May 15;16(19):24308-24320. doi: 10.1021/acsami.4c02634. Epub 2024 Apr 30.
Polyphenols have been investigated for their potential to mitigate inflammation in the context of atopic dermatitis (AD). In this study, epigallocatechin-3-gallate (EGCG)-based carbon dots (EGCG@CDs) were developed to enhance transdermal penetration, reduce inflammation, recapitulate superoxide dismutase (SOD) activity, and provide antimicrobial effects for AD treatment. The water-soluble EGCG@CDs in a few nanometers size exhibit a negative zeta potential, making them suitable for effective transdermal penetration. The fluorescence properties, including an upconversion effect, make EGCG@CDs suitable imaging probes for both and applications. By mimicking the SOD enzyme, EGCG@CDs scavenge reactive oxygen species (ROS) and actively produce hydrogen peroxide through a highly catalytic capability toward the oxygen reduction reaction, resulting in the inhibition of bacterial growth. The enhanced antioxidant properties, high charge mobility, and various functional groups of EGCG@CDs prove effective in reducing intracellular ROS in an AD model. In the mouse AD model, EGCG@CDs incorporated into a hydrogel actively penetrated the epidermal layer, leading to ROS scavenging, reduced mast cell activation, and histological recovery of skin barriers. This research represents the versatile potential of EGCG@CDs in addressing AD and advancing tissue engineering.
多酚类化合物因其在特应性皮炎 (AD) 背景下减轻炎症的潜力而受到研究。在这项研究中,开发了基于表没食子儿茶素没食子酸酯 (EGCG) 的碳点 (EGCG@CDs),以增强透皮渗透、减少炎症、再现超氧化物歧化酶 (SOD) 活性,并提供 AD 治疗的抗菌作用。几种纳米大小的水溶性 EGCG@CDs 具有负 zeta 电位,使其适合有效透皮渗透。荧光性质,包括上转换效应,使 EGCG@CDs 成为 和 应用的合适成像探针。通过模拟 SOD 酶,EGCG@CDs 通过对氧还原反应的高催化能力清除活性氧 (ROS),并主动产生过氧化氢,从而抑制细菌生长。EGCG@CDs 的增强抗氧化特性、高电荷迁移率和各种官能团证明可有效减少 AD 模型中的细胞内 ROS。在小鼠 AD 模型中,掺入水凝胶的 EGCG@CDs 可主动穿透表皮层,从而清除 ROS、减少肥大细胞活化和皮肤屏障的组织学恢复。这项研究代表了 EGCG@CDs 在解决 AD 和推进组织工程方面的多功能潜力。