Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Al-Azhar University, Cairo, Egypt.
Department of Pharmaceutics, Faculty of Pharmacy, October University for Modern Sciences and Arts (MSA), Giza, Egypt.
Sci Rep. 2020 Apr 14;10(1):6316. doi: 10.1038/s41598-020-63271-6.
Skin health is vital for a healthy body. Herbal remedies have long been used for skin care, and their global use has tremendously increased over the past three decades. Although cellulite is seen as a normal condition by the medical community, it is considered a serious cosmetic concern for most affected women. Many topical anti-cellulite creams are available on the market, but unfortunately, their efficacy has not been proven scientifically. Microneedles (MNs) represent a new approach to enhance the permeation of loaded medication through the skin. In this study, the anti-cellulite effects of Vitex agnus-castus and Tamarindus indica extracts were compared using safe and effective polymeric MNs. This delivery system offers a painless alternative to the combined treatment strategy of microneedling devices and anti-cellulite products. The selected standardized extracts were evaluated for their mineral, phenolic and flavonoid contents, which are correlated to a promising antioxidant effect, as demonstrated by an in vitro radical scavenging activity assay. 3D-printing techniques were chosen for fabrication of a micromold, which is inexpensive for mass production. To ensure that MNs were sufficiently strong to perforate the skin without breaking, axial failure force was measured using a micro-mechanical test machine. The anticellulite effects of MNs were assessed using an in vivo diet-induced obesity guinea pig model. Skin properties, histopathology and inflammatory markers were examined. MNs loaded with plant extracts were statistically comparable in normalizing the oxidative state and reducing inflammation, while myeloperoxidase levels were more significantly reduced by T. indica than by V. agnus-castus. This novel delivery system opens the door for new transdermal strategies for cellulite management.
皮肤健康对于身体健康至关重要。草药疗法长期以来一直被用于皮肤护理,在过去的三十年中,其全球使用量大幅增加。虽然医学界认为脂肪团是一种正常现象,但大多数受影响的女性认为这是一个严重的美容问题。市场上有许多局部抗脂肪团霜,但不幸的是,它们的疗效尚未得到科学证明。微针 (MN) 代表了一种增强负载药物透过皮肤渗透的新方法。在这项研究中,使用安全有效的聚合物 MN 比较了牡荆和罗望子提取物的抗脂肪团作用。这种给药系统为微针设备和抗脂肪团产品联合治疗策略提供了一种无痛替代方案。选择的标准化提取物的矿物质、酚类和类黄酮含量进行了评估,这些含量与体外自由基清除活性测定所示的有希望的抗氧化作用相关。3D 打印技术被选为制造微模具的方法,这种方法对于大规模生产来说成本低廉。为了确保 MN 足够强大以穿透皮肤而不会破裂,使用微机械试验机测量轴向失效力。使用体内饮食诱导肥胖豚鼠模型评估 MN 的抗脂肪团作用。检查了皮肤特性、组织病理学和炎症标志物。负载植物提取物的 MN 在使氧化状态正常化和减少炎症方面具有统计学可比性,而罗望子提取物比牡荆提取物更显著降低髓过氧化物酶水平。这种新的给药系统为脂肪团管理的新透皮策略开辟了道路。