Pharmaceutical and Cosmetics Studies Center, Faculty of Pharmacy, Dentistry and Nursing, Federal University of Ceará, Fortaleza, Ceará, Brazil.
Department of Physiology and Pharmacology, Federal University of Ceará, Fortaleza, Ceará, Brazil.
Oxid Med Cell Longev. 2018 Dec 11;2018:8194849. doi: 10.1155/2018/8194849. eCollection 2018.
Contact dermatitis produces an inflammatory reaction primarily via stimulation of keratinocytes and cells of the immune system, which promote the release of cytokines, reactive oxygen species (ROS), and other chemical mediators. Eugenol (EUG, phenylpropanoid of essential oils) has attracted attention due to its anti-inflammatory properties, as well as antioxidant effect. On the other hand, it is volatile and insoluble and is a skin irritant. In this case, nanostructured systems have been successfully employed as a drug carrier for skin diseases since they improve both biological and pharmaceutical properties of active compounds. The cytotoxic, antioxidant, and anti-inflammatory effects of EUG were assessed in human neutrophils and keratinocytes. Additionally, polymeric nanocarries (NCEUG) were prepared to improve the chemical and irritant characteristics of EUG. EUG presented apparent safety and antioxidant and anti-inflammatory effects on human neutrophils, but presented cytotoxic effects on keratinocytes. However, the nanocapsules were able to reduce its cytotoxicity. An experiment of irritant contact dermatitis (ICD) in mice induced by TPA showed that NCEUG reduced significantly the ear edema in mice when compared to the EUG solution, as well as the leukocyte infiltration and IL-6 level, possibly due to better skin permeation and irritancy blockage. These findings suggest that EUG is a promising bioactive molecule, and its nanoencapsulation seems to be an interesting approach for the treatment of ICD.
接触性皮炎主要通过角质形成细胞和免疫系统细胞的刺激产生炎症反应,促进细胞因子、活性氧(ROS)和其他化学介质的释放。由于具有抗炎特性以及抗氧化作用,丁香酚(EUG,精油中的苯丙素)引起了人们的关注。另一方面,它具有挥发性和不溶性,并且是一种皮肤刺激性物质。在这种情况下,由于纳米结构系统能够改善活性化合物的生物学和药物特性,因此已成功将其用作皮肤病的药物载体。评估了 EUG 对人中性粒细胞和角质形成细胞的细胞毒性、抗氧化和抗炎作用。此外,还制备了聚合物纳米载体(NCEUG)以改善 EUG 的化学和刺激性特征。EUG 对人中性粒细胞表现出明显的安全性、抗氧化和抗炎作用,但对角质形成细胞表现出细胞毒性作用。然而,纳米胶囊能够降低其细胞毒性。用 TPA 诱导的小鼠刺激性接触性皮炎(ICD)实验表明,与 EUG 溶液相比,NCEUG 显著减少了小鼠的耳部水肿,以及白细胞浸润和 IL-6 水平,这可能是由于更好的皮肤渗透和刺激性阻塞。这些发现表明,EUG 是一种有前途的生物活性分子,其纳米封装似乎是治疗 ICD 的一种有趣方法。