Graduate Program of Pharmaceutical Sciences, State University of Paraíba, Campina Grande, Paraiba, Brazil.
Laboratory of Development and Characterization of Pharmaceutical Products, Department of Pharmacy, State University of Paraíba (UEPB), Campina Grande, Paraiba, Brazil.
Drug Deliv Transl Res. 2020 Dec;10(6):1748-1763. doi: 10.1007/s13346-020-00850-0. Epub 2020 Sep 13.
The Melaleuca alternifolia essential oil (MEO) has been widely used due to its healing and antimicrobial action. Its incorporation into drug delivery systems is a reality, and numerous studies have already been developed for this purpose. In this regard, the aim of this work was to develop, characterize, and evaluate the in vivo pharmacological activity of bicontinuous microemulsions (BME) containing MEO. Through diagram construction, a formulation consisting of Kolliphor® HS 15 (31.05%), Span® 80 (3.45%), isopropyl myristate (34.5%), and distilled water (31%) was selected and MEO was incorporated in the proportion of 3.45% (v/v). Morphological analysis characterization confirms that the system studied herein is a BME. The evaluated formulation showed physicochemical characteristics that allow its topical use. Rheologically, samples were characterized as pseudo-plastic non-Newtonian thixotropic fluids. The chromatographic method developed is in accordance with the current recommendations. The extraction method used assured a 100% recovery of the pharmacological marker (terpinen-4-ol). In vivo studies suggest that BME loaded with MEO may contribute to the healing process of skin wounds. In addition, it demonstrated antibacterial activity for Gram-positive and Gram-negative bacteria. Therefore, the BME system loaded with MEO is promising as a healing and antimicrobial agent for skin wounds.Graphical abstract.
互叶白千层精油(MEO)具有治疗和抗菌作用,因此被广泛应用。将其纳入药物传递系统是一个现实,已经为此目的进行了许多研究。在这方面,本工作的目的是开发、表征和评估含有 MEO 的双连续微乳液(BME)的体内药理活性。通过图表构建,选择了由 Kolliphor® HS 15(31.05%)、Span® 80(3.45%)、肉豆蔻酸异丙酯(34.5%)和蒸馏水(31%)组成的配方,并以 3.45%(v/v)的比例加入 MEO。形态分析表明,所研究的系统是一种 BME。评估的配方具有允许其局部使用的物理化学特性。流变学上,样品被表征为假塑性非牛顿触变流体。所开发的色谱方法符合当前的建议。所使用的提取方法确保了药理标志物(松油烯-4-醇)的 100%回收率。体内研究表明,负载 MEO 的 BME 可能有助于皮肤伤口的愈合过程。此外,它对革兰氏阳性和革兰氏阴性细菌表现出抗菌活性。因此,负载 MEO 的 BME 系统有望成为治疗和抗菌皮肤伤口的药物。