Thakur Divya, Kaur Gurpreet, Puri Ashana, Nanda Rajat
Department of Pharmaceutical Sciences and Drug Research, Punjabi University, Patiala (Punjab) 147002,India.
Bill Gatton College of Pharmacy, East Tennessee State University, Johnson City 37614,United States.
Curr Drug Deliv. 2021;18(9):1218-1233. doi: 10.2174/1567201818666210217161240.
A pre-eminent emulsion-based micellar drug delivery system, "microemulsion", comprising drug in oil or water phase, stabilized by surfactants and co-surfactants, has been evidenced to have a phenomenal role in a number of applications. Oils play an important role in the formation of ME and increase the drug absorption at the site of action. Oils employed in microemulsion formulation solubilize lipophilic drug. As the concept of "natural" therapies is recently gaining importance amongst researchers all over the world, scientists are employing essential oil as an organic component in this system. The active components of essential oils include flavonoids, phenylpropanoids, monoterpenes and polyunsaturated mega-6-fatty acids. These oils are enriched with characteristic intrinsic properties such as anti-oxidant, anti-bacterial, anti-viral, etc., bestowing enhanced supremacy to the whole microemulsion system. This mini-review is the first to document various types of essential oils employed in microemulsion systems and highlight their therapeutic potential and applications as drug delivery vehicles. Key inferences from this study suggest: 1) Clove oil is the most explored oil for incorporation into a microemulsion based system, followed by peppermint and Tea Tree Oil (TTO). 2) Penetration enhancing effects of these oils are due to the presence of terpenic constituents. 3) Essential oil based microemulsions protect volatility of ethereal oils and protect them from degradation in the presence of light, air, temperature. 4) These systems may also be explored for their applications in different industries like aromatherapy, food, drink, fragrance, flavour, cosmeceutical, soap, petroleum and pharmaceutical industry.
一种卓越的基于乳液的胶束药物递送系统——“微乳”,由油相或水相中的药物、表面活性剂和助表面活性剂稳定而成,已被证明在许多应用中发挥着显著作用。油在微乳的形成中起着重要作用,并增加药物在作用部位的吸收。用于微乳制剂的油可溶解亲脂性药物。随着“天然”疗法的概念最近在世界各地的研究人员中越来越受到重视,科学家们正在将精油作为该系统中的有机成分。精油的活性成分包括黄酮类化合物、苯丙素类化合物、单萜类化合物和多不饱和巨-6-脂肪酸。这些油富含抗氧化、抗菌、抗病毒等特性,赋予整个微乳系统更强的优势。这篇小型综述首次记录了微乳系统中使用的各种精油类型,并强调了它们作为药物递送载体的治疗潜力和应用。这项研究的主要推论表明:1)丁香油是用于基于微乳的系统中研究最多的油,其次是薄荷油和茶树油(TTO)。2)这些油的渗透增强作用归因于萜类成分的存在。3)基于精油的微乳可保护挥发油的挥发性,并保护它们在光、空气、温度存在的情况下不被降解。4)这些系统在芳香疗法、食品、饮料、香料、调味剂、药妆、肥皂、石油和制药等不同行业的应用也值得探索。