首页> 美国卫生研究院文献>Iranian Journal of Pharmaceutical Research : IJPR >Microencapsulation of Citrus Grandis Peel Oil Using Interfacial Precipitation Chemistry Technique for Repellent Application
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Microencapsulation of Citrus Grandis Peel Oil Using Interfacial Precipitation Chemistry Technique for Repellent Application

机译:界面沉淀化学技术对柑橘皮油的微囊化作用

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摘要

Essential oil of Citrus family plant is known to have repellent effect against mosquito. Unfortunately, due to its high volatility effect, its repellency effect was compromised. The incorporation of essential oil in a microencapsulation formulation has been shown to help improve the stability and potency of the repellent. In this study, Citrus grandis peel oil (CGPO) was encapsulated by using the interfacial precipitation chemistry technique. The microencapsulated CGPO was then formulated into lotion form to produce topical repellent formulation. This study includes the characterization of microcapsules with regards to the morphology, size distribution, zeta potential, Fourier Transmission Infrared spectrophotometer (FTIR), and Thermogravity analysis (TGA). The effectiveness of the microencapsulated CGPO-lotion formulation against mosquitoes was evaluated in the laboratory setting. Results indicated that CGPO have been successfully encapsulated with 6.5 µm in diameter and zeta potential values, -47.9 mV. The FTIR analysis spectrum indicated the presence of interaction between the wall materials in microcapsules. The TGA analysis demonstrated that microencapsulation improved the thermal stability of CGPO. Repellency assay revealed that microencapsulated CGPO- based formulation possessed excellent effect compared with pure CGPO. In conclusion, CGPO was successfully encapsulated and the microencapsulation aid to improve the repellency effect of CGPO against mosquito bites.
机译:众所周知,柑橘类植物的香精油具有驱蚊作用。不幸的是,由于其高挥发性作用,其驱避作用受到损害。已显示将精油掺入微胶囊制剂中有助于改善驱虫剂的稳定性和效力。本研究采用界面沉淀化学技术对柑桔皮果皮油(CGPO)进行了包封。然后将微囊化的CGPO配制成洗剂形式以产生局部驱避剂。这项研究包括对微胶囊的形态,尺寸分布,ζ电势,傅立叶透射红外分光光度计(FTIR)和热重分析(TGA)进行表征。在实验室环境中评估了微囊化CGPO乳液制剂对蚊子的有效性。结果表明,CGPO已成功封装,直径为6.5 µm,ζ电势值为-47.9 mV。 FTIR分析光谱表明微胶囊中壁材料之间存在相互作用。 TGA分析表明,微囊封装改善了CGPO的热稳定性。拒斥性分析表明,与纯CGPO相比,微囊化CGPO基制剂具有出色的效果。总之,成功地包封了CGPO,微囊化助剂改善了CGPO对蚊虫叮咬的排斥作用。

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