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采用低能法对香芹酚/中链甘油三酯-(油酸-油酸钾)/吐温80®-水体系纳米乳剂的研究

Study of nanoemulsions using carvacrol/MCT-(Oleic acid-potassium oleate)/ Tween 80 ®- water system by low energy method.

作者信息

Santamaría Esther, Maestro Alicia, Vilchez Susana, González Carme

机构信息

Chemical Engineering and Analytical Chemistry Department, Faculty of Chemistry, Universitat de Barcelona, Marti i Franques, 1, Barcelona, 08028, Spain.

Institute of Advanced Chemistry of Catalonia, Consejo Superior de Investigaciones Científicas (IQAC-CSIC) and Networking Research Center on Bioengineering, Biomaterials and Nanomedicine (CIBER-BBN), Jordi Girona, 18-26, 08034, Barcelona, Spain.

出版信息

Heliyon. 2023 Jun 7;9(6):e16967. doi: 10.1016/j.heliyon.2023.e16967. eCollection 2023 Jun.

Abstract

Carvacrol is studied in different fields due to its microbial and antioxidant properties. Its use is limited because of the water insolubility and its strong taste. To overcome these problems, carvacrol has been successfully loaded into nanoemulsions. The low-energy emulsification method Phase Inversion Composition (PIC) is used to prepare oil-in-water nanoemulsions in the carvacrol/medium chain triglycerides (MCT)-(oleic acid-potassium oleate/Tween 80 ®)-water system. Oleic acid acts as a co-surfactant when it is neutralized with KOH along the emulsification path changing the spontaneous curvature of the interface when increasing the HLB number from 1 for the oleic acid to 20 for the potassium oleate and, therefore, changing the HLB number of the surfactant mixture. The phases diagrams are studied in order to understand the behaviour of the system and to establish the composition range where nanoemulsions can be obtained. Nanoemulsions are formed when the emulsification path crosses a region of direct or planar structure without excess of oil. Experimental design is performed in order to study the influence of composition variables as carvacrol/MCT ratio and (oleic-oleate)/Tween 80 ® ratio (OL-OT/T80 ratio) on the diameter of the nanoemulsions and their stability. It has been observed the importance of the HLB number of the surfactants mixture in order to obtain small-sized stable nanoemulsions. Surface response graphic shows that (OL-OT)/T80 ratio is a significant parameter in the mean diameter of the nanoemulsions. A minimum diameter is obtained for a (OL-OT)/T80 ratio 45/55 due to the fact that ratio is near the preferred HLB of the oil mixture and the emulsification path contains a wide liquid crystal monophasic region with all the oil incorporated in the structure. Diameters of 19 nm for carvacrol/MCT ratio of 30/70 or diameters of 30 nm for ratios of 45/55 with high stability values presented a good potential to be incorporated into edible films in the future. Regarding nanoemulsions stability an optimum value is also observed for a carvacrol/MCT ratio. The addition of another carrier oil as olive oil instead of MCT showed an improvement of the nanoemulsions stability against Ostwald ripening, probably due to the smaller solubility of olive oil. The use of olive oil does not significantly change the diameter of the nanoemulsion.

摘要

香芹酚因其微生物特性和抗氧化特性而在不同领域得到研究。由于其水不溶性和强烈的味道,其应用受到限制。为克服这些问题,香芹酚已成功负载到纳米乳液中。采用低能乳化法相转变组成(PIC)在香芹酚/中链甘油三酯(MCT)-(油酸-油酸钾/Tween 80®)-水体系中制备水包油纳米乳液。油酸在乳化过程中与氢氧化钾中和时作为助表面活性剂,随着油酸的亲水亲油平衡(HLB)值从1增加到油酸钾的20,界面的自发曲率发生变化,从而改变了表面活性剂混合物的HLB值。研究相图以了解体系的行为,并确定可获得纳米乳液的组成范围。当乳化路径穿过无过量油的直接或平面结构区域时形成纳米乳液。进行实验设计以研究组成变量如香芹酚/MCT比例和(油酸-油酸盐)/Tween 80®比例(OL-OT/T80比例)对纳米乳液直径及其稳定性的影响。已观察到表面活性剂混合物的HLB值对于获得小尺寸稳定纳米乳液的重要性。表面响应图表明(OL-OT)/T80比例是纳米乳液平均直径的一个重要参数。由于该比例接近油混合物的优选HLB值且乳化路径包含一个宽的液晶单相区域,所有油都包含在结构中,因此(OL-OT)/T80比例为45/55时可获得最小直径。香芹酚/MCT比例为30/70时直径为19纳米,或比例为45/55时直径为30纳米且具有高稳定性值,这表明其未来有很好的潜力被纳入可食用薄膜中。关于纳米乳液的稳定性,香芹酚/MCT比例也存在一个最佳值。添加另一种载体油如橄榄油代替MCT显示纳米乳液对奥氏熟化的稳定性有所提高,这可能是由于橄榄油的溶解度较小。使用橄榄油不会显著改变纳米乳液的直径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb66/10276228/13a41e2bab3c/gr1.jpg

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