含面包果叶片转移体的制备及特性研究Fsb)。Ethanolic提取

E. F. Apriani
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引用次数: 0

摘要

面包果(Artocarpus altilis)黄酮类化合物的含量使黄酮类化合物具有抗酪氨酸酶活性。抗酪氨酸酶渗透深,因为酪氨酸酶过程发生在底层。本研究旨在制备和鉴定含面包果(Artocarpus altilis, Park.)的转运体。)叶片乙醇提取物具有不同浓度的吐温80和磷脂90G。采用96%乙醇提取面包果叶,并定量测定其黄酮含量。采用薄层水化法将面包果叶提取物配制成转移体,Tween 80和Phospholipon 90G的浓度比分别为5:95;10:90;15:85;20:80;和25:75。然后通过包埋效率(EE)、多分散性指数、粒径和zeta电位对所得转移体进行表征,确定最佳配方。第5配方的EE为95.13%;95.42%;92.78%;90.48%;和87.58。多分散性结果分别为0.232;0.427;0.236;0.425;和0.292。粒径分别为276.13 nm、290.70nm、222.13nm、320.80nm和280.90 nm。同时,zeta电位值分别为-15.1;-18.2 mV;-20.5 mV;-36.9 mV;和-16.7 mv。根据表征结果,选择20% Tween 80和80% Phospholipon 90G为最佳配方。最佳配方呈球形,稳定性最好,包封效率降低幅度最小,为1.7416±0.2033%。
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Formulation and Characterization of Transfersomal Containing Breadfruit Leaves (Artocarpus altilis (Park.) Fsb.) Ethanolic Extract
Breadfruit (Artocarpus altilis (Park.) Fsb.) leaves have anti-tyrosinase activity due to their flavonoid content. Anti-tyrosinase penetration is deep because the tyrosinase process occurs in the stratum basale. This study aimed to formulate and characterize the transfersomal containing breadfruit (Artocarpus altilis (Park.) Fsb.) leaves ethanolic extract with varying concentrations of Tween 80 and Phospholipon 90G. Breadfruit leaves were extracted using 96% ethanol and quantitative measures of flavonoid content. Breadfruit leaves extract was then formulated into transfersomes using the thin layer hydration method with a concentration ratio of Tween 80 and Phospholipon 90G, respectively, of 5:95; 10:90; 15:85; 20:80; and 25:75. The resulting transfersomes were then characterized by the value of entrapment efficiency (EE), polydispersity index, particle size, and zeta potential to determine the best formula. The %EE result for the 5th formula were 95.13%; 95.42%; 92.78%; 90.48%; and 87.58. The polydispersity result respectively were 0.232; 0.427; 0.236; 0.425; and 0.292. The particle sizes were 276.13 nm, 290.70nm, 222.13nm, 320.80nm, and 280.90 nm. Meanwhile, the zeta potential values respectively were -15.1; -18.2 mV; -20.5 mV; -36.9 mV; and -16.7mV. The concentrations of 20% Tween 80 and 80% Phospholipon 90G were chosen as the best formulas based on the results of their characterization. The best formula also showed a spherical morphology and was most stable with the lowest reduction of entrapment efficiency of 1.7416±0.2033%.
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