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THE DEVELOPMENT OF CHITOSAN NANOPARTICLES FROM HIBISCUS SABDARIFFA L CALYX EXTRACT FROM INDONESIA AND THAILAND

机译:印度尼西亚和泰国HIBIsaBUs saBDaRIFFa L CaLYX提取物中壳聚糖纳米颗粒的研制

摘要

Rosella (Hibiscus sabdariffa L) calyx has been reported to have an antioxidant activity. Antocyanidin is the major compound of rosella and has low bioavailability as an ionic form. Rosella extract is an ucceptable due to high acidity. Development of chitosan nanoparticle from Hibiscus sabdariffa extract were expected to improve the bioavailability and the acidity problem. We studied the optimum pH and composition ratios of chitosan, extract and tripolyphosphate (TPP) to develop chitosan-nanoparticle of rosella extract. We used rosella calyx both from Indonesia and Thailand to compare the physical characteristic the extract and nanoparticles. Rosella was extracted using 60% ethanol and water, followed by evaporation using evaporator and dried by freezedryer. The optimum formation of chitosan-nanoparticles of rosella extract were observed including pH formation and composition ratios between extract: chitosan: TPP. The physical charactersitics of nanoparticles were observed using transmission electron microscope (TEM) and particle size analyzer (PSA). We found that optimum composition of extract: chitosan : TPP ratios were 2 : 1 : 0.1, with optimum formation of chitosan in acetate buffer pH 4. The characteristic of nanoparticles were spherical shapes with particles size range 60 to 300 nm, polydispersity index around 0.3 and zeta potential 39.19 to 62.26 mV. The nanoparticles has high entrapment efficiency of flavonoid active compound of 81.98 to 83.83%.
机译:据报道,Rosella(芙蓉花)花萼具有抗氧化活性。花青素是蔷薇属植物的主要化合物,离子形式的生物利用度低。由于高酸度,玫瑰果提取物是可以接受的。从芙蓉提取物中开发壳聚糖纳米颗粒有望改善生物利用度和酸度问题。我们研究了壳聚糖,提取物和三聚磷酸盐(TPP)的最佳pH和组成比,以开发罗塞拉提取物的壳聚糖-纳米颗粒。我们分别使用了来自印度尼西亚和泰国的罗塞利亚花萼来比较提取物和纳米颗粒的物理特性。使用60%乙醇和水提取Rosella,然后使用蒸发器蒸发,并通过冷冻干燥机干燥。观察到rosella提取物的壳聚糖-纳米颗粒的最佳形成,包括pH形成和提取物:壳聚糖:TPP之间的组成比。使用透射电子显微镜(TEM)和粒度分析仪(PSA)观察纳米颗粒的物理特性。我们发现提取物:壳聚糖:TPP的最佳组成为2:1:0.1,在pH 4的乙酸盐缓冲液中壳聚糖的最佳形成。纳米颗粒的特征是球形,粒径范围为60-300 nm,多分散指数约为0.3和zeta电位39.19至62.26 mV。该纳米粒子具有81.98至83.83%的高类黄酮活性化合物的包封率。

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