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槲皮素载药固体脂质纳米粒分散体:改善物理化学性质和细胞摄取。

Quercetin-Loaded Solid Lipid Nanoparticle Dispersion with Improved Physicochemical Properties and Cellular Uptake.

机构信息

College of Pharmacy, Gachon University, 191 Hambakmoero, Incheon, 406-799, South Korea.

出版信息

AAPS PharmSciTech. 2017 Apr;18(3):875-883. doi: 10.1208/s12249-016-0573-4. Epub 2016 Jul 1.

Abstract

The objective of this study was to formulate and characterize properties of solid lipid nanoparticle (SLN) dispersion containing quercetin. SLN was prepared by ultrasonication method using tripalmitin and lecithin as lipid core and then the surface was coated with chitosan. Entrapment efficiency was greater than 99%, and mean particle size of SLN was 110.7 ± 1.97 nm with significant increase in the coated SLN (c-SLN). Zeta potential was proportionally increased and reached plateau at 5% of chitosan coating with respect to tripalmitin. Differential scanning calorimetry showed disappearance of endothermic peak of quercetin in SLNs, indicating conversion of crystalline state to amorphous state. FTIR study of SLNs showed no change in the spectrum of quercetin, which indicates that the lipid and chitosan were not incompatible with quercetin. When coating amount was greater than 2.5% of tripalmitin, particle size and zeta potential were very stable even at 40°C up to 90 days. All SLN dispersions showed significantly faster release profile compared to pure quercetin powder. At pH 7.0, the release rate was increased in proportion to the coating amount. Interestingly, at pH 3.0, chitosan coating of 5.0% or greater decreased the rate. Cellular uptake of quercetin was performed using Caco-2 cells and showed that all SLN dispersions were significantly better than quercetin dispersed in distilled water. However, cellular uptake of quercetin from c-SLN was significantly lower than that from uncoated SLN.

摘要

本研究的目的是制备并表征含有槲皮素的固体脂质纳米粒(SLN)分散体的性质。SLN 采用超声法制备,以三棕榈酸甘油酯和卵磷脂为脂质核,然后用壳聚糖进行表面涂层。包封效率大于 99%,SLN 的平均粒径为 110.7±1.97nm,经壳聚糖涂层后显著增加(c-SLN)。Zeta 电位随壳聚糖涂层量相对于三棕榈酸甘油酯的比例而相应增加,并在 5%达到平台。差示扫描量热法显示 SLNs 中槲皮素的吸热峰消失,表明结晶态向无定形态转变。SLNs 的傅里叶变换红外光谱研究表明槲皮素的光谱没有变化,这表明脂质和壳聚糖与槲皮素没有不相容性。当涂层量大于三棕榈酸甘油酯的 2.5%时,粒径和 Zeta 电位在 40°C 下甚至在 90 天内都非常稳定。与纯槲皮素粉末相比,所有 SLN 分散体均显示出明显更快的释放曲线。在 pH 7.0 时,释放速率与涂层量成正比增加。有趣的是,在 pH 3.0 时,涂层量为 5.0%或更大的壳聚糖涂层会降低释放速率。采用 Caco-2 细胞进行了槲皮素的细胞摄取研究,结果表明所有 SLN 分散体均明显优于在蒸馏水中分散的槲皮素。然而,c-SLN 中槲皮素的细胞摄取明显低于未涂层 SLN 中的摄取。

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