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首页> 外文期刊>Drying technology: An International Journal >Effect of Freeze-Thawing Study on Curcumin Liposome for Obtaining Better Freeze-Dried Product
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Effect of Freeze-Thawing Study on Curcumin Liposome for Obtaining Better Freeze-Dried Product

机译:冻融研究姜黄素脂质体获得更好的冻干产品的效果

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摘要

Liposomes are widely used in the pharmaceutical, biopharma-ceutical, cosmetic, and nutraceutical sectors as an efficacious drug-delivery system for improving the bioavailability and protection of the entrapped drug molecule. The present study evaluates freeze-thaw as a simple approach for screening the most appropriate lyoprotectant. The freeze-thaw study is based on the principle that an excipient, which protects liposomes during the first step of freezing, is likely to be an effective lyoprotectant. Curcumin liposomes with high entrapment efficiency; were prepared using a lipid film hydration technique. The freeze-thawing study was carried out using various lyoprotectants such as sucrose, mannitol, lactose, dextrose, and maltose. Sucrose showed minimal particle size change with better cryoprotection after the freeze-thaw study. The internal and external addition of sucrose during formulation has shown significant effects on the retention of particle size and curcumin content during the freeze-thawing and drying studies, respectively. Scanning electron microscopy revealed round vesicles with a size ~131 nm, which correlated well with zeta sizer particle size measurements. Infrared spectra and X-ray diffraction suggested interaction between the sugar and the liposomes and amorphization of the final freeze-dried product. The good correlation between freeze thawing and freeze drying suggests the freeze-thaw study as a simple and quick approach for screening optimal cryoprotectant for freeze drying.
机译:脂质体作为有效的药物输送系统,已广泛用于制药,生物制药,化妆品和营养保健领域,以改善生物利用度并保护所包裹的药物分子。本研究评估冻融作为筛选最合适的冻干保护剂的简单方法。冻融研究基于这样的原理,即在冷冻第一步中保护脂质体的赋形剂可能是有效的冻干保护剂。姜黄素脂质体具有高包封率;使用脂质膜水合作用技术制备。使用各种冻干保护剂例如蔗糖,甘露醇,乳糖,右旋糖和麦芽糖进行冻融研究。冻融研究后,蔗糖显示出最小的粒径变化,并具有更好的防冻性能。在配制过程中,蔗糖的内部和外部添加分别对冷冻解冻和干燥研究中的粒径保持和姜黄素含量具有显着影响。扫描电子显微镜显示大小约为131 nm的圆形囊泡,其与zeta粒度仪粒径测量值具有很好的相关性。红外光谱和X射线衍射表明糖和脂质体之间的相互作用以及最终冷冻干燥产物的非晶化。冻融与冻干之间的良好相关性表明,冻融研究是筛选冻干最佳冷冻保护剂的一种简便快捷的方法。

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