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Entrapment efficiency and drug loading of curcumin nanostructured lipid carrier (NLC) formula

机译:螺旋蛋白纳米结构脂质载体(NLC)式的夹紧效率和药物负载

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Curcumin is a chemical compound that has low solubility and bioavailability and, for these reasons, limited biological effectiveness. For improvement, the solubility needs to be increased by nanotechnology and nanoparticles, among others. Nanostructured Lipid Carrier (NLC) is a new drug delivery system that offers several advantages, including a significant increase in drug solubility and entrapment efficiency. This study aimed to formulate curcumin into curcumin-loaded NLC preparation and determine its characteristics, absorption efficiency, and drug loading. The formulation used evaporation and solvent diffusion methods with three different concentrations, namely 5%, 10%, and 15%. Spectrophotometry and HPLC were employed to test the absorption efficiency and drug loading capacity.? The results showed that the curcumin-loaded NLC preparation containing 10% curcumin had stable characteristics and produced particles sized 17.4 nm with a polydispersity index of 0.574 and zeta potential of -63.43 mV. Based on the spectrophotometry results, the entrapment efficiency was 93.212%, and the drug loading capacity was 0.708%. Meanwhile, the HPLC showed that the entrapment efficiency was 93.007%, and the drug loading capacity was 0.795%.
机译:姜黄素是具有低溶解度和生物利用度的化合物,并且由于这些原因,有限的生物效果。为了改进,需要通过纳米技术和纳米颗粒增加溶解度。纳米结构脂质载体(NLC)是一种新的药物递送系统,提供了几种优点,包括药物溶解度和夹带效率的显着增加。本研究旨在将姜黄素与姜黄素加载的NLC制备,并确定其特征,吸收效率和药物载荷。制剂用蒸发和溶剂扩散方法具有三种不同的浓度,即5%,10%和15%。分光光度法和HPLC用于测试吸收效率和药物负载能力。结果表明,含有10%姜黄素的姜黄素的NLC制剂具有稳定的特性,并产生颗粒大小的17.4nm,具有0.574的多分散指数和-63.43mV的Zeta电位。基于分光光度法的结果,夹带效率为93.212%,药物负载能力为0.708%。同时,HPLC表明,夹带效率为93.007%,药物负载能量为0.795%。

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