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Optimization of β-carotene loaded solid lipid nanoparticles preparation using a high shear homogenization technique

机译:高剪切均质技术优化负载β-胡萝卜素的固体脂质纳米粒的制备

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Using statistical experimental design methodologies, the solid lipid nanoparticle design space was found to be more robust than previously shown in literature. Formulation and high shear homogenization process effects on solid lipid nanoparticle size distribution, stability, drug loading, and drug release have been investigated. Experimentation indicated stearic acid as the optimal lipid, sodium taurocholate as the optimal cosurfactant, an optimum lecithin to sodium taurocholate ratio of 3:1, and an inverse relationship between mixing time and speed and nanoparticle size and polydispersity. Having defined the base solid lipid nanoparticle system, β-carotene was incorporated into stearic acid nanoparticles to investigate the effects of introducing a drug into the base solid lipid nanoparticle system. The presence of β-carotene produced a significant effect on the optimal formulation and process conditions, but the design space was found to be robust enough to accommodate the drug. β-Carotene entrapment efficiency averaged 40%. β-Carotene was retained in the nanoparticles for 1 month. As demonstrated herein, solid lipid nanoparticle technology can be sufficiently robust from a design standpoint to become commercially viable.
机译:使用统计实验设计方法,发现固体脂质纳米颗粒的设计空间比以前文献中显示的更坚固。研究了配方和高剪切均质化过程对固体脂质纳米颗粒尺寸分布,稳定性,载药量和药物释放的影响。实验表明,硬脂酸是最佳脂质,牛磺胆酸钠是最佳助表面活性剂,卵磷脂与牛磺胆酸钠的最佳比例为3:1,混合时间和速度与纳米颗粒大小和多分散性呈反比关系。定义了基础固体脂质纳米颗粒系统后,将β-胡萝卜素掺入硬脂酸纳米颗粒中,以研究将药物引入基础固体脂质纳米颗粒系统中的作用。 β-胡萝卜素的存在对最佳配方和工艺条件产生了重大影响,但是发现设计空间足够坚固,可以容纳药物。 β-胡萝卜素的包封率平均为40%。 β-胡萝卜素在纳米颗粒中保留1个月。如本文所证明的,从设计的角度来看,固体脂质纳米颗粒技术可以足够坚固以使其在商业上可行。

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