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Development and Optimization of Alpha-Pinene-Loaded Solid Lipid Nanoparticles (SLN) Using Experimental Factorial Design and Dispersion Analysis

机译:开发和优化的α-Analysis烯固体脂质纳米颗粒(SLN)的实验因子设计和分散分析。

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摘要

The encapsulation of bicyclic monoterpene α-pinene into solid lipid nanoparticles (SLN) is reported using experimental factorial design, followed by high-end dispersion analyzer LUMiSizer®. This equipment allows the characterization of the α-pinene-loaded SLN instability phenomena (e.g., sedimentation, flotation or coagulation), as well as the determination of the velocity distribution in the centrifugal field and the particle size distribution. In this work, SLN were produced by hot high-pressure homogenization technique. The influence of the independent variables, surfactant and lipid ratio on the physicochemical properties of SLN, such as mean particle size (Z-Ave), polydispersity index (PDI) and zeta potential (ZP), was estimated using a 22-factorial design. The Z-Ave and PDI were analyzed by dynamic light scattering, while ZP measurements were recorded by electrophoretic light scattering. Based on the obtained results, the optimal SLN dispersion was composed of 1 wt.% of α-pinene, 4 wt.% of solid lipid (Imwitor® 900 K) and 2.5 wt.% of surfactant (Poloxamer 188), depicting 136.7 nm of Z-Ave, 0.170 of PDI and 0 mV of ZP. Furthermore, LUMISizer® has been successfully used in the stability analysis of α-pinene-loaded SLN.
机译:据报道,通过实验性因子设计,然后使用高端分散分析仪LUMiSizer ®,将双环单萜α-pine烯封装到固体脂质纳米颗粒(SLN)中。该设备可以表征负载α-pine烯的SLN不稳定性现象(例如沉淀,浮选或凝结),还可以确定离心场中的速度分布和粒度分布。在这项工作中,SLN是通过热高压均质技术生产的。使用2 2估算独立变量,表面活性剂和脂质比率对SLN的理化性质的影响,例如平均粒径(Z-Ave),多分散指数(PDI)和Zeta电位(ZP) 析因设计。 Z-Ave和PDI通过动态光散射进行分析,而ZP测量通过电泳光散射进行记录。根据获得的结果,最佳的SLN分散体由1重量%的α-pine烯,4重量%的固体脂质(Imwitor 900 K)和2.5重量%的表面活性剂(泊洛沙姆188),描绘了136.7 nm的Z-Ave,0.170的PDI和0 mV的ZP。此外,LUMISizer ®已成功用于负载α-pine烯的SLN的稳定性分析。

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