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Solid lipid nanoparticle preparation by a warm microemulsion based process: Influence of microemulsion microstructure

机译:通过基于温微乳液的工艺制备固体脂质纳米颗粒:微乳液微观结构的影响

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摘要

Warm microemulsions (WME) containing lipids are used as starting systems to obtain solid lipid nanoparticles (SLN) in alternative processes to those based on high pressure homogenization technique. SLN characteristics can be influenced by the microemulsion composition and the specific conditions adopted in the quenching process related to the transformation of WME into nanoparticles. To establish optimized conditions for the production of SLN starting from WME, in a first step of this work we have defined the microstructure of warm microemulsions highlighted in the lecithin (LCT)/water (W)/tripalmitin (TP)/1-butanol (B)/taurocholate sodium salt (ST) phase behavior at 70 °C. Moreover, we have further studied the LCT/W/TP/B system by evaluating the effect on the microemulsion area due to the LCT/B weight ratio, the replacement of 1-butanol with different alcohols (ROH), and the addition of taurocholate sodium salt (ST) at different LCT/ST weight ratios. The microstructure of the isotropic phase region obtained in the presence of ST has been characterized by both 1H NMR PGSE measurements and electrical conductivity. The characteristics of final nanoparticles are discussed taking into account both the microstructure of the parent WME and the conditions of the quenching process leading to SLN. The present results highlight the relevance of the microstructural characteristic of WME to assure the obtainment of SLN with average diameter in the order of 100-200 nm and narrow size distribution.
机译:包含脂质的温暖微乳液(WME)被用作起始系统,以替代基于高压均质技术的固体脂质纳米颗粒(SLN)。 SLN特性可能受微乳液组成和淬火过程中采用的与WME转变为纳米颗粒有关的特定条件的影响。为了建立从WME开始生产SLN的优化条件,在这项工作的第一步中,我们定义了卵磷脂(LCT)/水(W)/三棕榈酸(TP)/ 1-丁醇(突出显示)中温暖的微乳液的微观结构( B)/牛磺胆酸钠盐(ST)在70°C下的相行为。此外,我们通过评估LCT / B重量比,用不同的醇(ROH)取代1-丁醇和添加牛磺胆酸盐对微乳化面积的影响,进一步研究了LCT / W / TP / B系统。 LCT / ST重量比不同的钠盐(ST)。在ST存在下获得的各向同性相区域的微观结构已通过1 H NMR PGSE测量和电导率进行了表征。考虑到母体WME的微观结构和导致SLN的淬火过程的条件,讨论了最终纳米颗粒的特性。目前的结果凸显了WME的微结构特征与确保获得SLN的相关性,SLN的平均直径约为100-200 nm,尺寸分布较窄。

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