分散药物的亲脂性对固体脂质纳米颗粒物理化学和工艺性能的影响

A. Stancampiano, G. Puglisi, R. Pignatello
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引用次数: 13

摘要

合成萘普生(NAP)的一系列脂族酯,并将其包封在固体脂质纳米颗粒(SLN)中,考察其亲脂性对药物装载和释放的影响,以及SLN的理化性质和稳定性。酯类的亲脂性主要影响其对固体脂质基质的亲和力,与母体药物相比,改变了药物的释放曲线,而药物包封效率、SLN的工艺性能和稳定性不受影响。在室温下储存后,相对于新鲜制备的体系,酯的体外释放谱发生了变化,这取决于分散衍生物的亲脂性。特别是含有中链己酯和辛酯的SLN,储存后的药物释放量增加了70-80%;负载NAP或较低的乙基酯和丁基酯的SLN对药物释放率无显著影响。这些发现表明,NAP酯对纳米颗粒脂质网络的亲和力强烈依赖于它们的亲脂性,而后者的过度增加会对纳米颗粒中这些化合物的分配和保留产生负面影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Lipophilicity of Dispersed Drugs on the Physicochemical and Technological Properties of Solid Lipid Nanoparticles
A series of aliphatic esters of the NSAID naproxen (NAP) were synthesised and encapsulated in solid lipid nanoparticles (SLN) to evaluate the influence of lipophilicity on drug loading and release, as well as physicochemical properties and stability of SLN. The lipophilicity of esters mainly showed to influence their affinity for the solid lipid matrix, modifying the drug release profile compared to the parent drug, whereas drug encapsulation efficiency and the technological properties and stability of SLN were not affected. After storage at room temperature the in vitro release profiles of esters changed with respect to freshly prepared systems, depending on the lipophilicity of the dispersed derivative. In particular, the SLN containing the medium-chain hexyl and octyl esters showed a 70-80% increase of drug release after storage; SLN loaded with NAP or the lower ethyl and butyl esters did not show significant changes in the drug release rate. Such findings reveal that the affinity of NAP esters for the lipid network of the nanoparticles is strongly dependent on their lipophilicity and an excessive increase of the latter negatively influences the allocation and retention on these com- pounds in the nanoparticles.
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