首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Chemical stability of phospholipid-stabilized supercooled smectic cholesteryl myristate nanoparticles
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Chemical stability of phospholipid-stabilized supercooled smectic cholesteryl myristate nanoparticles

机译:磷脂稳定的过冷近晶型肉豆蔻酸胆固醇酯纳米颗粒的化学稳定性

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摘要

Supercooled smectic cholesteryl myristate nanoparticle dispersions, a potential carrier system for lipophilic drugs, can be stabilized with phospholipids and their mixtures with sodium glycocholate. Such dispersions are commonly prepared by high-pressure melt homogenization. As cholesterol esters and phospholipids are both susceptible to oxidation and hydrolysis, the chemical stability of the dispersions was studied directly after preparation and during storage. Despite the high temperatures occurring during processing, no hydrolysis was detected in the dispersions directly after preparation. During storage for 5-8 months, dispersions solely stabilized with phospholipids exhibited massive phospholipid hydrolysis as determined by HPTLC. Phospholipid hydrolysis resulted in distinct changes of the physicochemical properties such as pH, zeta potential, and phase behavior of the dispersions. In systems additionally containing sodium glycocholate as stabilizer, hydrolytic degradation occurred only to a minor extent. Phospholipid hydrolysis could also be reduced by adding TRIS- or phosphate-buffer (10 mM, pH 7.4) to the aqueous phase before the preparation process. The addition of EDTA and α-tocopherol, which were mainly employed with the aim to suppress oxidation processes, also reduced the phospholipid hydrolysis to a certain extent. A partial oxidation of the cholesteryl myristate was observed in several dispersions by HPTLC, HPLC and mass spectrometry after long-term storage, but could be reduced by adding EDTA or α-tocopherol.
机译:过冷的近层肉豆蔻酸胆固醇肉豆蔻酸酯纳米颗粒分散体是亲脂性药物的潜在载体系统,可以用磷脂及其与糖胆酸钠的混合物稳定。这样的分散体通常通过高压熔体均质化来制备。由于胆固醇酯和磷脂都易于氧化和水解,因此在制备后和储存过程中直接研究了分散体的化学稳定性。尽管在加工过程中发生高温,但在制备后直接在分散体中未检测到水解。在存储5-8个月的过程中,仅用磷脂稳定的分散体显示出大量的磷脂水解,如HPTLC所测定。磷脂水解导致分散液的理化性质发生明显变化,例如pH,ζ电势和相行为。在另外含有甘胆酸钠作为稳定剂的体系中,水解降解仅在很小的程度上发生。在制备过程之前,也可以通过在水相中加入TRIS或磷酸盐缓冲液(10 mM,pH 7.4)来减少磷脂的水解。主要用于抑制氧化过程的EDTA和α-生育酚的添加也一定程度上降低了磷脂的水解。长期保存后,通过HPTLC,HPLC和质谱在几种分散体中观察到肉豆蔻酸胆固醇酯的部分氧化,但可以通过添加EDTA或α-生育酚来减少。

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