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Analysis of liposomes using asymmetrical flow field-flow fractionation: Separation conditions and drug/lipid recovery

机译:使用非对称流场-流分馏法分析脂质体:分离条件和药物/脂质回收

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Liposomes composed of dipalmitoylphosphatidylcholine and dipalmitoylphosphatidylglycerol were analyzed by asymmetrical flow field-flow fractionation coupled with multi-angle laser light scattering. In addition to evaluation of fractionation conditions (flow conditions, sample mass, carrier liquid), radiolabeled drug-loaded liposomes were used to determine the liposome recovery and a potential loss of incorporated drug during fractionation. Neither sample concentration nor the cross-flow gradient distinctly affected the size results but at very low sample concentration (injected mass 5 μg) the fraction of larger vesicles was underestimated. Imbalance in the osmolality between the inner and outer aqueous phase resulted in liposome swelling after dilution in hypoosmotic carrier liquids. In contrast, liposome shrinking under hyperosmotic conditions was barely visible. The liposomes themselves eluted completely (lipid recoveries were close to 100%) but there was a loss of incorporated drugs during separation with a strong dependence on the octanol-water partition coefficient of the drug. Whereas corticosterone (partition coefficient μ2) was washed out more or less completely (recovery about 2%), loss of temoporfin (partition coefficient μ9) was only minor (recovery about 80%). All fractionations were well repeatable under the experimental conditions applied in the present study.
机译:通过不对称流场-流分离和多角度激光散射对由二棕榈酰磷脂酰胆碱和二棕榈酰磷脂酰甘油组成的脂质体进行了分析。除了评估分级条件(流动条件,样品质量,载液)外,还使用放射性标记的载有脂质的脂质体来确定脂质体的回收率以及分级过程中掺入药物的潜在损失。样品浓度和错流梯度均未明显影响尺寸结果,但在非常低的样品浓度(注射质量为5μg)下,较大囊泡的比例被低估了。内水相和外水相之间的重量摩尔渗透压浓度失衡导致脂质体在低渗透性载液中稀释后溶胀。相反,在高渗条件下脂质体的收缩几乎看不见。脂质体本身被完全洗脱(脂质回收率接近100%),但在分离过程中并入药物的丢失,对药物的辛醇-水分配系数有很强的依赖性。皮质酮(分配系数μ2)或多或少被完全洗净(回收率约为2%),而替莫泊芬(分配系数μ9)的损失很小(回收率约为80%)。在本研究中应用的实验条件下,所有分级分离均具有很好的重复性。

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