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首页> 外文期刊>Journal of Colloid and Interface Science >A mechanistic study of the permeation kinetics through biomembrane models: Gemcitabine-phospholipid bilayer interaction
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A mechanistic study of the permeation kinetics through biomembrane models: Gemcitabine-phospholipid bilayer interaction

机译:通过生物膜模型的渗透动力学的机理研究:吉西他滨-磷脂双层相互作用

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The kinetics of the interaction between Gemcitabine (a new anticancer drug) and phospholipid membrane models was investigated. This kind of study is of particular importance both in hypothesizing the interaction of Gemcitabine with mammalian cell membranes and in evaluating the potentiality of liposomes as a Gemcitabine delivery system. Unilamellar (LUV) and multilamellar (MLV) membrane models were made up of dimyristoylphosphatidylcholine (DMPC), dimyristoylphosphatidic acid sodium salt (DMPA), or a DMPC-DMPA mixture (1:1 molar ratio). Gemcitabine-phospholipid vesicle interaction was studied by differential scanning calorimetry (DSC) measurements performed at different time intervals. The findings showed slower permeation kinetics of Gemcitabine through MLV than LUV which, at the same lipid/water ratio, are characterized by a larger lipid surface in contact with the drug aqueous solution. Another interesting difference between LUV and MLV is the onset of a transient two-peak structure during the DSC scans of MLVs. The effect is due to the unequal distribution of the drug between the outer and inner bilayers of the multilamellar vesicles during the permeation kinetics. At equilibrium the two-peak structure merges into a unique peak. This finding may provide useful information about the lipid bilayer permeability in model membranes. (c) 2004 Published by Elsevier Inc.
机译:研究了吉西他滨(一种新的抗癌药物)与磷脂膜模型之间相互作用的动力学。此类研究在假设吉西他滨与哺乳动物细胞膜的相互作用以及评估脂质体作为吉西他滨递送系统的潜力方面特别重要。单层(LUV)和多层(MLV)膜模型由二肉豆蔻酰基磷脂酰胆碱(DMPC),二肉豆蔻酰基磷脂酸钠盐(DMPA)或DMPC-DMPA混合物(1:1摩尔比)组成。通过在不同时间间隔进行的差示扫描量热法(DSC)测量研究了吉西他滨-磷脂囊泡的相互作用。研究结果表明吉非他滨通过MLV的渗透动力学比LUV慢,而LUV在相同的脂质/水比例下,其特征是与药物水溶液接触的脂质表面更大。 LUV和MLV之间的另一个有趣的区别是在MLV的DSC扫描过程中出现了一个短暂的两峰结构。该效果是由于在渗透动力学过程中多层囊泡的外双层和内双层之间药物的不均匀分布所致。在平衡状态下,两峰结构合并为一个唯一的峰。该发现可能提供有关模型膜中脂质双层渗透性的有用信息。 (c)2004年由Elsevier Inc.发布。

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