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通过Langmuir-Blodgett技术研究亲脂性吉西他滨前药与生物膜模型的相互作用。

Interaction of lipophilic gemcitabine prodrugs with biomembrane models studied by Langmuir-Blodgett technique.

作者信息

Castelli Francesco, Sarpietro Maria Grazia, Rocco Flavio, Ceruti Maurizio, Cattel Luigi

机构信息

Dipartimento di Scienze Chimiche, Università degli Studi di Catania, Viale Andrea Doria, 6, 95125 Catania, Italy.

出版信息

J Colloid Interface Sci. 2007 Sep 1;313(1):363-8. doi: 10.1016/j.jcis.2007.04.018. Epub 2007 Apr 13.

DOI:10.1016/j.jcis.2007.04.018
PMID:17485098
Abstract

The stability and bioavailability of anticancer agents, such as gemcitabine, can be increased by forming prodrugs. Gemcitabine is rapidly deaminated to the inactive metabolite (2('),2(')-difluorodeoxyuridine), thus to improve its stability a series of increasingly lipophilic gemcitabine prodrugs linked through the 4-amino group to valeroyl, lauroyl, and stearoyl acyl chains were synthesized. Studies of monolayer properties are important to improve understanding of biological phenomena involving lipid/gemcitabine or lipid/gemcitabine derivative interactions. The interfacial behavior of monolayers constituted by DMPC plus gemcitabine or lipophilic gemcitabine prodrugs at increasing molar fractions was studied at the air/water interface at temperatures below (10 degrees C) and above (37 degrees C) the lipid phase transition. The effect of the hydrophobic chain length of gemcitabine derivatives on the isotherm of pure DMPC was investigated by surface tension measurement, and the results are reported as molar fractions as a function of mean molecular area per molecule. The results show that the compounds interact with DMPC producing mixed monolayers that are subject to an expansion effect, depending on the prodrug chain length. The results give useful hints of the interaction of these prodrugs with biological membranes and increase knowledge on the incorporation site of such compounds, as a function of their lipophilicity, in a lipid carrier; they may lead to improved liposomal formulation design.

摘要

通过形成前药可以提高吉西他滨等抗癌药物的稳定性和生物利用度。吉西他滨会迅速脱氨生成无活性代谢物(2('),2(')-二氟脱氧尿苷),因此,为提高其稳定性,合成了一系列通过4-氨基与戊酰基、月桂酰基和硬脂酰基链相连的亲脂性逐渐增强的吉西他滨前药。单层性质的研究对于增进对涉及脂质/吉西他滨或脂质/吉西他滨衍生物相互作用的生物学现象的理解很重要。在低于脂质相变温度(10摄氏度)和高于脂质相变温度(37摄氏度)的条件下,研究了由DMPC加吉西他滨或亲脂性吉西他滨前药构成的单层在空气/水界面处随着摩尔分数增加的界面行为。通过表面张力测量研究了吉西他滨衍生物疏水链长度对纯DMPC等温线的影响,结果以摩尔分数表示为每分子平均分子面积的函数。结果表明,这些化合物与DMPC相互作用形成混合单层,该混合单层会受到膨胀效应的影响,这取决于前药的链长。这些结果为这些前药与生物膜的相互作用提供了有用的线索,并增加了关于此类化合物根据其亲脂性在脂质载体中的掺入位点的知识;它们可能会带来改进的脂质体制剂设计。

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