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阿霉素和其他亲脂性胺类响应跨膜pH梯度而积累进入大单层囊泡。

Accumulation of doxorubicin and other lipophilic amines into large unilamellar vesicles in response to transmembrane pH gradients.

作者信息

Harrigan P R, Wong K F, Redelmeier T E, Wheeler J J, Cullis P R

机构信息

Department of Biochemistry, University of British Columbia, Vancouver, Canada.

出版信息

Biochim Biophys Acta. 1993 Jul 4;1149(2):329-38. doi: 10.1016/0005-2736(93)90218-o.

Abstract

The uptake of the anticancer agent doxorubicin into large unilamellar vesicles (LUVs) exhibiting a transmembrane pH gradient (inside acidic) has been investigated using both kinetic and equilibrium approaches. It is shown that doxorubicin uptake into the vesicles proceeds via permeation of the neutral form and that uptake of the drug into LUVs with an acidic interior is associated with high activation energies (Ea) which are markedly sensitive to lipid composition. Doxorubicin uptake into egg-yolk phosphatidylcholine (EPC) LUVs exhibited an activation energy of 28 kcal/mol, whereas for uptake into EPC/cholesterol (55:45, mol/mol) LUVs Ea = 38 kcal/mol. The equilibrium uptake results obtained are analyzed in terms of a model which includes the buffering capacity of the interior medium and the effects of drug partitioning into the interior monolayer. From the equilibrium uptake behaviour, a doxorubicin partition coefficient of 70 can be estimated for EPC/cholesterol bilayers. For a 100 nm diameter LUV, this indicates that more than 95% of encapsulated doxorubicin is partitioned into the inner monolayer, presumably located at the lipid/water interface. This is consistent with 13C-NMR behaviour as a large proportion of the drug appears membrane associated after accumulation as reflected by a broadening beyond detection of the 13C-NMR spectrum. The equilibrium accumulation behaviour of a variety of other lipophilic amines is also examined in terms of the partitioning model.

摘要

采用动力学和平衡法研究了抗癌药物阿霉素进入具有跨膜pH梯度(内部呈酸性)的大单层囊泡(LUVs)的情况。结果表明,阿霉素进入囊泡是通过中性形式的渗透进行的,并且药物进入内部呈酸性的LUVs与高活化能(Ea)相关,而活化能对脂质组成非常敏感。阿霉素进入蛋黄卵磷脂(EPC)LUVs的活化能为28千卡/摩尔,而进入EPC/胆固醇(55:45,摩尔/摩尔)LUVs的Ea = 38千卡/摩尔。根据一个模型分析了所获得的平衡摄取结果,该模型包括内部介质的缓冲能力以及药物分配到内部单层的影响。从平衡摄取行为来看,对于EPC/胆固醇双层膜,阿霉素的分配系数估计为70。对于直径为100纳米的LUV,这表明超过95%的包封阿霉素分配到内部单层,推测位于脂质/水界面。这与13C-NMR行为一致,因为大量药物在积累后似乎与膜相关,这通过13C-NMR谱线变宽超出检测范围得以体现。还根据分配模型研究了多种其他亲脂性胺的平衡积累行为。

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