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蒽环类药物对带负电荷模型膜的选择性:氨基的作用。

Selectivity of the anthracyclines for negatively charged model membranes: role of the amino group.

作者信息

Burke T G, Sartorelli A C, Tritton T R

机构信息

Department of Pharmacology, University of Vermont Medical School, Burlington 05405.

出版信息

Cancer Chemother Pharmacol. 1988;21(4):274-80. doi: 10.1007/BF00264191.

Abstract

The equilibrium-binding affinities of six adriamycin analogues and four daunomycin derivatives for negatively charged dimyristoyl phosphatidylcholine/dimyristoyl phosphatidic acid (DMPC/DMPA) small unilamellar vesicles are compared with values for electroneutral DMPC liposomes. Binding of the daunomycin series to negatively charged dimyristoyl phosphatidyl glycerol (DMPG) vesicles was also examined. Under physiological conditions of pH and ionic strength, substitution of the amino group of adriamycin or daunomycin resulted in a reduced affinity for negatively charged bilayers, even if the substituent enhanced the degree of ionization of the amine. Decreasing the ionic strength increases the binding affinity for acidic membranes but decreases the drug affinity for neutral membranes. We propose that the electrostatic bond of the phosphate-amino group that has been shown to exist between anthracyclines and phosphatidic acid is sterically destabilized by substitution of the amino group. The results are consistent with a mode of anthracycline binding to negatively charged membranes which is driven by hydrophobic and electrostatic considerations but is destabilized by steric bulk at the amino group. The data also provide insight into the design of new anthracyclines with high membrane affinities and reduced uptake; such directed interaction with plasma membranes may enhance antineoplastic potential while reducing cardiac toxicity.

摘要

将六种阿霉素类似物和四种柔红霉素衍生物与带负电荷的二肉豆蔻酰磷脂酰胆碱/二肉豆蔻酰磷脂酸(DMPC/DMPA)小单层囊泡的平衡结合亲和力与电中性DMPC脂质体的值进行了比较。还研究了柔红霉素系列与带负电荷的二肉豆蔻酰磷脂酰甘油(DMPG)囊泡的结合。在生理pH和离子强度条件下,阿霉素或柔红霉素氨基的取代导致对带负电荷双层膜的亲和力降低,即使取代基增强了胺的电离程度。降低离子强度会增加对酸性膜的结合亲和力,但会降低药物对中性膜的亲和力。我们提出,已证明存在于蒽环类药物和磷脂酸之间的磷酸-氨基静电键会因氨基的取代而在空间上不稳定。结果与蒽环类药物与带负电荷膜的结合模式一致,这种结合模式由疏水和静电因素驱动,但会因氨基处的空间位阻而不稳定。这些数据还为设计具有高膜亲和力和减少摄取的新型蒽环类药物提供了见解;与质膜的这种定向相互作用可能会增强抗肿瘤潜力,同时降低心脏毒性。

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