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亲脂性脱氧核苷类似物依拉菌素和 CP-4126 的代谢和积累。

Metabolism and accumulation of the lipophilic deoxynucleoside analogs elacytarabine and CP-4126.

机构信息

Department of Medical Oncology, VU University Medical Center, PO Box 7057, 1007 MB, Amsterdam, the Netherlands.

出版信息

Invest New Drugs. 2012 Oct;30(5):1908-16. doi: 10.1007/s10637-011-9756-8. Epub 2011 Oct 15.

Abstract

Cytarabine (ara-C) and gemcitabine (dFdC) are commonly used anticancer drugs, which depend on the equilibrative (ENT) and concentrative-nucleoside-transporters to enter the cell. To bypass transport-related drug resistance, lipophilic derivatives elacytarabine (CP-4055), ara-C-5'elaidic-acid-ester, and CP-4126, (CO 1.01) gemcitabine-5'elaidic-acid-ester, were investigated for the entry into the cell, distribution, metabolism and retention. The leukemic CEM-cell-line and its deoxycytidine-kinase deficient variant (CEM/dCK-) were exposed for 30 and 60 min to the radiolabeled drugs; followed by culture in drug-free medium in order to determine drug retention in the cell. The cellular fractions were analyzed with thin-layer-chromatography and HPLC. Elacytarabine and CP-4126 were converted to the parent compounds both inside and outside the cell (35-45%). The ENT-inhibitor dipyridamole did not affect their uptake or retention. Inside the cell Elacytarabine and CP-4126 predominantly localized in the membrane and cytosolic fraction, leading to a long retention after removal of the medium. In contrast, in cells exposed to the parent drugs ara-C and dFdC, intracellular drug concentration increased during exposure but decreased to undetectable levels after drug removal. In the dCK- cell line, no metabolism was observed. The concentrations of ara-CTP and dFdCTP reached a peak at the end of the incubation with the drugs, and decreased after drug removal; peak levels of dFdCTP were 35 times higher than ara-CTP and was retained better. In contrast, after exposure to elacytarabine or CP-4126, ara-CTP and dFdCTP levels continued to increase not only during exposure but also during 120 min after removal of the elacytarabine and CP-4126. Levels of ara-CTP and dFdCTP were higher than after exposure to the parent drugs. In conclusion, the lipophilic derivatives elacytarabine and CP-4126 showed a nucleoside-transporter independent uptake, with long retention of the active nucleotides. These lipophilic nucleoside analogues are new chemical entities suitable for novel clinical applications.

摘要

阿糖胞苷(ara-C)和吉西他滨(dFdC)是常用的抗癌药物,它们依赖于平衡核苷转运体(ENT)和核苷转运体进入细胞。为了绕过与转运相关的药物耐药性,亲脂性衍生物依拉他滨(CP-4055)、阿糖胞苷-5'油酸酯和 CP-4126(CO 1.01)吉西他滨-5'油酸酯被研究用于进入细胞、分布、代谢和保留。用放射性标记的药物处理白血病 CEM 细胞系及其脱氧胞苷激酶缺陷型变体(CEM/dCK-)30 和 60 分钟;然后在无药物的培养基中培养,以确定细胞内药物的保留。用薄层色谱法和高效液相色谱法分析细胞成分。依拉他滨和 CP-4126 在细胞内外均转化为母体化合物(35-45%)。ENT 抑制剂双嘧达莫不影响它们的摄取或保留。在细胞内,依拉他滨和 CP-4126 主要定位于膜和胞质部分,导致在去除培养基后长时间保留。相比之下,在用母体药物 ara-C 和 dFdC 处理的细胞中,细胞内药物浓度在暴露期间增加,但在去除药物后降至不可检测水平。在 dCK-细胞系中,未观察到代谢。用药物孵育结束时,ara-CTP 和 dFdCTP 浓度达到峰值,并在药物去除后下降;dFdCTP 的峰值水平是 ara-CTP 的 35 倍,保留更好。相比之下,在用依拉他滨或 CP-4126 处理后,ara-CTP 和 dFdCTP 水平不仅在暴露期间,而且在去除依拉他滨和 CP-4126 后 120 分钟内持续增加。ara-CTP 和 dFdCTP 的水平高于暴露于母体药物后的水平。总之,亲脂性衍生物依拉他滨和 CP-4126 表现出核苷转运体非依赖性摄取,并具有活性核苷酸的长期保留。这些亲脂性核苷类似物是适合新的临床应用的新化学实体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88b9/3432794/2102fda4fd9d/10637_2011_9756_Fig1_HTML.jpg

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