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新型肿瘤选择性氟嘧啶氨基甲酸酯卡培他滨的设计与合成。

The design and synthesis of a new tumor-selective fluoropyrimidine carbamate, capecitabine.

作者信息

Shimma N, Umeda I, Arasaki M, Murasaki C, Masubuchi K, Kohchi Y, Miwa M, Ura M, Sawada N, Tahara H, Kuruma I, Horii I, Ishitsuka H

机构信息

Department of Chemistry, Nippon Roche Research Center, Kamakura City, Kanagawa, Japan.

出版信息

Bioorg Med Chem. 2000 Jul;8(7):1697-706. doi: 10.1016/s0968-0896(00)00087-0.

Abstract

To identify an orally available fluoropyrimidine having efficacy and safety profiles greatly improved over those of parenteral 5-fluorouracil (5-FU: 1), we designed a 5-FU prodrug that would pass intact through the intestinal mucisa and be sequentially converted to 5-FU by enzymes that are highly expressed in the human liver and then in tumors. Among various N4-substituted 5'-deoxy-5-fluorocytidine derivatives, a series of N4-alkoxycarbonyl derivatives were hydrolyzed to 5'-deoxy-5-fluorocytidine (5'-DFCR: 8) specifically by carboxylesterase, which exists preferentially in the liver in humans and monkeys. Particularly, derivatives having an N4-alkoxylcarbonyl moiety with a C4-C6 alkyl chain were the most susceptible to the human carboxylesterase. Those were then converted to 5'-deoxy-5-fluorouridine (5'-DFUR: 4) by cytidine deaminase highly expressed in the liver and solid tumors and finally to 5-FU by thymidine phosphorylase (dThdPase) preferentially located in tumors. When administered orally to monkeys, a derivative having the N4-alkoxylcarbonyl moiety with a C5 alkyl chain (capecitabine: 6) The highest AUC and Cmax for plasma 5'-DFUR. In tests with various human cancer xenograft models, capecitabine was more efficacious at wider dose ranges than either 5-FU or 5'-DFUR and was significantly less toxic to the intestinal tract than the others in monkeys.

摘要

为了鉴定一种口服可用的氟嘧啶,其疗效和安全性比静脉注射用5-氟尿嘧啶(5-FU:1)有显著改善,我们设计了一种5-FU前药,它能完整地穿过肠黏膜,并被在人肝脏及随后在肿瘤中高表达的酶依次转化为5-FU。在各种N4-取代的5'-脱氧-5-氟胞苷衍生物中,一系列N4-烷氧羰基衍生物可被羧酸酯酶特异性水解为5'-脱氧-5-氟胞苷(5'-DFCR:8),羧酸酯酶在人和猴的肝脏中优先存在。特别地,具有C4-C6烷基链的N4-烷氧羰基部分的衍生物对人羧酸酯酶最敏感。这些衍生物随后被肝脏和实体瘤中高表达的胞苷脱氨酶转化为5'-脱氧-5-氟尿苷(5'-DFUR:4),最后被优先位于肿瘤中的胸苷磷酸化酶(dThdPase)转化为5-FU。当给猴口服时,具有C5烷基链的N4-烷氧羰基部分的衍生物(卡培他滨:6)血浆5'-DFUR的AUC和Cmax最高。在各种人癌异种移植模型试验中,卡培他滨在更宽剂量范围内比5-FU或5'-DFUR更有效,并且在猴中对肠道的毒性明显低于其他药物。

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