首页> 外文期刊>Journal of Chromatography, Biomedical Applications >Identification of the major metabolite of 2,5-bis(5-hydroxymethyl-2-tienyl)furan (NSC 652287), an antitumor agent, in the S9 subcellular fraction of dog liver cells
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Identification of the major metabolite of 2,5-bis(5-hydroxymethyl-2-tienyl)furan (NSC 652287), an antitumor agent, in the S9 subcellular fraction of dog liver cells

机译:在狗肝细胞S9亚细胞级分中鉴定抗肿瘤剂2,5-双(5-羟甲基-2-噻吩基)呋喃(NSC 652287)的主要代谢物

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摘要

α-Terthienyl (10 is a trithiophene found widely distributed in plants. Other naturally occurring trithiophenes are less widely distributed, but nonetheless exhibit potent antiviral and cytotoxic activities. A synthetic analog of 1, 2,5-bis(5-hydroxymethyl-2-thienyl)furan (2; NSC 652287) has recently been shown to possess exceptional activity and selectivity against several cell lines of the National Cancer Institute (NCI) anticancer drug screen. When incubated with the S9 subcellular fraction of dog liver cells, the concentration of 2 was observed to decline as a function of time, with a concomitant increase in a significant, time-dependent concentration of an unknown entity. The results of electron-ionization mass spectrometric analysis of the metabolite indicate an increase in 14 amu over that of 2, leading to suspicions that either an oxidation or a methylation had occurred. Results of differential derivatization and accurate mass analysis allow us to propose that metabolism of 2 involves the biotransformation of one of the two hydroxymethyl groups of 2 into a carboxylic acid functionality. This is further supported by separate experiments involving chemical oxidation and S9 incubation of 5-[5[5-hydroxymethyl-2-thienyl]-2-furanyl]2-thiophenecarboxaldehyde: comparing the mass spectra and gas chromatographic retention times of the resulting products to those of the identified metabolite of 2 show all to be the same.
机译:α-噻吩基(10是在植物中广泛分布的三噻吩。其他天然存在的三噻吩分布较广,但仍显示出强大的抗病毒和细胞毒性活性。1,2,5-双(5-羟甲基-2-噻吩基呋喃(2; NSC 652287)最近显示出对美国国家癌症研究所(NCI)抗癌药物筛选的几种细胞系具有优异的活性和选择性。当与犬肝细胞的S9亚细胞级分一起孵育时,观察到2随时间而下降,未知实体的浓度随时间的增加而显着增加,代谢物的电离质谱分析结果表明2的增加了14 amu。 ,导致人们怀疑发生了氧化或甲基化,微分衍生化和精确质量分析的结果使我们提出2的代谢有助于将2的两个羟甲基之一进行生物转化为羧酸官能团。进一步的独立实验进一步支持了这一点,这些实验涉及化学式氧化和5- [5 [5- [5-羟甲基-2-噻吩基] -2-呋喃基] 2-噻吩甲醛的S9孵育:将所得产物的质谱和气相色谱保留时间与鉴定出的2的代谢物的代谢物相同。

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