首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Tumor trapping of 5-fluorouracil: in vivo 19F NMR spectroscopic pharmacokinetics in tumor-bearing humans and rabbits.
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Tumor trapping of 5-fluorouracil: in vivo 19F NMR spectroscopic pharmacokinetics in tumor-bearing humans and rabbits.

机译:5-氟尿嘧啶的肿瘤捕获:荷瘤人和兔体内的19F NMR光谱体内药代动力学。

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摘要

The pharmacokinetics of 5-fluorouracil (5FU) were studied in vivo in patients with discrete tumors and in rabbits bearing VX2 tumors by using 19F NMR spectroscopy. The human studies were conducted in a 1.5-T Magnetom magnetic resonance imager (Siemens), and the rabbit studies were conducted in a 4.7-T GE/Nicolet 33-cm bore magnet. Free 5FU was detected in the tumors of four of the six patients and in all VX2 tumors but not in normal rabbit tissues. No other metabolites were seen in these tumors, contrary to the extensive catabolism we had previously documented using 19F NMR spectroscopy in both human and animal livers. The tumor pool of free 5FU in those human tumors that trapped 5FU was determined to have a half-life of 0.4-2.1 hr, much longer than expected and significantly longer than the half-life of 5FU in blood (5-15 min), whereas the half-life of trapped 5FU in the VX2 tumors ranged from 1.05 to 1.22 hr. In this initial experience, patient response to chemotherapy may correlate with extent of trapping free 5FU in the human tumors. These studies document that NMR spectroscopy is clinically feasible in vivo, allows noninvasive pharmacokinetic analyses at a drug-target tissue in real time, and may produce therapeutically important information at the time of drug administration. Demonstration of the trapping of 5FU in tumors provides both a model for studying metabolic modulation in experimental tumors (in animals) and a method for testing modulation strategies clinically (in patients).
机译:使用19F NMR光谱法在患有离散肿瘤的患者和患有VX2肿瘤的兔子体内研究了5-氟尿嘧啶(5FU)的药代动力学。人体研究是在1.5-T Magnetom磁共振成像仪(Siemens)中进行的,而兔子研究是在4.7-T GE / Nicolet内径33厘米的磁体中进行的。在六位患者中的四位和所有VX2肿瘤中检测到游离5FU,但在正常兔组织中未检测到。在这些肿瘤中未见其他代谢物,这与我们先前使用19 F NMR光谱法在人和动物肝脏中广泛记录的分解代谢相反。确定捕获了5FU的人类肿瘤中游离5FU的肿瘤库的半衰期为0.4-2.1小时,比预期的要长得多,并且比血液中5FU的半衰期(5-15分钟)要长得多,而被捕获的5FU在VX2肿瘤中的半衰期为1.05至1.22小时。在这种最初的经验中,患者对化学疗法的反应可能与在人肿瘤中捕获游离5FU的程度有关。这些研究表明,NMR光谱在体内临床上可行,可以实时在药物靶组织上进行无创药代动力学分析,并且在给药时可能产生重要的治疗信息。在肿瘤中捕获5FU的证明既提供了研究实验性肿瘤(动物)中代谢调节的模型,也提供了临床中(患者)测试调节策略的方法。

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