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首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >The in vivo and in vitro metabolic profile of 99mTc-NC100668, a new tracer for imaging venous thromboembolism: identification and biodistribution of the principal radiolabeled metabolite.
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The in vivo and in vitro metabolic profile of 99mTc-NC100668, a new tracer for imaging venous thromboembolism: identification and biodistribution of the principal radiolabeled metabolite.

机译:99mTc-NC100668的体内和体外代谢谱,一种用于静脉血栓栓塞成像的新型示踪剂:主要放射性标记代谢物的鉴定和生物分布。

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摘要

(99m)Tc-NC100668 [Acetyl-Asn-Gln-Glu-Gln-Val-Ser-Pro-Tyr(3-iodo)-Thr-Leu-Leu-Lys-Gly-NC1001 94] is a radiopharmaceutical imaging agent being developed to aid the diagnosis of thromboembolism. The stability profile of (99m)Tc-NC100668 was investigated by high-performance liquid chromatography (HPLC) after in vitro exposure to blood and plasma obtained from rat and human, as well as to urine and bile obtained from rat. The metabolic profile of (99m)Tc-NC100668 exposed to human and rat hepatic S9 (a liver homogenate-rich cytochrome P450) was also studied. The profile of (99m)Tc-labeled species in plasma, urine, and bile was investigated following i.v. administration of (99m)Tc-NC100668 to rat. The major species observed in vitro and in vivo consisted of the (99m)Tc-chelator (NC100194) [N,N-Bis(N-(1,1-dimethyl-2-(hydroxylimino-)propyl)aminoethyl)aminoethylami ne] attached to the C-terminal amino acid residue and referred to as (99m)Tc-complex of Gly-NC100194. The identity of the major metabolite was confirmed by cochromatography with an authentic standard and the genuine metabolite using a second HPLC method. The minor metabolites were sodium pertechnetate ((99m)Tc) and (99m)Tc-NC100194. In addition, a small number of other species were transiently observed in vitro; they were not investigated further. The biodistribution of the major metabolite was studied in male Wistar rats. The affinity of the major metabolite toward plasma clot was established using a plasma clot-forming assay. A minor uptake of (99m)Tc-complex of Gly-NC100194 in the plasma clot and a rapid removal from the body were noted. In conclusion, the metabolites of (99m)Tc-NC100668 are not anticipated to have a negative impact on the ability of the test substance to image blood clots.
机译:(99m)Tc-NC100668 [乙酰基-Asn-Gln-Glu-Gln-Val-Ser-Pro-Tyr(3-碘)-Thr-Leu-Leu-Lys-Gly-NC1001 94]是正在开发的放射性药物成像剂有助于血栓栓塞的诊断。 (99m)Tc-NC100668在体外暴露于大鼠和人的血液和血浆以及大鼠和大鼠的尿液和胆汁后,通过高效液相色谱(HPLC)研究了稳定性。还研究了暴露于人和大鼠肝S9(富含肝匀浆的细胞色素P450)的(99m)Tc-NC100668的代谢谱。静脉注射后,研究了血浆,尿液和胆汁中(99m)Tc标记的物种的分布情况。对大鼠使用(99m)Tc-NC100668在体外和体内观察到的主要物种包括(99m)Tc螯合剂(NC100194)[N,N-双(N-(1,1-二甲基-2-(羟基limino-)丙基)氨基乙基)氨基乙基酰胺]连接至C端氨基酸残基的残基,称为Gly-NC100194的(99m)Tc复合物。主要代谢物的身份通过使用真实的标准品和真正的代谢物的共色谱法使用第二种HPLC方法确认。次要代谢产物是高tech酸钠((99m)Tc)和(99m)Tc-NC100194。此外,在体外短暂观察到少量其他物种;他们没有进一步调查。在雄性Wistar大鼠中研究了主要代谢产物的生物分布。使用血浆凝块形成测定法建立了主要代谢物对血浆凝块的亲和力。注意到血浆凝块中Gly-NC100194的(99m)Tc复合物吸收较少,并迅速从体内清除。总之,预计(99m)Tc-NC100668的代谢物不会对测试物质成像血块的能力产生负面影响。

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