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Cellular Influx Efflux and Anabolism of 3-Carboranyl Thymidine Analogs: Potential Boron Delivery Agents for Neutron Capture Therapy

机译:3-碳硼烷基胸苷类似物的细胞流入流出和合成代谢:中子俘获治疗的潜在硼传递剂

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摘要

3-[5-{2-(2,3-Dihydroxyprop-1-yl)-o-carboran-1-yl}pentan-1-yl]thymidine (N5-2OH) is a first generation 3-carboranyl thymidine analog (3CTA) that has been intensively studied as a boron-10 (10B) delivery agent for neutron capture therapy (NCT). N5-2OH is an excellent substrate of thymidine kinase 1 and its favorable biodistribution profile in rodents led to successful preclinical NCT of rats bearing intracerebral RG2 glioma. The present study explored cellular influx and efflux mechanisms of N5-2OH, as well as its intracellular anabolism beyond the monophosphate level. N5-2OH entered cultured human CCRF-CEM cells via passive diffusion, whereas the multidrug resistance-associated protein 4 appeared to be a major mediator of N5-2OH monophosphate efflux. N5-2OH was effectively monophosphorylated in cultured murine L929 [thymidine kinase 1 (TK1+)] cells whereas formation of N5-2OH monophosphate was markedly lower in L929 (TK1) cell variants. Further metabolism to the di- and triphosphate forms was not observed in any of the cell lines. Regardless of monophosphorylation, parental N5-2OH was the major intracellular component in both TK1+ and TK1 cells. Phosphate transfer experiments with enzyme preparations showed that N5-2OH monophosphate, as well as the monophosphate of a second 3-carboranyl thymidine analog [3-[5-(o-carboran-1-yl)pentan-1-yl]thymidine (N5)], were not substrates of thymidine monophosphate kinase. Surprisingly, N5-diphosphate was phosphorylated by nucleoside diphosphate kinase although N5-triphosphate apparently was not a substrate of DNA polymerase. Our results provide valuable information on the cellular metabolism and pharmacokinetic profile of 3-carboranyl thymidine analogs.
机译:3- [5- {2-(2,3-二羟基丙-1-基)-邻-卡波喃-1-基}戊基-1-基]胸苷(N5-2OH)是第一代3-碳戊基胸苷类似物( 3CTA)已作为中子俘获疗法(NCT)的硼10( 10 B)传递剂进行了深入研究。 N5-2OH是胸苷激酶1的优良底物,其在啮齿动物中的良好生物分布特征导致了携带脑RG2神经胶质瘤的大鼠成功进行临床前NCT。本研究探讨了N5-2OH的细胞内流和外流机制,以及其在单磷酸水平以外的细胞内合成代谢。 N5-2OH通过被动扩散进入培养的人CCRF-CEM细胞,而与多药耐药相关的蛋白4似乎是N5-2OH单磷酸外排的主要介质。 N5-2OH在培养的鼠L929 [胸苷激酶1(TK1 + )]细胞中被有效地单磷酸化,而N5-2OH单磷酸的形成在L929(TK1 )中明显降低细胞变体。在任何细胞系中均未观察到进一步代谢为二磷酸和三磷酸形式。无论单磷酸化如何,亲本N5-2OH都是TK1 + 和TK1 细胞中的主要细胞内成分。用酶制剂进行的磷酸盐转移实验显示,N5-2OH单磷酸以及第二个3-碳氧烷基胸苷类似物[3- [5-(5-碳氧基-1-基)戊基-1-基]胸苷(N5 )]不是胸苷单磷酸激酶的底物。令人惊讶地,尽管N5-三磷酸显然不是DNA聚合酶的底物,但是N5-二磷酸被核苷二磷酸激酶磷酸化。我们的结果提供了有关3-碳甲酰基胸苷类似物的细胞代谢和药代动力学特征的有价值的信息。

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