Buursma A R, van Dillen I J, van Waarde A, Vaalburg W, Hospers G A P, Mulder N H, de Vries E F J
PET Center, Groningen University Hospital, PO Box 30.001, Hanzeplein 1, 9700 RB Groningen, The Netherlands.
Br J Cancer. 2004 Dec 13;91(12):2079-85. doi: 10.1038/sj.bjc.6602216.
Favourable pharmacokinetics of the prodrug are essential for successful HSVtk/ganciclovir (GCV) suicide gene therapy. [(18)F]FHPG PET might be a suitable technique to assess the pharmacokinetics of the prodrug GCV noninvasively, provided that [(18)F]FHPG mimics the behaviour of GCV. Since membrane transport is an important aspect of the pharmacokinetics of the prodrug, we investigated the cellular uptake mechanism of [(18)F]FHPG in an HSVtk expressing C6 rat glioma cell line and in tumour-bearing rats. The nucleoside transport inhibitors dipyridamol, NBMPR and 2-chloroadenosine did not significantly affect the [(18)F]FHPG uptake in vitro. Thymidine and uridine significantly decreased [(18)F]FHPG uptake by 84 and 58%, respectively, but an enzyme assay revealed that this decline was due to inhibition of the HSVtk enzyme rather than membrane transport. Nucleobase transport inhibitors, thymine and adenine, caused a 58 and 55% decline in tracer uptake, respectively. In vivo, the ratio of [(18)F]FHPG uptake in C6tk and C6 tumours decreased from 3.0+/-0.5 to 1.0+/-0.2 after infusion of adenine. Thus, in our tumour model, [(18)F]FHPG transport exclusively occurred via purine nucleobase transport. In this respect, FHPG does not resemble GCV, which is predominantly taken up via the nucleoside transporter, but rather acyclovir, which is also taken up via the purine nucleobase carrier.
前药良好的药代动力学对于成功进行单纯疱疹病毒胸苷激酶/更昔洛韦(GCV)自杀基因治疗至关重要。如果[(18)F]FHPG能模拟GCV的行为,那么[(18)F]FHPG PET可能是一种非侵入性评估前药GCV药代动力学的合适技术。由于膜转运是前药药代动力学的一个重要方面,我们研究了[(18)F]FHPG在表达HSVtk的C6大鼠胶质瘤细胞系和荷瘤大鼠中的细胞摄取机制。核苷转运抑制剂双嘧达莫、NBMPR和2-氯腺苷在体外对[(18)F]FHPG的摄取没有显著影响。胸腺嘧啶核苷和尿苷分别使[(18)F]FHPG的摄取显著降低了84%和58%,但酶分析表明这种下降是由于HSVtk酶的抑制而非膜转运。核碱基转运抑制剂胸腺嘧啶和腺嘌呤分别使示踪剂摄取下降了58%和55%。在体内,注入腺嘌呤后,C6tk和C6肿瘤中[(18)F]FHPG的摄取比值从3.0±0.5降至1.0±0.2。因此,在我们的肿瘤模型中,[(18)F]FHPG的转运仅通过嘌呤核碱基转运发生。在这方面,FHPG与主要通过核苷转运体摄取的GCV不同,而更类似于也通过嘌呤核碱基载体摄取的阿昔洛韦。