van Moorsel C J, Bergman A M, Veerman G, Voorn D A, Ruiz van Haperen V W, Kroep J R, Pinedo H M, Peters G J
Department of Medical Oncology, University Hospital Vrije Universiteit, PO Box 7057, 1007 MB, Amsterdam, The Netherlands.
Biochim Biophys Acta. 2000 Mar 6;1474(1):5-12. doi: 10.1016/s0304-4165(99)00209-3.
To gain a more detailed insight into the metabolism of 2', 2'-difluoro-2'-deoxycytidine (dFdC, gemcitabine, Gemzar) and its effect on normal ribonucleotide (NTP) metabolism in relation to sensitivity, we studied the accumulation of dFdCTP and the changes in NTP pools after dFdC exposure in a panel of 21 solid tumour and leukaemia cell lines. Both sensitivity to dFdC and accumulation of dFdCTP were clearly cell line-dependent: in this panel of cell lines, the head and neck cancer (HNSCC) cell line 22B appeared to be the most sensitive, whereas the small cell lung cancer (SCLC) cell lines were the least sensitive to dFdC. The human leukaemia cell line CCRF-CEM accumulated the highest concentration of dFdCTP, whereas the non-SCLC cell lines accumulated the least. Not only the amount of dFdCTP accumulation was clearly related to the sensitivity for dFdC (R=-0.61), but also the intrinsic CTP/UTP ratio (R=0.97). NTP pools were affected considerably by dFdC treatment: in seven cell lines dFdC resulted in a 1.7-fold depletion of CTP pools, in two cell lines CTP pools were unaffected, but in 12 cell lines CTP pools increased about 2-fold. Furthermore, a 1.6-1.9-fold rise in ATP, UTP and GTP pools was shown in 20, 19 and 20 out of 21 cell lines, respectively. Only the UTP levels after treatment with dFdC were clearly related to the amount of dFdCTP accumulating in the cell (R=0.64 (P<0.01)), but not to the sensitivity to dFdC treatment. In conclusion, we demonstrate that besides the accumulation of dFdCTP, the CTP/UTP ratio was clearly related to the sensitivity to dFdC. Furthermore, the UTP levels and the CTP/UTP ratio after treatment were related to dFdCTP accumulation. Therefore, both the CTP and UTP pools appear to play an important role in the sensitivity to dFdC.
为了更深入地了解2',2'-二氟-2'-脱氧胞苷(dFdC,吉西他滨,健择)的代谢及其对正常核糖核苷酸(NTP)代谢与敏感性的影响,我们研究了21种实体瘤和白血病细胞系在暴露于dFdC后dFdCTP的积累情况以及NTP池的变化。对dFdC的敏感性和dFdCTP的积累均明显依赖于细胞系:在该细胞系面板中,头颈癌(HNSCC)细胞系22B似乎最敏感,而小细胞肺癌(SCLC)细胞系对dFdC最不敏感。人白血病细胞系CCRF-CEM积累的dFdCTP浓度最高,而非SCLC细胞系积累的最少。不仅dFdCTP的积累量与对dFdC的敏感性明显相关(R=-0.61),而且固有CTP/UTP比率也相关(R=0.97)。dFdC处理对NTP池有显著影响:在7种细胞系中,dFdC导致CTP池减少1.7倍,在2种细胞系中CTP池未受影响,但在12种细胞系中CTP池增加约2倍。此外,21种细胞系中分别有20种、19种和20种细胞系的ATP、UTP和GTP池增加了1.6 - 1.9倍。仅dFdC处理后的UTP水平与细胞中积累的dFdCTP量明显相关(R=0.64(P<0.01)),但与对dFdC处理的敏感性无关。总之,我们证明除了dFdCTP的积累外,CTP/UTP比率与对dFdC的敏感性明显相关。此外,处理后的UTP水平和CTP/UTP比率与dFdCTP积累相关。因此,CTP池和UTP池似乎在对dFdC的敏感性中都起重要作用。