共 113 条
[11]
Wang Y., Zhao R., Chattopadhyay S., Goldman I.D., A novel folate transport activity in human mesothelioma cell lines with high affinity and specificity for the new-generation antifolate, pemetrexed, Cancer Res., 62, pp. 6434-6437, (2002)
[12]
Chu E., Mota A.C., Fogarasi M.C., Antimetabolites, Cancer: Principles and Practice of Oncology, pp. 388-415, (2001)
[13]
Sun X., Cross J.A., Bognar A.L., Et al., Folate-binding triggers the activation of folylpolyglutamate synthetase, J. Mol. Biol., 310, pp. 1067-1078, (2001)
[14]
Longo-Sorbello G.S., Bertino J.R., Current understanding of methotrexate pharmacology and efficacy in acute leukemias: Use of newer antifolates in clinical trials, Haematologica, 86, pp. 121-127, (2001)
[15]
Kisliuk R.L., Synergistic interactions among antifolates, Pharmacol. Ther., 85, pp. 183-190, (2000)
[16]
Caperelli C.A., Giroux E.L., The human glycinamide ribonucleotide transformylase domain: Purification, characterization, and kinetic mechanism, Arch. Biochem. Biophys., 341, pp. 98-103, (1997)
[17]
Vergis J.M., Bulock K.G., Fleming K.G., Beardsley G.P., Human 5-aminoimidazole-4-carboxamide ribonucleotide transformylase/Inosine 5′-monophosphate cyclohydrolase: A bifunctional protein requiring dimerization for transformylase activity but not for cyclohydrolase activity, J. Biol. Chem., 276, pp. 7727-7733, (2001)
[18]
Papamichael D., The use of thymidylate synthase inhibitors in the treatment of advanced colorectal cancer: Current status, Oncologist, 4, pp. 478-487, (1999)
[19]
Matherly L.H., Taub J.W., Methotrexate pharmacology and resistance in childhood acute lymphoblastic leukemia, Leuk. Lymphoma, 21, pp. 359-368, (1996)
[20]
Gorlick R., Cole P., Banerjee D., Et al., Mechanisms of methotrexate resistance in acute leukemia: Decreased transport and polyglutamylation, Adv. Exp. Med. Biol., 457, pp. 543-550, (1999)