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PUBMED FOR HANDHELDS

Journal Abstract Search


309 related items for PubMed ID: 4719662

  • 1. Threshold methotrexate concentration for in vivo inhibition of DNA synthesis in normal and tumorous target tissues.
    Chabner BA, Young RC.
    J Clin Invest; 1973 Aug; 52(8):1804-11. PubMed ID: 4719662
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  • 5. Biochemical and pharmacokinetic effects of leucovorin after high-dose methotrexate in a murine leukemia model.
    Sirotnak FM, Donsbach RC, Moccio DM, Dorick DM.
    Cancer Res; 1976 Dec; 36(12):4679-86. PubMed ID: 1087182
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  • 7. Metabolism and selective effects of 1-beta-D-arabinofuranosylcytosine in L1210 and Host tissues in vivo.
    Chou TC, Hutchinson DJ, Schmid FA, Philips FS.
    Cancer Res; 1975 Jan; 35(1):225-36. PubMed ID: 1109791
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  • 9. Tissue pharmacokinetics, inhibition of DNA synthesis and tumor cell kill after high-dose methotrexate in murine tumor models.
    Sirotnak FM, Donsbach RC, Dorick DM, Moccio DM.
    Cancer Res; 1976 Dec; 36(12):4672-8. PubMed ID: 1000510
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  • 10. Inhibition and recovery of DNA synthesis in host tissues and sensitive and resistant B16 melanoma after 1-(2-chloroethyl)-3-(trans-4-methylcyclohexyl)-1-nitrosourea, a predictor of therapeutic efficacy.
    Brereton HD, Bryant TL, Young RC.
    Cancer Res; 1975 Sep; 35(9):2420-5. PubMed ID: 1149044
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  • 11. On the poor correlation between the inhibition by methotrexate of dihydrofolate reductase and of deoxynucleoside incorporation into DNA.
    Roberts D, Wodinsky I.
    Cancer Res; 1968 Oct; 28(10):1955-62. PubMed ID: 5696929
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  • 12. Interaction of chemotherapeutic agents with methotrexate and 5-fluorouracil and its effect on de novo DNA synthesis.
    Bruckner HW, Schreiber C, Waxman S.
    Cancer Res; 1975 Mar; 35(3):801-6. PubMed ID: 1116135
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  • 13. [The metabolism of high-molecular-weight substances in cells and the effect of anticancer drugs].
    Kanamaru R, Kakuta H, Sato T, Ishioka C, Konishi Y, Wakui A, Dei T.
    Gan To Kagaku Ryoho; 1987 Mar; 14(3 Pt 2):837-44. PubMed ID: 3566294
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  • 14. Alterations in 3H-thymidine incorporation into DNA induced by methyl CCNU (1-(2-chloroethyl)-3-(4-methyl cyclohexyl)-1-nitrosourea) in normal and tumorous tissues in vivo.
    Young RC, Goldberg D, Grotzinger KR.
    Cell Tissue Kinet; 1976 Jul; 9(4):325-32. PubMed ID: 1277265
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  • 15. Improved therapeutic index with high-dose methotrexate: comparison of thymidine-purine rescue with citrovorum factor rescue in mice.
    Samuels LL, Straw JA.
    Cancer Res; 1984 Jun; 44(6):2278-84. PubMed ID: 6609764
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  • 16. A basis for fluoropyrimidine-induced antagonism to methotrexate in Ehrlich ascites tumor cells in vitro.
    Bowen D, White JC, Goldman ID.
    Cancer Res; 1978 Jan; 38(1):219-22. PubMed ID: 618577
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  • 17. The mechanism of action of methotrexate. II. Augmentation by vincristine of inhibition of deoxyribonucleic aic synthesis by methotrexate in Ehrlich ascites tumor cells.
    Goldman ID, Fyfe MJ.
    Mol Pharmacol; 1974 Mar; 10(2):275-82. PubMed ID: 4859543
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  • 18. Inhibition of DNA synthesis and enhancement of the uptake and action of methotrexate by low-power-density microwave radiation in L1210 leukemia cells.
    Chang BK, Huang AT, Joines WT.
    Cancer Res; 1980 Apr; 40(4):1002-5. PubMed ID: 7357530
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  • 19. In vivo effects of methotrexate. Inhibition of DNA synthesis and cell death in sensitive and resistant L1210 ascites populations.
    Hofer KG.
    Chemotherapy; 1972 Apr; 17(1):59-70. PubMed ID: 5009468
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  • 20. Differential recovery of intestine, bone marrow, and thymus of rats with solid tumors following 5-fluorouracil administration.
    Hopkins HA, Kovacs CJ, Looney WB, Wakefield JA.
    Cancer Biochem Biophys; 1976 Apr; 1(6):303-12. PubMed ID: 189899
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