Mechanisms of natural resistance to antifolates in human soft tissue sarcomas Journal Article


Authors: Li, W. W.; Lin, J. T.; Tong, W. P.; Trippett, T. M.; Brennan, M. F.; Bertino, J. R.
Article Title: Mechanisms of natural resistance to antifolates in human soft tissue sarcomas
Abstract: Efforts to use fresh human sarcoma cells for evaluating antifolate resistance with an in situ thymidylate synthesis assay using 5-[3H] deoxyuridine were unsuccessful because of low thymidylate synthesis activity in enzymatically disaggregated tumors. By incubating tumor cell suspensions in supplemented RPMI-1640 medium with 10% fetal bovine serum for 3 days, activity of the in situ thymidylate synthesis assay markedly increased (1.42 versus 0.03 pmol/h/107 cells), thus allowing 75% of samples to be evaluated for antifolate sensitivity. By criteria developed with a methotrexate-resistant and -sensitive cell line, this assay indicated that most sarcomas are naturally resistant to methotrexate (12 of 15). Natural resistance to 10-ethyl-lO-deazaaminopterin and trimetrexate was also observed in 60% of the samples (nine of 15, respectively). The results from the 3-day in situ assay were confirmed by specific tests for resistance mechanisms in most sarcoma samples. The resistance mechanisms detected were impaired polyglutamylation, an increased level of dihydrofolate reductase, and amplification of this gene. These results encourage further exploration of this assay to predict response to antifolates in individual patients and to evaluate efficacy of new antifolates as candidates for clinical trial. © 1992, American Association for Cancer Research. All rights reserved.
Keywords: human tissue; human cell; methotrexate; gene amplification; drug resistance; enzyme activity; sarcoma; drug uptake; soft tissue sarcoma; chromatography, high pressure liquid; dihydrofolate reductase; thymidylate synthase; folic acid antagonists; tetrahydrofolate dehydrogenase; cell level; drug sensitivity; enzyme assay; aminopterin; soft tissue neoplasms; enzyme synthesis; chemical modification; trimetrexate; tumor stem cell assay; polyglutamic acid; peptide synthases; edatrexate; human; priority journal; article; support, u.s. gov't, p.h.s.; gamma fluoromethotrexate
Journal Title: Cancer Research
Volume: 52
Issue: 6
ISSN: 0008-5472
Publisher: American Association for Cancer Research  
Date Published: 1992-03-15
Start Page: 1434
End Page: 1438
Language: English
PUBMED: 1371715
PROVIDER: scopus
DOI/URL:
Notes: Article -- Export Date: 30 July 2019 -- Source: Scopus
Citation Impact
MSK Authors
  1. Weiwei Li
    63 Li
  2. William Ping-Yiu Tong
    158 Tong
  3. Murray F Brennan
    1059 Brennan
  4. Tanya M Trippett
    126 Trippett
  5. Joseph Bertino
    363 Bertino
  6. James T. Lin
    14 Lin