Highly Specific Prediction of Antineoplastic Drug Resistance With an In Vitro Assay Using Suprapharmacologic Drug Exposures
- 4 April 1990
- journal article
- research article
- Published by Oxford University Press (OUP) in JNCI Journal of the National Cancer Institute
- Vol. 82 (7) , 582-588
- https://doi.org/10.1093/jnci/82.7.582
Abstract
Bayes' theorem has been used to describe the relationship between the accuracy of a predictive test (posttest probability) and the overall incidence of what is being tested (pretest probability). Bayes' theorem indicates that laboratory assays will be accurate in the prediction of clinical drug resistance in tumors with high overall response rates (e.g., previously untreated breast cancer) only when the assays are extremely (>98%) specific for drug resistance. We developed a highly specific drug-resistance assay in which human tumor colonies were cultured in soft agar and drugs were tested at high concentrations for long exposure times. Coefficients for concentration x time exceeded those reported in contemporaneous studies by about 100-fold. We reviewed 450 correlations between assay results and clinical response over an 8-year period. Results were analyzed by subsets, including different tumor histologies, single agents, and drug combinations. Extreme drug resistance (an assay result ≥ SD below the median) was identified with greater than 99% specificity. Only one of 127 patients with tumors showing extreme drug resistance responded to chemotherapy. This negligible post-test probability of response was independent of pretest (expected) probability of response. Once this population of patients with tumors showing extreme drug resistance had been identified, posttest response probabilities for the remaining cohorts of patients varied according to both assay results and pretest response probabilities, precisely according to predictions based on Bayes' theorem. This finding allowed the construction of a nomogram for determining assay-predicted probability of response. [J Natl Cancer Inst 82:582–588, 1990]Keywords
This publication has 17 references indexed in Scilit:
- MULTIFACTORIAL RESISTANCE TO ADRIAMYCIN - RELATIONSHIP OF DNA-REPAIR, GLUTATHIONE TRANSFERASE-ACTIVITY, DRUG EFFLUX, AND P-GLYCOPROTEIN IN CLONED CELL-LINES OF ADRIAMYCIN-SENSITIVE AND ADRIAMYCIN-RESISTANT P388 LEUKEMIA1988
- In vitro assays for new drug screening: Comparison of a thymidine incorporation assay with the human tumor colony‐forming assayThe International Journal of Cell Cloning, 1987
- Diagnosing liver metastases: a Bayesian analysis.Journal of Clinical Oncology, 1986
- Soft agarose culture human tumour colony forming assay for drug sensitivity testing: [3H]-thymidine incorporation vs colony countingBritish Journal of Cancer, 1985
- The human tumor clonogenic assay in human breast cancer.Journal of Clinical Oncology, 1985
- DEVELOPMENT OF A MINIATURIZED, IMPROVED NUCLEIC-ACID PRECURSOR INCORPORATION ASSAY FOR CHEMOSENSITIVITY TESTING OF HUMAN SOLID TUMORS1985
- PREDICTIVE TESTS FOR THE RESPONSE TO CANCER-CHEMOTHERAPY - LIMITATIONS RELATED TO THE PREDICTION OF RARE EVENTS1984
- CLINICAL CORRELATIONS WITH CHEMOSENSITIVITIES MEASURED IN A RAPID THYMIDINE INCORPORATION ASSAY1984
- RAPID ASSAY FOR EVALUATING THE CHEMOSENSITIVITY OF HUMAN-TUMORS IN SOFT AGAR CULTURE1982
- Predictive Value of a Single Diagnostic Test in Unselected PopulationsNew England Journal of Medicine, 1966