This project involves a study of the modes of resistance of tumor cells to anthracyclines and other selected natural products. The goal is the delineation of determinants of drug responsiveness in human neoplasia, since a more detailed understanding of resistance phenomena could lead to improved therapeutic design. In many tumor cell types, of both human and animal origin, there is evidence for a broad-spectrum (pleiotropic) cross-resistance pattern involving anthracyclines, vinca alkaloids, AMSA and other natural and synthetic products. We plan to examine the some of the mechanisms which underlie pleiotropic resistance, and to determine whether this phenomenon is relevant at levels of drug resistance encountered in the clinic, or at levels of drug resistance attained only in cell culture or via chronic drug therapy of tumor-bearing animals over many transplant generations. Several model systems will be utilized, including murine ascitic tumors varying in anthracycline responsiveness, solid murine tumors, freshly-isolated myeloblasts from patients with acute leukemias, biopsy samples from patients with breast cancer, and human-derived small-cell and ovarian carcinoma in cell culture. Among the resistance modes to be examined are those relating to drug transport, intracellular binding, SH-mediated drug detoxification and enhanced repair of drug-induced damage. Experiments will be carried out to evaluate each mode of resistance in the different tumor systems, and the effectiveness of different procedures for circumvention of such resistance.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
5R01CA031331-05
Application #
3169534
Study Section
Experimental Therapeutics Subcommittee 2 (ET)
Project Start
1982-07-01
Project End
1988-06-30
Budget Start
1986-07-01
Budget End
1987-06-30
Support Year
5
Fiscal Year
1986
Total Cost
Indirect Cost
Name
Wayne State University
Department
Type
Schools of Medicine
DUNS #
City
Detroit
State
MI
Country
United States
Zip Code
48202
Kessel, D (1992) Properties of cremophor EL micelles probed by fluorescence. Photochem Photobiol 56:447-51
Kessel, D (1989) Exploring multidrug resistance using rhodamine 123. Cancer Commun 1:145-9
Kessel, D (1988) Effects of phorbol esters on doxorubicin transport systems. Biochem Pharmacol 37:2297-9
Kessel, D (1988) Probing membrane alterations associated with anthracycline resistance using fluorescent dyes. Biochem Pharmacol 37:4253-6
Kessel, D (1988) Photosensitization of neoplastic cells by anthrapyrazoles. Photochem Photobiol 47:241-3
Kessel, D (1988) Transport of an iron: anthracycline complex by murine leukemia cells. Cancer Lett 42:213-6
Romine, M T; Kessel, D (1986) Intracellular glutathione as a determinant of responsiveness to antitumor drugs. Biochem Pharmacol 35:3323-6
Kessel, D (1986) Interactions among membrane transport systems: anthracyclines, calcium antagonists and anti-estrogens. Biochem Pharmacol 35:2825-6
Kessel, D; Corbett, T (1985) Correlations between anthracycline resistance, drug accumulation and membrane glycoprotein patterns in solid tumors of mice. Cancer Lett 28:187-93
Kessel, D; Wilberding, C (1985) Promotion of daunorubicin uptake and toxicity by the calcium antagonist tiapamil and its analogs. Cancer Treat Rep 69:673-6

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