Abstract
The sensitivity of 7 human non-small cell lung cancer cell lines to each of 7 cytotoxic drugs was determined. None of the cell lines used in these experiments had been previously exposed to cytotoxic drugs in vitro. A pattern of cross-resistance (P less than 0.05) between the drugs adriamycin (ADR), vincristine (VC) and etoposide (VP16) was noted similar to that seen in other models. The calcium antagonist verapamil (6.6 microM) was shown to increase sensitivity (up to 29-fold) to ADR, VC or VP16 in 5 cell lines. For 2 of the cell lines (A549 and WIL) 2.2 microM verapamil increased VP16 cytotoxicity (up to 4-fold). Drug accumulation studies in 2 cell lines (A549 and SK-MES-1) showed that 6.6 microM verapamil increased intracellular levels of VC up to 4-fold with the greatest increase seen in the cell line (SK-MES-1) for which verapamil produced the greatest increase in cytotoxicity (10-fold). For ADR and VP16 increases in drug accumulation were smaller (up to 1.6-fold). Our data support a potential clinical role for verapamil in overcoming cytotoxic drug resistance in human lung cancer.
MeSH Terms
Antineoplastic Agents/pharmacokinetics,therapeutic use
Carcinoma, Non-Small-Cell Lung/drug therapy,metabolism
Drug Resistance
Drug Screening Assays, Antitumor
Drug Synergism
Humans
Lung Neoplasms/drug therapy,metabolism
Verapamil/pharmacology
Chemicals
Antineoplastic Agents
Verapamil
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Merry S
CRC Department of Medical Oncology, University of Glasgow, Scotland, UK.
Courtney E R
Fetherston C A
Kaye S B
Freshney R I
References (12)
12 references, click to expand
-
Overcoming of vincristine resistance in P388 leukemia in vivo and in vitro through enhanced cytotoxicity of vincristine and vinblastine by verapamil.
Cancer Res. 1981 May;41(5):1967-72
PMID: 7214365
-
Promotion by verapamil of vincristine responsiveness in tumor cell lines inherently resistant to the drug.
Cancer Res. 1983 Feb;43(2):808-13
PMID: 6848194
-
Potentiation of vincristine and Adriamycin effects in human hemopoietic tumor cell lines by calcium antagonists and calmodulin inhibitors.
Cancer Res. 1983 May;43(5):2267-72
PMID: 6831450
-
Symposium on cellular resistance to anticancer drugs. Introduction.
Cancer Treat Rep. 1983 Oct;67(10):855-7
PMID: 6627234
-
Vinca alkaloid-resistant phenotype in cultured human leukemic lymphoblasts.
Cancer Treat Rep. 1983 Oct;67(10):875-82
PMID: 6354435
-
Effect of verapamil and other agents on the distribution of anthracyclines and on reversal of drug resistance.
Cancer Res. 1987 Mar 1;47(5):1421-5
PMID: 3469017
-
Cross-resistance to cytotoxic drugs in human glioma cell lines in culture.
Br J Cancer. 1984 Dec;50(6):831-5
PMID: 6498081
-
Comparison of the cellular pharmacology of doxorubicin in resistant and sensitive models of pancreatic cancer.
Cancer Chemother Pharmacol. 1985;14(2):132-4
PMID: 3971476
-
Anthracycline resistance in P388 murine leukemia and its circumvention by calcium antagonists.
Cancer Res. 1985 Apr;45(4):1687-91
PMID: 3919944
-
Resistance of human glioma to adriamycin in vitro: the role of membrane transport and its circumvention with verapamil.
Br J Cancer. 1986 Jan;53(1):129-35
PMID: 3947509
-
Membrane vesicles from multidrug-resistant human cancer cells contain a specific 150- to 170-kDa protein detected by photoaffinity labeling.
Proc Natl Acad Sci U S A. 1986 Jun;83(11):3847-50
PMID: 3459160
-
Reversal of adriamycin resistance by verapamil in human ovarian cancer.
Science. 1984 Jun 1;224(4652):994-6
PMID: 6372095