Structure/activity relationships for the enhancement by electron-affinic drugs of the anti-tumour effect of CCNU
Open Access
- 1 August 1982
- journal article
- research article
- Published by Springer Nature in British Journal of Cancer
- Vol. 46 (2) , 249-259
- https://doi.org/10.1038/bjc.1982.190
Abstract
Using a regrowth-delay assay, we investigated structure/activity relationships for the enhancement by electron-affinic agents of the anti-tumour effect of the nitrosourea CCNU against the KHT sarcoma in C3H mice. A series of neutral 2-nitroimidazoles similar in electron affinity but varying in octanol/water partition coefficient (PC) over 4 orders of magnitude (0.016- greater than 200, Misonidazole = 0.43) were examined at a fixed dose of 2.5 mmol/kg. A parabolic (quadratic) dependence of activity on log PC was observed. Analogues more hydrophilic than misonidazole (MISO) were inactive as were those with very high PCs (greater than 20). Those with PC 0.43--20 were usually more active than MISO, some considerably so. The fairly lipophilic 5-nitroimidazoles nimorazole and metronidazole (METRO) had similar activity to MISO, despite their reduced electron affinity. Two basic 2-nitroimidazoles more efficient as radiosensitizers in vitro likewise showed activity comparable to MISO. We also investigated several agents more electron-affinic than MISO, including some non-nitro compounds. Most were inactive at maximum tolerated doses, but nitrofurazone showed reasonable activity. Sensitizer dose-response curves were obtained for MISO, METRO and two of the most effective agents, benznidazole (Ro 07-1051) and Ro 07-1902. The two latter agents were both considerably more active than MISO at low doses (0.1--0.9 mmol/kg). These studies indicate that the structural features of electron-affinic agents responsible for the enhancement of KHT tumour response to CCNU, are quite different from those affecting radiosensitization, lipophilicity being particularly important. The microsomal enzyme-inhibitor SKF 525A increased the anti-tumour effect of CCNU, suggesting inhibition of CCNU metabolism as one possible mechanism contributing to chemosensitization by lipophilic electron-affinic agents in mice.Keywords
This publication has 32 references indexed in Scilit:
- In vivo response of KHT sarcomas to combination chemotherapy with radiosensitizers and BCNUBritish Journal of Cancer, 1981
- In vivo interaction of anti-cancer drugs with misonidazole or metronidazole: cyclophosphamide and BCNUBritish Journal of Cancer, 1980
- Partition Coefficient as a Guide to the Development of Radiosensitizers Which Are Less Toxic Than MisonidazoleRadiation Research, 1980
- Toxicity of Nitro Compounds Toward Hypoxic Mammalian Cells In Vitro: Dependence on Reduction PotentialJNCI Journal of the National Cancer Institute, 1980
- Structure-activity Relationships in the Development of Hypoxic Cell RadiosensitizersInternational Journal of Radiation Biology, 1980
- Response of the solid Guerin epitheliomas of rats to fractionated irradiation and a new 4-nitroimidazoleBritish Journal of Cancer, 1979
- The effect of time between X-irradiation and chemotherapy on the growth of three solid mouse tumors—I. AdriamycinInternational Journal of Radiation Oncology*Biology*Physics, 1979
- ALTERATIONS IN THE TOXICITY AND ANTI-TUMOR ACTIVITY OF METHYL-CCNU IN MICE FOLLOWING PRETREATMENT WITH EITHER PHENOBARBITAL OR SKF-525A1979
- Structure-activity Relationships in the Development of Hypoxic Cell RadiosensitizersInternational Journal of Radiation Biology, 1979
- Factors Influencing the Quantitative Estimation of the In Vivo Survival of Cells From Solid Tumors2JNCI Journal of the National Cancer Institute, 1967