Incidence of human breast cancer (HBC) varies geographically, but to date no environmental factor has explained this variation. Previously, we reported a 44% reduction in the incidence of breast cancer in women fully immunosuppressed following organ transplantation (Stewart et al (1995) Lancet346: 796–798). In mice infected with the mouse mammary tumour virus (MMTV), immunosuppression also reduces the incidence of mammary tumours. DNA with 95% identity to MMTV is detected in 40% of human breast tumours (Wang et al (1995) Cancer Res55: 5173–5179). These findings led us to ask whether the incidence of HBC could be correlated with the natural ranges of different species of wild mice. We found that the highest incidence of HBC worldwide occurs in lands where Mus domesticus is thse resident native or introduced species of house mouse. Given the similar responses of humans and mice to immunosuppression, the near identity between human and mouse MTV DNA sequences, and the close association between HBC incidence and mouse ranges, we propose that humans acquire MMTV from mice. This zoonotic theory for a mouse-viral cause of HBC allows testable predictions and has potential importance in prevention. © 2000 Cancer Research Campaign
This paper reviews studies previously conducted on the effect of anticancer drugs on immune function in man. It provides new data reporting on the effect of short intensive courses of cytotoxic drug therapy on B-lymphocyte and T-lymphocyte number in cancer patients. Both types of lymphocyte were found in this investigation to be equally sensitive to cytotoxic drugs. The degree of absolute cell number reduction and rate of recovery were similar for T-lymphocytes and B-lymphocytes. Other workers have demonstrated, however, that with prolonged administration of cytotoxic drugs B-lymphocyte number and function are more adversely affected than are T-lymphocyte number and function. Immune function which had been suppressed by continuous programs of chemotherapy for periods of up to 2-3 years will, in certain groups of patients, recover to normal or almost normal levels of function. Short courses of combination drug chemotherapy may be followed by "rebound-overshoot" recovery of immune function. This has been associated with a more favorable clinical course than in situations where it does not occur. Chemotherapy and chemoimmunotherapy programs in clinical oncology ought ideally to be initially evaluated for the effect that they have on immune function. This will permit the development of drug dose and time schedules which allow for recovery of immune function and may possibly lead to augmented antitumor responses.
This study investigated associations between occupational pesticide exposure and renal cell carcinoma (RCC) risk. To follow-up on a previous report by Buzio et al., we also considered whether this association could be modified by glutathione S-transferase M1 and T1 (GSTM1 and GSTT1) genotypes. About 1097 RCC cases and 1476 controls from Central and Eastern Europe were interviewed to collect data on lifetime occupational histories. Occupational information for jobs held for at least 12 months duration was coded for pesticide exposures and assessed for frequency and intensity of exposure. GSTM1 and GSTT1 gene deletions were analyzed using TaqMan assays. A significant increase in RCC risk was observed among subjects ever exposed to pesticides [odds ratio (OR): 1.60; 95% confidence interval (CI): 1.00-2.55]. After stratification by genotypes, increased risk was observed among exposed subjects with at least one GSTM1 active allele (OR: 4.00; 95% CI: 1.55-10.33) but not among exposed subjects with two GSTM1 inactive alleles compared with unexposed subjects with two inactive alleles (P-interaction: 0.04). Risk was highest among exposed subjects with both GSTM1 and GSTT1 active genotypes (OR: 6.47; 95% CI: 1.82-23.00; P-interaction: 0.02) compared with unexposed subjects with at least one GSTM1 or T1 inactive genotype. In the largest RCC case-control study with genotype information conducted to date, we observed that risk associated with pesticide exposure was exclusive to individuals with active GSTM1/T1 genotypes. These findings further support the hypothesis that glutathione S-transferase polymorphisms can modify RCC risk associated with occupational pesticide exposure.
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