A substantial excess risk of lymphomas and nonmelanoma skin cancer has been demonstrated following organ transplantation. Large sample size and long follow-up time may, however, allow more accurate risk estimates and detailed understanding of long-term cancer risk. The objective of the study was to assess the risk of cancer following organ transplantation. A nationwide cohort study comprising 5931 patients who underwent transplantation of kidney, liver or other organs during 1970 -1997 in Sweden was conducted. Complete follow-up was accomplished through linkage to nationwide databases. We used comparisons with the entire Swedish population to calculate standardised incidence ratios (SIRs), and Poisson regression for multivariate internal analyses of relative risks (RRs) with 95% confidence intervals (CI). Overall, we observed 692 incident first cancers vs 171 expected (SIR 4.0; 95% CI 3.7 -4.4). We confirmed marked excesses of nonmelanoma skin cancer (SIR 56.2; 95% CI 49.8 -63.2), lip cancer (SIR 53.3; 95% CI 38.0 -72.5) and of non-Hodgkin's lymphoma (NHL) (SIR 6.0; 95% CI 4.4 -8.0). Compared with patients who underwent kidney transplantation, those who received other organs were at substantially higher risk of NHL (RR 8.4; 95% CI 4.3 -16). Besides, we found, significantly, about 20-fold excess risk of cancer of the vulva and vagina, 10-fold of anal cancer, and five-fold of oral cavity and kidney cancer, as well as two-to four-fold excesses of cancer in the oesophagus, stomach, large bowel, urinary bladder, lung and thyroid gland. In conclusion, organ transplantation entails a persistent, about four-fold increased overall cancer risk. The complex pattern of excess risk at many sites challenges current understanding of oncogenic infections that might become activated by immunologic alterations.
We conclude that organ transplant recipients are at a highly increased risk for non-melanoma skin cancer and must be closely followed throughout their lives. Cancer risk associated with transplantation is higher for sun-exposed than for non-sun-exposed epithelial tissues, even among populations living in regions with low solar insolation.
Spontaneous diabetes in the domestic pig, an animal suitable for metabolic and endocrine studies and for experimental surgery, is extremely rare. In this study we have compared the diabetogenic response of various doses of streptozotocin in comparison to surgically induced diabetes. Streptozotocin in a low dose, 35 mg/kg body weight did not influence glucose metabolism while an intermediate dose, 85 mg/kg, resulted in a transient diabetic reaction. Streptozotocin, 100-150 mg/kg body weight, caused a complete and permanent diabetes. Animals made diabetic by means of pancreatectomy did not survive more than 10 days due to their poor general condition and diabetes. Streptozotocin induced diabetic animals survived with insulin treatment up to seven months. The results show that juvenile pigs made diabetic with 100-150 mg/kg body weight of streptozotocin may be useful in experimental work on glucose-, insulin- and C-peptide-metabolism in a large animal. Therefore it is potentially useful in pancreatic transplantation research.
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