Cargando…

Compensatory regeneration as a mechanism for renal tubule carcinogenesis of fumonisin B1 in the F344/N/Nctr BR rat.

Fumonisin B1(FB1) is a fungal metabolite of Fusarium verticillioides (= F. moniliforme), a fungus that grows on many crops worldwide. Previous studies demonstrated that male BD IX rats consuming diets containing 50 ppm fumonisin B1 developed hepatocellular carcinomas. In our recent studies, diets co...

Descripción completa

Detalles Bibliográficos
Autores principales: Howard, P C, Warbritton, A, Voss, K A, Lorentzen, R J, Thurman, J D, Kovach, R M, Bucci, T J
Formato: Texto
Lenguaje:English
Publicado: 2001
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1240680/
https://www.ncbi.nlm.nih.gov/pubmed/11359700
_version_ 1782125199150284800
author Howard, P C
Warbritton, A
Voss, K A
Lorentzen, R J
Thurman, J D
Kovach, R M
Bucci, T J
author_facet Howard, P C
Warbritton, A
Voss, K A
Lorentzen, R J
Thurman, J D
Kovach, R M
Bucci, T J
author_sort Howard, P C
collection PubMed
description Fumonisin B1(FB1) is a fungal metabolite of Fusarium verticillioides (= F. moniliforme), a fungus that grows on many crops worldwide. Previous studies demonstrated that male BD IX rats consuming diets containing 50 ppm fumonisin B1 developed hepatocellular carcinomas. In our recent studies, diets containing FB1 at 50 ppm or higher concentrations induced renal tubule carcinomas in male F344/N/Nctr BR rats and hepatocellular carcinomas in female B6C3F1/Nctr BR mice. The carcinogenicity of FB1 in rats and mice is not due to DNA damage, as several laboratories have demonstrated that FB1 is not a genotoxin. FB1 induces apoptosis in cells in vitro. Including FB1 in the diets of rats results in increased hepatocellular and renal tubule epithelial cell apoptosis. In studies with F344/N/Nctr BR rats consuming diets containing up to 484 ppm FB1 for 28 days, female rats demonstrated more sensitivity than male rats in the induction of hepatocellular apoptosis and mitosis. Conversely, induction of renal tubule apoptosis and regeneration were more pronounced in male than in female rats. Induction of renal tubule apoptosis and hyperplasia correlated with the incidence of renal tubule carcinomas that developed in the 2-year feeding study with FB1 in the F344/N/Nctr BR rats. The data are consistent with the hypothesis that the induction of renal tubule carcinomas in male rats could be partly due to the continuous compensatory regeneration of renal tubule epithelial cells in response to the induction of apoptosis by fumonisin B1.
format Text
id pubmed-1240680
institution National Center for Biotechnology Information
language English
publishDate 2001
record_format MEDLINE/PubMed
spelling pubmed-12406802005-11-08 Compensatory regeneration as a mechanism for renal tubule carcinogenesis of fumonisin B1 in the F344/N/Nctr BR rat. Howard, P C Warbritton, A Voss, K A Lorentzen, R J Thurman, J D Kovach, R M Bucci, T J Environ Health Perspect Research Article Fumonisin B1(FB1) is a fungal metabolite of Fusarium verticillioides (= F. moniliforme), a fungus that grows on many crops worldwide. Previous studies demonstrated that male BD IX rats consuming diets containing 50 ppm fumonisin B1 developed hepatocellular carcinomas. In our recent studies, diets containing FB1 at 50 ppm or higher concentrations induced renal tubule carcinomas in male F344/N/Nctr BR rats and hepatocellular carcinomas in female B6C3F1/Nctr BR mice. The carcinogenicity of FB1 in rats and mice is not due to DNA damage, as several laboratories have demonstrated that FB1 is not a genotoxin. FB1 induces apoptosis in cells in vitro. Including FB1 in the diets of rats results in increased hepatocellular and renal tubule epithelial cell apoptosis. In studies with F344/N/Nctr BR rats consuming diets containing up to 484 ppm FB1 for 28 days, female rats demonstrated more sensitivity than male rats in the induction of hepatocellular apoptosis and mitosis. Conversely, induction of renal tubule apoptosis and regeneration were more pronounced in male than in female rats. Induction of renal tubule apoptosis and hyperplasia correlated with the incidence of renal tubule carcinomas that developed in the 2-year feeding study with FB1 in the F344/N/Nctr BR rats. The data are consistent with the hypothesis that the induction of renal tubule carcinomas in male rats could be partly due to the continuous compensatory regeneration of renal tubule epithelial cells in response to the induction of apoptosis by fumonisin B1. 2001-05 /pmc/articles/PMC1240680/ /pubmed/11359700 Text en
spellingShingle Research Article
Howard, P C
Warbritton, A
Voss, K A
Lorentzen, R J
Thurman, J D
Kovach, R M
Bucci, T J
Compensatory regeneration as a mechanism for renal tubule carcinogenesis of fumonisin B1 in the F344/N/Nctr BR rat.
title Compensatory regeneration as a mechanism for renal tubule carcinogenesis of fumonisin B1 in the F344/N/Nctr BR rat.
title_full Compensatory regeneration as a mechanism for renal tubule carcinogenesis of fumonisin B1 in the F344/N/Nctr BR rat.
title_fullStr Compensatory regeneration as a mechanism for renal tubule carcinogenesis of fumonisin B1 in the F344/N/Nctr BR rat.
title_full_unstemmed Compensatory regeneration as a mechanism for renal tubule carcinogenesis of fumonisin B1 in the F344/N/Nctr BR rat.
title_short Compensatory regeneration as a mechanism for renal tubule carcinogenesis of fumonisin B1 in the F344/N/Nctr BR rat.
title_sort compensatory regeneration as a mechanism for renal tubule carcinogenesis of fumonisin b1 in the f344/n/nctr br rat.
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1240680/
https://www.ncbi.nlm.nih.gov/pubmed/11359700
work_keys_str_mv AT howardpc compensatoryregenerationasamechanismforrenaltubulecarcinogenesisoffumonisinb1inthef344nnctrbrrat
AT warbrittona compensatoryregenerationasamechanismforrenaltubulecarcinogenesisoffumonisinb1inthef344nnctrbrrat
AT vosska compensatoryregenerationasamechanismforrenaltubulecarcinogenesisoffumonisinb1inthef344nnctrbrrat
AT lorentzenrj compensatoryregenerationasamechanismforrenaltubulecarcinogenesisoffumonisinb1inthef344nnctrbrrat
AT thurmanjd compensatoryregenerationasamechanismforrenaltubulecarcinogenesisoffumonisinb1inthef344nnctrbrrat
AT kovachrm compensatoryregenerationasamechanismforrenaltubulecarcinogenesisoffumonisinb1inthef344nnctrbrrat
AT buccitj compensatoryregenerationasamechanismforrenaltubulecarcinogenesisoffumonisinb1inthef344nnctrbrrat