T. Heise
Federal Institute for Risk Assessment
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Featured researches published by T. Heise.
Archives of Toxicology | 2015
T. Heise; F. Schmidt; C. Knebel; S. Rieke; W. Haider; Rudolf Pfeil; Carsten Kneuer; Lars Niemann; P. Marx-Stoelting
Abstract The toxicological relevance of effects observed at molecular stage, which occur at dose levels well below classical no-observed adverse effect levels is currently subject to controversial scientific debate. While the importance of molecular effects for the identification of a mode of action or an adverse outcome pathway is undisputed, their impact for other regulatory purposes remains uncertain. Here, we report the results of a 28-day rat-feeding study including three widely used hepatotoxic (tri)azole fungicides (cyproconazole, epoxiconazole and prochloraz) administered individually at five dose levels, ranging from slightly above the reference values to a clear toxic effect dose. Parameters analysed included pathology, histopathology, clinical chemistry and particularly effects on the molecular level. Since azole fungicides are considered to cause liver toxicity by a mechanism involving the constitutive androstane receptor (CAR), a known CAR activator (phenobarbital, PB) was administered to investigate potential similarities between triazoles and PB-mediated liver toxicity by pathway-focused gene expression analysis. Our results show an increase in liver weights and additionally histopathological changes (hepatocellular hypertrophy) for all substances at the top dose levels. The effects on liver weight were most pronounced for cyproconazole by which also the animals receiving the next lower dose were affected. In addition, vacuolisation of hepatocytes was observed at the top dose level. No such findings were obtained with any substance at lower doses to which consumers and operators might be exposed to. In contrast, the expression of sensitive marker genes (like some cytochrome-P-450 isoforms) was significantly affected also at the lower dose levels. While some of these changes, like the induction of genes related to fatty acid and phospholipid metabolism (e.g. Fasn, Fat/Cd36, Ppargc1a) or xenobiotic metabolism (Cyp1a1, Cyp2b1, Cyp3a2), could be associated with high dose effects like hepatocellular vacuolisation or hypertrophy, a histopathological correlate was lacking for others.
Archives of Toxicology | 2015
P. Marx-Stoelting; Albert Braeuning; Thorsten Buhrke; Alfonso Lampen; Lars Niemann; M. Oelgeschlaeger; S. Rieke; F. Schmidt; T. Heise; Rudolf Pfeil; Roland Solecki
Abstract Advances in omics techniques and molecular toxicology are necessary to provide new perspectives for regulatory toxicology. By the application of modern molecular techniques, more mechanistic information should be gained to support standard toxicity studies and to contribute to a reduction and refinement of animal experiments required for certain regulatory purposes. The relevance and applicability of data obtained by omics methods to regulatory purposes such as grouping of chemicals, mode of action analysis or classification and labelling needs further improvement, defined validation and cautious expert judgment. Based on the results of an international expert workshop organized 2014 by the Federal Institute for Risk Assessment in Berlin, this paper is aimed to provide a critical overview of the regulatory relevance and reliability of omics methods, basic requirements on data quality and validation, as well as regulatory criteria to decide which effects observed by omics methods should be considered adverse or non-adverse. As a way forward, it was concluded that the inclusion of omics data can facilitate a more flexible approach for regulatory risk assessment and may help to reduce or refine animal testing.
Toxicology | 2016
F. Schmidt; P. Marx-Stoelting; W. Haider; T. Heise; Carsten Kneuer; M. Ladwig; S. Banneke; S. Rieke; Lars Niemann
Two 28-day feeding studies were performed in male rats to investigate combination effects of azole fungicides in a broad dose range. Following separate administration of cyproconazole, epoxiconazole, prochloraz, propiconazole, and tebuconazole at five dose levels, the first three compounds were selected to be administered in two different mixtures at three dose levels including very low doses. Here we present the data obtained by clinical observations, pathology, histopathology, clinical chemistry and haematology. The liver was the common main target organ of all compounds and their mixtures. In addition, epoxiconazole exhibited an effect on the adrenals. Furthermore, food consumption and efficiency and body weight (gain) were affected. Adverse effects of the combinations were observed at dose levels at which the individual substances caused similar effects. No evidence of adverse effects was found at dose levels below the previously established NOAELs. Our findings indicate that the concept of dose additivity appears sufficiently protective for risk assessment of the fungicides examined. Besides toxicological testing, tissue residues of the azole compounds in liver, testis and kidney were determined revealing remarkable differences following administration of the single substances and of the mixtures.
Toxicology | 2017
S. Rieke; T. Heise; F. Schmidt; W. Haider; Hanna Bednarz; Karsten Niehaus; Almut Mentz; Jörn Kalinowski; K. I. Hirsch-Ernst; Pablo Steinberg; L. Niemann; P. Marx-Stoelting
Consumers are exposed to low concentrations of a variety of pesticide residues in or on food. Some of them might interfere with the endocrine system. While each individual active substance has been extensively tested for toxicity and safety, potential combination effects possibly resulting from combined exposure to different pesticides have seldomly been tested so far, especially in vivo. Since the adrenal gland is a key endocrine organ, we investigated if and how substances of a group of fungicides presumed to interfere with the biosynthesis of steroid hormones affect this organ when applied individually and in combination in a broad dose range. A 28-day feeding study was conducted in Wistar rats by using three (tri)azole fungicides considered to potentially affect the endocrine system (cyproconazole, epoxiconazole and prochloraz) individually at five dose levels, ranging from 0.9ppm to 2400ppm, and in combination at three dose levels. The parameters analysed included classical toxicology (pathology, histopathology, clinical chemistry) and molecular toxicology endpoints (gene expression arrays and quantitative real time PCR e.g. of Star, HSD3β, Cyp11a1, Cyp11b1, Cyp11b2, Cyp 21, ApoE), as well as hormone analysis. A dose-dependent decrease in the adrenal gland weight of rats treated with epoxiconazole alone, which was accompanied by an atrophy of the adrenal gland as well as by an increase in the serum cholesterol level and which only became statistically significant at the top dose levels, was observed. These effects were attenuated in the combination experiments, although the same epoxiconazole concentration was used.
Archives of Toxicology | 2018
C. Knebel; Juliane Kebben; Ivano Eberini; Luca Palazzolo; Helen Hammer; Roderich D. Süssmuth; T. Heise; Stefanie Hessel-Pras; Alfonso Lampen; Albert Braeuning; Philip Marx-Stoelting
Consumers are exposed to pesticide residues and other food contaminants via the diet. Both can exert adverse effects on different target organs via the activation of nuclear receptor pathways. Hepatotoxic effects of the widely used triazole fungicide propiconazole (Pi) are generally attributed to the activation of the constitutive androstane receptor (CAR) or the pregnane X receptor (PXR). We now investigated the effects of Pi on the aryl hydrocarbon receptor (AHR) and possible mixture toxicity when Pi is present in combination with BbF, an AHR ligand. In silico docking simulations indicate that Pi can bind to human AHR. Subsequent dual luciferase reporter gene assays in human HepG2 cells showed that Pi activates the AHR in vitro. This concentration-dependent activation was confirmed by real-time RT-PCR analyses of the model AHR target genes CYP1A1 and CYP1A2 in human HepaRG and HepG2 cells. In addition, induction of CYP1A1 protein levels and enzyme activity were recorded. Similarly, increased mRNA expression and enzyme activity of Cyp1a1 and Cyp1a2 was observed in livers of rats treated with Pi for 28 days via the diet. Gene expression analysis in AHR-knockout HepaRG cells showed no induction of CYP1A1 and CYP1A2, whereas gene expression in CAR-, and PXR-knockout cells was induced. Finally, mixture effects of Pi and BbF were analyzed in human cell lines: modeling of concentration–response curves revealed concentration additivity. In conclusion, our results demonstrate that the triazole Pi is an activator of AHR in silico, in vitro and in vivo and causes additive effects with an established AHR ligand.
Molecular Nutrition & Food Research | 2015
Anke Ehlers; Simone Florian; Fabian Schumacher; Walter Meinl; Dido Lenze; Michael Hummel; T. Heise; Albrecht Seidel; Hansruedi Glatt; Alfonso Lampen
SCOPE Breakdown products of certain glucosinolates induce detoxifying enzymes and demonstrate preventive activities against chemically induced tumourigenesis in animal models. However, other breakdown products are genotoxic. 1-Methoxy-3-indolylmethyl alcohol (1-MIM-OH) is mutagenic in bacterial and mammalian cells upon activation by sulphotransferases and forms DNA adducts in mouse tissues. This effect is enhanced in mice transgenic for human sulphotransferases 1A1/2 (FVB/N-hSULT1A1/2). Therefore, we explored gene expression changes induced by 1-MIM-OH in mouse liver. METHODS AND RESULTS FVB/N-hSULT1A1/2 mice were orally treated with 1-MIM-OH for 21 or 90 days, leading to high levels of hepatic 1-MIM-DNA adducts. Genome-wide expression analyses demonstrated no influence on detoxifying enzymes, but up-regulation of many mediators of the tumour suppressor p53 and down-regulation of Fhit and other long genes. While this p53 response might indicate protection, it was unable to prevent the accumulation of DNA adducts. However, various epidemiological studies reported inverse associations between the intake of cruciferous vegetables and cancer. This association may be due to the presence of other glucosinolates with tumour-preventing influences possibly outweighing adverse effects of some metabolites. CONCLUSION 1-MIM-OH is a genotoxic substance inducing a gene expression profile similar to the expression signature caused by known genotoxic hepatocarcinogens.
Archives of Toxicology | 2008
Markus Schug; T. Heise; Alexander Bauer; D. Storm; M. Blaszkewicz; Essam Bedawy; Marc Brulport; B. Geppert; Matthias Hermes; Wolfram Föllmann; K. Rapp; L. Maccoux; Wiebke Schormann; Klaus E. Appel; Axel Oberemm; Ursula Gundert-Remy; Jan G. Hengstler
Archives of Toxicology | 2013
Markus Schug; Regina Stöber; T. Heise; Hans Mielke; Ursula Gundert-Remy; Patricio Godoy; Raymond Reif; Meinolf Blaszkewicz; Heidrun Ellinger-Ziegelbauer; Hans-Jürgen Ahr; Silvia Selinski; Georgia Günther; Rosemarie Marchan; Agapios Sachinidis; Andreas K. Nussler; Axel Oberemm; Jan G. Hengstler
Archives of Toxicology | 2018
T. Heise; F. Schmidt; C. Knebel; S. Rieke; W. Haider; I. Geburek; Lars Niemann; P. Marx-Stoelting
Toxicology Letters | 2013
T. Heise; S. Rieke; F. Schmidt; Mechthild Ladwig; Wolfram Haider; Carsten Kneuer; Rudolf Pfeil; Lars Niemann; P. Marx-Stoelting