The Fusarium metabolite culmorin suppresses the in vitro glucuronidation of deoxynivalenol

被引:31
作者
Woelflingseder, Lydia [1 ]
Warth, Benedikt [1 ]
Vierheilig, Immina [1 ]
Schwartz-Zimmermann, Heidi [2 ,3 ]
Hametner, Christian [4 ]
Nagl, Veronika [5 ]
Novak, Barbara [5 ]
Sarkanj, Bojan [6 ]
Berthiller, Franz [2 ,3 ]
Adam, Gerhard [7 ]
Marko, Doris [1 ]
机构
[1] Univ Vienna, Dept Food Chem & Toxicol, Fac Chem, Wahringerstr 38, A-1090 Vienna, Austria
[2] Univ Nat Resources & Life Sci Vienna BOKU, Christian Doppler Lab Mycotoxin Metab, Konrad Lorenz Str 20, A-3430 Tulln, Austria
[3] Univ Nat Resources & Life Sci Vienna BOKU, Dept Agrobiotechnol IFA Tulln, Ctr Analyt Chem, Konrad Lorenz Str 20, A-3430 Tulln, Austria
[4] Vienna Univ Technol, Inst Appl Synthet Chem, Getreidemarkt 9-163, A-1060 Vienna, Austria
[5] BIOMIN Res Ctr, Technopk 1, A-3430 Tulln, Austria
[6] Josip Juraj Strossmayer Univ Osijek, Fac Food Technol, Dept Appl Chem & Ecol, Franje Kuhaca 20, Osijek 31000, Croatia
[7] Univ Nat Resources & Life Sci Vienna BOKU, Dept Appl Genet & Cell Biol, Konrad Lorenz Str 24, A-3430 Tulln, Austria
基金
奥地利科学基金会;
关键词
Natural contaminants; Drug metabolism; Fungal metabolites; Chemical mixtures; Drug-exposome interactions; HUMAN UDP-GLUCURONOSYLTRANSFERASES; RIBOTOXIC STRESS-RESPONSE; MESSENGER-RNA EXPRESSION; MYCOTOXIN DEOXYNIVALENOL; GRAMINEARUM METABOLITES; SECONDARY METABOLITES; HUMAN HEPATOCYTES; DRUG-METABOLISM; GENE-EXPRESSION; MECHANISMS;
D O I
10.1007/s00204-019-02459-w
中图分类号
R99 [毒物学(毒理学)];
学科分类号
100405 ;
摘要
Glucuronidation is a major phase II conjugation pathway in mammals, playing an important role in the detoxification and biotransformation of xenobiotics including mycotoxins such as deoxynivalenol (DON). Culmorin (CUL), a potentially co-occurring Fusarium metabolite, was recently found to inhibit the corresponding detoxification reaction in plants, namely DON-glucoside formation, raising the question whether CUL might affect also the mammalian counterpart. Using cell-free conditions, CUL when present equimolar (67 mu M) or in fivefold excess, suppressed DON glucuronidation by human liver microsomes, reducing the formation of DON-15-glucuronide by 15 and 50%, and DON-3-glucuronide by 30 and 50%, respectively. Substantial inhibitory effects on DON glucuronidation up to 100% were found using the human recombinant uridine 5 '-diphospho-glucuronosyltransferases (UGT) 2B4 and 2B7, applying a tenfold excess of CUL (100 mu M). In addition, we observed the formation of a novel metabolite of CUL, CUL-11-glucuronide, identified for the first time in vitro as well as in vivo in piglet and human urine samples. Despite the observed potency of CUL to inhibit glucuronidation, no significant synergistic toxicity on cell viability was observed in combinations of CUL (0.1-100 mu M) and DON (0.01-10 mu M) in HT-29 and HepG2 cells, presumably reflecting the limited capacity of the tested cell lines for DON glucuronidation. However, in humans, glucuronidation is known to represent the main detoxification pathway for DON. The present results, including the identification of CUL-11-glucuronide in urine samples of piglets and humans, underline the necessity of further studies on the relevance of CUL as a potentially co-occurring modulator of DON toxicokinetics in vivo.
引用
收藏
页码:1729 / 1743
页数:15
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