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Industrial, Biocide, and Cosmetic Chemical Inducers of Cholestasis

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Specialty Toxicology
Date 2019 Jun 28
PMID 31243985
Citations 8
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Abstract

A frequent side effect of many drugs includes the occurrence of cholestatic liver toxicity. Over the past couple of decades, drug-induced cholestasis has gained considerable attention, resulting in a plethora of data regarding its prevalence and mechanistic basis. Likewise, several food additives and dietary supplements have been reported to cause cholestatic liver insults in the past few years. The induction of cholestatic hepatotoxicity by other types of chemicals, in particular synthetic compounds, such as industrial chemicals, biocides, and cosmetic ingredients, has been much less documented. Such information can be found in occasional clinical case reports of accidental intake or suicide attempts as well as in basic and translational study reports on mechanisms or testing of new therapeutics in cholestatic animal models. This paper focuses on such nonpharmaceutical and nondietary synthetic chemical inducers of cholestatic liver injury, in particular alpha-naphthylisocyanate, 3,5-diethoxycarbonyl-1,4-dihydrocollidine, methylenedianiline, paraquat, tartrazine, triclosan, 2-octynoic acid, and 2-nonynoic acid. Most of these cholestatic compounds act by similar mechanisms. This could open perspectives for the prediction of cholestatic potential of chemicals.

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References
1.
Chedik L, Bruyere A, Le Vee M, Stieger B, Denizot C, Parmentier Y . Inhibition of Human Drug Transporter Activities by the Pyrethroid Pesticides Allethrin and Tetramethrin. PLoS One. 2017; 12(1):e0169480. PMC: 5242521. DOI: 10.1371/journal.pone.0169480. View

2.
Bastian P . Occupational hepatitis caused by methylenedianiline. Med J Aust. 1984; 141(8):533-5. DOI: 10.5694/j.1326-5377.1984.tb132915.x. View

3.
Bamforth K, Jones A, Roberts R, Coughtrie M . Common food additives are potent inhibitors of human liver 17 alpha-ethinyloestradiol and dopamine sulphotransferases. Biochem Pharmacol. 1993; 46(10):1713-20. DOI: 10.1016/0006-2952(93)90575-h. View

4.
Noor F . A shift in paradigm towards human biology-based systems for cholestatic-liver diseases. J Physiol. 2015; 593(23):5043-55. PMC: 4666998. DOI: 10.1113/JP271124. View

5.
Zhao Y, He X, Ma X, Wen J, Li P, Wang J . Paeoniflorin ameliorates cholestasis via regulating hepatic transporters and suppressing inflammation in ANIT-fed rats. Biomed Pharmacother. 2017; 89:61-68. DOI: 10.1016/j.biopha.2017.02.025. View