In vitro hepatotoxicity of ‘Legal X’: the combination of 1-benzylpiperazine (BZP) and 1-(m-trifluoromethylphenyl)piperazine (TFMPP) triggers oxidative stress, mitochondrial impairment and apoptosis

N -Benzylpiperazine (BZP) and 1-(3-trifluoromethylphenyl)piperazine (TFMPP) are two synthetic phenylpiperazine analogues that have been frequently commercialized in combination as an alternative to ecstasy (‘Legal X’). Despite reports of several clinical complications following the use of these drug...

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Veröffentlicht in:Archives of toxicology 2017-03, Vol.91 (3), p.1413-1430
Hauptverfasser: Dias da Silva, Diana, Silva, Maria João, Moreira, Patrícia, Martins, Maria João, Valente, Maria João, Carvalho, Félix, Bastos, Maria de Lourdes, Carmo, Helena
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Sprache:eng
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Zusammenfassung:N -Benzylpiperazine (BZP) and 1-(3-trifluoromethylphenyl)piperazine (TFMPP) are two synthetic phenylpiperazine analogues that have been frequently commercialized in combination as an alternative to ecstasy (‘Legal X’). Despite reports of several clinical complications following the use of these drugs in association, few studies have been conducted so far to elucidate their combined toxicity. The present study was aimed at clarifying the cytotoxic effects of mixtures of BZP and TFMPP in vitro. Human-derived HepaRG cells and primary rat hepatocytes were exposed to the drugs, individually or combined at different mixture ratios, and cytotoxicity was assessed by the MTT assay. Mixture additivity expectations were calculated by the independent action and the concentration addition (CA) models and compared with the experimental outcomes. To delineate the mechanisms underlying the elicited effects, a range of stress endpoints was evaluated, including oxidative stress, energetic imbalance, and metabolic interactions. It was observed that primary rat hepatocytes are more sensitive than HepaRG cells to the toxicity of BZP (EC 50 2.20 and 6.60 mM, respectively) and TFMPP (EC 50 0.14 and 0.45 mM, respectively). For all BZP–TFMPP combinations tested, CA was the most appropriate model to predict the mixture effects. TFMPP proved to act additively with BZP to produce significant hepatotoxicity ( p  
ISSN:0340-5761
1432-0738
DOI:10.1007/s00204-016-1777-9