Primary hepatocytes as an useful bioassay to characterize metabolism and bioactivity of illicit steroids in cattle

► The value of cattle hepatocytes as a bioassay for illicit steroids was investigated. ► DHEA up-regulated mRNA levels of three DME and five NRs. ► No effect of boldione, boldenone and DHEA on CYP3A28 gene and protein expression. ► Boldione- and boldenone-exposed cells showed an inhibition of TST hy...

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Veröffentlicht in:Toxicology in vitro 2012-10, Vol.26 (7), p.1224-1232
Hauptverfasser: Giantin, Mery, Gallina, Guglielmo, Pegolo, Sara, Lopparelli, Rosa Maria, Sandron, Clara, Zancanella, Vanessa, Nebbia, Carlo, Favretto, Donata, Capolongo, Francesca, Montesissa, Clara, Dacasto, Mauro
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container_end_page 1232
container_issue 7
container_start_page 1224
container_title Toxicology in vitro
container_volume 26
creator Giantin, Mery
Gallina, Guglielmo
Pegolo, Sara
Lopparelli, Rosa Maria
Sandron, Clara
Zancanella, Vanessa
Nebbia, Carlo
Favretto, Donata
Capolongo, Francesca
Montesissa, Clara
Dacasto, Mauro
description ► The value of cattle hepatocytes as a bioassay for illicit steroids was investigated. ► DHEA up-regulated mRNA levels of three DME and five NRs. ► No effect of boldione, boldenone and DHEA on CYP3A28 gene and protein expression. ► Boldione- and boldenone-exposed cells showed an inhibition of TST hydroxylation. ► Many mono-hydroxylated boldione and boldenone derivatives were detected. Cattle hepatocytes have already been used in veterinary in vitro toxicology, but their usefulness as a multi-parametric screening bioassay has never been investigated so far. In this study, cattle hepatocytes were incubated with illicit steroids/prohormones (boldenone, BOLD; its precursor boldione, ADD; dehydroepiandrosterone, DHEA; an association of ADD:BOLD), to characterize their transcriptional effects on drug metabolizing enzymes (DMEs) and related nuclear receptors (NRs), on cytochrome P450 3A (CYP3A) apoprotein and catalytic activity as well as to determine ADD and BOLD metabolite profiling. DHEA-exposed cells showed an up-regulation (higher than 2.5-fold changes) of three out of six NRs, CYP2B22 and CYP2C87; likewise, ADD:BOLD increased CYP4A11 mRNA levels. In contrast, a reduction of CYP1A1 and CYP2E1 mRNAs (lower than 2.5−1-fold changes) was noticed in ADD- and DHEA-incubated cells. No effect was noticed on CYP3A gene and protein expression, though an inhibition of 6β-, 2β- and 16β-hydroxylation of testosterone (higher than 60% of control cells) was observed in ADD- and BOLD-exposed cells. Finally, 17α-BOLD was the main metabolite extracted from hepatocyte media incubated with ADD and BOLD, but several mono-hydroxylated BOLD and ADD derivatives were detected, too. Collectively, cattle hepatocytes can represent a complementary screening bioassay, useful to characterize growth promoters metabolite profiling and their effects upon DMEs expression, regulation and function.
doi_str_mv 10.1016/j.tiv.2012.06.003
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Cattle hepatocytes have already been used in veterinary in vitro toxicology, but their usefulness as a multi-parametric screening bioassay has never been investigated so far. In this study, cattle hepatocytes were incubated with illicit steroids/prohormones (boldenone, BOLD; its precursor boldione, ADD; dehydroepiandrosterone, DHEA; an association of ADD:BOLD), to characterize their transcriptional effects on drug metabolizing enzymes (DMEs) and related nuclear receptors (NRs), on cytochrome P450 3A (CYP3A) apoprotein and catalytic activity as well as to determine ADD and BOLD metabolite profiling. DHEA-exposed cells showed an up-regulation (higher than 2.5-fold changes) of three out of six NRs, CYP2B22 and CYP2C87; likewise, ADD:BOLD increased CYP4A11 mRNA levels. In contrast, a reduction of CYP1A1 and CYP2E1 mRNAs (lower than 2.5−1-fold changes) was noticed in ADD- and DHEA-incubated cells. No effect was noticed on CYP3A gene and protein expression, though an inhibition of 6β-, 2β- and 16β-hydroxylation of testosterone (higher than 60% of control cells) was observed in ADD- and BOLD-exposed cells. Finally, 17α-BOLD was the main metabolite extracted from hepatocyte media incubated with ADD and BOLD, but several mono-hydroxylated BOLD and ADD derivatives were detected, too. 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Cattle hepatocytes have already been used in veterinary in vitro toxicology, but their usefulness as a multi-parametric screening bioassay has never been investigated so far. In this study, cattle hepatocytes were incubated with illicit steroids/prohormones (boldenone, BOLD; its precursor boldione, ADD; dehydroepiandrosterone, DHEA; an association of ADD:BOLD), to characterize their transcriptional effects on drug metabolizing enzymes (DMEs) and related nuclear receptors (NRs), on cytochrome P450 3A (CYP3A) apoprotein and catalytic activity as well as to determine ADD and BOLD metabolite profiling. DHEA-exposed cells showed an up-regulation (higher than 2.5-fold changes) of three out of six NRs, CYP2B22 and CYP2C87; likewise, ADD:BOLD increased CYP4A11 mRNA levels. In contrast, a reduction of CYP1A1 and CYP2E1 mRNAs (lower than 2.5−1-fold changes) was noticed in ADD- and DHEA-incubated cells. No effect was noticed on CYP3A gene and protein expression, though an inhibition of 6β-, 2β- and 16β-hydroxylation of testosterone (higher than 60% of control cells) was observed in ADD- and BOLD-exposed cells. Finally, 17α-BOLD was the main metabolite extracted from hepatocyte media incubated with ADD and BOLD, but several mono-hydroxylated BOLD and ADD derivatives were detected, too. Collectively, cattle hepatocytes can represent a complementary screening bioassay, useful to characterize growth promoters metabolite profiling and their effects upon DMEs expression, regulation and function.</description><subject>Anabolic Agents - pharmacology</subject><subject>Androstadienes - pharmacology</subject><subject>Animal Testing Alternatives</subject><subject>Animals</subject><subject>Bioassay</subject><subject>Biological Assay</subject><subject>Cattle</subject><subject>Cattle hepatocytes</subject><subject>Cells, Cultured</subject><subject>CYP3A gene</subject><subject>Dehydroepiandrosterone - pharmacology</subject><subject>Drug Combinations</subject><subject>Drug metabolism</subject><subject>Female</subject><subject>Hepatocytes - drug effects</subject><subject>Hepatocytes - metabolism</subject><subject>Illicit steroids</subject><subject>Inactivation, Metabolic</subject><subject>Prohormones</subject><subject>Steroids - pharmacology</subject><subject>Substance Abuse Detection - methods</subject><subject>Testosterone - analogs &amp; 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Gallina, Guglielmo ; Pegolo, Sara ; Lopparelli, Rosa Maria ; Sandron, Clara ; Zancanella, Vanessa ; Nebbia, Carlo ; Favretto, Donata ; Capolongo, Francesca ; Montesissa, Clara ; Dacasto, Mauro</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c429t-90f94bd4a9fb3b9c6d8d4bc9ac76e25b90571ff98806f79880b82ca6a0cf08383</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2012</creationdate><topic>Anabolic Agents - pharmacology</topic><topic>Androstadienes - pharmacology</topic><topic>Animal Testing Alternatives</topic><topic>Animals</topic><topic>Bioassay</topic><topic>Biological Assay</topic><topic>Cattle</topic><topic>Cattle hepatocytes</topic><topic>Cells, Cultured</topic><topic>CYP3A gene</topic><topic>Dehydroepiandrosterone - pharmacology</topic><topic>Drug Combinations</topic><topic>Drug metabolism</topic><topic>Female</topic><topic>Hepatocytes - drug effects</topic><topic>Hepatocytes - metabolism</topic><topic>Illicit steroids</topic><topic>Inactivation, Metabolic</topic><topic>Prohormones</topic><topic>Steroids - pharmacology</topic><topic>Substance Abuse Detection - methods</topic><topic>Testosterone - analogs &amp; 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Cattle hepatocytes have already been used in veterinary in vitro toxicology, but their usefulness as a multi-parametric screening bioassay has never been investigated so far. In this study, cattle hepatocytes were incubated with illicit steroids/prohormones (boldenone, BOLD; its precursor boldione, ADD; dehydroepiandrosterone, DHEA; an association of ADD:BOLD), to characterize their transcriptional effects on drug metabolizing enzymes (DMEs) and related nuclear receptors (NRs), on cytochrome P450 3A (CYP3A) apoprotein and catalytic activity as well as to determine ADD and BOLD metabolite profiling. DHEA-exposed cells showed an up-regulation (higher than 2.5-fold changes) of three out of six NRs, CYP2B22 and CYP2C87; likewise, ADD:BOLD increased CYP4A11 mRNA levels. In contrast, a reduction of CYP1A1 and CYP2E1 mRNAs (lower than 2.5−1-fold changes) was noticed in ADD- and DHEA-incubated cells. No effect was noticed on CYP3A gene and protein expression, though an inhibition of 6β-, 2β- and 16β-hydroxylation of testosterone (higher than 60% of control cells) was observed in ADD- and BOLD-exposed cells. Finally, 17α-BOLD was the main metabolite extracted from hepatocyte media incubated with ADD and BOLD, but several mono-hydroxylated BOLD and ADD derivatives were detected, too. Collectively, cattle hepatocytes can represent a complementary screening bioassay, useful to characterize growth promoters metabolite profiling and their effects upon DMEs expression, regulation and function.</abstract><cop>England</cop><pub>Elsevier Ltd</pub><pmid>22713311</pmid><doi>10.1016/j.tiv.2012.06.003</doi><tpages>9</tpages><oa>free_for_read</oa></addata></record>
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subjects Anabolic Agents - pharmacology
Androstadienes - pharmacology
Animal Testing Alternatives
Animals
Bioassay
Biological Assay
Cattle
Cattle hepatocytes
Cells, Cultured
CYP3A gene
Dehydroepiandrosterone - pharmacology
Drug Combinations
Drug metabolism
Female
Hepatocytes - drug effects
Hepatocytes - metabolism
Illicit steroids
Inactivation, Metabolic
Prohormones
Steroids - pharmacology
Substance Abuse Detection - methods
Testosterone - analogs & derivatives
Testosterone - pharmacology
title Primary hepatocytes as an useful bioassay to characterize metabolism and bioactivity of illicit steroids in cattle
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