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2.
J Immunotoxicol ; 18(1): 1-12, 2021 12.
Article in English | MEDLINE | ID: mdl-34357831

ABSTRACT

Sulfolane is a solvent used in the petrochemical industry and a groundwater contaminant in areas near refineries. The current studies were conducted to assess the impact of oral exposure to sulfolane on the immune system using two models: (1) a perinatal drinking water exposure to 0, 30, 100, 300, or 1000 mg/L from gestation day (GD) 6 until ∼13 weeks-of-age in Harlan Sprague Dawley rats; and, (2) a 90-day gavage exposure of adult female B6C3F1/N mice to 0, 1, 10, 30, 100, or 300 mg/kg/day. Immune parameters evaluated included measurement of antibody production against sheep red blood cells (SRBC) and keyhole limpet hemocyanin (KLH), ex vivo measurements of natural killer (NK) cell activity, cytotoxic T-cell (CTL) activity, and T-cell proliferation, as well as measures of splenic immune cell populations, hematological parameters, and histopathology of immune tissues. A decrease in ex vivo NK cell activity was observed in cells from female - but not male - F1 rats following developmental exposure. In adult female mice, splenic NK cell number was lower than the vehicle controls at doses ≥ 100 mg/kg; however, ex vivo NK cell activity was not affected by sulfolane treatment. In female mice, a decrease in the number of large unstained cells at doses ≥ 30 mg/kg was observed. In F1 rats, effects on white blood cells (WBC) were limited to a decreasing trend in leukocytes in females; no effects were observed in males. Under the conditions of this study, a no-observed-effect level (NOEL) of 3 mg/kg/day was identified based on reduced NK cell activity in female F1 rats. Overall, these findings suggest that oral exposure to sulfolane in rodents had minimal effects on the immune system.


Subject(s)
Spleen , Thiophenes , Animals , Female , Male , Mice , Mice, Inbred Strains , Pregnancy , Rats , Rats, Sprague-Dawley , Sheep
3.
Xenobiotica ; 51(6): 689-702, 2021 Jun.
Article in English | MEDLINE | ID: mdl-33683982

ABSTRACT

Ethylene glycol 2-ethylhexyl ether (EGEHE) is a solvent used in a variety of applications.We report disposition and metabolism of EGEHE following a single gavage or dermal administration of 50, 150 or 500 mg/kg [14C]EGEHE in rats and mice and in vitro in rat hepatocytes.EGEHE was cleared rapidly in rat hepatocytes (half-life ∼4 min) with no sex difference.EGEHE was well- and moderately absorbed following oral administration (rats: 80-96%, mice: 91-95%) and dermal application (rats: 25-37%, mice: 22-24%), respectively, and rapidly excreted in urine.[14C]EGEHE-derived radioactivity was distributed to tissues (oral: 2.3-7.2%, dermal: 0.7-2.2%) with liver and kidney containing the highest levels in both species.EGEHE was extensively metabolised with little to no parent detected in urine. The alkoxyacetic acid metabolite, which has previously been shown to mediate toxicities of other shorter-chain ethylene glycol ethers, was not detected.There were no apparent dose, species or sex differences in disposition and metabolism of EGEHE, except that the exhaled volatile compounds were greater in mice (19-20%) compared with rats (<2%).These studies address a critical gap in the scientific literature and provide data that will inform future studies designed to evaluate toxicity of EGEHE.


Subject(s)
Ethylene Glycols , Hepatocytes , Administration, Oral , Animals , Ethers , Female , Male , Mice , Rats , Rats, Sprague-Dawley , Tissue Distribution
4.
Reprod Toxicol ; 96: 258-272, 2020 09.
Article in English | MEDLINE | ID: mdl-32702374

ABSTRACT

Butylparaben (BP) is an antimicrobial agent utilized for decades as a preservative in numerous consumer products. The safety of parabens has recently come under scrutiny based on reports of estrogenic activity and suggested adverse effects upon the reproductive system. Due to the limited availability of studies that address the potential for BP exposure to induce reproductive toxicity, and clear evidence of human exposure, the National Toxicology Program conducted a multigenerational continuous breeding study to evaluate the impact of dietary BP-exposure at 0, 5000, 15,000, or 40,000 ppm on reproductive and developmental parameters in Hsd:Sprague Dawley SD rats. BP-exposure was not associated with adverse alterations of fertility, fecundity, pubertal attainment, or reproductive parameters in F0, F1, or F2 generations. Exposure-dependent increases in liver weights, and incidences of non-neoplastic liver lesions suggest the liver is a target organ of BP toxicity. No findings were observed that would support the purported mechanism of BP-induced endocrine disruption in perinatally-exposed rodents.


Subject(s)
Anti-Infective Agents/toxicity , Parabens/toxicity , Animals , Dietary Exposure , Female , Liver/drug effects , Liver/pathology , Male , Maternal-Fetal Exchange , Pregnancy , Rats, Sprague-Dawley , Reproduction/drug effects , Sexual Maturation/drug effects
5.
Reprod Toxicol ; 98: 13-28, 2020 12.
Article in English | MEDLINE | ID: mdl-32229253

ABSTRACT

The general population, including children and adolescents, is exposed to 4-methylimidazole (4-MI) in the diet. 4-MI is a by-product of caramel color manufacturing. It has been previously classified as a possible human carcinogen and displays potential reproductive toxicity. A follow up assessment of reproductive toxicity was conducted in rats utilizing the reproductive assessment by continuous breeding paradigm, in which multiple generations were exposed to 4-MI in diet at 750, 2500, and 5000 ppm. 4-MI exposure was associated with delays in preputial separation and vaginal opening, impairment in reproductive performance, and concomitant histopathological findings in the prostate, testis, and epididymis at 2500 and 5000 ppm. The Lowest Observed Adverse Effect Level for reproductive (based on prostate atrophy) and developmental toxicity (based on delays in preputial separation and vaginal opening) was 750 ppm, equivalent to approximately 50-60 mg/kg bw/day.


Subject(s)
Imidazoles/toxicity , Animals , Diet , Epididymis/drug effects , Epididymis/pathology , Female , Male , Prostate/drug effects , Prostate/pathology , Rats, Sprague-Dawley , Reproduction/drug effects , Testis/drug effects , Testis/pathology , Vagina/abnormalities , Vagina/drug effects
6.
Xenobiotica ; 50(4): 442-453, 2020 Apr.
Article in English | MEDLINE | ID: mdl-31184953

ABSTRACT

Sulfolane has been found as a ground water contaminant near refining sites. These studies investigated the in vitro hepatic clearance and in vivo disposition of [14C]sulfolane in rats and mice following a single oral administration (30, 100, or 300 mg/kg) and dermal application (100 mg/kg).[14C]Sulfolane was well-absorbed in male rats following oral administration and excreted extensively in urine (≥93%). Total radioactivity in tissues at 24 and 48 h was ∼7% and <2%. Disposition pattern was similar in female rats and male and female mice at 100 mg/kg oral dose.Dermally applied [14C]Sulfolane (covered dose site, 100 mg/kg) was poorly absorbed in male (∼16%) and female (∼19%) rats; absorption increased to 59% when the dose site was uncovered in male rats suggesting ingestion of dose via grooming of the dose site. Dermally applied [14C]sulfolane (100 mg/kg, covered dose site) was well absorbed in male (∼70%) and female (∼80%) mice.Urinary radiochemical profiles were similar between routes, species, and sexes; the main analytes present in urine were sulfolane and 3-hydroxysulfolane.Sulfolane was not cleared in hepatocytes from rodents or human suggesting sites other than liver might be involved in metabolism of sulfolane in vivo.


Subject(s)
Thiophenes/metabolism , Water Pollutants, Chemical/metabolism , Administration, Oral , Animals , Female , Hepatocytes/metabolism , Humans , Liver/metabolism , Male , Mice , Mice, Inbred Strains , Rats , Rats, Sprague-Dawley
7.
Xenobiotica ; 50(6): 722-732, 2020 Jun.
Article in English | MEDLINE | ID: mdl-31680603

ABSTRACT

Poly- and perfluorinated alkyl substances (PFAS) are environmentally persistent chemicals associated with many adverse health outcomes. The National Toxicology Program evaluated the toxicokinetics (TK) of several PFAS to provide context for toxicologic findings.Plasma TK parameters and tissue (liver, kidney, brain) concentrations are reported for perfluorohexanoic acid (PFHxA), perfluorooctanoic acid (PFOA) or perfluorodecanoic acid (PFDA) after single-dose administration in male and female Hsd:Sprague-Dawley® (SD) rats.Generally, longer Tmax and elimination half-lives, and slower clearance f, were correlated with longer chain length. Male rats administered PFOA had a prolonged half-life compared to females (215 h vs. 2.75), while females had faster clearance and smaller plasma area under the curve (AUC). Females administered PFHxA had a shorter half-life (2 h vs. 9) than males and faster clearance with a smaller plasma AUC, although this was less pronounced than PFOA. There was no sex difference in PFDA half-life. Female rats administered PFDA had a higher plasma AUC/dose than males, and a slower clearance. PFDA had the highest levels in the liver of the PFAS evaluated.Profiling the toxicokinetics of these PFAS allows for comparison among subclasses, and more direct translation of rodent toxicity to human populations.


Subject(s)
Caproates/toxicity , Caprylates/toxicity , Decanoic Acids/toxicity , Environmental Pollutants/toxicity , Fluorocarbons/toxicity , Animals , Caproates/metabolism , Caprylates/metabolism , Decanoic Acids/metabolism , Environmental Pollutants/metabolism , Female , Fluorocarbons/metabolism , Humans , Male , Rats , Rats, Sprague-Dawley , Toxicokinetics
8.
Toxicol Appl Pharmacol ; 379: 114690, 2019 09 15.
Article in English | MEDLINE | ID: mdl-31344372

ABSTRACT

Sulfolane is a ground water contaminant near refinery sites. The objective of this work was to investigate the toxicokinetics and bioavailability of sulfolane in male and female Harlan Hsd:Sprague Dawley® SD® rats and B6C3F1/N mice following a single oral administration of 10, 30, or 100 mg/kg. Sulfolane was rapidly absorbed in rats with the maximum plasma concentration, Cmax, reached at ≤1.47 h. Although Cmax increased proportionally to the dose, the half-life of elimination increased with the dose and the area under the concentration versus time curve (AUC) increased more than proportionally to the dose. In male and female rats, plasma elimination half-life increased with the dose from 1.97 to 6.33 h. Absorption of sulfolane in mice following oral administration was more rapid than in rats with Cmax reached at ≤0.55 h. In addition, mice had a shorter half-life (≤ 1.25 h) and a lower AUC than rats. In male and female mice, both Cmax and AUC increased more than proportionally to the dose. Bioavailability of sulfolane was higher in rats (81-83%) than mice (59-63%) at 10 mg/kg; at 30 and 100 mg/kg, bioavailability >100% in both species and sexes suggesting that the saturation of metabolism and clearance processes of sulfolane may begin at a single oral dose of ~30 mg/kg. There was no apparent sex difference in toxicokinetic parameters of sulfolane in rats and mice. These data demonstrate that sulfolane was well-absorbed following oral administration with high bioavailability in rats and mice with some species differences, but no sex difference.


Subject(s)
Thiophenes/toxicity , Administration, Intravenous , Administration, Oral , Animals , Biological Availability , Dose-Response Relationship, Drug , Female , Half-Life , Male , Mice , Mice, Inbred Strains , Rats , Rats, Sprague-Dawley , Sex Factors , Species Specificity , Thiophenes/administration & dosage , Thiophenes/pharmacokinetics
9.
Environ Int ; 115: 48-69, 2018 06.
Article in English | MEDLINE | ID: mdl-29549716

ABSTRACT

BACKGROUND: An increasing number of reports suggest early life exposures result in adverse effects in offspring who were never directly exposed; this phenomenon is termed "transgenerational inheritance." Given concern for public health implications for potential effects of exposures transmitted to subsequent generations, it is critical to determine how widespread and robust this phenomenon is and to identify the range of exposures and possible outcomes. OBJECTIVES: This scoping report examines the evidence for transgenerational inheritance associated with exposure to a wide range of stressors in humans and animals to identify areas of consistency, uncertainty, data gaps, and to evaluate general risk of bias issues for the transgenerational study design. METHODS: A protocol was developed to collect and categorize the literature into a systematic evidence map for transgenerational inheritance by health effects, exposures, and evidence streams following the Office of Health Assessment and Translation (OHAT) approach for conducting literature-based health assessments. RESULTS: A PubMed search yielded 63,758 unique records from which 257 relevant studies were identified and categorized into a systematic evidence map by evidence streams (46 human and 211 animal), broad health effect categories, and exposures. Data extracted from the individual studies are available in the Health Assessment Workspace Collaborative (HAWC) program. There are relatively few bodies of evidence where multiple studies evaluated the same exposure and the same or similar outcomes. Studies evaluated for risk of bias generally had multiple issues in design or conduct. CONCLUSIONS: The evidence mapping illustrated that risk of bias, few studies, and heterogeneity in exposures and endpoints examined present serious limitations to available bodies of evidence for assessing transgenerational effects. Targeted research is suggested to addressed inconsistencies and risk of bias issues identified, and thereby establish more robust bodies of evidence to critically assess transgenerational effects - particularly by adding data on exposure-outcome pairs where there is some evidence (i.e., reproductive, metabolic, and neurological effects).


Subject(s)
Biomedical Research , Databases, Factual , Environmental Exposure/analysis , Animals , Biomedical Research/methods , Biomedical Research/standards , Female , Humans , Male , Maternal Exposure , Paternal Exposure , Pregnancy , Prenatal Exposure Delayed Effects
10.
Toxicol Rep ; 3: 774-783, 2016.
Article in English | MEDLINE | ID: mdl-28959604

ABSTRACT

Butyl paraben (BPB) is an antimicrobial used in a variety of consumer products. Due to widespread human exposure and reported estrogenic activity, the National Toxicology Program quantified internal exposure during critical periods of development. Time-mated female Hsd:Sprague Dawley SD rats were administered 0, 1500, 5000 or 15,000 ppm BPB via NIH-07 feed, ad libitum, from gestation day (GD) 6 to postnatal day (PND) 28. Dam plasma, amniotic fluid and fetuses were collected on GD18 and pup and dam plasma were collected on PNDs 4, 10, 14, 21 and 28 and analyzed for free (unconjugated) and total (unconjugated and conjugated) BPB using liquid chromatography-tandem mass spectrometry. Free BPB was below the limit of quantitation in fetuses (LOQ 1.91 ng BPB/g fetus) and amniotic fluid (LOQ 0.17 ng BPB/mL amniotic fluid) at 1500 ppm. Analyte levels in amniotic fluid were less than 1% of maternal plasma, suggesting limited placental transfer. Total BPB in PND4 pup plasma was less than 5% of dam plasma in all exposure groups, suggesting low lactational transfer. However, at nearly all time points and exposure groups, there were higher levels of free BPB in pup versus dam plasma, suggesting limited conjugation in pups. Pup conjugation of BPB was age-dependent, not reaching the percent-conjugation in dams (>99%) until PNDs 21 to 28. These data illustrate low placental and lactational transfer of dietary BPB and that poor conjugation in pups during early lactation results in higher exposure to free BPB in pups compared to dams.

11.
Xenobiotica ; 43(2): 169-81, 2013 Feb.
Article in English | MEDLINE | ID: mdl-22830980

ABSTRACT

n-Butyl-p-hydroxybenzoate (n-butylparaben, BPB) is an antioxidant used in foods, pharmaceuticals and cosmetics. This study investigated the disposition of ring-labelled [(14)C]BPB in Harlan Sprague Dawley rats, and in rat and human hepatocytes. BPB was rapidly cleared in hepatocytes from rat (t(1/2) = 3-4 min) and human (t(1/2) = 20-30 min). The major metabolites detected in rat hepatocytes were hydroxybenzoic acid and in human hepatocytes were hydroxybenzoic acid and hydroxyhippuric acid. [(14)C]BPB was administered to male rats orally at 10, 100 or 1000 mg/kg, intravenously at 10 mg/kg and dermally at 10 and 100 mg/kg; female rats were administered oral doses at 10 mg/kg. Oral doses of BPB were well-absorbed (>83%) and eliminated chiefly in urine (83-84%); ≤ 1% of the radioactivity remained in tissues at 24 h or 72 h after dosing. About 4% and 8%, respectively, of 100 mg/kg dermal doses were absorbed in 24 h and 72 h, and about 50% of a 10 mg/kg dose was absorbed in 72 h. Metabolites detected in urine included those previously reported, BPB-glucuronide, BPB-sulfate, hydroxybenzoic acid and hydroxyhippuric acid, but also novel metabolites arising from ring hydroxylation followed by glucuronidation and sulfation.


Subject(s)
Hepatocytes/metabolism , Parabens/metabolism , Xenobiotics/metabolism , Administration, Cutaneous , Administration, Oral , Animals , Carbon Radioisotopes/urine , Female , Humans , Injections, Intravenous , Male , Parabens/administration & dosage , Rats , Rats, Sprague-Dawley , Xenobiotics/administration & dosage
12.
Food Chem Toxicol ; 49(9): 2116-24, 2011 Sep.
Article in English | MEDLINE | ID: mdl-21651954

ABSTRACT

Androstenedione was marketed as a dietary supplement to increase muscle mass during training. Due to concern over long-term use, the NTP evaluated the subchronic and chronic toxicity and carcinogenicity of androstenedione in male and female F344/N rats and B6C3F1 mice. In subchronic studies, dose limiting effects were not observed. A chronic (2-year) exposure by gavage at 10, 20, or 50 mg/kg in rats and male mice, and 2, 10, or 50 mg/kg in female mice (50 mg/kg, maximum feasible dose) was conducted. Increased incidences of lung alveolar/bronchiolar adenoma and carcinoma occurred in the 20 mg/kg male rats and increases in mononuclear cell leukemia occurred in the 20 and 50 mg/kg female rats, which may have been related to androstenedione administration. In male and female mice, androstenedione was carcinogenic based upon a significant increase in hepatocellular tumors. A marginal increase in pancreatic islet cell adenomas in male (50 mg/kg) and female (2, 10, 50 mg/kg) mice was considered to be related to androstenedione administration. Interestingly, incidences of male rat Leydig cell adenomas and female rat mammary gland fibroadenomas decreased. In conclusion, androstenedione was determined to be carcinogenic in male and female mice, and may have been carcinogenic in rats.


Subject(s)
Androstenedione/toxicity , Carcinogens/toxicity , Animals , Carcinogenicity Tests , Dose-Response Relationship, Drug , Female , Male , Mice , Rats , Rats, Inbred F344
13.
Toxicol Sci ; 116(2): 640-6, 2010 Aug.
Article in English | MEDLINE | ID: mdl-20484383

ABSTRACT

Deriving No Observed Adverse Effect Level (NOAEL) or benchmark dose is important for risk assessment and can be influenced by study design considerations. In order to define the di-(2-ethylhexyl) phthalate (DEHP) dose-response curve for reproductive malformations, we retained more offspring to adulthood to improve detection of these malformations in the reproductive assessment by continuous breeding study design. Sprague-Dawley rats were given a dietary administration of 1.5 (control), 10, 30, 100, 300, 1000, 7500, and 10,000 ppm DEHP. Male pups were evaluated for gross reproductive tract malformations (RTMs) associated with the "phthalate syndrome." DEHP treatment had minimal effects on P0 males. There was a statistically significant increase in F1 and F2 total RTMs (testis, epididymides, seminal vesicle, and prostate) in the 7500-ppm dose group and F1 10,000-ppm dose group. The 10,000-ppm exposed F1 males did not produce an F2 generation. The NOAEL for F1 and F2 RTM combined data, because in utero exposures were similar, were 100 ppm (4.8 mg/kg/day), which was close to the 5% response benchmark dose lower confidence limit of 142 ppm. The utility of evaluating more pups per litter was examined by generating power curves from a Monte Carlo simulation. These curves indicate a substantial increase in detection rate when three males are evaluated per litter rather than one. A 10% effect across male pups would be detected 5% of the time if one pup per litter was evaluated, but these effects would be detected 66% of the time if three pups per litter were evaluated. Taken together, this study provides a well-defined dose response of DEHP-induced RTMs and demonstrates that retention of more adult F1 and F2 males per litter, animals that were already produced, increases the ability to detect RTMs and presumably other low-incidence phenomena.


Subject(s)
Diethylhexyl Phthalate/toxicity , Genitalia/abnormalities , Abnormalities, Drug-Induced , Animals , Dose-Response Relationship, Drug , Female , Male , Monte Carlo Method , No-Observed-Adverse-Effect Level , Rats , Rats, Sprague-Dawley
14.
Toxicol Sci ; 111(1): 179-88, 2009 Sep.
Article in English | MEDLINE | ID: mdl-19564212

ABSTRACT

Vinclozolin and iprodione are dicarboximide fungicides that display antiandrogenic effects in the male rat, which suggests that a mixture would lead to cumulative effects on androgen-sensitive end points. Iprodione is a steroid synthesis inhibitor, but androgen receptor antagonist activity, which is displayed by vinclozolin, has not been fully evaluated. Here, we demonstrate that iprodione binds to the human androgen receptor (IC(50) = 86.0 microM), reduces androgen-dependent gene expression, and reduces androgen-sensitive tissue weights in castrated male rats (Hershberger assay). Since vinclozolin and iprodione affect common targets in the pubertal male rat, we tested the hypothesis that a mixture would have cumulative antiandrogenic effects. An iprodione dose, that does not significantly affect androgen-dependent morphological end points, was combined with vinclozolin doses (2 x 5 factorial design). Sprague-Dawley rats were dosed by gavage with vinclozolin at 0, 10, 30, 60, and 100 mg/kg/day with and without 50 mg iprodione/kg/day from postnatal day (PND) 23 to 55-57 (n = 8 per group). The age at puberty (preputial separation [PPS]), organ weights, serum hormones, and ex vivo testis steroid hormone production were measured. Vinclozolin delayed PPS, reduced androgen-sensitive organ weights, and increased serum testosterone. The addition of iprodione enhanced the vinclozolin inhibition of PPS (PND 47.5 vs.49.1; two-way ANOVA: iprodione main effect p = 0.0002). The dose response for several reproductive and nonreproductive organ weights was affected in a cumulative manner. In contrast, iprodione antagonized the vinclozolin-induced increase in serum testosterone. These results demonstrate that these fungicides interact on common targets in a tissue-specific manner when coadministered to the pubertal male rat.


Subject(s)
Aminoimidazole Carboxamide/analogs & derivatives , Androgen Antagonists/toxicity , Fungicides, Industrial/toxicity , Hydantoins/toxicity , Oxazoles/toxicity , Sexual Maturation/drug effects , Adrenal Glands/drug effects , Adrenal Glands/growth & development , Aminoimidazole Carboxamide/toxicity , Animals , Body Weight/drug effects , Dose-Response Relationship, Drug , Drug Combinations , Genitalia, Male/drug effects , Genitalia, Male/growth & development , Hormones/blood , Liver/drug effects , Liver/growth & development , Male , Organ Size/drug effects , Rats , Rats, Sprague-Dawley , Receptors, Androgen/biosynthesis , Receptors, Androgen/drug effects , Receptors, Androgen/genetics , Receptors, Aryl Hydrocarbon/drug effects , Transcriptional Activation/drug effects
15.
Toxicol Sci ; 105(1): 153-65, 2008 Sep.
Article in English | MEDLINE | ID: mdl-18411233

ABSTRACT

Phthalate diesters are chemicals to which humans are ubiquitously exposed. Exposure to certain phthalates during sexual differentiation causes reproductive tract malformations in male rats. In the fetal rat, exposure to the phthalates benzylbutyl phthalate (BBP), di(n)butyl phthalate (DBP), and diethylhexyl phthalate (DEHP) decreases testicular testosterone production and insulin-like 3 hormone mRNA levels. We characterized the dose-response effects of six individual phthalates (BBP, DBP, DEHP, diethyl phthalate [DEP], diisobutyl phthalate [DiBP], and dipentyl phthalate [DPP]) on gestation day (GD) 18 testicular testosterone production following exposure of Sprague-Dawley rats on GD 8-18. BBP, DBP, DEHP, and DiBP were equipotent (ED50 of 440 +/- 16 mg/kg/day), DPP was about threefold more potent (ED50 = 130 mg/kg/day) and DEP had no effect on fetal testosterone production. We hypothesized that coadministration of these five antiandrogenic phthalates would reduce testosterone production in a dose-additive fashion because they act via a common mode of toxicity. In a second study, dams were dosed at 100, 80, 60, 40, 20, 10, 5, or 0% of the mixture. The top dose contained 1300 mg of total phthalates/kg/day including BBP, DBP, DEHP, DiBP (300 mg/kg/day per chemical), and DPP (100 mg DPP/kg/day). This mixture ratio was selected such that each phthalate would contribute equally to the reduction in testosterone. As hypothesized, testosterone production was reduced in a dose-additive manner. Several of the individual phthalates and the mixture also induced fetal mortality, due to pregnancy loss. These data demonstrate that individual phthalates with a similar mechanism of action can elicit cumulative, dose additive effects on fetal testosterone production and pregnancy when administered as a mixture.


Subject(s)
Fetus/drug effects , Phthalic Acids/toxicity , Testis/drug effects , Testosterone/biosynthesis , Animals , Body Weight/drug effects , Dibutyl Phthalate/analogs & derivatives , Dibutyl Phthalate/toxicity , Diethylhexyl Phthalate/toxicity , Dose-Response Relationship, Drug , Female , Logistic Models , Male , Pregnancy , Rats , Rats, Sprague-Dawley , Testis/metabolism
16.
Int J Androl ; 31(2): 178-87, 2008 Apr.
Article in English | MEDLINE | ID: mdl-18315717

ABSTRACT

Scientists have identified environmental chemicals that display anti-androgenic activity via multiple mechanisms of action. Early studies focused on pesticides acting as androgen receptor (AR) antagonists but it soon became apparent that was not the only endocrine mode by which compounds affected the androgen signalling pathway. Classes of chemicals currently known to interfere with the androgen signalling pathway include dicarboximide fungicides (e.g. vinclozolin), organochlorine-based insecticides (e.g. p,p'-DDT and -DDE), conazole fungicides (e.g. prochloraz), plasticizers (phthalates) and urea-based herbicides (linuron). Phthalate esters (PEs) and vinclozolin appear to act primarily via a single mechanism of action, while others such as linuron and prochloraz, appear to display dual mechanisms of action. Exposure to PEs decreases mRNA expression of key steroidogenic enzymes and also the peptide hormone insulin-like peptide 3 (insl3) from the foetal Leydig cells. Hence, both androgen- and inls3-dependent tissues are affected. Vinclozolin and procymidone act solely through binding to the AR as antagonists thus blocking the action of androgen at the cellular level but do not affect foetal testosterone synthesis or insl3 gene expression. The compounds linuron and prochloraz are AR antagonists but also inhibit foetal testosterone synthesis, although unlike the PEs, mRNA expression of steroidogenic enzymes and insl3 are not affected. All the above chemicals disrupt androgen signalling in the foetal male rat and produce some malformations in common, but the precise profiles of effects in the offspring are pathognomonic for each mode of action. For example, the 'phthalate syndrome' vs. the 'vinclozolin syndrome' each displays a profile of effects which is clearly different. In summary, as more and more molecular studies with anti-androgenic compounds are conducted, the number of mechanisms by which compounds can affect the androgen signalling pathway is likely to increase. Furthermore, the effects of mixtures of these compounds are just beginning to be explored.


Subject(s)
Androgen Antagonists/pharmacology , Genitalia, Male/drug effects , Animals , Genitalia, Male/embryology , Male , Rats
17.
Toxicol Sci ; 105(2): 235-59, 2008 Oct.
Article in English | MEDLINE | ID: mdl-18281716

ABSTRACT

In 1991, a group of expert scientists at a Wingspread work session on endocrine-disrupting chemicals (EDCs) concluded that "Many compounds introduced into the environment by human activity are capable of disrupting the endocrine system of animals, including fish, wildlife, and humans. Endocrine disruption can be profound because of the crucial role hormones play in controlling development." Since that time, there have been numerous documented examples of adverse effects of EDCs in invertebrates, fish, wildlife, domestic animals, and humans. Hormonal systems can be disrupted by numerous different anthropogenic chemicals including antiandrogens, androgens, estrogens, AhR agonists, inhibitors of steroid hormone synthesis, antithyroid substances, and retinoid agonists. In addition, pathways and targets for endocrine disruption extend beyond the traditional estrogen/androgen/thyroid receptor-mediated reproductive and developmental systems. For example, scientists have expressed concern about the potential role of EDCs in increasing trends in early puberty in girls, obesity and type II diabetes in the United States and other populations. New concerns include complex endocrine alterations induced by mixtures of chemicals, an issue broadened due to the growing awareness that EDCs present in the environment include a variety of potent human and veterinary pharmaceutical products, personal care products, nutraceuticals and phytosterols. In this review we (1) address what have we learned about the effects of EDCs on fish, wildlife, and human health, (2) discuss representative animal studies on (anti)androgens, estrogens and 2,3,7,8-tetrachlorodibenzo-p-dioxin-like chemicals, and (3) evaluate regulatory proposals being considered for screening and testing these chemicals.


Subject(s)
Endocrine Disruptors/toxicity , Endocrine System/drug effects , Environmental Pollutants/toxicity , Toxicity Tests/trends , Toxicology/trends , Adult , Animals , Animals, Wild , Child , Child Development/drug effects , Dose-Response Relationship, Drug , Ecosystem , Embryonic Development/drug effects , Environmental Exposure , Fishes , Government Regulation , Guidelines as Topic , Humans , Occupational Exposure , Reproduction/drug effects , Risk Assessment , Time Factors , Toxicology/legislation & jurisprudence
18.
Toxicol Lett ; 174(1-3): 74-81, 2007 Nov 01.
Article in English | MEDLINE | ID: mdl-17931804

ABSTRACT

Iprodione (IPRO) is a dichlorophenyl dicarboximide fungicide similar to procymidone and vinclozolin. All three of these fungicides induce Leydig cell tumors in the rat testis in long-term studies and an endocrine mode of action has been hypothesized to mediate this effect. Although both procymidone and vinclozolin antagonize the androgen receptor (AR) in vitro and in vivo, IPRO does not appear to be an AR antagonist. We proposed that pubertal exposure to IPRO would delay male rat pubertal development and reduce testosterone production within the testis. Sprague-Dawley weanling rats were dosed by gavage with 0, 50, 100, or 200mg/kg/day of IPRO from post-natal day (PND) 23 to 51/52. The onset of puberty (progression of preputial separation (PPS)) was measured starting on PND 37. Organ weights, serum hormones, and ex vivo testis steroid hormone production under stimulated (+human chorionic gonadotropin (hCG)) and unstimulated (-hCG) conditions were measured at necropsy. IPRO delayed PPS at 100 and 200mg/kg/day and decreased androgen sensitive seminal vesicle and epididymides weights at 200mg/kg/day. Furthermore, IPRO increased adrenal and liver weights at 200mg/kg/day, presumably by different mechanism(s) of action. Serum testosterone levels were decreased along with serum 17alpha-hydroxyprogesterone and androstenedione whereas serum LH was unaffected. IPRO reduced ex vivo testis production of testosterone and progesterone. Taken together, these results suggest that IPRO affects steroidogenesis within the testis, not through disruption of LH signaling, but possibly through enzyme inhibition of the steroidogenic pathway before CYP17. These data, along with the reported failure of IPRO to elicit an AR antagonism in vitro, provide evidence that IPRO differs from the dicarboximides procymidone and vinclozolin in that the effects on male rat pubertal development result from an inhibition of steroidogenesis and not AR antagonism.


Subject(s)
Aminoimidazole Carboxamide/analogs & derivatives , Endocrine Disruptors/toxicity , Fungicides, Industrial/toxicity , Hydantoins/toxicity , Sexual Maturation/drug effects , Testosterone/metabolism , Aminoimidazole Carboxamide/toxicity , Animals , Cell Line , Epididymis/drug effects , Epididymis/growth & development , Humans , Male , Rats , Rats, Sprague-Dawley , Receptors, Androgen/metabolism , Seminal Vesicles/drug effects , Seminal Vesicles/growth & development , Testis/drug effects , Testis/metabolism , Testosterone/blood
19.
Toxicol Sci ; 97(2): 512-9, 2007 Jun.
Article in English | MEDLINE | ID: mdl-17369198

ABSTRACT

The fungicide prochloraz (PCZ) induces malformations in androgen-dependent tissues in male rats when administered during sex differentiation. The sensitivity of fetal testicular steroidogenesis to PCZ was investigated to test the hypothesis that the reported morphological effects from maternal exposure were associated with reduced testosterone synthesis. Pregnant Sprague-Dawley rats were dosed by gavage with 0, 7.8, 15.6, 31.3, 62.5, and 125 mg PCZ/kg/day (n = 8) from gestational day (GD) 14 to 18. On GD 18, the effects of PCZ on fetal steroidogenesis were assessed by measuring hormone production from ex vivo fetal testes after a 3-h incubation. Lastly, PCZ levels in amniotic fluid and maternal serum were measured using liquid chromatography/mass spectroscopy and correlated to the inhibition of steroidogenesis. Fetal progesterone and 17alpha-hydroxyprogesterone production levels were increased significantly at every PCZ dose, whereas testosterone levels were significantly decreased only at the two high doses. These results suggest that PCZ inhibits the conversion of progesterone to testosterone through the inhibition of CYP17. To test this hypothesis, PCZ effects on CYP17 gene expression and in vitro CYP17 hydroxylase activity were evaluated. PCZ had no effect on testicular CYP17 mRNA levels as measured by quantitative real-time polymersase chain reaction. However, microsomal CYP17 hydroxylase activity was significantly inhibited by the fungicide (K(i) = 865nM). Amniotic fluid PCZ concentrations ranged from 78 to 1512 ppb (207-4014nM) and testosterone production was reduced when PCZ reached approximately 500 ppb, which compares favorably with the determined CYP17 hydroxylase K(i) (326 ppb). These results demonstrate that PCZ lowers testicular testosterone synthesis by inhibiting CYP17 activity which likely contributes to the induced malformations in androgen-dependent tissues of male offspring.


Subject(s)
Fungicides, Industrial/toxicity , Imidazoles/toxicity , Steroids/biosynthesis , Testis/drug effects , Testis/metabolism , 17-alpha-Hydroxyprogesterone/blood , 17-alpha-Hydroxyprogesterone/metabolism , Amniotic Fluid/metabolism , Androgen Receptor Antagonists , Androstenedione/blood , Androstenedione/metabolism , Animals , Body Weight/drug effects , Dose-Response Relationship, Drug , Estradiol/biosynthesis , Estradiol/blood , Female , Fetus/drug effects , Fetus/metabolism , Fungicides, Industrial/pharmacokinetics , Gene Expression/drug effects , Imidazoles/pharmacokinetics , Male , Phosphoproteins/biosynthesis , Pregnancy , Progesterone/biosynthesis , Progesterone/blood , RNA, Messenger/biosynthesis , RNA, Messenger/genetics , Rats , Steroid 17-alpha-Hydroxylase/antagonists & inhibitors , Steroid 17-alpha-Hydroxylase/biosynthesis , Steroid 17-alpha-Hydroxylase/genetics , Testis/embryology , Testosterone/biosynthesis , Testosterone/physiology
20.
Toxicol Sci ; 97(1): 65-74, 2007 May.
Article in English | MEDLINE | ID: mdl-17234647

ABSTRACT

Prochloraz (PCZ) is an imidazole fungicide that inhibits gonadal steroidogenesis and antagonizes the androgen receptor (AR). We hypothesized that pubertal exposure to PCZ would reduce testosterone production and delay male rat reproductive development. Sprague Dawley rats were dosed by gavage with 0, 31.3, 62.5, or 125 mg/kg/day of PCZ from postnatal day (PND) 23 to 42 or 51. There was a significant delay in preputial separation (PPS) at 125 mg/kg/day PCZ and several of the androgen-dependent organ weights were decreased significantly, but the significant organ weight effects were not consistent between the 2 necropsies (PND 42 vs. 51). At both ages, serum testosterone levels and ex vivo testosterone release from the testis were significantly decreased whereas serum progesterone and 17alpha-hydroxyprogesterone levels were significantly increased at dose levels below those that affected PPS or reproductive organ weights. The hormone results suggested that PCZ was inhibiting CYP17 activity. In a second pubertal study (0, 3.9, 7.8, 15.6, 31.3, or 62.5 mg/kg/day PCZ), serum testosterone levels and ex vivo testosterone production were significantly reduced at 15.6 mg/kg/day PCZ. In order to examine the AR antagonism effects of PCZ, independent of its effects on testosterone synthesis, castrated immature male rats were dosed with androgen and 0, 15.6, 31.3, 62.5, or 125 mg/kg/day PCZ for 10-11 days (Hershberger assay). In this assay, androgen-sensitive organ weights were only significantly decreased at 125 mg/kg/day PCZ. These data from the pubertal assays demonstrate that PCZ decreases testosterone levels and delays rat pubertal development, as hypothesized. However, the fact that hormone levels were affected at dosage eightfold below that which delayed the onset of puberty suggests that rather large reductions in serum testosterone may be required to delay puberty and consistently reduce androgen-dependent tissue weights.


Subject(s)
Androgen Antagonists/toxicity , Androgens/metabolism , Enzyme Inhibitors/toxicity , Fungicides, Industrial/toxicity , Genitalia, Male/drug effects , Imidazoles/toxicity , Sexual Development/drug effects , Testosterone/metabolism , 17-alpha-Hydroxyprogesterone/blood , Androgen Receptor Antagonists , Animals , Dose-Response Relationship, Drug , Genitalia, Male/enzymology , Genitalia, Male/growth & development , Genitalia, Male/metabolism , Male , No-Observed-Adverse-Effect Level , Orchiectomy , Organ Size/drug effects , Progesterone/blood , Rats , Rats, Sprague-Dawley , Receptors, Androgen/metabolism , Steroid 17-alpha-Hydroxylase/antagonists & inhibitors , Steroid 17-alpha-Hydroxylase/metabolism , Testosterone/blood , Testosterone Propionate/pharmacology , Time Factors , Toxicity Tests/methods
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