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Induction of micronuclei in V79 Chinese hamster cells by tetrachlorohydroquinone, a metabolite of pentachlorophenol.

Tetrachlorohydroquinone, a metabolite of the fungicide pentachlorophenol, induced significant dose-related increases in micronuclei in V79 Chinese hamster cells without exogenous metabolic activation. The lowest observed effective dose was 10 microM, where the relative survival was about 62%. At the highest dose tested, 20 microM, the relative survival was about 8% and the frequency of cells with micronuclei was about 6 times the solvent control frequency. The induction of micronuclei by tetrachlorohydroquinone was significantly inhibited by the hydroxyl radical scavenger dimethyl sulfoxide at 5% (v/v).

Animals↗

DNA-damaging properties and cytotoxicity in human fibroblasts of tetrachlorohydroquinone, a pentachlorophenol metabolite.

The DNA-damaging potential of pentachlorophenol (PCP) and its metabolite tetrachlorohydroquinone (TCH) was investigated. TCH was found to bind covalently to calf-thymus DNA and to cause single-strand breaks in PM2 DNA. No DNA-damaging effects were observed for PCP. Exposure of human fibroblasts to PCP and TCH showed that TCH is more toxic, when colony-forming ability after exposure to the agent is used as a measure of toxicity. In the evaluation of the mutagenic and carcinogenic potential of PCP the metabolite TCH should be taken into consideration.

Biotransformation↗

Effects of dietary technical pentachlorophenol exposure on T cell, macrophage and natural killer cell activity in C57Bl/6 mice.

The effects of technical grade pentachlorophenol (T-PCP) exposure on several immunological parameters were examined in adult C57Bl/6 mice following eight weeks of dietary exposure. Immune function tests included mitogen-induced lymphocyte blastogenesis, mixed lymphocyte reactivity (proliferation and cytotoxicity), spontaneous and boosted levels of natural killer (NK) cytotoxicity, and phagocytic activity of resident, thioglycollate-induced, and P815-tumor activated peritoneal macrophages. Thymic and splenic weights, spleen cellularity, percentages of splenic T and B cells, and bone marrow cellularity were also determined. The only statistically significant functional alteration observed in T-PCP exposed mice in these studies was a reduction in the lymphoproliferative response in mixed lymphocyte culture which occurred in the absence of any apparent effect on the generation of cytotoxic cells. Mitogen responses, NK cytotoxicity and macrophage phagocytosis were unaltered by exposure to T-PCP. No changes were observed in spleen or thymus weights or in spleen or bone marrow cellularity. A dose-responsive trend toward reduced T cell and increased B cell percentages in the spleen of T-PCP exposed mice was noted. The apparent functional resistance of T cells, macrophages, and NK cells to T-PCP is in contrast to the marked sensitivity of the humoral immune response to T-PCP induced suppression. The results are discussed in relation to the dioxin contaminants present in T-PCP.

Animals↗

Teratogenic potential of purified pentachlorophenol and pentachloroanisole in subchronically exposed Sprague-Dawley rats.

Male and female Sprague-Dawley (Spartan) rats were exposed to dietary levels of 0, 60, 200 or 600 ppm purified pentachlorophenol (PCP) or pentachloroanisole (PCA) for 181 days, through mating and pregnancy. The daily intakes of PCP were 0, 4, 13 or 43 mg/kg body weight and of PCA were 0, 4, 12 or 41 mg/kg body weight. Animals exposed to PCP generally consumed more food than control animals during pregnancy. Dams at the high-dose level of both compounds showed evidence of toxicity, weighing less on day 0 of gestation and gaining less throughout pregnancy than did the controls. Dams exposed to the high dose of PCP gained less weight during pregnancy (exclusive of the gravid uterus) than control dams. At the 43 mg/kg/day dose level PCP was embryolethal. Foetuses at the lower dose levels of PCP exhibited dose-related decreases in body weights. A reduction in crown-rump length and an increase in foetal skeletal variations were seen at 13 mg/kg/day in PCP animals only. An intake of 41 mg PCA/kg/day was associated with a decrease in the number of corpora lutea and in embryolethality. PCA exposure also resulted in reductions in foetal body weight and crown-rump lengths of males at 4 and 41 mg/kg/day. Female foetuses were unaffected.

Abnormalities, Drug-Induced↗

Pentachlorophenol-induced oxidative DNA damage in mouse liver and protective effect of antioxidants.

8-Hydroxydeoxyguanosine (8-OH-dG) was determined as a marker of oxidative DNA damage in male B6C3F1 mice treated with the hepatocarcinogen pentachlorophenol (PCP). A single oral administration of PCP (0-80 mg/kg) significantly and dose-dependently increased the 8-OH-dG level specifically in the liver at 6 hr. Repeated doses (0-80 mg/kg) over 5 days caused a further increase. Elevation of the 8-OH-dG level caused by a single dose of PCP (60 mg/kg) was not affected by ip injection of buthionine sulfoximine (2 mmol/kg), an inhibitor of GSH synthesis, or aminotriazole (1 g/kg), an inhibitor of catalase, showing no clear evidence for enhancement by the oxidative stress due to reduction of antioxidative factors under these experimental conditions. However, examination of the effects of natural antioxidants on repeated PCP treatment (60 mg/kg/day, for 5 days) revealed that oral administration of vitamin E and diallyl sulfide 3 hr before each PCP challenge significantly protected against elevation of hepatic 8-OH-dG levels. beta-Carotene did not have any effect. Ellagic acid, epigallocatechin gallate and vitamin C demonstrated partial protection. These findings indicate that PCP causes oxidative DNA damage in the target organ liver which can be blocked by a number of antioxidant agents.

8-Hydroxy-2'-Deoxyguanosine↗

Humoral immunotoxicity of polychlorinated diphenyl ethers, phenoxyphenols, dioxins and furans present as contaminants of technical grade pentachlorophenol.

Previous studies have demonstrated that the humoral immune response in mice as measured by the splenic IgM response to sheep erythrocytes (SRBC) is highly sensitive to suppression by technical grade (86%) pentachlorophenol (T-PCP) whereas analytical grade (greater than 99%) PCP is not immunosuppressive. In the present studies, we have examined several contaminant fractions and purified isomers from T-PCP for their humoral immunosuppressive effect. C57BL/6 mice were treated with a single oral dose of the various contaminants 2 days prior to SRBC challenge and the peak splenic IgM antibody response was measured 5 days later. Under these exposure conditions, T-PCP produced a dose-related suppression of the antibody response whereas analytical grade PCP was without effect. The dose of T-PCP producing 50% immunosuppression relative to the vehicle-treated control (ID50) was 83 mg/kg. Results from studies using contaminant fractions extracted from T-PCP indicated that a chlorinated dioxin/furan fraction was significantly immunosuppressive, whereas a chlorinated phenoxyphenol fraction and a chlorinated diphenyl ether fraction were without effect when administered at dose levels expected to occur in the ID50 dose of T-PCP. Several purified phenoxyphenol isomers representing the major pre- and isopredioxins in T-PCP were also not immunosuppressive, nor was octachlorodibenzo-p-dioxin. The 1,2,3,4,6,7,8-hexachlorodioxin (HxCDD), 1,2,3,4,6,7,8-heptachlorodioxin (HpCDD), and 1,2,3,4,6,7,8-heptachlorofuran (HpCDF) isomers were all significantly immunosuppressive. The single, oral ID50s were 7.1, 85 and 208 micrograms/kg for HxCDD, HpCDD and HpCDF, respectively. Coadministration of HxCDD and HpCDD produced an additive immunosuppressive effect suggesting that the toxic dioxin and furan isomers present in T-PCP function in concert to produce the degree of immune suppression observed following T-PCP exposure. When analytical grade PCP was coadministered with HpCDD, the degree of immune suppression was equivalent to that produced by HpCDD alone, indicating no significant influence of PCP on dioxin-induced immunosuppression. The enhanced susceptibility of Ah-responsive C57BL/6 mice to T-PCP induced immune suppression as compared to Ah-nonresponsive DBA/2 mice and the correlation of immune suppression with P1-450 associated monoxygenase induction provided further evidence for the role of the toxic Ah-interactive dioxin and furan contaminants in T-PCP as the mediators of T-PCP immunotoxicity.

Animals↗

Effects of hexachlorobenzene and its metabolites pentachlorophenol and tetrachlorohydroquinone on serum thyroid hormone levels in rats.

Effects of administration of equimolar doses of hexachlorobenzene (HCB) and its metabolites pentachlorophenol (PCP) and tetrachlorohydroquinone (TCHQ) on serum thyroxine (TT4) and triiodothyronine (TT3) levels in rats were studied. Furthermore, it was investigated whether the observed effects were related to the serum levels of HCB or PCP. Rats received either corn oil (controls) or HCB, PCP or TCHQ in a single equimolar intraperitoneal dose of 0.056 mmol/kg. Results indicated that HCB did not alter serum TT4 and TT3 levels for a period up to 96 h after dosing. In contrast, PCP and TCHQ were both capable of reducing serum TT4 levels with a maximum effect between 6 and 24 h after exposure. TCHQ was more effective in repressing TT3 than TT4 blood levels. Dose-response experiments were carried out in order to obtain insight into the sensitivity of the observed effects. Rats received different doses of PCP or TCHQ intraperitoneally. The reductions of TT4 levels by PCP were inversely related to serum PCP levels in exposed animals, based on the toxicokinetics and dose-response profiles. Furthermore, PCP serum levels after HCB administration appeared too low to cause an effect. The results of this study indicate that not HCB itself, but rather its metabolites PCP and TCHQ may be involved in reduced serum thyroid hormone levels after HCB administration.

Animals↗

Reduction of thyroxine uptake into cerebrospinal fluid and rat brain by hexachlorobenzene and pentachlorophenol.

In the present study the effects of hexachlorobenzene (HCB) and the metabolite pentachlorophenol (PCP) were investigated with respect to uptake of thyroxine (T4) into cerebrospinal fluid (CSF) and brain structures of rats. [125I]T4 was taken up into CSF of control rats by a relatively slow process, reaching a steady state after about 3 h. Both repeated dosing of HCB and single doses of PCP caused decreased uptake of [125I]T4 into CSF, total brain tissue as well as specific brain structures, such as occipital cortex, thalamus, and hippocampus. Although HCB-treatment caused a build-up of HCB and PCP levels in serum in brain only HCB was present in significant amounts (16% of the serum level). In CSF, both HCB and PCP concentrations were below detection levels. Separate experiments with PCP showed, however, a dose- and time-dependent uptake of PCP into CSF. The present results indicate that PCP and the parent compound HCB are able to affect brain supply of T4. This may have consequences for an adequate development of the brain or proper brain function in adults. The exact mechanisms of interference of PCP and/or HCB in brain uptake of T4 remain to be established.

Animals↗

Pentachlorophenol (PCP) inhibits ion transport in the isolated toad cornea.

1. Active chloride transport from the stroma to the epithelial surface (tear side) accounts for 80% of the amphibian cornea short-circuit current (SCC). 2. The effect of pentachlorophenol (PCP, a wood preservative) on the bioelectric parameters of the toad Caudiverbera caudiverbera isolated cornea was studied. 3. PCP applied to the epithelial surface in the concentration range 0.3-4.3 microM caused a dose-dependent inhibition of the PD and of the SCC in 7 corneas. This inhibition was irreversible at all concentrations after several washouts. The agent had no effect when applied to the endothelial surface. 4. In 4 experiments the inhibitory effect was partly reversed by the addition of 1 microM calcium ionophore A-23187 to the epithelial surface. 5. It is concluded that PCP is an inhibitor of corneal active chloride transport and that this structure shows greater sensitivity to this agent than other tissues.

Animals↗

Hexachlorobenzene and its metabolites pentachlorophenol and tetrachlorohydroquinone: interaction with thyroxine binding sites of rat thyroid hormone carriers ex vivo and in vitro.

Previous results have indicated that hexachlorobenzene (HCB)-induced hypothyroidism may be caused by its main metabolite pentachlorophenol (PCP), and by tetrachlorohydroquinone (TCHQ), rather than by the parent compound. In the present experiments it was investigated whether hormone displacement from serum carriers could be a factor in the development of this hypothyroidism. In an in vitro competition assay PCP was an effective competitor for the thyroxine (T4)-binding sites of serum carriers, whereas HCB was ineffective. Ex vivo experimental results demonstrated occupation of T4-binding sites in sera from PCP-exposed animals but not in sera from HCB- or TCHQ-treated animals. Competing ability for T4-binding sites was still present in sera of PCP-exposed animals but was absent in HCB- or TCHQ-exposed animals. The results suggest that thyroid hormone displacement by the major metabolite PCP may play a role in HCB-induced hypothyroidism.

Animals↗

The pentachlorophenol metabolite tetrachloro-p-hydroquinone induces the formation of 8-hydroxy-2-deoxyguanosine in liver DNA of male B6C3F1 mice.

Tetrachloro-p-hydroquinone (TCHQ), the major metabolite of pentachlorophenol (PCP) in mammalian systems, is known to autoxidize to its semiquinone radical under physiological conditions. In this way, PCP could present a potent source of reactive oxygen species (ROS) during metabolization. ROS contribute to numerous modifications of DNA. Formation of 8-hydroxy-2'-deoxyguanosine (8-OH-dG), a product of hydroxyl radical attack on DNA, is monitored as a marker of a major genetic lesion induced by agents which produce oxygen radicals. We studied the properties of TCHQ for the induction of oxidative DNA damage in vivo. Male B6C3F1 mice were fed a diet containing TCHQ for 2 and 4 weeks. These experiments resulted in an enhancement of about 50% of the 8-OH-dG portion in liver DNA after administration of 300 mg TCHQ/kg body wt./day for 2 weeks. Control levels did not change over the periods of 2 and 4 weeks, respectively. In contrast to these results, a single i.p. injection of 20 or 50 mg/kg body wt. did not affect the 8-OH-dG content after 6 and 24 h, respectively. These data may support a possible contribution of ROS to the carcinogenicity of PCP.

8-Hydroxy-2'-Deoxyguanosine↗

Effects of pentachlorophenol (PCP) on the pituitary and thyroidal hormone regulation in the rat.

Investigations on rats after repeated application of pentachlorophenol (PCP) should clarify whether thyroid side effects caused by this xenobiotic can be seen in a dose range which does not cause major toxic effects. Female rats of the Wistar strain were treated with 3 and 30 mg PCP/kg body wt. daily by gavage for 28 days. To assess the potential impact of impurities the study was performed both with pure and technical grade PCP at the dosage of 3 mg.kg-1.day-1, and at a level of 30 mg.kg-1.day-1 with pure PCP only. The effects in animals on normal iodine diet were compared to those in animals on a low iodine diet. No decrease of body wt. was noticed, only the liver weights were increased slightly in animals treated with 30 mg.kg-1.day-1 PCP. However distinct effects on thyroid hormones as well as on thyrotropin (TSH) were observed: a pronounced fall of circulating thyroxine (T4) and triiodothyronine (T3) levels was accompanied by lower levels of both free thyroid hormones and TSH, and the T4:T3 ratio was decreased in serum. Furthermore the intrathyroidal hormone stores were reduced. An interference of PCP at pituitary or hypothalamic level is assumed as a major mode of action. Additional effects of the test substance on peripheral conversion can be suspected.

Administration, Oral↗

Analysis of pentachlorophenol in water and urine by enrichment with Lipidex 5000.

A method using the lipophilic gel Lipidex 5000 for sorption of pentachlorophenol (PCP) from water and urine is described. The procedure for water gives a simultaneous clean-up from lipophilic contaminants and also offers the possibility for determination of less polar compounds, such as 1,1-bis(4-chlorophenyl)-2,2,2-trichloroethane (p,p'-DDT) and 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD), collected in a separate fraction. The extracted PCP is derivatized to pentachlorophenyl acetate, which is determined by electron-capture gas chromatography. The average recovery of 0.01-0.15 ng PCP per ml water was 96% and of labelled p,p'-DDT (ca. 5 ng/ml) and TCDD (ca. 0.001 ng/ml) 95 and 92%, respectively. A similar method for enrichment of PCP was applied to acidified urine and to urine hydrolysed with hydrochloric acid or with digestive juice from Helix pomatia. Recoveries of 0.1-2.5 ng PCP per ml non-hydrolysed urine were on an average 92% and of 2.5-10 ng PCP per ml hydrolysed urine 96%. The analyses indicate that PCP in urine from non-occupationally exposed persons is originally conjugated and to some extent liberated when stored. The contamination of organic solvents and laboratory environments with PCP is discussed.

Adult↗

Plasma binding of 1-butanol, phenol, nitrobenzene and pentachlorophenol in the rainbow trout and rat: a comparative study.

1. The in vitro binding of 1-butanol, phenol, nitrobenzene, and pentachlorophenol in trout plasma and rat plasma was determined. 2. Binding to rainbow trout plasma proteins agreed within 9% of that observed in rat plasma. 3. Percentage bound to rainbow trout (2-99%) or rat (10-99%) plasma proteins increased as the log octanol/water partition coefficient of the chemicals increased within the Log P 1-3 range, and was suggestive of hydrophobic interactions in binding.

1-Butanol↗

The actions of phenol and pentachlorophenol (PCP) on axonal conduction, ganglionic synaptic transmission, and the effect of pH changes.

1. A comparison of phenol, pentachlorophenol (PCP) and procaine effects on axonal conduction were studied in vitro in the sciatic nerves of toad. PCP and procaine were respectively 6.3 and 3.15 times more potent than phenol in blocking axonal conduction. 2. Effects of PCP on synaptic transmission were studied in vitro in the eighth sympathetic ganglion of toad. 3. Axonal conduction block and synaptic transmission block by phenol was reversible, but not that by PCP. 4. When the PCP ionization was increased, a lesser per cent reached the site of action, reducing its capacity to block the axonal conduction and ganglionic transmission. 5. PCP plus, 3,4-Diaminopyridine (3,4-DAP) decreased synaptic transmission block from post-ganglionic compound action potential (CAP) responses to supramaximal preganglionic stimulation.

4-Aminopyridine↗

Morphological changes on nerves and histopathological effects on liver and kidney of rats by pentachlorophenol (PCP).

1. The chronic toxicity of pentachlorophenol (PCP) was studied in rats after 90-120 days of oral administration ad libitum of 0.3-3 mM PCP aqueous solutions. 2. Morphological studies of their sciatic nerves were performed by optical and electron microscopy. 3. They showed degenerative changes in about 10% of the A and B type of nerve fibers. 4. The myelin sheath was discontinued by complete separation in several concentric rings while some other parts of the nerve exhibited a variable loss of neurotubules, neurofilaments and other axoplasmic components. 5. However, the C type of nerve fibers, the blood vessels and the perineurium did not show any morphologic alteration. 6. It was also found that in the liver PCP caused hemodynamic vein changes and injury in the hepatocytes such as cellular swelling and vacuolar degeneration. 7. The damage in the kidney occurred primarily in the glomeruli and secondarily in the proximal tubules causing turbid tumefaction and the formation of casts in the tubular lumen.

Animals↗

Inhibition of the sodium transport by pentachlorophenol (PCP) in toad skin (Pleurodema thaul).

1. The effects of pentachlorophenol (PCP) were studied in vitro on an active ionic transporting epithelium. Ussing's technique was applied on the isolated Pleurodema thaul skin. 2. Concentrations of PCP in the range 0.003-0.043 mM caused an irreversible dose-dependent inhibition in both the short-circuit current and the potential difference. 3. Parameters of an electrical equivalent circuit were calculated applying the Isaacon's amiloride test. 4. It was also shown that PCP produced a significant increase in the O2 consumption of the skin. 5. The inhibitory action of PCP on active sodium transport in terms of the equivalent electrical circuit and the increased oxygen consumption points to an uncoupling action of PCP on the oxidative phosphorylation.

Animals↗