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Curvi-linear relation between acetone in breathing zone air and acetone in urine among workers exposed to acetone vapor.

An occupational health study was conducted on 45 acetone-exposed male workers in combination with 343 non-exposed men to examine the quantitative relationship between the intensity of acetone vapor exposure and the concentration of acetone in urine. The time-weighted average acetone concentrations were measured by means of diffusive samplers with water as absorbent, whereas urine samples were collected at the end of the shift as well as before the shift on the next morning. Acetone concentration in shift-end urine did not increase when the workers were exposed to acetone up to approx. 15 ppm, and this was followed by a gradual increase at a higher atmospheric acetone concentration, in a manner dependent to acetone vapor concentration. The comparison in acetone concentrations between the urine samples collected at the shift-end and those before the shift of the next morning showed that the levels in two sets of samples were the same among those exposed to 15 or less ppm acetone, whereas acetone in the shift-end samples was significantly higher than the counterpart levels in the pre-shift samples among those exposed to acetone at more than 15 ppm.

Acetone

Urinary excretion of unmetabolized acetone as an indicator of occupational exposure to acetone.

Acetone concentrations in urine samples from 28 workers exposed to acetone in a fiber-reinforced plastics factory were determined by directly injecting urine supernate into a gaschromatograph with FID detectors. Acetone concentrations in the urine from ten nonexposed subjects were also determined. The 8-h time-weighted exposure intensity of individual workers was monitored by means of diffusive sampling. Acetone concentration in urine and acetone concentration in the breathing zone showed a linear correlation to each other. The study results indicate that the correlation coefficient is high enough to enable use of the urinary level of acetone as an indicator of occupational exposure to acetone.

Acetone

Effects of acetone administration on cytochrome P-450-dependent monooxygenases in hamster liver, kidney, and lung.

The effects of acetone on liver, kidney, and lung monooxygenases were studied using hamsters administered 8% acetone in drinking water. Binding of aniline to liver microsomes induced a type II difference spectrum, and the spectral binding was enhanced in hamsters pretreated with acetone. Administration of acetone caused significant increases of cytochrome P-450 and cytochrome b5 contents in liver microsomes. The increases of the hemeproteins were associated with induction of monooxygenase activities toward test substrates, aniline, N-nitrosodimethylamine, benzphetamine, benzo(a)pyrene, and 7-ethoxycoumarin. In the kidneys, acetone administration increased microsomal contents of the hemeprotein and monooxygenase activities toward aniline. N-nitrosodimethylamine, and 7-ethoxycoumarin, but not benzphetamine or benzo(a)pyrene. In the lungs, acetone pretreatment increased aniline hydroxylase activity without affecting the levels of N-nitrosodimethylamine demethylase, cytochromes P-450 and b5. In marked contrast to the inductive effects in the liver, acetone administration markedly decreased lung microsomal benzo(a)pyrene hydroxylase and 7-ethoxycoumarin O-deethylase activities. Gel electrophoresis of liver and kidney microsomes from control and acetone-treated hamsters revealed that acetone treatment enhanced the intensity of a protein band(s) in the cytochrome P-450 molecular weight region. Immunoblotting of the microsomal proteins showed that the protein band induced by acetone in hamster liver, kidney and lung was cross-reactive with antibody raised against ethanol-inducible human liver cytochrome P-450. These results demonstrate that acetone has the ability to uniformly induce a specific form of cytochrome P-450, designated as IIE1, and to cause differential changes of monooxygenase activities in the hamster tissues.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetone

Toxicity studies of acetone administered in the drinking water of rodents.

Two- and thirteen-week toxicity studies were conducted using male and female F344/N rats and B6C3F1 mice. Animals were exposed to the following concentrations of acetone in their drinking water: two-week studies 0; 5000; 10,000; 20,000; 50,000; or 100,000 ppm acetone. Thirteen-week rat and female mouse studies 0; 2500; 5000; 10,000; 20,000; or 50,000 ppm acetone. Thirteen week male mice were exposed to 0; 1250; 2500; 5000; 10,000; or 20,000 ppm acetone. Depressed body weight gain was restricted to the 50,000 and 100,000 ppm exposure groups. Male and female mice exposed respectively to 20,000 or 50,000 ppm acetone for 2 weeks developed hepatocellular hypertrophy. This change was not apparent after 13 weeks of exposure although relative and absolute liver weight was increased in high dose female mice. Bone marrow hypoplasia was observed in 5/5 high dose (100,000 ppm) male rats during the 2-week studies. Treatment of male rats for 13 weeks resulted in a variety of mild and subtle hematological changes that often occurred at relatively low levels of exposure (5000 ppm) and resembled those seen during the clinical condition of megaloblastic anemia. Changes characteristic of hypogonadism (depressed sperm motility and cauda epididymal and epididymal weight and elevated incidence of abnormal sperm) were observed in male rats receiving 50,000 ppm acetone for 13 weeks. The incidence and severity of a kidney lesion that is morphologically similar to the spontaneously occurring nephropathy among aging F-344 rats were increased at 20,000 and 50,000 ppm acetone, respectively, in 13-week male rats. In summary, the effects of acetone were either subtle in nature or occurred during very high levels of exposure confirming acetone's low level of toxicity. The daily levels of acetone exposure were often several-fold greater than possibly encountered by humans during the accidental consumption of contaminated groundwater (250 ppm; 5 mg/day) and frequently exceeded maximum levels reported following acute toxic exposures (2,500 mg/kg).

Acetone

Inhalation versus oral administration of acetone: effect of the vehicle on the potentiation of CCl4-induced liver injury.

Acetone potentiation of liver injury is greater when corn oil is given with acetone 18 h prior to a challenge with CCl4. This study aimed to further characterize the effects of the vehicle used to administer acetone on the severity of acetone-potentiated CCl4-induced liver injury. The more severe acetone-potentiated liver injury observed when corn oil was the vehicle does not seem to be due to greater liver acetone concentrations. When corn oil was used as the vehicle to administer acetone, liver and blood CCl4 concentrations were not significantly different from those where water was the vehicle. Therefore the relationship between blood or liver acetone concentration and plasma ALT activity for orally-administered acetone was modified by corn oil. Liver triglyceride concentration measured 18 h after a gavage of corn oil was significantly higher than that for the water-treated group. A direct effect of corn oil on liver, in particular a promotion of the propagation phase in the lipid peroxidation process induced by CCl4, is proposed to explain the increase in acetone-potentiated CCl4-induced liver injury.

Acetone

Plasma acetone metabolism in the fasting human.

The metabolism of acetone was studied in lean and obese humans during starvation ketosis. Acetone concentrations in plasma, urine, and breath; and rates of endogenous production, elimination in breath and urine, and in vivo metabolism were determined. There was a direct relationship between plasma acetone turnover (20-77 mumol/m(2) per min) and concentration (0.19-1.68 mM). Breath and urinary excretion of acetone accounted for a 2-30% of the endogenous production rate, and in vivo metabolism accounted for the remainder. Plasma acetone oxidation accounted for congruent with60% of the production rate in 3-d fasted subjects and about 25% of the production rate in 21-d fasted subjects. About 1-2% of the total CO(2) production was derived from plasma acetone oxidation and was not related to the plasma concentration or production rate. Radioactivity from [(14)C]acetone was not detected in plasma free fatty acids, acetoacetate, beta-hydroxybutyrate, or other anionic compounds, but was present in plasma glucose, lipids, and proteins. If glucose synthesis from acetone is possible in humans, this process could account for 11% of the glucose production rate and 59% of the acetone production rate in 21-d fasted subjects. During maximum acetonemia, acetone production from acetoacetate could account for 37% of the anticipated acetoacetate production, which implies that a significant fraction of the latter compound does not undergo immediate terminal oxidation.

Acetone

Effect of acetone administration on renal, pulmonary and hepatic monooxygenase activities in hamster.

Administration of acetone in drinking water to Syrian Golden hamsters for 9-10 days altered microsomal P-450 dependent monooxygenase activities in the liver and the kidney but not in the lung. While hepatic microsomal NADPH-cytochrome c reductase was unaffected, cytochrome b5 and P-450 content increased (about 100%) in liver but not in kidney. Furthermore acetone treatment resulted in an increase of microsomal reverse type I binding with DMSO and in an increase in the P-450IIE1-linked renal and hepatic activities such as aniline hydroxylase (AnH) and p-nitrophenol hydroxylase (pNPH). The SDS-PAGE analysis confirmed the induction in acetone-treated microsomes of a hepatic protein with the M.W. of ethanol inducible P-450IIE1 of hamster. The acetone treatment however, unlike ethanol, induced other activities such as benzphetamine N-demethylase and ethoxycoumarin O-deethylase in liver and aminopyrine N-demethylase in kidney. No change of ethoxyresorufin O-deethylase and pentoxyresorufin O-depentylase was observed in either renal or hepatic microsomes. Addition of acetone in vitro had an inhibitory effect on pNPH by hepatic microsomes from control or acetone induced hamsters, while AnH was not affected. Interruption of acetone administration for 24 h resulted in a return of AnH and pNPH activities to essentially basal levels in the liver suggesting a rapid turnover of the hamster P-450IIE1 (ham P-450j). Our results indicate that, as found in rat, acetone is a good inducer of the P-450IIE1 (ham P-450j) in hamster in both the liver and kidney. However other P-450 forms, such as, probably, the renal and hepatic P-450IIB1, are also induced. Thus acetone-treated hamsters, which, in certain respects, show a qualitatively different induction pattern from that reported for ethanol, can be used as an useful animal model to study the toxicity of certain xenobiotics.

Acetone

Effects of acetone administration on drug-metabolizing enzymes in mice: presence of a high-affinity diethylnitrosamine de-ethylase.

Treatment of CD1 mice with acetone raised activities of hepatic microsomal p-nitrophenol hydroxylase, ethoxycoumarin de-ethylase, acetone hydroxylase and diethylnitrosamine de-ethylase (DENd) several-fold. P-450IIE1-linked acetone hydroxylase showed the highest inducibility. In microsomes from acetone-pretreated mice the cytochrome b5 and P-450 content was nearly doubled and their electrophoretic profile showed induction of a protein of Mr 53,000, probably P-450IIE1. Liver phase II enzymes were not affected by acetone treatment. Kinetic analyses of DENd were performed in control or acetone-induced microsomes and Km and Vmax were determined. Two distinctly apparent Km values (0.56 and 20.3 mM) were observed for DENd of control microsomes and at least 3 apparent Km values (0.05, 0.51, 8.4 mM) were observed in acetone-induced microsomes. Thus, acetone administration to mice induces a high-affinity form of DENd which can be important in vivo at low diethylnitrosamine (DEN) exposure as this enzyme functions when DEN concentration is below 0.1 mM.

Acetone

Studies on inhibition and induction of metabolism of ethyl carbamate by acetone and related compounds. Evidence for metabolism by cytochromes P-450.

Ethanol and a variety of other compounds previously have been shown to acutely inhibit the metabolism of ethyl carbamate (EC) when given concurrently in mice. On the other hand, ethanol pretreatment (10% in drinking water for the period 48 to 12 hr prior to EC treatment) is known to have the opposite effect and enhance the clearance of EC from blood of mice. In the present work, acetone has been shown to act similarly. Concurrent acetone treatment inhibits the metabolism of EC (11.1 mg/kg po) in male A/JAX mice in a dose-response manner. Blood clearance (Cl) of this po dose of EC from mice following concurrent acetone treatment (50 mg/kg, 0.86 mmol/kg ip) averaged 185 +/- 5.4 (SE) ml hr-1 kg-1 vs. controls of 804 +/- 24.6 ml hr-1 kg-1. Comparing doses that produce equal effects on the blood clearance values of EC, acetone is approximately 50-fold more potent as an inhibitor than ethanol. Pretreatment of mice with acetone (2 g/kg ip) 48 hr and 24 hr before EC administration po increased the clearance of EC approximately 3-fold (CI = 2623 +/- 123 ml hr-1 kg-1). 2-Propanol was found to be at least as potent as inhibitor as acetone, but with a longer duration of inhibition; this longer duration was explained by the longer persistence of acetone in blood from conversion of 2-propanol to acetone.(ABSTRACT TRUNCATED AT 250 WORDS)

1-Propanol

Anaerobic degradation of acetone by Desulfococcus biacutus spec. nov.

From anaerobic digestor sludge of a waste water treatment plant, a gram-negative, strictly anaerobic sulfate-reducing bacterium was isolated with acetone as sole organic substrate. The bacterium was characterized as a new species, Desulfococcus biacutus. The strain grew with acetone with doubling times of 72 h to 120 h; the growth yield was 12.0 (+/- 2.1) g x [mol acetone]-1. Acetone was oxidized completely, and no isopropanol was formed. In labelling studies with 14CO2, cell lipids (including approx. 50% PHB) of acetone-grown cells became labelled 7 times as high as those of 3-hydroxy-butyrate-grown cells. Enzyme studies indicated that acetone was degraded via acetoacetyl-CoA, and that acetone was channeled into the intermediary metabolism after condensation with carbon dioxide to a C4-compound, possibly free acetoacetate. Acetoacetyl-CoA is cleaved by a thiolase reaction to acetyl-CoA which is completely oxidized through the carbon monoxide dehydrogenase pathway. Strain KMRActS was deposited with the Deutsche Sammlung von Mikroorganismen, Braunschweig, under the number DSM 5651.

3-Hydroxybutyric Acid

A personal diffusive sampler for occupational acetone vapor exposure monitoring.

A commercially produced badge-type personal sampler, with water as absorbent and originally designed for monitoring of formaldehyde, was investigated for possible application to monitoring of occupational exposure to acetone, one of the hydrophilic solvents which cannot be monitored so far with activated carbon cloth-equipped diffusive samplers. Under the experimental condition of exposure at constant acetone concentration, the amount of acetone absorbed was proportional to the acetone exposure concentration up to 1500 ppm and duration of exposure for up to 8 h. Inter-sampler variation became wider, however, at 8 h of exposure to 1500 ppm acetone. Loss of acetone in the absorbent water due to spontaneous desorption became significant at 6 h after acetone impregnation of absorbent water. In practice, therefore, limitation of the duration of exposure up to 4 h is recommended.

Absorption

Evidence against acetone-soluble renin inhibitors in normal human plasma.

The presence of acetone-soluble renin inhibitors in normal plasma has been proposed to explain the variation of plasma reactivity (PRR) in samples from normotensive and hypertensive subjects. In our experience, acetone extraction decreased PRR in relation to unextracted control values, an observation which is not consistent with the circulating lipid-renin inhibitor hypothesis. Exposure to acetone at -40 degrees C for 1 minute invariably denatured some endogenous angiotensinogen. The PRR in extracted and unextracted plasma was positively correlated with the concentration of available angiotensinogen, r = 0.955 (p < 0.05), and r = 0.964 (p < 0.01), respectively, but the addition of exogenous substrate did not uniformly increase PRR in acetone-treated plasma above control values. These data argue against the use of acetone extraction to demonstrate the existence of circulating lipid-renin inhibitors. Acetone removed 14% to 25% of the normal plasma lipids and although the extract contained most of the major lipid classes, neutral lipids were the most abundant (73% by weight). The presence of acetone-soluble phospholipids appeared to increase angiotensin I formation in the partially purified renin-angiotensinogen system, but phospholipids interfered with the radioimmunoassay and resulted in an overestimation of angiotensin I. Plasma neutral lipids decreased in vitro renin activity by 13% (p < 0.025) but this degree of inhibition suggests that lipid-renin interactions may have minimal in vivo physiological significance. In contrast to previous reports, we found the correlation between PRR and endogenous angiotensinogen in normotensive and hypertensive plasmas to be statistically significant (r = 0.643, p < 0.01). Inactivated human angiotensinogen was also shown to be an inhibitor of renin in vitro. This effect could have possibly influenced PRR values that were determined by others in the presence of inactivated angiotensinogen.

Acetone

Acetone and acetol inhibition of insulin-stimulated glucose oxidation in adipose tissue and isolated adipocytes.

The response of peripheral tissues to insulin is reduced in fasting and diabetes mellitus. The experiments described herein were designed to determine whether insulin-stimulated glucose oxidation is affected by the free-fatty acid-derived plasma metabolites acetone, acetol, and propylene glycol (1,2-propanediol [1,2-PD]), concentrations of which are elevated in both starvation and diabetic ketosis. In epididymal adipose tissue from fed and 48-h--fasted rats given 3% acetone drinking water for 7 days, insulin-stimulated glucose oxidation was reduced by approximately 30-40%. After ingestion of 2% acetol for 7 days, basal and insulin-stimulated glucose oxidation was lowered approximately 30%, whereas the consumption of 1,2-PD had no influence on either basal or insulin-stimulated glucose oxidation. Similar effects on glucose oxidation were observed in isolated adipocytes from fed rats after ingestion of 3% acetone and 2% acetol for 7 days. The reduction in insulin-stimulated glucose oxidation in adipose tissue in vitro required the consumption of 3% acetone water for greater than 3 days. In 48-h--fasted rats that ingested 3% acetone for 5 days, insulin-stimulated glucose oxidation remained depressed 4 days after withdrawal of acetone from the drinking water. These studies imply that at least part of the insulin resistance indigenous to fasting and diabetic ketosis may be attributed to the metabolic influence of acetone and/or acetol in body fluids.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetone

Pharmacologic, toxicologic, and marrow transplantation studies in dogs given succinyl acetone.

A novel immunosuppressant, succinyl acetone (4,6-dioxoheptanoic acid), was studied in dogs. Results with bolus intravenous injections at doses ranging from 50 to 1600 mg/kg showed dose-dependent alpha and beta half-lives, ranging from 30 to 80 min and 7 to 27 hr, respectively. Results suggested that continuous i.v. infusion was necessary to maintain constant plasma levels. Four dogs were given 9.2 Gy total-body irradiation and autologous marrow transplants along with continuous i.v. infusion of succinyl acetone at 50, 100, 200, or 400 mg/kg/day for 21 days, and all four had rapid, sustained hematopoietic engraftment. However, two of the four dogs receiving 200 and 400 mg succinyl acetone/kg/day, respectively, developed bilateral hind-limb ataxia, with histologically confirmed cerebellar lesions in the dog given the higher dose, thus establishing a potential dose-limiting neurotoxicity. Prevention of graft-versus-host disease was studied in recipients of allogeneic marrow. Dogs were given 9.2 Gy TBI, followed by hematopoietic grafts from unrelated DLA-nonidentical or DLA-haploidentical littermate dogs. Succinyl acetone was given as continuous infusion for 21 days after transplant at doses of 100-300 mg/kg/day. Starting succinyl acetone on the day of marrow infusion in four dogs failed to prevent rapid onset of acute GVHD, and dogs survived no longer than controls. Starting succinyl acetone 3 days before transplant delayed the onset of acute GVHD and prolonged survival significantly compared with that of dogs not given postgrafting immunosuppression (P = 0.008); survival was comparable to that in previously reported dogs given either methotrexate or cyclosporine as postgrafting immunosuppression (P = 0.88 and 0.99, respectively). Seven of the sixteen allogeneic recipients developed evidence of neurotoxicity during succinyl-acetone infusion. Neurological dysfunctions were manifested by hind-limb ataxia and posterior paresis. In conclusion, succinyl acetone significantly delayed the onset of GVHD and prolonged survival of DLA-nonidentical marrow graft recipients but did not induce graft-host tolerance and was associated with dose-limiting neurotoxicity.

Animals

Possible role of the acetone-inducible cytochrome P-450IIE1 in the metabolism and hepatotoxicity of thiobenzamide.

The effect of acetone pretreatment (5% in drinking water for 10 days on rat liver metabolism and toxicity of thiobenzamide (TB) was investigated. Hepatic microsomes from acetone-pretreated rats showed a significant increase of TB-S-oxidation rate which, on the basis of selective thermal inactivation of FAD-containing monooxygenase (FADM), appeared dependent only on cytochrome P-450. Furthermore, TB was able to competitively inhibit acetone hydroxylase (AcH), an enzymatic reaction highly specific for the P-450IIE1 isozyme. Acetone pretreatment of rats also produced an exacerbation of liver damage induced by acute administration of TB (150 mg/kg), as judged by the extent of liver necrosis and serum alanine-amino transferase (ALAT) activities. Coadministration of acetone with TB reduced on the other hand the extent of liver damage. The findings suggest that P-450 species induced by acetone, and in particular the P-450IIE1 isozyme, could be involved in the biotransformation of TB.

Acetone

Effect of hexachlorobenzene and acetone on algal growth: physiology and ultrastructure.

The effect of hexachlorobenzene (HCB) and acetone on growth and ultrastructure of the freshwater alga Chlorella pyrenoidosa was studied. The algal cells were grown for 76 h under continuous light in 10 ppm HCB with 0.33% acetone or in 0.33% acetone alone; the control cells were grown in nutrient solution only. As was deduced from determinations of dry matter, carbohydrates, chlorophyll content and total nitrogen, 0.33% acetone in nutrient solution slightly decreased the growth of the cells without having any influence on their ultrastructure while 3.33% acetone affected the ultrastructure of the cells severely. An incubation of Chlorella with 10 ppm HCB in nutrient sultion containing 0.33% acetone led to a drastic decrease of all growth parameters studied, total nitrogen and chlorophyll content being affected most strongly. These latter observations were in accord with the changes in ultrastructure showing damage to the cell membranes, disintegrated cytoplasm and sometimes even break down of cell organells leaving only starch grains, the pyrenoid and some endomembranes. In addition to these cells with severe lesions, quite normal cells were found.

Acetone

Acetone sterilization in ophthalmic surgery.

Acetone is a potent bactericidal agent and has considerable value for the routine disinfection of surfaces. The reason for the poor showing of acetone in previously reported tests was that it was not used in concentrated form, and our tests also confirmed its relative ineffectiveness when diluted. The inability of acetone to eliminate spores is an important disadvantage but most commonly used bactericidal agents also are deficient in this respect. Although acetone is active in the presence of protein it does not penetrate blood clots. Therefore, instruments should be cleaned of blood and tissue fragments before using acetone to disinfect them, as with other methods of sterilization. Acetone can make ordinary sterilizers unnecessary in our offices. I believe that it is a superior antiseptic for use in sterilizing sharp instruments in the operating room and can be used for all instruments when autoclaving or gas sterilization is not feasible or not available.

Acetone