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Effect of halogenated benzenes on acetanilide esterase, acetanilide hydroxylase and procaine esterase in rats.

1,2,4-Trichlorobenzene, 1,3,5-trichlorobenzene, hexachlorobenzene, 1,2,4-tribromobenzene, 1,3,5-tribromobenzene and hexabromobenzene were compared for their abilities to induce acetanilide esterase, acentailide hydroxylase and procaine esterase. Except for hexabromobenzene all induced acetanilide esterase whereas the hydroxylation of acetanilide was seen only with the fully halogenated benzenes and with 1,3,5-tribromobenzene. Hepatic procaine esterase activity was increased by the three chlorinated benzenes and 1,2,4-tribromobenzene.

Acetanilides

The measurement of acetanilide in plasma by spectrophotometric and selected ion monitoring methods.

Plasma samples from volunteers who had received an oral dose of acetanilide have been analysed by gas chromatography mass spectrometry and ultraviolet absorption techniques. The gas chromatography mass spectrometry method involved extraction of the plasma and analysis of the acetanilide using selected ion monitoring with a deuterated internal standard. In the ultraviolet method the plasma was hydrolysed with acid to convert the acetanilide to aniline, and this compound was diazotized and coupled with N-1-naphthylethylene-diamine. The absorbance of the resulting complex was read at 550 nm. Acetanilide levels in plasma determined by the selected ion monitoring method were significantly lower than those measured by spectrophotometry. Pharmacokinetic data calculated from the results obtained using these two assays are very different and illustrate the need for an accurate and specific method of analysis. The major metabolites of acetanilide are shown not to interfere with these assays and the results suggest the possible presence of a new metabolite of acetanilide.

Acetanilides

Acetaminophen production in man after coadministration of acetanilid and phenacetin. A study with stable isotopes.

A new method for the investigation of interindividual differences in drug metabolism is described. We have studied the metabolism of ring-deuterated acetanilid in man following the coadministration of phenacetin. The principal metabolite of acetanilid-d5 is acetaminophen-d4, and the principal metabolite of phenacetin is acetaminophen-do. Using a gas chromatograph--mass spectrometer (gc-ms) we are able to monitor both the devterion-labeled acetaminophen produced by hydroxylation of acetanilid-d5 and the nonlabeled material produced by oxidative removal of the ethyl group in phenacetin. This system allows us to detect differences in the handling of these drugs by different subjects. nonlabeled material produced by oxidative removal of the ethyl group in phenacetin. This system allows us to detect differences in the handling of these drugs by different subjects.

Acetaminophen

Relationships between poloxamer structure and the solubilization of some para-substituted acetanilides.

Saturation solubilities of several para-substituted acetanilides have been measured at 37 degrees C in aqueous solutions of structurally related polyoxyethylene-polyoxypropylene block copolymers-poloxamers L62, L63, L64, P65 and F68. These poloxamers differ only in the amount of ethylene oxide in the hydrophil. Solubilities increased with increasing poloxamer concentration. As the oxyethylene chain length of the poloxamer increased, then the solubilizing capacity per equivalent of oxyethylene decreased. The moles of acetanilide derivative solubilized per mole of poloxamer increased with poloxamer oxyethylene content in the case of the less hydrophobic acetanilides but was invariant in the more hydrophobic ones. The solubilizing capacities have been discussed in terms of the inter-relationships between the hydrophobic nature of the solubilizate and solubilizer and the site of solubilization on the poloxamer molecule.

Acetanilides

Biological effectiveness, in goldfish, of some p-substituted acetanilides alone and in the presence of poloxamers.

The death times of goldfish have been measured in aqueous solutions containing different concentrations of p-substituted acetanilides alone or in the presence of poloxamers. Plots of reciprocal death time versus concentration were linear with a positive concentration intercept, the minimum effective concentration (MEC). The MEC values were directly related to the pi value (hydrophobic-lipophilic constant) of the functional group on the acetanilide indicating that activity is directly related to lipophilicity. Slopes of reciprocal death time versus drug concentration were linearly related to pi values but there was no direct dependence. The presence of poloxamers in aqueous acetanilide solutions reduced the goldfish death time. The effect of the poloxamers is believed to be one of rendering the goldfish membrane more permeable to drugs.

Acetanilides

Pseudomonas aeruginosa mutants resistant to urea inhibition of growth on acetanilide.

Pseudomonas aeruginosa AI 3 was able to grow in medium containing acetanilide (N-phenylacetamide) as a carbon source when NH4+ was the nitrogen source but not when urea was the nitrogen source. AIU mutants isolated from strain AI 3 grew on either medium. Urease levels in bacteria grown in the presence of urea were 10-fold lower when NH4+ or acetanilide was also in the medium, but there were no apparent differences in urease or its synthesis between strain AI 3 and mutant AIU 1N. The first metabolic step in the acetanilide utlization is catalyzed by an amidase. Amidases in several AIU strains showed altered physiochemical properties. Urea inhibited amidase in a time-dependent reaction, but the rates of the inhibitory reaction with amidases from the AIU mutants were slower than with AI 3 amidase. The purified amidase from AIU 1N showed a marked difference in its pH/activity profile from that obtained with purified AI 3 amidase. These observations indicate that the ability of strain AIU 1N and the other mutants to grow on acetanilide/urea medium is associated with a mutation in the amidase structural gene; this was confirmed for strain AIU 1N by transduction.

Acetanilides

A method for the estimation of acetanilide, paracetamol and phenacetin in plasma and urine using mass fragmentography.

Phenacetin, paracetamol and acetanilide can be determined in a plasma or urine sample by the use of deuterium labelled analogues. These are produced by reaction of hexadeuterioacetic anhydride with the appropriate aromatic amine. The -NHCOCD3 group is stable to hydrogen exchange below pH 8. The internal standard is added to the plasma or urine after enzymatic hydrolysis of the paracetamol conjugates and an ethyl acetate extract at pH 5 is evaporated under nitrogen and the residue derivatized with N,O-bis-(trimethylsilyl)-acetamide. An aliquot of this solution is injected into a g.c.m.s. system, and one ion characteristic of the material under study and the ion from the deuterium analogue (3 mass units greater) are monitored using a voltage switching technique. In the case of phenacetin, for example, ions at 251 and 254 are monitored. Calibration curves relating different weight ratios of the hydrogen and deuterium compounds to their respective signals from the gas chromatography mass spectrometer are used to calculate the amount of a compound in a particular sample. These methods have been developed to study the oxidation of acetanilide to paracetamol and the de-ethylation of phenacetin to paracetamol. Preliminary results from experiments with phenacetin will be discussed.

Acetaminophen

Benzo(a)pyrene metabolism and plasma elimination rates of phenacetin, acetanilide and theophylline in man.

The plasma elimination rates of phenacetin, acetanilide and theophylline have been determined in 32 healthy subjects in an effort to find drugs resembling in their metabolism the carcinogen benzo(a)pyrene. The plasma half-lives and metabolic clearance rates of the three drugs were correlated with the inducibilities of aryl hydrocarbon hydroxylase (AHH) in mitogen-stimulated lymphocytes and the plasma half-lives and metabolic clearance rates of antipyrine determined in previous studies. Statistically significant correlations were found between the half-lives and metabolic clearance rates of phenacetin, acetanilide and theophylline and the AHH ratios except for the metabolic clearance rates of phenacetin which did not correlate. The correlations of the three drugs with the half-lives and metabolic clearance rates of antipyrine were equally good. Of all the drugs tested thus far for similarity in metabolism to benzo(a)pyrene, antipyrine showed the best association followed closely by theophylline.

Acetanilides

Age related differences in the disposition of acetanilide.

1 The metabolism of fifteen elderly hospital in-patients and fifteen young people was studied, using a gas chromatography mass spectrometer method. 2 The results suggest that there is no significant change in hepatic oxidation of acetanilide with age. 3 The concentrations of metabolites were however, significantly elevated in the older group. 4 These results illustrate the importance of the decline in renal function with age in the disposition of drugs.

Acetanilides

Enhancement of microsomal aniline and acetanilide hydroxylation by haemoglobin.

1. Haemogloblin and myoglobin enhance rat liver microsomal p-hydroxylation of aniline and acetanilide. Microsomal N-demethylation of ethylmorphine and aminopyrine is not increased by haemoproteins. 2. The enhancement of microsomal p-hydroxylation is maximal at high substrate concentration and high haeme compound concentration. 3. Detergent-purified NADPH-cytochrome c reductase, free flavins and manganese ions considerably increase the haemoglobin-mediated, tissue-free hydroxylation of aniline. Microsomal aniline hydroxylation is not enhanced by haeme, ferric ion or albumin. 4 Catalase and cyanide ions are powerful inhibitors of haemoglobin-mediated aniline hydroxylation both in the presence and absence of tissue. Carbon monoxide inhibits the hydroxylase activity of the tissue-free system to a smaller extent than that of a system containing microsomes plus haemoglobin whereas p-chloromercuribenzoate inhibits only the flavoprotein-dependent hydroxylation of aniline mediated by haemoglobin. 5. Several possibilities of interactions between substrate, microsomes and haeme compounds are proposed.

Acetanilides

Gas-liquid chromatographic determination of alachlor (2-chloro-2', 6'-diethyl-N-(methoxymethyl)-acetanilide) herbicide residues in corn and soybeans.

A method has been developed for the extraction and determination of alachlor (2-chloro-2',6'-diethyl-N- (methoxymethyl)-acetanilide) residues in green corn and soybeans. Residues are extracted with acetonitrile and cleaned up on a Florisil column. The methylene chloride extract is sufficiently clean for electron capture gas-liquid chromatographic analysis and for verification by thin layer chromatography. Average recoveries of spiked samples (0.2 ppm) were 69 and 82% for corn and soybeans, respectively. This procedure could be useful for the detection of the parent compound in these crops soon after field application, but it does not detect metabolites.

Acetanilides

The degradation of paracetamol (4-hydroxyacetanilide) and other substituted acetanilides by a Penicillium species.

A mould which was isolated from a solution of paracetamol was identified as a Penicillium species and was found to possess the ability to utilise a series of substituted acetanilides, including paracetamol (4-hydroxyacetanilide), phenacetin (4-ethoxyacetanilide) and metacetamol (3-hydroxyacetanilide) as sole carbon sources for growth. Studies with washed-cell suspensions indicated that growth of the Penicillium isolate in the presence of paracetamol induced the respective enzyme systems for the degradation of this compound. Manometric studies measuring oxygen uptake rates, indicated that the mould was capable of degrading paracetamol to acetate and 4-aminophenol. Acetate was further metabolised whilst 4-aminophenol accumulated in the growth medium and was subsequently i-entified by UV spectroscopy and thin-layer chromatography. Similar experiments with phenacetin indicated metabolism by the mould to acetate and 4-ethoxyaniline which was isolated and identified by subsequent analysis of the growth medium. However, unlike 4-aminophenol and 4-ethoxyaniline, the degradation product (3-aminophenol) from metacetamol metabolism was further degraded by the mould.

Acetaminophen