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F A de Wolff

Publications and source records attributed to F A de Wolff.

At least 19 recordsLinked to original sources

Dermal absorption of cis-1,3-dichloropropene vapour: human experimental exposure.

1. The relevance of skin absorption of cis-1,3-dichloropropene (cis-1,3-DCP) vapour as a route of entry compared to inhalatory uptake has been assessed in human volunteers under controlled exposure conditions. 2. Five adults (four males and one female) were dermally exposed on the forearm and hand during 45 min to 86 mg/m3 cis-1,3-DCP. 3. Dermal uptake was assessed by determination of the main cis-1,3-DCP metabolite in urine: the mercapturic acid conjugate of cis-1,3-DCP (cis-1,3-DCP-MA). 4. When whole-body dermal exposure to vapour is compared to inhalatory exposure, the uptake through the skin is estimated to be about 2-5% of the inhalatory absorption.

Acetylcysteine

Determination of 2,5-hexanedione, a metabolite of n-hexane, in urine: evaluation and application of three analytical methods.

Three methods for the determination of 2,5-hexanedione (2,5-HD) in urine were compared in order to assess their applicability for toxicokinetic studies and biological monitoring of occupational exposure to n-hexane. Two of them were based on derivatization, followed by gas chromatography and electron-capture detection. Of these two, one is a modification of the other, already published, method. The third one involves direct extraction of 2,5-HD followed by gas chromatography and flame-ionization detection. To determine 2,5-HD in urine of workers occupationally exposed to n-hexane, the most straightforward method, direct extraction of 2,5-HD from urine, has been proven to be the most suitable. However, in case of very low concentrations of 2,5-HD in urine, or analysis of small samples of blood, e.g. in kinetic studies, it is necessary to use a more sensitive procedure. The sensitivity of the methods based on the derivatization of 2,5-HD followed by electron-capture detection, was, as expected, much higher in terms of analytical reliability. By using these methods, however, precautions are necessary to avoid a matrix effect.

Chromatography, Gas

Absorption of bismuth from several bismuth compounds during in vivo perfusion of rat small intestine.

Evaluation of the amount of bismuth (Bi) absorbed from the gastrointestinal tract is important for assessment of the possible risks associated with the use of Bi compounds in the treatment of gastrointestinal disorders. We compared the absorption of Bi from media containing the equivalent of 1 g of elemental Bi from either Bi subnitrate (BSN), Bi subsalicylate (BSS), colloidal Bi subcitrate (CBS), Bi chloride (BiCl3), or Bi citrate (BCit) by an in vivo perfusion system of rat small intestine. The intestinal absorption was < 1% for all compounds, but higher from BCit and CBS than from BSN, BSS, and BiCl3. The dose dependency of Bi absorption from both CBS and BiCl3 in citrate buffer showed a nonlinear relationship between the concentration of Bi in perfusate and the concentration of Bi in blood after 60 min.

Animals

Sensitivity to 2,5-hexanedione of neurofilaments in neuroblastoma cell line SK-N-SH increases during differentiation.

The effect of 2,5-hexanedione (2,5-HD) on the distribution of the neurofilamental (NF) proteins and vimentin was examined in human neuroblastoma cell line SK-N-SH with immunocytochemical methods. Retinoic acid (10 microM) induced differentiation into neuronal cells resulting in the outgrowth of processes and synthesis of NF proteins in the majority of the cells. A minority (4%) differentiated as large fibroblasts. Cells were exposed to 0-10 mM 2,5-HD for 3 days. In neuronal cells a concentration-dependent accumulation of NF proteins was detected as a spherical structure in the perikaryon. Neurofilaments in differentiated SK-N-SH cells were more susceptible to 2,5-HD than NF in undifferentiated cells, as the effects were observed at much lower 2,5-HD concentrations. In contrast, no accumulation of vimentin was detected in the fibroblastic cells.

Cell Differentiation

Phenytoin parahydroxylation is not impaired in patients with young-onset Parkinson's disease.

Impaired hepatic detoxification capacity by cytochrome P450 subsystems has been implicated in the pathogenesis of Parkinson's disease. We have demonstrated that hepatic parahydroxylation of phenytoin (PHT) is impaired in patients with late-onset Parkinson's disease. In the present study, we have investigated the hypothesis that PHT parahydroxylation is even more impaired in patients with young-onset Parkinson's disease (age at onset before 40 years). We determined PHT parahydroxylation capacity in 21 patients with young-onset Parkinson's disease and 15 healthy age-matched controls. PHT parahydroxylation capacity was assessed by measuring the ratio of PHT to its major metabolite p-hydroxyphenyl-phenylhydantoin in serum 6 h after an oral test dose of 300 mg PHT. PHT parahydroxylation did not differ significantly between patients and controls. These results argue against the hypothesis that impaired activity of the cytochrome P450 isoenzyme responsible for PHT parahydroxylation is involved in the etiology of Parkinson's disease.

Administration, Oral

Giant axonal degeneration: scanning electron microscopic and biochemical study of scalp hair.

Tightly curled 'frizzy' hair is a pathognomonic sign of giant axonal degeneration (GAD). The present study compares the morphological structure of the scalp hair of a GAD patient with that of her parents and first-degree relatives with the aid of scanning electron microscopy. The comparison included plaited hair of two age-matched controls, in order to exclude mechanical plaiting artifacts. Trichorrhexis nodosa and fringing of the cut ends were exclusively found in the patient's hair. Longitudinal grooving was also frequently seen in hair of normal persons. Assay of carbon (C), sulfur (S) and nitrogen (N) contents of the patient's hair was normal, but the S:N ratio was significantly reduced, as compared with her relatives. However, comparison with a control group of non-related healthy volunteers showed no difference.

Adolescent

Evaluation of biological monitoring parameters for occupational exposure to toluene.

A survey was conducted in a rotogravure printing plant with inhalatory and percutaneous exposure to toluene. Workers (n = 9) were followed for 2 consecutive days and the frequency and duration of skin contact with toluene were monitored. In order to assess percutaneous absorption an airstream helmet was worn during one day. Urine and exhaled air samples were collected simultaneously 5 times each day for toluene (urine and breath) and hippuric acid (urine). The mean (personal air sampling) exposure concentration was between 30 mg/m3 and 600 mg/m3. The best biological monitoring parameter of external exposure (without a helmet) was the concentration toluene in exhaled air 8 h after work (r = 0.99). While wearing the airstream helmet the relationship between external exposure (measured in the helmet) and concentrations in exhaled air and urine deviated from the preceding relations. This was likely the result of the high body burden and not of skin contact with toluene. Skin contact with toluene (usually by cleaning of the hands) was limited to 0-30 minutes a day, with an average of about 5 minutes. During experimental exposure (n = 6) in which the hands were washed with toluene for 5 minutes the toluene in exhaled air (max after 1040 min) clearly demonstrated skin absorption of toluene. The next morning 0.1 mg/m3 toluene was still detectable; this was less than the concentration measured the next morning in exhaled air of workers: between 0.5 and 10 mg/m3.

Adult

Dermatitis in bulb growers.

A damaged skin forms a health hazard in flower-bulb growers as it enables higher permeation rates for pesticides than normal skin. Therefore, an investigation was performed into the skin condition of 103 bulb growers and 49 controls. Contact dermatitis of the hands was of the same order (11 and 10%) in both groups. However, minor signs of dermatitis were seen more often in bulb growers (30 versus 8%, p < 0.05). Most growers had contact with narcissus sap during the investigation. This irritant sap, as well as many other skin contacts with irritants such as hyacinth dust and pesticides, seemed to be responsible for many skin complaints. Contact sensitization was suspected in 19 growers and 3 controls. Patch tests showed that contact sensitization existed to pesticides in probably 10, and to flower-bulb extracts in 4 growers. Reactions to propachlor were not regarded as very reliable as the test concentration seemed to be marginally irritant. There were only a few allergic reactions to narcissus (3) and tulip (2) and none to hyacinth. This investigation showed that minor irritant contact dermatitis was frequent in bulb growers, and indicated that contact sensitization to pesticides and bulbs seemed to be a less frequent but important cause of dermatitis.

Adult

Effect of aluminum chloride, -citrate, and -maltol on the calcium-mediated degradation of neurofilament proteins.

Aluminum (Al) has been observed to cause neurofilament protein accumulation in both experimental animals and cultured cells. Impairment of axonal transport is thought to be a mechanism of toxicity. Inhibition of the degradation of neurofilament proteins, however, resulting in accumulation of these proteins may be an alternative mechanism for Al toxicity. In the present study, the effect of calcium (Ca) on the proteolysis of the neurofilament triplet proteins by calcium-activated neutral proteases (CANP) was studied in the isolated sciatic nerve explants. The extent of the degradation was found to be dependent on the Ca concentration. The effect of Al chloride, -citrate and -maltol on the calcium-induced degradation was studied. No effect of any of the Al compounds was observed, suggesting that the metal may exert its neurotoxic effect via a mechanism other than impairment of neurofilament proteolysis. Maltol itself was found to enhance the effect of Ca on the degradation of neurofilament proteins, probably by facilitating the movement of Ca across the neuronal membrane.

Aluminum

Effect of citric acid and maltol on the accumulation of aluminum in rat brain and bone.

Deposition of aluminum in the body is responsible for the development of dialysis-related diseases in patients with renal dysfunction and may play a role in the development of certain neurodegenerative disorders. Although citric acid is known to be a strong enhancer of gastrointestinal absorption of aluminum, its effect on aluminum distribution and accumulation is not yet clear. Maltol has been shown to increase the neurotoxicity of aluminum, but little is known about its effect on aluminum deposition in the body. To elucidate the role of citric acid and maltol in aluminum accumulation and toxicity, rats were loaded intraperitoneally during a 7-day period with different amounts of aluminum chloride in absence or presence of citric acid or maltol before analysis of aluminum in serum, brain, bone, and urine. Coadministration of citric acid led to relatively reduced serum levels, as compared with aluminum and aluminum-maltol treatment. This is explained by both tissue elimination and enhanced renal elimination. Only at the highest aluminum dose (8 mg/kg body weight) was an enhancing effect of citric acid on accumulation of aluminum in brain observed; no effect on bone aluminum was seen. Furthermore, it was seen that citric acid alters the distribution pattern of aluminum. This may be explained by the postulation of a characteristic aluminum citrate species in serum. Administration of citric acid may increase this aluminum fraction in serum, thereby inducing an alteration of the distribution pattern. Maltol was shown to be a strong enhancer of aluminum accumulation in serum, brain, and bone. The rise of aluminum in these target tissues was dose dependent.(ABSTRACT TRUNCATED AT 250 WORDS)

Aluminum

Analysis for bismuth in tissue by electrothermal atomic absorption spectrometry.

We developed a simple method for the analysis of bismuth (Bi) in biological tissue, using wet digestion for sample pretreatment. Bi was determined by electrothermal atomic absorption spectrometry with platinum as a matrix modifier to decrease the volatility of Bi. The furnace program included a gas stop for sensitivity enhancement. Analytical performance was established for Bi in kidney, liver, brain, and bone. As little as 25 ng/g wet weight can be detected in the most concentrated digests. Homogenization of bone was necessary before digestion, and its matrix showed the strongest interference. In rats exposed orally to colloidal bismuth subcitrate for 14 days, the metal could be detected in liver, kidney, and spleen but not in brain and bone. In the tissues of 12 patients who died from non-Bi-related causes, no Bi were present in kidney in the other 2.

Adolescent

Increased metallothionein in the liver and kidney of patients with amyotrophic lateral sclerosis.

To evaluate the putative role of metals and trace elements in the pathogenesis of classic amyotrophic lateral sclerosis, we studied the metallothionein levels in liver and kidney samples obtained at autopsy from 24 patients with amyotrophic lateral sclerosis and 18 controls. To assay metallothioneins and copper, cadmium, and zinc bound to metallothioneins, we used high-performance liquid chromatography directly coupled to flame atomic absorption spectrometry. Total cadmium, zinc, and copper concentrations were determined separately with the use of graphite furnace atomic absorption spectrometry with Zeeman background correction. The median liver metallothionein level was 60.3 mg/kg (range, 9 to 318 mg/kg) in the patients with amyotrophic lateral sclerosis and 12.6 mg/kg (range, 0 to 104.5 mg/kg) in the controls. In the kidney, median metallothionein levels were 126.9 mg/kg (range, 44 to 387 mg/kg) in the patients with amyotrophic lateral sclerosis and 64 mg/kg (range, 13.1 to 187 mg/kg) in the controls. Total zinc, cadmium, and copper concentrations, as measured by atomic absorption spectrometry, were not significantly different in patients vs controls. Our finding of elevated metallothionein levels in organs from patients with amyotrophic lateral sclerosis may indicate an increased exposure to metals.

Adolescent

Increased neurotoxicity of arsenic in methylenetetrahydrofolate reductase deficiency.

A 16-year-old girl from Surinam presented with mental deterioration and severe paraparesis with areflexia and bilateral Babinski signs. Laboratory examination showed a hyperhomocysteinemia that was caused by 5,10-methylene-tetrahydrofolate reductase (MTHFR) deficiency. In addition, urine samples contained large amounts of arsenic. An open bag with the pesticide copper acetate arsenite was found to be the source of exposure. In remethylation defects such as MTHFR deficiency, the concentration of methyldonors is severely reduced. As arsenic is detoxified by methylation, we suggest that the MTHFR deficiency in this girl might explain the fact that of all family members exposed to arsenic, only she developed severe clinical signs and symptoms of arsenic poisoning.

Adolescent

Accumulation of aluminium in rat liver: association with constituents of the cytosol.

Aluminium (Al) accumulation occurs in the liver of renal patients and in patients on parenteral nutrition. Human hepatotoxicity is not proven. The role of the liver in storage and biotransformation of Al and in development of osteo- and neurotoxicity is not clarified as yet. The aim of the present investigation was to study the storage of Al in total liver and in subcellular liver fractions, and its association with soluble cytosolic molecular species. Therefore, rats were loaded with Al prior to liver fractionation by ultracentrifugation, and equilibrium gel filtration chromatography of the cytosol, using a previously described method for Al speciation in serum. Al accumulated dose-dependently in liver and subcellular liver fractions, the lowest levels occurring in the cytosol. A dose-dependent elevation of Al in the blood was also observed. Gelfiltration of the cytosol indicated that Al was associated with a low molecular weight form which was not a citrate complex, and a high molecular weight form, which was larger than transferrin. No induction of and association with metallothionein occurred.

Aluminum