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Biomedical subjects

J Angerer

Publications and source records attributed to J Angerer.

At least 91 records · Page 5Linked to original sources

Urinary levels of 1-hydroxypyrene, 1-, 2-, 3-, and 4-hydroxyphenanthrene in females living in an industrial area of Germany.

The concentrations of 1-hydroxypyrene (1-HOPYR), and 1-, 2-, 3-, and 4-hydroxyphenanthrene (HOPHE) as metabolites of pyrene and phenanthrene, were measured in urine samples collected from 124 housewives (27 smokers and 97 non-smokers) living in Bottrop, an industrial city located in the Ruhr area in Germany. The urine samples were analyzed by a very sensitive and practical high-performance liquid chromatographic (HPLC) method using a two-column switching technique and a special precolumn packing material followed by fluorescence detection. The polycyclic aromatic hydrocarbon (PAH) metabolites are selectively enrichéd on the precolumn and separated from the matrix. Therefore, laborious clean-up steps were omitted. The above-mentioned PAH metabolites could be detected in all urine samples investigated. Smokers had significantly higher urine concentrations of 1-HOPYR (median 0.48 microgram/g creatinine), 3-HOPHE (median 0.61 microgram/g creatinine), 2-HOPHE (0.41 microgram/g creatinine) and 4-HOPHE (median 0.10 microgram/g creatinine) than non-smokers (median 0.15 microgram/g creatinine, 0.31 microgram/g creatinine, 0.31 microgram/g creatinine and 0.04 microgram/g creatinine, respectively). The study shows that the influence of smoking is of such an order of magnitude that potential environmental exposure to PAH in this highly industrialized area is obscured by smoking habits. Furthermore, it can be concluded that the determination of 1-HOPYR, 1-, 2-, 3-, and 4-HOPHE in urine is a diagnostically useful method for the biological monitoring of persons environmentally exposed to PAH.

Air Pollutants↗

Biomonitoring and occupational medicine. Possibilities and limitations.

In the prevention of occupational diseases, biological monitoring has become very important. Today the individual level of exposure to many toxic substances can be assessed by routinely monitoring their concentrations in blood and urine. The adoption of effective quality control procedures allows reliable analytical results down to the ppt range to be obtained. Limit values such as the biological tolerance values for occupational exposure (BAT) from the Deutsche Forschungsgemeinschaft in Germany and the biological exposure indices (BEI) from the US American Conference of Governmental Industrial Hygienists (ACGIH) help to interpret the analytical results of biological monitoring. In spite of numerous advancements there are some gaps in the field of biological monitoring. Some groups of substances, such as pesticides, are still beyond the possibilities of biological monitoring. With regard to biological and biochemical effect monitoring, large gaps have to be filled and considerable research is needed. The number of limit values evaluated till now is still too small. Politics, however, seems to be the most serious limitation for biological monitoring.

DNA Adducts↗

The German external quality assessment scheme in occupational and environmental medicine.

According to a technical guideline for dangerous substances (TRGS 410) issued in 1979 by the Ministry of Labour of the Federal Republic of Germany, toxicological analyses in biological materials must be performed under conditions of "statistical quality control". The German Society for Occupational and Environmental Medicine is entrusted with the organization of the German external quality assessment scheme (EQAS). Since 1982 about 100 laboratories regularly take part in each run. Blood and urine samples spiked with two different concentrations (A, B) are distributed to the laboratories. Since 1991 additional samples with environmental exposure levels are also included in the EQAS. A laboratory is certified as successful if both its results (A, B) fall within the tolerance range given by the reference laboratories. The thirteenth (1994) external quality assessment exercise included blood and urine samples containing 21 inorganic and 29 organic substances, besides 8 inorganic and 14 organic analytes within the environmental concentration range.

Animals↗

Carbon disulphide. IV. Cardiovascular function in workers in the viscose industry.

OBJECTIVE: The aim of the study was to examine whether an increase can be detected in the prevalence of coronary heart disease or a higher prevalence of unusual cardiological findings in workers with occupational exposure to carbon disulphide (CS2) at the level of the threshold limit value of 10 ppm currently valid in occupational medicine. METHODS: In a cross-sectional study we investigated 247 men occupationally exposed to CS2 and a comparable control group (n = 222). The current exposure to CS2 was measured using personal air monitoring and biological monitoring of all test persons. A cumulative exposure index (median of CS2 exposure in the past multiplied by the duration of employment) was calculated. In addition to collecting comprehensive anamnestic data on all persons, we carried out a physical examination, an ultrasound examination of the large arteries, a resting and exercise ECG and an echocardiographic examination. RESULTS: No increase could be found in the prevalence of coronary heart disease or of arteriosclerotic findings in the exposed subjects. There was no difference in the distribution of the performance of the two groups in the ergometric tests. The echocardiogram showed a median increase in the diameter of the left atrium and left ventricle of 1-2 mm in the exposed subjects. These differences could also be confirmed statistically after multiple linear regression analysis. The left ventricular, telesystolic diameter was positively associated (P < 0.05) with internal exposure (CS2 metabolite in urine), and fractional shortening revealed a plausible negative trend (P = 0.0755). Current external exposure (CS2 in air) and cumulative exposure did not influence any of the parameters investigated. CONCLUSION: The findings may indicate a negatively inotropic effect of CS2 so far unknown in man. However, no clinical relevance for this effect was apparent.

Carbon Disulfide↗

[Internal hazardous substance burden of persons from various regions of origin--studies of lead, mercury, arsenic and cadmium exposure].

AIM OF THE STUDY: The aim of this study was to investigate the concentration of metals of environmental-medical relevance in biological materials in persons seeking asylum with regard to their country of origin. COLLECTIVE AND METHOD: During medical examination after entry into Germany of persons seeking asylum, samples were taken for determination of the following biological monitoring parameters: lead in blood, and arsenic, cadmium and mercury in urine. A total of 103 males were investigated (13 from former Yugoslavia, 29 from the former USSR, 33 Africans and 28 Asians) ranging from 16 to 53 years of age (median 27 years). 34 male Germans without occupational exposure to these substances and a similar age structure (age 25-36 years; median 26 years) served as a control group. RESULTS: The countries of origin had a significant influence on all the biological monitoring parameters investigated. The mean blood lead concentration in the Asians of 75.4 micrograms/L was the highest level found, while the lowest concentration of 38.0 micrograms/L was measured in the German controls. Also the level of arsenic excreted in the urine was on average much higher in the persons seeking asylum than in the German controls. In the Africans a mean level of 9.7 micrograms/g creatinine was reached. The Germans had the lowest arsenic concentrations in urine of 5.3 micrograms/g creatinine. There were, however, considerable interindividual fluctuations, which are probably due to oral uptake of arsenic compounds as a result of eating seafoods. The highest mean concentration of mercury excreted in urine was found in the German controls. Values of 0.9 microgram/g creatinine were determined. The men seeking asylum from former Yugoslavia had significantly higher values than other groups for cadmium excreted in urine. The median of 0.6 microgram/g creatinine was nearly three times as high as found in the Germans. CONCLUSIONS: For all parameters investigated, with the exception of mercury, higher internal exposure was found in the persons seeking asylum than in the German controls. This may be due to individual life style, dietary habits or environmental conditions in the country of origin. For clinical environmental medicine, the 95th percentile, as the upper limit of the reference range, can only be regarded as an orientation aid for classifying the exposure to hazardous substances of an individual compared to other persons from the same environment.

Adolescent↗

Use of bone mineral content determination by X-ray absorptiometry in the evaluation of osteodystrophy among workers exposed to aluminium powders.

Within the framework of a cross-sectional study, we investigated 61 employees in an aluminium powder factory to see if aluminium had an influence on bone mineral content using the non-invasive method of bone density measurement. Thirty-two workers had been employed for, on average, 151 months in the area of aluminium powder production. Twenty-nine employees in the same factory, who had not been engaged in the production of aluminium powder, served as controls. The groups differed significantly in the concentrations of aluminium in urine and plasma. The bone mineral content, which was determined in the lumbar spine by means of photon absorptiometry showed no significant difference between the groups. The bone density value amounted to 1.00 g/cm2 for those exposed and 1.02 g/cm2 for the control group (median values). No correlation could be determined between the values obtained from the biological monitoring of the plasma or the duration of exposure and the bone density values. To summarise, using osteodensitometry as the method of investigation here, no influence could be detected for an occupational exposure to aluminium powders on the mineral salt content of the skeletal system in the area of the lumbar spine.

Absorptiometry, Photon↗

Carbon disulphide. II. Investigations on the uptake of CS2 and the excretion of its metabolite 2-thiothiazolidine-4-carboxylic acid after occupational exposure.

The reported investigations on the uptake of carbon disulphide (CS2) and the excretion of its metabolite 2-thiothiazolidine-4-carboxylic acid (TTCA) were based on results from 403 personal air samples (352 passive and 51 active samples) and 362 TTCA determinations in biological material measured during a field study on the adverse effects due to CS2 exposure. The external exposure ranged from below the detection limit (0.2 ppm) to 66 ppm and the urinary TTCA excretion from below the detection limit (0.16 mg./l) to 33.4 mg/l. The excretion of TTCA in postshift urine related to creatinine and volume showed a linear correlation to the CS2 air concentration. On the basis of these results the influence on the internal exposure of physical work load, dermal exposure and individual parameters (age, Brocaindex, disturbed skin barrier) was evaluated. Correlations between the TTCA values in the postshift urine and the individually measured CS2 concentrations were carried out separately for individual departments and persons with and without indications of a disturbed skin barrier. In order to be able to judge the individual internal exposure related to external exposure, a personal quotient was formed from the TTCA level in the urine and the CS2 air concentration measured on the same day (relative internal exposure RIE index = TTCA mg/g creatinine/CS2 in ppm). On investigating interindividual differences, higher relative internal exposures were found in persons with a heavy physical work load and more intensive skin contact. It could be shown for a large group of persons exposed to CS2 that a pathological skin condition leads to an increase in the dermal penetration rate of hazardous substances.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Analysis of N-alkylated amino acids in human hemoglobin: evidence for elevated N-methylvaline levels in smokers.

To investigate the contribution of cigarette smoking to the levels of N-methylvaline and N-hydroxyethylvaline in hemoglobin we analyzed samples from 32 smokers and 37 nonsmokers. The average background levels of the nonsmoking individuals were determined to be 1175 +/- 176 pmol N-methylvaline/g globin, ranging from 722 to 1516 pmol/g globin, and 46 +/- 12 pmol N-hydroxyethylvaline/g globin, ranging from 19 to 64 pmol/g globin. A significant correlation (P < 0.001) was found between both amino acids and the amount of cigarettes smoked per day, with an increase of 42 pmol N-methylvaline/g globin/cigarette per day and 11 pmol N-hydroxyethylvaline/g globin/cigarette per day. No influence of age, sex, and occupational exposure was observed. Furthermore, the levels of N-hydroxyethylvaline and N-methylvaline correlated for smokers but not for nonsmokers, indicating cigarette smoking as a common source for both adducts. To our knowledge, this is the first time N-methylvaline levels are reported to differ significantly between smokers and nonsmokers in the general population. Especially the analysis of N-methylvaline following low-level exposures to methylating agents should therefore take into consideration the influence of individual smoking habits. Additionally, the results of our study confirm the reliability of N-hydroxyethylvaline as an indicator of individual cigarette consumption. We successfully applied a new calibration technique to the analysis of N-hydroxyethylvaline, introducing a commercially available and well-defined dipeptide standard. The observed levels of N-hydroxyethylvaline in the samples are in line with those reported in the literature and verify the applicability of our calibration method.

Adult↗

Carbon disulphide. III. Risk factors for coronary heart diseases in workers in the viscose industry.

To evaluate risk factors for coronary heart disease and factors which can influence the course of acute myocardial infarction in workers exposed to CS2 we performed a cross-sectional study of 247 workers in the viscose industry. The control group of 222 men from the same plant was comparable for age, social status and physical work. The CS2 exposure determined by personal air sampling ranged from < 0.2 ppm to 65.7 ppm (median: 4.0 ppm) and the duration of exposure ranged from 4 to 220 (median: 66) months. Using a multiple linear regression model we found neither higher blood pressure at rest or after exercise, nor hyperlipoproteinaemia in a higher degree, nor lower high-density lipoprotein (HDL) or lower apolipoprotein A-I levels, nor higher blood glucose values, nor indicators of direct cardiotoxic effects or signs of disturbances in blood coagulation in the exposed group in comparison to controls. Regarding the influence of chronic exposure on the investigated parameters, we found an inverse correlation of the cumulative exposure (mean CS2 exposure in the department multiplied by the duration of work in this department) with the HDL concentration. The HDL levels correlated with the duration but not with the intensity of exposure. In the same way the apolipoprotein A-I levels showed a negative association with the duration of exposure in the exposed group as well as in the control group. The HDL concentrations showed the same trend for the controls. It therefore seems that this finding is more likely due to confounding factors than to the CS2 exposure. As all subjects (exposed and controls) have done shift work, in some cases for a long time, this kind of work could be responsible for the negative relationship between the duration of employment as a shift worker and the apolipoprotein A-I and HDL levels. At the current air-borne levels no significant differences were found between the exposed persons and the controls in the distribution frequency for blood pressure values, lipoproteins, blood glucose, blood coagulation and indicators of direct cardiotoxic effects.

Adult↗

Internal exposure of waste incineration workers to organic and inorganic substances.

One hundred and twenty-two persons employed in an industrial waste incineration plant were examined with respect to organic and inorganic substances which may be produced during the combustion of different waste. The employees were divided into three groups: persons with contact with the incinerator (WI workers, n = 45), periphery workers (n = 54) and management (n = 23). For the evaluation of internal exposure, the levels of lead, cadmium, mercury, benzene, toluene, ethylbenzene and m-xylene in blood, chromium in the erythrocytes, polychlorinated biphenyls, hexachlorobenzene and pentachlorophenol in plasma, and arsenic, chromium, nickel, vanadium, chlorophenols and hydroxypyrene in urine were determined. The internal exposures of the three groups were tested against each other and were compared with the reference values of the general population. Differences between the groups investigated were tested using the U test according to Wilcoxon, Mann and Whitney (P < 0.05). The biological exposure limits valid in Germany (BAT values) were not exceeded in any cases. Compared with the background levels of the German population, certain parameters were exceeded in several employees. Significantly higher levels of the WI workers in comparison to both periphery workers and management were found for toluene in blood (median: 1.1 vs 0.9 vs 0.6 microgram/l). For the lead and cadmium levels in blood and for the urinary excretion of arsenic, 2,4-dichlorophenol and tetrachlorophenols, statistical differences were found only between WI workers and one of the other groups. However, in all cases the elevations were very small and of interest more from the environmental than from the occupational point of view. It must be stressed that this waste incineration plant is very modern in terms of worker health and safety. At older plants without corresponding health and safety measures, higher internal exposure of the employees to hazardous substances may exist.

Adult↗

Current status of the external quality assurance programmes of the German Society for Occupational and Environmental Medicine.

Due to a technical rule issued by the Ministry of Labour, in Germany toxicological analysis in blood and urine for biological monitoring must be carried out under quality assurance. Since 1982 the German Society for Occupational and Environmental Medicine has offered 13 intercomparison programmes. The 1994 round robin considered 7 metals and 5 solvents in blood, 12 organochlorine compounds in plasma and 14 inorganic, as well as 11 organic, compounds in urine in the occupational and in the environmental exposure range. Reference values and tolerance ranges are established by reference laboratories. Successful participation was certified if the results for 2 concentration adjustments were in tolerance range (assigned value +/- 3 S.D.). In 1994 in 119 laboratories the percentage rate of accurate results was 59%. This mean success rate is in agreement with the last 12 round robins.

Chemistry, Clinical↗

Determination of low level exposure to volatile aromatic hydrocarbons and genotoxic effects in workers at a styrene plant.

OBJECTIVES: Low exposures to volatile aromatic hydrocarbons and cytogenetic effects in peripheral white blood cells were determined in 25 healthy workers employed in different areas of a styrene production plant in the former German Democratic Republic. The results were compared with 25 healthy unexposed controls (matched for age and sex) employed in the same company. METHODS: The concentrations of aromatic hydrocarbons determined from active air sampling in all areas of the factory (styrene: 73-3540 micrograms/m3 (< 0.01-0.83 ppm); ethylbenzene 365-2340 micrograms/m3 (0.08-0.53 ppm); benzene 73-3540 micrograms/m3 ( < 0.02-1.11 ppm); toluene 54-2960 micrograms/m3 (0.01-0.78 ppm); xylenes 12-94 micrograms/m3 ( < 0.01-0.02 ppm)) were considerably lower than in the pump house ( > 4000 micrograms/m3 styrene, ethylbenzene, benzene, and toluene; > 500 micrograms/m3 xylenes), which was only intermittently occupied for short periods. Passive personal monitoring, biomonitoring of exhaled air and metabolites (mandelic, phenylglyoxylic, trans, trans-muconic, hippuric, o-, m- and p-methylhippuric acids, and phenol) in urine samples collected before and after an eight hour working shift was used to assess individual exposure. Questionnaires and examination of company records showed that the historical exposure was far higher than that measured. Genotoxic monitoring was performed by nuclease P1-enhanced 32P-postlabelling of DNA adducts in peripheral blood monocytes, and DNA single strand breaks, sister chromatid exchange, and micronuclei in lymphocytes. The content of kinetochores in the micronuclei was determined by immunofluorescence with specific antibodies from the serum of CREST patients. RESULTS: No genotoxic effects related to exposure were detected by DNA adducts or DNA single strand breaks and sister chromatid exchange. The only effect related to exposure was an increase in kinetochore positive micronuclei in peripheral lymphocytes; the frequency of total micronuclei in peripheral lymphocytes did not change. Smoking was confirmed by measurement of plasma cotinine, and no confounding effect was found on any of the cytogenetic variables. CONCLUSIONS: Low occupational exposure to styrene, benzene, and ethylbenzene did not induce alterations of genotoxicological variables except kinetochore positive micronuclei. This is the first reported use of the CREST technique for an in vivo study in occupational toxicology, which thus could serve as a valuable and sensitive technique for toxicogenic monitoring.

Adult↗

Carbon disulphide. I. External and internal exposure to carbon disulphide of workers in the viscose industry.

Carbon disulphide (CS2), a reagent of rayon production, is known for its high toxic potential and has therefore been the subject of many clinical studies. The aims of the study presented here were to determine the effective exposure to CS2 and to compare the validity of the different exposure indicators. Internal and external exposure to CS2 was investigated in 362 male workers of a viscose factory. The CS2 air concentrations measured through stationary air monitoring in five different work areas (n = 39) were compared with the values of active personal air monitoring (n = 51) and passive personal air monitoring (n = 352). In addition, in all investigations biological monitoring was carried out by measuring the 2-thio-1,3- thiazolidine-carboxylic acid (TTCA) excretion in urine. A significant correlation was found between the data for active and passive personal air sampling (y = 0.99, x + 0.31, r = 0.968). The results of the stationary measurements led, however, to values which were systematically too low. The validity of TTCA excretion in urine as a parameter of biological monitoring could for the first time be verified in a large sample of subjects. There was a linear correlation between TTCA values in the urine related to both volume and creatinine [y (TTCAmg/g creatinine) = 0.315 x (ml CS2/m3 air) + 0.59] and the CS2 values in the air. Nevertheless, TTCA excretion proved to be dependent upon creatinine so that the excreted amounts related to creatinine described the individual exposure more exactly.

Adult↗

GC/MS determination of N-phenylvaline, a possible biomarker for benzene exposure in human hemoglobin by the "N-alkyl Edman method".

We report the application of a modified Edman degradation procedure to the analysis of benzene oxide adducts at the N-terminal valine of human hemoglobin (Hb). Benzene oxide is thought to be formed in the liver from benzene and adduct formation with macromolecules is therefore likely to occur. We assumed that benzene oxide could covalently bind to hemoglobin after leaving the hepatic tissue. The "N-alkyl Edman method" was adapted for the approach to investigate this hypothesis. Using capillary gas chromatography/mass spectrometry (GC/MS) with negative chemical ionization, we could not detect N-phenylvaline in blood samples from persons occupationally exposed to benzene. We conclude that adducts of benzene oxide to the N-terminal valine of Hb are not formed in detectable amounts in vivo and consequently are not suitable for biomonitoring purposes. This result clearly indicates that other reactive benzene metabolites have to be taken into account not only in the search for a biomarker but also as the ultimate carcinogenic species.

Air Pollutants, Occupational↗