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Biomedical subjects

Z Fiala

Publications and source records attributed to Z Fiala.

33 records · Page 2Linked to original sources

Environmental exposure to polycyclic aromatic hydrocarbons in Czech Republic.

1 Objectives of this study were (1) to compare concentrations of individual polycyclic aromatic hydrocarbons (PAH) in air of polluted and nonpolluted area of Czech Republic during winter and summer periods and (2) to verify if urinary 1-hydroxypyrene (1-OHP), as supposed practical biological marker, permits the assessment of spacial and temporal variations in environmental PAH exposure. 2 The study population consisted of three groups: (1) a group of 22 physical exercise students who regularly train outside, from the university situated in a polluted town, spending 14 days in winter and 14 days in summer in 'non-polluted' mountains; (2) a control group of 22 residents from the town and (3) a control group of 18 residents from the mountains. 3 The total PAH concentrations (sum of 13 individual PAH) were 19.3 and 104.6 ng/m3 in town and in mountains, respectively, during summer and 86.6 and 261 ng/m3 during winter. 4 Median 1-OHP levels ranged between 0.03 and 0.13 mumol/mol creatinine for controls and between 0.04 and 0.12 mumol/mol creatinine for students. No relationship was found between pyrene levels in air and group means of urinary 1-OHP. Our results show that other factors (probably PAH in food) contribute in masking air pollution influence on urinary 1-OHP levels in subjects non-occupationally exposed to PAH.

Adult↗

The effects of subchronical exposure to SO2 on biochemical and hematological parameters in guinea pigs.

The effects of subchronical exposure to SO2 (400ppm, 3 hours daily, 28 days) on biochemical and hematological parameters were investigated in guinea pigs. Mostly no significant changes in the values of biochemical parameters and no significant changes in hematological parameters were found. The levels of investigated ions (K+, Na+, Cl-, Ca++, Mg++ and phosphates), proteins (albumines, globulines, total proteins), enzymes (LD, ALT, AST, CK) and other biochemical parameters (urea, creatinine, bilirubin) were not significantly different between groups, with the exception of a significantly higher ALP concentration in the exposed group as compared with controls (2.17 mukat and 1.85 mukat, respectively. It can be concluded that a subchronical exposure to sulphur dioxide mostly did not induce any definite changes in biochemical and hematological parameters in guinea pigs.

Air Pollutants↗

Environmental health.

A short history of the close connections between human health an ambient environment (environmental health) in the global and national (Czech Republic) sense is presented. Concrete tasks and prospects for the near future are mentioned, including the human ecology education programme.

Czech Republic↗

Distribution of nickel in body fluids and organs of rats chronically exposed to nickel sulphate.

1. Male and female rats were given 100 mg Ni L-1 (as nickel sulphate) in drinking water for 6 months. 2. The feeding of nickel was associated with an increased concentration of nickel in body fluids and organs. The highest concentrations of nickel were found in the liver of both male and female rats. In male rats nickel levels decreased in the order: liver > kidney = whole blood = serum > testes > urine. In female rats the decreasing order was similar: liver > kidney = whole blood = serum = plasma > urine > ovaries. 3. No significant differences were found between nickel concentrations in organs (except ovaries), blood and urine of rats exposed for 3 months and those exposed for 6 months indicating the reaching of a steady state of nickel in the rat during long-term exposure. 4. The urinary excretion of the orally administered nickel was only 2% of absorbed dose (supposing 1% Ni absorption).

Administration, Oral↗

[Health status in stainless steel welders].

Health state, as well as hematological, biochemical and cytogenetical changes of 53 stainless steel welders were checked-up. Results were compared to those of non exposed persons (control), and to a group of firemen. Urine metals concentrations correlated with the welding fumes density. In the majority of welders typical complaints appeared: aqueous nasal secretion of a clogged nose feeling. Only some of workers suffered from a metal vapours fever. No changes witnessing the above mentioned risk factors influence on the hematological and biochemical findings were ever proved. Cytogenetical analysis confirmed an increased genetic risk.

Humans↗

Influence of chronic lead exposure on hormone levels and organ weights in developing rats.

The effect of 5 months' exposure to 0.5% lead acetate in drinking water on the hypothalamo-pituitary-thyroid-adrenal system was evaluated by measuring hypothalamic and striatic noradrenaline (NA), serum thyroxine (T4), 3,5,3'-triiodothyronine (T3) and corticosterone (CS) and blood and adrenal catecholamines (CA) levels in developing rats of both sexes. Blood CA were increased and hypothalamic and striatic NA was decreased by exposure in male rats. In female rats, blood and adrenal CA and serum CS were increased and hypothalamic and striatic NA was decreased by exposure. No changes in the two sexes were observed in serum T3 and T4. Exposure induced an increase in spleen and kidney weights in both sexes; the weight of liver was increased only in female rats. Weights of hypothalamus, striatum, adrenals and thyroid glands were not changed. Female but not male rats exposed to lead gained less weight than controls. The results suggest a non-specific stress response in female rats. In male rats only the sympatho-adrenal system seems to be affected by this lead exposure.

Animals↗

Stress reaction in developing rats exposed to 1% lead acetate.

Effects of a three-month exposure of both male and female rats under their development to lead acetate in drinking water on the hypothalamus-pituitary gland-thyroid gland-suprarenals and sympathico-adrenal systems were evaluated by determining noradrenaline (NA) in the hypothalamus and striatum, thyroxine (T4), 3,5,3'-tri-iodothyronine (T3) and corticosterone (CS) in the serum and catecholamines (CA) in both blood and suprarenals. NA in the hypothalamus and striatum was decreased in exposed males. CA in blood and suprarenals and CS in the serum were increased and NA decreased in the hypothalamus and striatum in exposed females. No serum T3 and T4 changes were found in males or females. The exposure to lead resulted in increased weight of spleen and kidneys in both sexes and suprarenals in females only. Weights of hypothalamus, striatum, liver and thyroid gland did not change. Female rats exposed to lead grew more slowly than control animals. Retardation in the growth was not statistically significant in males. The results indicate a specific stress reaction in female rats. In males only the sympathico-adrenal system seems to be affected by such lead exposure.

Animals↗

Influence of chronic lead exposure on hormone levels in developing rats.

The effect of five months' exposure to 0.5% lead acetate in drinking water on hormone levels of developing rats was studied. The hypothalamic and striatic concentrations of noradrenaline (NA) were decreased in both sexes. In female but not in male rats, blood and adrenal catecholamines and serum corticosterone concentrations were also increased. No changes were observed in serum thyroxine and 3,5,3'-triiodothyronine levels. Our results indicate that female developing rats are more susceptible to lead than male rats. In female rats, both the hypothalamo-pituitary-adrenal and sympatho-adrenal systems seem to be affected by this lead exposure; in male rats, only the latter system is affected.

Animals↗

Study on kidney function in female workers exposed to perchlorethylene.

1. Biochemical markers of kidney damage were examined in 16 female workers chronically exposed to tetrachlorethylene (TCE) in five dry-cleaning shops. The results were compared with those obtained in 13 females non-occupationally exposed to organic solvents. 2. The intensity of exposure was monitored by personal environmental monitoring. The time-weighed average exposure to TCE amounted to 157 mg m-3 (range 9-799 mg m-3). A satisfactory agreement was found between the concentration of TCE in ambient air sampled with the charcoal tube method and with a passive dosimeter. 3. The urinary excretion of lysozyme was increased in the exposed group. No difference was found in the urinary excretion of albumin, beta 2-microglobulin, lactate dehydrogenase, total proteins or glucose. The prevalence of abnormal values of biochemical parameters in the exposed group did not differ from that observed in the control group. No correlation was found between the level of TCE exposure and biochemical parameters. 4. The present study suggests that chronic exposure to TCE does not lead to renal damage.

Environmental Monitoring↗

Lack of nephrotoxicity of styrene at current TLV level (50 ppm).

Biochemical markers of kidney damage were examined in 37 female workers exposed to an average concentration of 225 mg/m3 of styrene. The concentration of mandelic acid in urine was on the average 759 mg/g creatinine. The mean duration of employment of the exposed subjects was 11 years. The results were compared to those obtained in 35 control female workers matched for age and a number of demographic and lifestyle factors and with no history of exposure to organic solvents. No difference was found in the urinary excretion of albumin, beta 2-microglobulin, retinol-binding protein, total proteins, glucose, lysozyme, lactate dehydrogenase and beta-N-acetyl-D-glucosaminidase. The present study provides thus further evidence that exposure to styrene at the current TLV (215 mg/m3) does not entail any detectable risk for the renal function.

Adult↗

Renal alterations in female rats following subchronic lead exposure.

Female Wistar rats were given 1% or 0.1% lead acetate in drinking water for 2 or 4 months, respectively. Urinary beta 2-microglobulin, N-acetyl-beta-D-glucosaminidase, lactate dehydrogenase and lysozyme were used as markers of tubular dysfunction. Excretion of albumin and glomerular filtration rate were used as indicators of glomerular impairment. Kidney and body weights and morphological changes in the kidney were also studied. Exposure to 1% lead acetate induced a mean blood lead level of 1730 micrograms l-1 and caused only an increase of beta 2-microglobulin excretion and relative kidney weight. Light microscopy of kidney revealed morphological changes mainly in the epithelial cells of the proximal tubules. The role of acetate or reduced water intake on kidney function was excluded because 1% sodium acetate or the restriction of water intake to the volume consumed by the rats of the lead-exposed group was ineffective. Exposure to 0.1% lead acetate induced a blood lead level of 376 micrograms l-1, corresponding to the current level in industry workers, without any sign of nephrotoxicity. Comparison of this study with the results of a previous study on male rats indicates no sex difference in the nephrotoxicity of lead.

Animals↗