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1.
J Occup Med Toxicol ; 19(1): 3, 2024 Jan 31.
Article in English | MEDLINE | ID: mdl-38297383

ABSTRACT

OBJECTIVE: To describe the proportions of subjects exposed to crystalline silica and the sectors of activity concerned between 1965 and 2010 in a sample of the general French population. METHODS: We included 2942 participants aged 40 to 65 years, recruited at random from electoral rolls, from the French general population in the cross-sectional ELISABET study between 2011 and 2013. The proportions of subjects exposed to crystalline silica and their sectors of activity were determined on the basis of their career history and the use of the Matgéné job-exposure matrix. RESULTS: In the total sample, occupational exposure to crystalline silica was found for 291 subjects (9.9%) between 1965 and 2010, with a predominance of men (20.2% of exposed subjects among men (282 out of 1394) versus 0.6% among women (9 out of 1548)). The highest proportion of participants exposed to crystalline silica was reached in 1980 with 6.1% and then decreases to 4.4% in 2010. Among men, the most frequently exposed sectors of activity were manufacture of basic metals (41.5% of exposed men (117 out of 282)), specialised construction activities (23.1% of exposed men (65 out of 282)) and construction of buildings (14.2% of exposed men (40 out of 282)). CONCLUSIONS: Although the proportion of workers exposed to crystalline silica has been decreasing since the 1980s, it is still significant at least until 2010, particularly in the construction sector, and further research is needed to improve the monitoring of workers who are or have been exposed to crystalline silica.

2.
Environ Res ; 222: 115382, 2023 Apr 01.
Article in English | MEDLINE | ID: mdl-36736759

ABSTRACT

INTRODUCTION: Although several studies have studied the relationship between occupational exposure to crystalline silica dust and respiratory mortality, few have examined the relationship with impairments in respiratory function and the exposure threshold triggering spirometric monitoring in exposed workers. The objective of the present study was to evaluate the impact of exposure to crystalline silica dust on respiratory function. METHODS: We included 1428 male participants (aged 40 to 65) recruited from the French general population, at random from electoral rolls, in the cross-sectional ELISABET study and for whom data on forced expiratory flow-volume curve indices z-scores (calculated using the Global Lung Function Initiative 2012 equations) and exposure (via a questionnaire) were available. A cumulative exposure index (CEI) for crystalline silica dust (CEIsilica, expressed in mg.m-3.year) was calculated using the Matgéné occupational exposure matrix. RESULTS: 293 of the 1428 participants (20.52%) reported exposure to silica dust. We found that the adjusted z-scores for the forced expiratory volume in the first second/forced vital capacity (FEV1/FVC) ratio decreased significantly as CEIsilica increased. After adjustment, the adjusted z-scores for FEV1/FVC (ß: -0.426 (95% confidence interval (CI): -0.792, -0.060) per 1 mg m-3.year increment) and the mean forced expiratory flow between 25 and 75% of the forced vital capacity (FEF25-75) (ß: -0.552 (95% CI: -0.947, -0.157)) were significantly lower in the participants with CEIsilica ≥1 mg m-3.year than in non-exposed participants. The likelihoods of having airway obstruction (odds ratio (OR): 3.056 (95% CI: 1.107, 7.626)) or having an impaired FEF25-75 (OR: 4.305 (95% CI: 1.393, 11.79)) were also significantly higher in participants with CEIsilica ≥1 mg m-3.year. CONCLUSION: Our results emphasize the importance of spirometry-based monitoring in workers exposed to more than 1 mg m-3.year of crystalline silica dust, in order to identify small airway obstruction or airway obstruction as early as possible.


Subject(s)
Airway Obstruction , Occupational Exposure , Humans , Male , Cross-Sectional Studies , Dust , Occupational Exposure/analysis , Vital Capacity , Forced Expiratory Volume , Silicon Dioxide , Lung
3.
Am J Ind Med ; 63(4): 337-347, 2020 04.
Article in English | MEDLINE | ID: mdl-31953962

ABSTRACT

BACKGROUND: Identification of biomarkers associated with the diagnosis and prognosis of silicosis would be highly advantageous in the clinical setting. The aim of this study is to evaluate inflammatory and oxidative stress biomarkers in subjects exposed to silica. METHODS: A cross-sectional study of crystal craftsmen currently (n = 34) or formerly (n = 35) exposed and a group of nonexposed subjects (n = 12) was performed. Personal respirable dust samples were collected. Plasma inflammatory mediators (bone morphogenetic protein- BMP2 and chemokines CXCL16, and CCL5), oxidative stress enzymes (thiobarbituric acid reactive substances [TBARs] and superoxide dismutase [SOD]), and nitrite (NO2- ) were analyzed in parallel with nitric oxide in exhaled breath (FeNO). RESULTS: Being currently or formerly exposed to silica was related to increased levels of CXCL16 and TBARs. Currently, exposed subjects showed decreased levels of SOD. Thirty-seven craftsmen with silicosis (26 formerly and 11 currently exposed) showed higher levels of CXCL16, which was positively associated with the radiological severity of silicosis. Compared with the nonexposed, subjects with silicosis had higher levels of TBARs and those with complicated silicosis had lower levels of SOD. In multivariate analysis, higher levels of CXCL16 were associated with exposure status and radiological severity of silicosis. Smoking was not a confounder. FeNO did not distinguish between the exposure status and the presence of silicosis. CONCLUSION: CXCL16 emerged as a potential biomarker that could distinguish both silica exposure and silicosis. TBARs were elevated in exposed individuals. However, their clinical applications demand further investigation in follow-up studies of representative samples.


Subject(s)
Inflammation Mediators/blood , Occupational Exposure/adverse effects , Oxidative Stress/drug effects , Silicon Dioxide/adverse effects , Silicosis/blood , Adult , Biomarkers/analysis , Brazil/epidemiology , Case-Control Studies , Cross-Sectional Studies , Dust/analysis , Female , Humans , Male , Middle Aged , Occupational Exposure/analysis , Silicon Dioxide/analysis , Silicosis/epidemiology , Silicosis/etiology
4.
Environ Res ; 183: 109161, 2020 04.
Article in English | MEDLINE | ID: mdl-32000005

ABSTRACT

Although a growing body of evidence suggests that chronic exposure to outdoor air pollution is linked to a decline in lung function, data on flow at low lung volumes that may be more specific of small airway obstruction are still scarce. We aimed to study the associations between residential exposure to air pollution and lung function, with specific focus on small airways obstruction. We assessed 2995 French participants (aged between 40 and 65) in the ELISABET cross-sectional survey. Residential exposures to nitrogen dioxide (NO2), particulate matter with a diameter <10 µm (PM10) and sulphur dioxide (SO2) were assessed. The spirometric parameters were forced expiratory volume in 1 s (FEV1), forced vital capacity (FVC), and forced expiratory flow between 25% and 75% of FVC (FEF25-75) and at 75% of FVC (FEF75). Coefficients in linear regression models were expressed as the z-score [95% confidence interval] for an increment of 5 µg/m3 in NO2 and 2 µg/m3 in PM10 and SO2. NO2 was associated with significantly lower values of FEV1 (-0.10 [-0.15;-0.05]), FVC (-0.06 [-0.11;-0.02]), FEV1/FVC (-0.07 [-0.11;-0.03]), FEF25-75 (-0.09 [-0.14;-0.05]) and FEF75 (-0.08 [-0.12;-0.04]). PM10 was associated with significantly lower values of FEV1 (-0.10 [-0.15;-0.04]), FVC (-0.06 [-0.11;-0.01]), FEV1/FVC (-0.06 [‒0.11;-0.01]), FEF25-75 (-0.08 [-0.13;-0.03]) and FEF75 (-0.08 [-0.12;-0.04]). SO2 was associated with significantly lower values of FEV1 (-0.09 [-0.16;-0.02]), FEV1/FVC (-0.07 [-0.13;-0.01]), FEF25-75 (-0.09 [-0.15;-0.02]) and FEF75 (-0.08 [-0.14;-0.03]) but not FVC (-0.05 [-0.11; 0.009]). Even though spatial variations in pollutant levels were low, residential exposure to outdoor air pollution was associated with lower lung function, including lower FEF25-75 and FEF75 suggesting small airway obstruction.


Subject(s)
Air Pollutants , Air Pollution , Airway Obstruction , Lung , Adult , Aged , Air Pollutants/toxicity , Airway Obstruction/etiology , Cross-Sectional Studies , Environmental Exposure , Forced Expiratory Volume , Humans , Lung/drug effects , Lung/physiopathology , Middle Aged , Particulate Matter , Vital Capacity
5.
JMIR Res Protoc ; 8(8): e13744, 2019 Aug 02.
Article in English | MEDLINE | ID: mdl-31376276

ABSTRACT

BACKGROUND: Exposure to aerosols from metalworking fluids (MWF) has previously been related to a series of adverse health outcomes (eg, cancer, respiratory diseases). Our present epidemiological study focuses on occupational exposures to MWF and a panel of exposure and effect biomarkers. We hypothesize that these health outcomes are caused by particle exposure that generates oxidative stress, leading to airway inflammation and ultimately to chronic respiratory diseases. We aimed to assess whether MWF exposure, in particular as characterized by its oxidative potential, is associated with biomarkers of oxidative stress and inflammation as well as genotoxic effects. OBJECTIVE: The ultimate goal is to develop exposure reduction strategies based on exposure determinants that best predict MWF-related health outcomes. The following relationships will be explored: (1) exposure determinants and measured exposure; (2) occupational exposure and preclinical and clinical effect markers; (3) exposure biomarkers and biomarkers of effect in both exhaled breath condensate and urine; and (4) biomarkers of effect, genotoxic effects and respiratory symptoms. METHODS: At least 90 workers from France and Switzerland (30 controls, 30 exposed to straight MWF and 30 to aqueous MWF) were followed over three consecutive days after a nonexposed period of at least two days. The exposure assessment is based on MWF, metal, aldehyde, and ultrafine particle number concentrations, as well as the intrinsic oxidative potential of aerosols. Furthermore, exposure biomarkers such as metals, metabolites of polycyclic aromatic hydrocarbons and nitrosamine are measured in exhaled breath condensate and urine. Oxidative stress biomarkers (malondialdehyde, 8-isoprostane, 8-hydroxy-2'-deoxyguanosine, nitrates, and nitrites) and exhaled nitric oxide, an airway inflammation marker, are repeatedly measured in exhaled breath condensate and urine. Genotoxic effects are assessed using the buccal micronucleus cytome assay. The statistical analyses will include modelling exposure as a function of exposure determinants, modelling the evolution of the biomarkers of exposure and effect as a function of the measured exposure, and modelling respiratory symptoms and genotoxic effects as a function of the assessed long-term exposure. RESULTS: Data collection, which occurred from January 2018 until June 2019, included 20 companies. At the date of writing, the study included 100 subjects and 29 nonoccupationally exposed controls. CONCLUSIONS: This study is unique as it comprises human biological samples, questionnaires, and MWF exposure measurement. The biomarkers collected in our study are all noninvasive and are useful in monitoring MWF exposed workers. The aim is to develop preventative strategies based on exposure determinants related to health outcomes. INTERNATIONAL REGISTERED REPORT IDENTIFIER (IRRID): DERR1-10.2196/13744.

6.
Environ Int ; 121(Pt 1): 610-619, 2018 12.
Article in English | MEDLINE | ID: mdl-30312964

ABSTRACT

INTRODUCTION: Air pollution impacts health by increasing mortality and the incidence of acute events in unhealthy individuals. In contrast, the acute effects of pollution in healthy individuals are less obvious. The present study was designed to evaluate the associations between short-term exposure to air pollution on one hand and lung function, and inflammatory markers on the other in middle-aged, non-smoking adults with no respiratory disease, in two urban areas in northern France. METHODS: A sample of 1506 non-smoking adults (aged from 40 to 65) with no respiratory disease was selected from the participants in the 2011-2013 cross-sectional Enquête Littoral Souffle Air Biologie Environnement (ELISABET) survey in two urban areas in the northern France. We evaluated the associations between (i) mean levels of particulate matter with aerodynamic diameter < 10 µm (PM10), nitrogen dioxide (NO2) and ozone (O3) exposure on the day and the day before the study examination for each participant, and (ii) spirometry data and levels of inflammatory markers. Coefficients of multiple linear regression models were expressed (except for the forced expiratory volume in 1 s (FEV1)/forced vital capacity (FVC) ratio) as the percentage change [95% confidence interval] per 10 µg increment in each pollutant. RESULTS: Levels of PM10, NO2 and O3 exposure were below or only close to the World Health Organization's recommended limits in our two study areas. An increment in NO2 levels was significantly associated with a lower FEV1/FVC ratio (-0.38 [-0.64; -0.12]), a lower forced expiratory flow between 25% and 75% of FVC (FEF25-75%) (-1.70 [-3.15; -0.23]), and a lower forced expiratory flow measured at 75% of FVC (FEF75%) (-3.07 [-4.92; -1.18]). An increment in PM10 levels was associated with lower FEF75% (-1.41 [-2.79; -0.01]) and a non-significant elevation in serum levels of high-sensitivity C-reactive protein (+3.48 [-0.25; 7.36], p = 0.07). Lastly, an increment in O3 levels was associated with a significantly higher blood eosinophil count (+2.41 [0.10; 4.77]) and a non-significant elevation in fractional exhaled nitric oxide (+2.93 [-0.16; 6.13], p = 0.06). CONCLUSION: A short-term exposure to air pollution was associated with a subclinical decrement in distal lung function and increment in inflammatory markers in healthy inhabitants of two urban areas in France. If these exploratory results are confirmed, this could suggest that even moderate levels of air pollution could have an impact on respiratory health on the general population, and not solely on susceptible individuals.


Subject(s)
Air Pollutants/toxicity , Environmental Exposure , Lung/drug effects , Adult , Aged , Air Pollutants/analysis , Biomarkers/analysis , Cross-Sectional Studies , Environmental Exposure/analysis , Female , Forced Expiratory Volume , France , Humans , Incidence , Linear Models , Male , Middle Aged , Nitric Oxide , Nitrogen Dioxide/analysis , Ozone/analysis , Particulate Matter/analysis , Respiratory Function Tests , Respiratory Tract Diseases/epidemiology , Spirometry , Vital Capacity
7.
Respir Med ; 137: 134-140, 2018 04.
Article in English | MEDLINE | ID: mdl-29605196

ABSTRACT

BACKGROUND: Biomarkers in exhaled breath condensate (EBC) are potentially sensitive indicators of early biochemical changes in airways following exposure to pneumotoxic substances, particularly in susceptible subjects. NOx are the stable end products of the nitrite-nitrate-NO oxidative stress pathway and can be used to monitor airway inflammatory diseases, especially in asthma. Nevertheless, population-based surveys are needed to better interpret EBC NOx levels in clinical studies. The aim of this study was to establish reference values of EBC NOx in a large group of middle-aged, healthy adults of a sample of the general population with particular focus on the smoking status. METHODS: The EBC NOx levels were analysed from 2872 subjects among the ELISABET population-based cross sectional study including a representative sample of men and women aged from 40 to 66 years olds conducted in northern France, which included comprehensive questionnaires by interview and spirometry data. Healthy participants were defined as participants with no self-reported respiratory disease. RESULTS: For the healthy subjects (n = 1251), the median NOx concentration (IQR) was equal to 7.2  µM (3.12) and concentrations of NOx in EBC did not differ significantly according to smoking status. The upper fifth percentile (95%) (ULN) of NOx concentrations among healthy subjects was equal to 13.6  µM, ranging from 12.7  µM (smokers) to 14.4  µM (ex smokers). Among subjects with EBC NOx values higher than the ULN and compared with subjects that had EBC NOx values lower than the ULN, we found a significant higher proportion of subjects with current asthma (10.5% vs 6.5%) or with chronic bronchitis symptoms (7.6% vs 3.3%). CONCLUSION: This population-based study has provided the distribution and the upper limit reference value of a nitrosative stress biomarker (NOx) in EBC of middle aged, healthy adults. EBC NOx levels were not associated with smoking status.


Subject(s)
Breath Tests/methods , Nitric Oxide/metabolism , Respiratory Tract Diseases/metabolism , Smoking/metabolism , Asthma/metabolism , Asthma/physiopathology , Biomarkers/metabolism , Cross-Sectional Studies , Exhalation/physiology , Female , France/epidemiology , Humans , Male , Middle Aged , Nitrates , Reference Values , Respiratory Tract Diseases/epidemiology , Respiratory Tract Diseases/physiopathology , Smoking/epidemiology
8.
Am J Ind Med ; 60(3): 239-247, 2017 Mar.
Article in English | MEDLINE | ID: mdl-28195659

ABSTRACT

BACKGROUND: Brazil is an exporter of precious stones and craftsmen often work in poor conditions. We assessed silica-related diseases among crystal craftsmen and the complexity of its control. METHODS: Case-series including 118 subjects evaluated from 2006 to 2015, based on medical interviews, chest X-rays, spirometry, and respirable silica samples. RESULTS: Median age and length of exposure were 32 and 13 years, respectively. Silicosis, with 1/0 as a threshold, was diagnosed radiologically in 57 individuals (48.3%). Respirable silica concentrations were 0.9-29.3 times greater than the Brazilian occupational exposure limit. A Receiver Operating Characteristic (ROC) curve with the same diagnosis threshold showed best discrimination at a cut point of 12.5 years of exposure, corresponding to 4.85 mg-y/m3 of cumulative silica exposure. There was a significant decline in FEV1 across radiological and cumulative silica exposure categories. Eleven individuals (9.3%) had mycobacterial diseases at baseline or follow-up. CONCLUSION: Crystal craftsmen continue to suffer from silicosis, lung function impairment, comorbidity, and death due to silicosis. To date collective protection in some work sheds has not diminished silica levels. Long-term follow-up is needed to evaluate further improvements in preventive measures. Am. J. Ind. Med. 60:239-247, 2017. © 2017 Wiley Periodicals, Inc.


Subject(s)
Inhalation Exposure/adverse effects , Jewelry , Occupational Exposure/adverse effects , Silicon Dioxide/toxicity , Silicosis/etiology , Adult , Brazil/epidemiology , Cross-Sectional Studies , Forced Expiratory Volume , Humans , Inhalation Exposure/analysis , Male , Occupational Exposure/analysis , Radiography , Silicon Dioxide/analysis , Silicosis/diagnosis , Silicosis/epidemiology , Spirometry
9.
Toxicol Lett ; 263: 26-33, 2016 Nov 30.
Article in English | MEDLINE | ID: mdl-27777105

ABSTRACT

OBJECTIVE: To analyze the effects of occupational exposure to poorly soluble forms of beryllium (Be) on biomarkers of pulmonary inflammation using exhaled breath condensate (EBC) in workers employed in machining industries. METHODS: Twenty machining operators were compared to 16 controls. The individual exposure to Be was assessed from the work history with several indices of exposure calculated on the basis of task-exposures matrices developed for each plant using historical air measurements. Clinical evaluation consisted in a medical questionnaire, measurements of biomarkers in EBC (tumor necrosis factor alpha (TNF-α), total nitrogen oxides (NOx)), measurement of the fraction of exhaled nitric oxide (FeNO) and resting spirometry. Adjusted multiple linear regressions were used to study the effect of the exposure to Be on inflammatory biomarkers. RESULTS: Levels of TNF-α and NOx in EBC were not statistically different between exposed and controls. We found a statistically significant relationship between levels of TNF-α in EBC and both index of cumulative exposure and duration of exposure to Be. No other statistically significant relationships were found between exposure to Be and pulmonary response. CONCLUSION: Our results suggest that machining-related exposure to Be is related to pulmonary inflammation involving TNF-α. These findings must be confirmed by larger studies.


Subject(s)
Beryllium/toxicity , Lung Diseases/chemically induced , Lung Diseases/metabolism , Metallurgy , Occupational Exposure/adverse effects , Adult , Beryllium/chemistry , Biomarkers/analysis , Breath Tests , Female , Humans , Lung Diseases/physiopathology , Male , Middle Aged , Nitric Oxide/analysis , Nitrogen Oxides/blood , Pneumonia/chemically induced , Pneumonia/diagnosis , Pneumonia/metabolism , Spirometry , Tumor Necrosis Factor-alpha/blood
11.
Int J Hyg Environ Health ; 219(1): 40-7, 2016 Jan.
Article in English | MEDLINE | ID: mdl-26306830

ABSTRACT

OBJECTIVE: Low beryllium exposure can induce pulmonary granulomatosis, so called berylliosis. For occupational health monitoring, it is more relevant to assess the internal dose of Be received by the lungs than urinary or atmospheric Be. Exhaled breath condensate (EBC) is a matrix collected non-invasively that derives from the airway lining fluid. EBC beryllium (Be) levels were evaluated as a marker of occupational exposure in a primary aluminum production plant. METHODS: We collected urine and EBC from controls and workers recently exposed to beryllium in the pot room and the anode repair sectors, and calculated a cumulative beryllium exposure index (CBEI) summing the number of years of employment in each task and multiplying by the estimated average beryllium exposure for the task. Concentrations of beryllium and aluminum were measured in EBC (Be-EBC and Al-EBC) and in urine (Be-U and Al-U) by ICP-MS. RESULTS AND CONCLUSION: We have shown that it was possible to measure Be and Al in workers' EBC. Compared with controls and after adjustment for smoking status, levels of Be-EBC and Al-EBC were higher in pot room workers and exposed subjects, respectively. Due to its relationship with CBEI, but not with Be-U, it appears that Be-EBC could be a promising marker of occupational exposure and provide additional toxicokinetic information in occupational health studies.


Subject(s)
Berylliosis/metabolism , Beryllium/metabolism , Employment , Environmental Monitoring/standards , Lung/metabolism , Manufacturing Industry , Work , Adult , Aluminum/metabolism , Berylliosis/etiology , Biomarkers/metabolism , Breath Tests , Exhalation , Female , Humans , Lung/drug effects , Lung/pathology , Male , Middle Aged , Occupational Exposure/adverse effects , Occupational Exposure/analysis
12.
J Toxicol Environ Health A ; 78(11): 666-70, 2015.
Article in English | MEDLINE | ID: mdl-26039744

ABSTRACT

Several epidemiological studies have shown the impact on respiratory health of pollution of nitrogen dioxide (NO2), particulate matter (PM10), and ozone (O3) as an environmental mixture. However, the influence of individual components of airborne pollutants is less well known. Our study examined the cumulative effects of a single pollutant, NO2, on sensitized rats by measurement of isoprostane release in exhaled breath condensate (EBC). Three groups of six rats were used: (1) controls (only exposed to air), (2) sensitized and challenged by ovalbumin and exposed to air, and (3) sensitized, challenged by ovalbumin, and exposed to NO(2). There was no marked change in 8-isoprostane levels in EBC of sensitized rats, whereas a significant increase of 8-isoprostane was found in rats sensitized and exposed to NO2. Data indicate effect of exposure to NO2 is evident as increased 8-isoprostane levels in EBC, a relevant marker for assessment of pulmonary inflammation or oxidant stress and conventionally found in EBC of asthmatic subjects.


Subject(s)
Air Pollutants/toxicity , Breath Tests/methods , Dinoprost/analogs & derivatives , Environmental Exposure , Environmental Monitoring/methods , Nitrogen Dioxide/toxicity , Particulate Matter/toxicity , Animals , Biomarkers/metabolism , Dinoprost/metabolism , Male , Oxidative Stress/drug effects , Pneumonia/chemically induced , Rats
13.
Toxicol Lett ; 226(1): 63-9, 2014 Apr 07.
Article in English | MEDLINE | ID: mdl-24508310

ABSTRACT

OBJECTIVE: To evaluate manganese in exhaled breath condensate (Mn-EBC) as an indicator of exposure to fumes from metal inert gas welding process. METHODS: We collected EBC and urine from 17 welders and 16 unexposed control subjects after 5 days exposure. Concentrations of manganese (Mn), nickel (Ni), iron (Fe) and chromium (Cr) were measured in EBC and urine samples and correlated with cumulative exposure indices for the working week (CIW) and for the total welding years (WY), based on duration of welding activity and atmospheric metal measurements. RESULTS: Concentrations of Mn and Ni in EBC were significantly higher among welders than controls whereas this difference was not significant for Mn in urine. Levels of Mn and Ni in EBC were not correlated with their respective levels in urine. The linear regressions found significant positive coefficients between Mn-EBC, Ni-EBC, Ni-U and Cr-U concentrations and the cumulative exposure indices. Taking into account tobacco use, statistical analysis showed the same trends except for the relationship between Mn-U and CIW. CONCLUSION: This pilot study showed that Mn-EBC, as well as Ni-EBC, can serve as reliable indices of occupational exposure to welding fumes and provide complimentary toxicokinetic information to that provided by urine analyses.


Subject(s)
Breath Tests , Environmental Monitoring/methods , Exhalation , Inhalation Exposure , Manganese/analysis , Occupational Exposure , Occupational Health , Welding , Adult , Analysis of Variance , Biomarkers/analysis , Biomarkers/urine , Case-Control Studies , Humans , Inhalation Exposure/adverse effects , Linear Models , Male , Manganese/adverse effects , Manganese/urine , Middle Aged , Nickel/adverse effects , Nickel/analysis , Occupational Exposure/adverse effects , Pilot Projects , Risk Assessment , Risk Factors , Time Factors
14.
J Occup Environ Med ; 55(12): 1469-74, 2013 Dec.
Article in English | MEDLINE | ID: mdl-24270302

ABSTRACT

OBJECTIVE: We present pulmonary disorders of four employees who were exposed to high concentration of pure mica dust in a muscovite milling unit. METHOD: All cases underwent traditional examinations with a dual-energy chest computed tomographic scan. An analysis of exhaled breath condensate by Raman microspectrometry and of mineralogical content of a lung biopsy was performed for one case. RESULTS: All cases showed bilateral micronodular ground glass opacities and mediastinal and hilar hyperdense lymph nodes consistent with the nodal sequestration of mineral particles. Histological analysis showed giant cell granulomas without typical silicotic nodule with high concentration of birefringent particles consistent with mica. Mica particles found in the exhaled breath condensate were identical to particles in ambient air at the company. CONCLUSION: Occupational exposure to mica dust is responsible for diffuse infiltrative lung disease by overload processes.


Subject(s)
Aluminum Silicates/toxicity , Extraction and Processing Industry , Granuloma, Giant Cell/pathology , Inhalation Exposure/adverse effects , Occupational Exposure/adverse effects , Pneumoconiosis/etiology , Adult , Breath Tests , Humans , Lymph Nodes/diagnostic imaging , Male , Middle Aged , Nitric Oxide/analysis , Pneumoconiosis/diagnostic imaging , Pneumoconiosis/pathology , Radiography
15.
J Occup Environ Med ; 54(8): 922-7, 2012 Aug.
Article in English | MEDLINE | ID: mdl-22850351

ABSTRACT

OBJECTIVE: Studies of fractional exhaled NO (FeNO) or induced sputum are now well standardized and the exponential increase in publications about exhaled breath condensate reflects growing interest in a noninvasive diagnosis of pulmonary diseases in occupational medicine. METHODS: This review describes current techniques (FeNO, induced sputum, and exhaled breath condensate) for the study of inflammation and oxidative stress biomarkers. RESULTS: These biomarkers are FeNO, cytokines, H2O2, 8-isoprostane, malondialdehyde, and nitrogen oxides. These techniques also include the study of markers of the toxic burden in the lungs (heavy metals and mineral compounds) that are important in occupational health exposure assessment. CONCLUSIONS: In occupational medicine, the study of both volatile and nonvolatile respiratory biomarkers can be useful in medical surveillance of exposed workers, the early identification of respiratory diseases, or the monitoring of their development.


Subject(s)
Lung Diseases/diagnosis , Nitric Oxide/metabolism , Occupational Health Services/methods , Sputum/chemistry , Biomarkers/analysis , Breath Tests/instrumentation , Breath Tests/methods , Cytokines/analysis , Humans , Hydrogen Peroxide/analysis , Isoprostanes/analysis , Malondialdehyde/analysis , Metals, Heavy/analysis , Nitric Oxide/analysis , Oxidative Stress
16.
Vet J ; 194(2): 222-8, 2012 Nov.
Article in English | MEDLINE | ID: mdl-22658821

ABSTRACT

The analysis of exhaled breath condensate (EBC) offers the potential for identifying lung disease markers in humans and animals, but methodological issues and standardised procedures need to be addressed before the technique can be considered for use in applications to help understand the role of environmental pollution in respiratory diseases. The purpose of this study was to develop and implement a new device using a glass-chamber for collecting EBC non-invasively from rats in order to analyse EBC markers in lipopolysaccharide (LPS)-induced acute lung injury. Eighty-four adult rats were used in five different series of experiments to determine the source of EBC formation, intra-day and inter-day variability, and the influence of environmental parameters on EBC markers. The hypothesis that inflammation induces an oxidative stress was assessed by measuring pH, nitrogen oxides (NOx) and hydrogen peroxide (H(2)O(2)) in EBC. The results confirmed that EBC fluid was generated at the level of the respiratory tract. The repeatability studies of disease markers indicated higher concentrations of NOx and H(2)O(2) at midday compared to the morning, but there were no significant difference between measurements on consecutive days. EBC volume was influenced by both ambient temperature and humidity. Moreover, 3h after LPS challenge, significantly increased concentrations of both NOx and H(2)O(2) were observed in EBC of the LPS group compared with controls (P=0.005 and P=0.027, respectively). These results suggested that EBC collection may be a valuable tool to monitor the presence of markers, such as NOx and H(2)O(2), in an animal model of LPS-induced acute lung injury.


Subject(s)
Breath Tests/methods , Hydrogen Peroxide/analysis , Lipopolysaccharides , Lung Diseases/chemically induced , Lung Diseases/metabolism , Nitrogen Oxides/analysis , Animals , Breath Tests/instrumentation , Bronchoalveolar Lavage Fluid/cytology , Endotoxemia/metabolism , Fluorescein-5-isothiocyanate , Fluorescent Dyes , Hydrogen-Ion Concentration , Inflammation/physiopathology , Male , Oxidative Stress/physiology , Rats , Rats, Sprague-Dawley , Respiratory System/metabolism , Specimen Handling/instrumentation , Specimen Handling/methods , Specimen Handling/veterinary
17.
BMC Res Notes ; 4: 202, 2011 Jun 16.
Article in English | MEDLINE | ID: mdl-21679447

ABSTRACT

BACKGROUND: The study of pulmonary biomarkers with noninvasive methods, such as the analysis of exhaled breath condensate (EBC), provides a useful approach to the pathophysiology of asthma. Although many recent publications have applied such methods, numerous methodological pitfalls remain. The first stage of our study consisted of validating methods for the collection, storage and analysis of EBC; we next sought to clarify the utility of analysing nitrogen oxides (NOx) in the EBC of asthmatics, as a complement to measuring exhaled nitric oxide (FeNO). METHODS: This hospital-based cross-sectional study included 23 controls matched with 23 asthmatics. EBC and FeNO were performed and respiratory function measured. Intra-assay and intra-subject reproducibility were assessed for the analysis of NOx in the EBC of 10 healthy subjects. RESULTS: The intraclass correlation coefficient (ICC) was excellent for intra-assay reproducibility and was moderate for intra-subject reproducibility (Fermanian's classification). NOx was significantly higher in asthmatics (geometric mean [IQR] 14.4 µM [10.4 - 19.7] vs controls 9.9 µM [7.5 - 15.0]), as was FeNO (29.9 ppb [17.9 - 52.4] vs controls 9.6 ppb [8.4 - 14.2]). FeNO also increased significantly with asthma severity. CONCLUSIONS: We validated the procedures for NOx analysis in EBC and confirmed the need for assays of other biomarkers to further our knowledge of the pathophysiologic processes of asthma and improve its treatment and control.

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