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1.
Toxicol Appl Pharmacol ; 409: 115300, 2020 12 15.
Artigo em Inglês | MEDLINE | ID: mdl-33141058

RESUMO

Hydraulic fracturing (fracking) is a process used to recover oil and gas from shale rock formation during unconventional drilling. Pressurized liquids containing water and sand (proppant) are used to fracture the oil- and natural gas-laden rock. The transportation and handling of proppant at well sites generate dust aerosols; thus, there is concern of worker exposure to such fracking sand dusts (FSD) by inhalation. FSD are generally composed of respirable crystalline silica and other minerals native to the geological source of the proppant material. Field investigations by NIOSH suggest that the levels of respirable crystalline silica at well sites can exceed the permissible exposure limits. Thus, from an occupational safety perspective, it is important to evaluate the potential toxicological effects of FSD, including any neurological risks. Here, we report that acute inhalation exposure of rats to one FSD, i.e., FSD 8, elicited neuroinflammation, altered the expression of blood brain barrier-related markers, and caused glial changes in the olfactory bulb, hippocampus and cerebellum. An intriguing observation was the persistent reduction of synaptophysin 1 and synaptotagmin 1 proteins in the cerebellum, indicative of synaptic disruption and/or injury. While our initial hazard identification studies suggest a likely neural risk, more research is necessary to determine if such molecular aberrations will progressively culminate in neuropathology/neurodegeneration leading to behavioral and/or functional deficits.


Assuntos
Inflamação/induzido quimicamente , Inflamação/metabolismo , Exposição por Inalação/efeitos adversos , Areia/química , Sinapses/efeitos dos fármacos , Sinapses/metabolismo , Aerossóis/efeitos adversos , Animais , Biomarcadores/metabolismo , Barreira Hematoencefálica/efeitos dos fármacos , Barreira Hematoencefálica/metabolismo , Poeira , Monitoramento Ambiental/métodos , Fraturamento Hidráulico/métodos , Masculino , Exposição Ocupacional/efeitos adversos , Ratos , Ratos Sprague-Dawley
2.
Toxicol Pathol ; 47(8): 1012-1026, 2019 12.
Artigo em Inglês | MEDLINE | ID: mdl-31645208

RESUMO

Flavorings-related lung disease is a potentially disabling and sometimes fatal lung disease of workers making or using flavorings. First identified almost 20 years ago in microwave popcorn workers exposed to butter-flavoring vapors, flavorings-related lung disease remains a concern today. In some cases, workers develop bronchiolitis obliterans, a severe form of fixed airways disease. Affected workers have been reported in microwave popcorn, flavorings, and coffee production workplaces. Volatile α-dicarbonyl compounds, particularly diacetyl (2,3-butanedione) and 2,3-pentanedione, are implicated in the etiology. Published studies on diacetyl and 2,3-pentanedione document their ability to cause airway epithelial necrosis, damage biological molecules, and perturb protein homeostasis. With chronic exposure in rats, they produce airway fibrosis resembling bronchiolitis obliterans. To add to this knowledge, we recently evaluated airway toxicity of the 3-carbon α-dicarbonyl compound, methylglyoxal. Methylglyoxal inhalation causes epithelial necrosis at even lower concentrations than diacetyl. In addition, we investigated airway toxicity of mixtures of diacetyl, acetoin, and acetic acid, common volatiles in butter flavoring. At ratios comparable to workplace scenarios, the mixtures or diacetyl alone, but not acetic acid or acetoin, cause airway epithelial necrosis. These new findings add to existing data to implicate α-dicarbonyl compounds in airway injury and flavorings-related lung disease.


Assuntos
Poluentes Ocupacionais do Ar/toxicidade , Bronquiolite Obliterante/induzido quimicamente , Aromatizantes/toxicidade , Pneumopatias/induzido quimicamente , Doenças Profissionais/induzido quimicamente , Acetoína/toxicidade , Poluentes Ocupacionais do Ar/química , Bronquiolite Obliterante/patologia , Diacetil/toxicidade , Aromatizantes/química , Humanos , Exposição por Inalação/efeitos adversos , Pneumopatias/patologia , Doenças Profissionais/patologia , Exposição Ocupacional/efeitos adversos , Pentanonas/toxicidade
3.
Arch Toxicol ; 91(8): 2953-2962, 2017 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-28054104

RESUMO

Epidemiologic studies suggest an increased risk of lung cancer with exposure to welding fumes, but controlled animal studies are needed to support this association. Oropharyngeal aspiration of collected "aged" gas metal arc-stainless steel (GMA-SS) welding fume has been shown by our laboratory to promote lung tumor formation in vivo using a two-stage initiation-promotion model. Our objective in this study was to determine whether inhalation of freshly generated GMA-SS welding fume also acts as a lung tumor promoter in lung tumor-susceptible mice. Male A/J mice received intraperitoneal (IP) injections of corn oil or the chemical initiator 3-methylcholanthrene (MCA; 10 µg/g) and 1 week later were exposed by whole-body inhalation to air or GMA-SS welding aerosols for 4 h/d × 4 d/w × 9 w at a target concentration of 40 mg/m3. Lung nodules were enumerated at 30 weeks post-initiation. GMA-SS fume significantly promoted lung tumor multiplicity in A/J mice initiated with MCA (16.11 ± 1.18) compared to MCA/air-exposed mice (7.93 ± 0.82). Histopathological analysis found that the increased number of lung nodules in the MCA/GMA-SS group were hyperplasias and adenomas, which was consistent with developing lung tumorigenesis. Metal deposition analysis in the lung revealed a lower deposited dose, approximately fivefold compared to our previous aspiration study, still elicited a significant lung tumorigenic response. In conclusion, this study demonstrates that inhaling GMA-SS welding fume promotes lung tumorigenesis in vivo which is consistent with the epidemiologic studies that show welders may be at an increased risk for lung cancer.


Assuntos
Poluentes Ocupacionais do Ar/toxicidade , Exposição por Inalação/efeitos adversos , Neoplasias Pulmonares/induzido quimicamente , Soldagem , Administração por Inalação , Animais , Modelos Animais de Doenças , Neoplasias Pulmonares/patologia , Masculino , Metilcolantreno/administração & dosagem , Camundongos , Camundongos Endogâmicos , Doenças Profissionais/etiologia , Doenças Profissionais/patologia , Exposição Ocupacional/efeitos adversos , Aço Inoxidável/toxicidade
4.
Am J Pathol ; 186(11): 2887-2908, 2016 11.
Artigo em Inglês | MEDLINE | ID: mdl-27643531

RESUMO

Inhaled diacetyl vapors are associated with flavorings-related lung disease, a potentially fatal airway disease. The reactive α-dicarbonyl group in diacetyl causes protein damage in vitro. Dicarbonyl/l-xylulose reductase (DCXR) metabolizes diacetyl into acetoin, which lacks this α-dicarbonyl group. To investigate the hypothesis that flavorings-related lung disease is caused by in vivo protein damage, we correlated diacetyl-induced airway damage in mice with immunofluorescence for markers of protein turnover and autophagy. Western immunoblots identified shifts in ubiquitin pools. Diacetyl inhalation caused dose-dependent increases in bronchial epithelial cells with puncta of both total ubiquitin and K63-ubiquitin, central mediators of protein turnover. This response was greater in Dcxr-knockout mice than in wild-type controls inhaling 200 ppm diacetyl, further implicating the α-dicarbonyl group in protein damage. Western immunoblots demonstrated decreased free ubiquitin in airway-enriched fractions. Transmission electron microscopy and colocalization of ubiquitin-positive puncta with lysosomal-associated membrane proteins 1 and 2 and with the multifunctional scaffolding protein sequestosome-1 (SQSTM1/p62) confirmed autophagy. Surprisingly, immunoreactive SQSTM1 also accumulated in the olfactory bulb of the brain. Olfactory bulb SQSTM1 often congregated in activated microglial cells that also contained olfactory marker protein, indicating neuronophagia within the olfactory bulb. This suggests the possibility that SQSTM1 or damaged proteins may be transported from the nose to the brain. Together, these findings strongly implicate widespread protein damage in the etiology of flavorings-related lung disease.


Assuntos
Diacetil/efeitos adversos , Aromatizantes/efeitos adversos , Pneumopatias/etiologia , Proteína Sequestossoma-1/metabolismo , Desidrogenase do Álcool de Açúcar/genética , Ubiquitina/metabolismo , Animais , Autofagia , Células Epiteliais/metabolismo , Células Epiteliais/patologia , Humanos , Exposição por Inalação , Pneumopatias/induzido quimicamente , Pneumopatias/metabolismo , Pneumopatias/patologia , Proteínas de Membrana Lisossomal/metabolismo , Camundongos , Camundongos Knockout , Microglia/metabolismo , Microglia/patologia , Bulbo Olfatório/metabolismo , Bulbo Olfatório/patologia , Proteína de Marcador Olfatório/genética , Proteína de Marcador Olfatório/metabolismo , Sistema Respiratório/metabolismo , Sistema Respiratório/patologia , Proteína Sequestossoma-1/genética , Desidrogenase do Álcool de Açúcar/metabolismo
5.
J Occup Environ Hyg ; 13(7): 501-18, 2016 07.
Artigo em Inglês | MEDLINE | ID: mdl-26873639

RESUMO

Direct-reading instruments have been widely used for characterizing airborne nanoparticles in inhalation toxicology and industrial hygiene studies for exposure/risk assessments. Instruments using electrical mobility sizing followed by optical counting, e.g., scanning or sequential mobility particle spectrometers (SMPS), have been considered as the "gold standard" for characterizing nanoparticles. An SMPS has the advantage of rapid response and has been widely used, but there is little information on its performance in assessing the full spectrum of nanoparticles encountered in the workplace. In this study, an SMPS was evaluated for its effectiveness in producing "monodisperse" aerosol and its adequacy in characterizing overall particle size distribution using three test aerosols, each mimicking a unique class of real-life nanoparticles: singlets of nearly spherical titanium dioxide (TiO2), agglomerates of fiber-like multi-walled carbon nanotube (MWCNT), and aggregates that constitutes welding fume (WF). These aerosols were analyzed by SMPS, cascade impactor, and by counting and sizing of discrete particles by scanning and transmission electron microscopy. The effectiveness of the SMPS to produce classified particles (fixed voltage mode) was assessed by examination of the resulting geometric standard deviation (GSD) from the impactor measurement. Results indicated that SMPS performed reasonably well for TiO2 (GSD = 1.3), but not for MWCNT and WF as evidenced by the large GSD values of 1.8 and 1.5, respectively. For overall characterization, results from SMPS (scanning voltage mode) exhibited particle-dependent discrepancies in the size distribution and total number concentration compared to those from microscopic analysis. Further investigation showed that use of a single-stage impactor at the SMPS inlet could distort the size distribution and underestimate the concentration as shown by the SMPS, whereas the presence of vapor molecules or atom clusters in some test aerosols might cause artifacts by counting "phantom particles." Overall, the information obtained from this study will help understand the limitations of the SMPS in measuring nanoparticles so that one can adequately interpret the results for risk assessments and exposure prevention in an occupational or ambient environment.


Assuntos
Poluentes Ocupacionais do Ar/análise , Nanotubos de Carbono/análise , Tamanho da Partícula , Titânio/análise , Soldagem , Aerossóis , Microscopia Eletrônica de Varredura , Microscopia Eletrônica de Transmissão
6.
Toxicology ; 328: 168-78, 2015 Feb 03.
Artigo em Inglês | MEDLINE | ID: mdl-25549921

RESUMO

Welding fumes (WF) are a complex mixture of toxic metals and gases, inhalation of which can lead to adverse health effects among welders. The presence of manganese (Mn) in welding electrodes is cause for concern about the potential development of Parkinson's disease (PD)-like neurological disorder. Consequently, from an occupational safety perspective, there is a critical need to prevent adverse exposures to WF. As the fume generation rate and physicochemical characteristics of welding aerosols are influenced by welding process parameters like voltage, current or shielding gas, we sought to determine if changing such parameters can alter the fume profile and consequently its neurotoxic potential. Specifically, we evaluated the influence of voltage on fume composition and neurotoxic outcome. Rats were exposed by whole-body inhalation (40 mg/m(3); 3h/day × 5 d/week × 2 weeks) to fumes generated by gas-metal arc welding using stainless steel electrodes (GMA-SS) at standard/regular voltage (25 V; RVSS) or high voltage (30 V; HVSS). Fumes generated under these conditions exhibited similar particulate morphology, appearing as chain-like aggregates; however, HVSS fumes comprised of a larger fraction of ultrafine particulates that are generally considered to be more toxic than their fine counterparts. Paradoxically, exposure to HVSS fumes did not elicit dopaminergic neurotoxicity, as monitored by the expression of dopaminergic and PD-related markers. We show that the lack of neurotoxicity is due to reduced solubility of Mn in HVSS fumes. Our findings show promise for process control procedures in developing prevention strategies for Mn-related neurotoxicity during welding; however, it warrants additional investigations to determine if such modifications can be suitably adapted at the workplace to avert or reduce adverse neurological risks.


Assuntos
Poluentes Ocupacionais do Ar/toxicidade , Encéfalo/efeitos dos fármacos , Exposição por Inalação/prevenção & controle , Intoxicação por Manganês/prevenção & controle , Manganês/toxicidade , Doença de Parkinson Secundária/prevenção & controle , Soldagem/métodos , Aerossóis , Poluentes Ocupacionais do Ar/química , Animais , Carga Corporal (Radioterapia) , Encéfalo/metabolismo , Neurônios Dopaminérgicos/efeitos dos fármacos , Neurônios Dopaminérgicos/metabolismo , Desenho de Equipamento , Regulação da Expressão Gênica/efeitos dos fármacos , Humanos , Exposição por Inalação/efeitos adversos , Masculino , Manganês/química , Intoxicação por Manganês/etiologia , Intoxicação por Manganês/genética , Intoxicação por Manganês/metabolismo , Doença de Parkinson Secundária/etiologia , Doença de Parkinson Secundária/genética , Doença de Parkinson Secundária/metabolismo , Tamanho da Partícula , Ratos Sprague-Dawley , Medição de Risco , Solubilidade , Fatores de Tempo , Soldagem/instrumentação
7.
Inhal Toxicol ; 26(12): 720-32, 2014 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-25265048

RESUMO

Welding generates complex metal aerosols, inhalation of which is linked to adverse health effects among welders. An important health concern of welding fume (WF) exposure is neurological dysfunction akin to Parkinson's disease (PD). Some applications in manufacturing industry employ a variant welding technology known as "weld-bonding" that utilizes resistance spot welding, in combination with adhesives, for metal-to-metal welding. The presence of adhesives raises additional concerns about worker exposure to potentially toxic components like Methyl Methacrylate, Bisphenol A and volatile organic compounds (VOCs). Here, we investigated the potential neurotoxicological effects of exposure to welding aerosols generated during weld-bonding. Male Sprague-Dawley rats were exposed (25 mg/m³ targeted concentration; 4 h/day × 13 days) by whole-body inhalation to filtered air or aerosols generated by either weld-bonding with sparking (high metal, low VOCs; HM) or without sparking (low metal; high VOCs; LM). Fumes generated under these conditions exhibited complex aerosols that contained both metal oxide particulates and VOCs. LM aerosols contained a greater fraction of VOCs than HM, which comprised largely metal particulates of ultrafine morphology. Short-term exposure to LM aerosols caused distinct changes in the levels of the neurotransmitters, dopamine (DA) and serotonin (5-HT), in various brain areas examined. LM aerosols also specifically decreased the mRNA expression of the olfactory marker protein (Omp) and tyrosine hydroxylase (Th) in the olfactory bulb. Consistent with the decrease in Th, LM also reduced the expression of dopamine transporter (Slc6a3; Dat), as well as, dopamine D2 receptor (Drd2) in the olfactory bulb. In contrast, HM aerosols induced the expression of Th and dopamine D5 receptor (Drd5) mRNAs, elicited neuroinflammation and blood-brain barrier-related changes in the olfactory bulb, but did not alter the expression of Omp. Our findings divulge the differential effects of LM and HM aerosols in the brain and suggest that exposure to weld-bonding aerosols can potentially elicit neurotoxicity following a short-term exposure. However, further investigations are warranted to determine if the aerosols generated by weld-bonding can contribute to persistent long-term neurological deficits and/or neurodegeneration.


Assuntos
Poluentes Ocupacionais do Ar/toxicidade , Química Encefálica/efeitos dos fármacos , Encéfalo/efeitos dos fármacos , Exposição por Inalação/efeitos adversos , Neurônios/efeitos dos fármacos , Síndromes Neurotóxicas/metabolismo , Soldagem , Adesivos/química , Aerossóis , Poluentes Ocupacionais do Ar/química , Animais , Biomarcadores/metabolismo , Barreira Hematoencefálica/efeitos dos fármacos , Barreira Hematoencefálica/imunologia , Barreira Hematoencefálica/metabolismo , Encéfalo/imunologia , Encéfalo/metabolismo , Incêndios , Regulação da Expressão Gênica/efeitos dos fármacos , Masculino , Proteínas do Tecido Nervoso/genética , Proteínas do Tecido Nervoso/metabolismo , Neurônios/imunologia , Neurônios/metabolismo , Síndromes Neurotóxicas/imunologia , Bulbo Olfatório/efeitos dos fármacos , Bulbo Olfatório/imunologia , Bulbo Olfatório/metabolismo , Oxirredução , Ratos Sprague-Dawley , Aço/química , Testes de Toxicidade Aguda , Compostos Orgânicos Voláteis/análise , Compostos Orgânicos Voláteis/toxicidade , Soldagem/métodos
8.
Inhal Toxicol ; 26(12): 708-19, 2014 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-25140455

RESUMO

Limited information exists regarding the health risks associated with inhaling aerosols that are generated during resistance spot welding of metals treated with adhesives. Toxicology studies evaluating spot welding aerosols are non-existent. A resistance spot welding aerosol generator and inhalation exposure system was developed. The system was designed by directing strips of sheet metal that were treated with an adhesive to two electrodes of a spot welder. Spot welds were made at a specified distance from each other by a computer-controlled welding gun in a fume collection chamber. Different target aerosol concentrations were maintained within the exposure chamber during a 4-h exposure period. In addition, the exposure system was run in two modes, spark and no spark, which resulted in different chemical profiles and particle size distributions. Complex aerosols were produced that contained both metal particulates and volatile organic compounds (VOCs). Size distribution of the particles was multi-modal. The majority of particles were chain-like agglomerates of ultrafine primary particles. The submicron mode of agglomerated particles accounted for the largest portion of particles in terms of particle number. Metal expulsion during spot welding caused the formation of larger, more spherical particles (spatter). These spatter particles appeared in the micron size mode and accounted for the greatest amount of particles in terms of mass. With this system, it is possible to examine potential mechanisms by which spot welding aerosols can affect health, as well as assess which component of the aerosol may be responsible for adverse health outcomes.


Assuntos
Adesivos/química , Poluentes Ocupacionais do Ar/toxicidade , Exposição por Inalação/efeitos adversos , Metais/química , Testes de Toxicidade/instrumentação , Soldagem , Aerossóis , Poluentes Ocupacionais do Ar/química , Animais , Animais de Laboratório , Câmaras de Exposição Atmosférica , Automação Laboratorial , Incêndios , Microscopia Eletrônica de Varredura , National Institute for Occupational Safety and Health, U.S. , Tamanho da Partícula , Material Particulado/química , Material Particulado/toxicidade , Aço/química , Estados Unidos , Compostos Orgânicos Voláteis/análise , Compostos Orgânicos Voláteis/química , Compostos Orgânicos Voláteis/toxicidade , Soldagem/métodos
9.
Aerosol Sci Technol ; 48(12): 1254-1263, 2014.
Artigo em Inglês | MEDLINE | ID: mdl-26848207

RESUMO

A laboratory study was conducted to determine the mass of total Cr, Cr(VI), Mn, and Ni in 15 size fractions for mild and stainless steel gas-metal arc welding (GMAW) fumes. Samples were collected using a nano multi orifice uniform deposition impactor (MOUDI) with polyvinyl chloride filters on each stage. The filters were analyzed by inductively coupled plasma mass spectrometry (ICP-MS) and ion chromatography. Limits of detection (LODs) and quantitation (LOQs) were experimentally calculated and percent recoveries were measured from spiked metals in solution and dry, certified welding-fume reference material. The fraction of Cr(VI) in total Cr was estimated by calculating the ratio of Cr(VI) to total Cr mass for each particle size range. Expected, regional deposition of each metal was estimated according to respiratory-deposition models. The weight percent (standard deviation) of Mn in mild steel fumes was 9.2% (6.8%). For stainless steel fumes, the weight percentages were 8.4% (5.4%) for total Cr, 12.2% (6.5%) for Mn, 2.1% (1.5%) for Ni and 0.5% (0.4%) for Cr(VI). All metals presented a fraction between 0.04 and 0.6 µm. Total Cr and Ni presented an additional fraction <0.03 µm. On average 6% of the Cr was found in the Cr(VI) valence state. There was no statistical difference between the smallest and largest mean Cr(VI) to total Cr mass ratio (p-value D 0.19), hence our analysis does not show that particle size affects the contribution of Cr(VI) to total Cr. The predicted total respiratory deposition for the metal particles was ∼25%. The sites of principal deposition were the head airways (7-10%) and the alveolar region (11-14%). Estimated Cr(VI) deposition was highest in the alveolar region (14%).

10.
Toxicol Pathol ; 42(3): 582-90, 2014.
Artigo em Inglês | MEDLINE | ID: mdl-23847039

RESUMO

Inhalation of diacetyl, a butter flavoring, causes airway responses potentially mediated by sensory nerves. This study examines diacetyl-induced changes in sensory nerves of tracheal epithelium. Rats (n = 6/group) inhaled 0-, 25-, 249-, or 346-ppm diacetyl for 6 hr. Tracheas and vagal ganglia were removed 1-day postexposure and labeled for substance P (SP) or protein gene product 9.5 (PGP9.5). Vagal ganglia neurons projecting to airway epithelium were identified by axonal transport of fluorescent microspheres intratracheally instilled 14 days before diacetyl inhalation. End points were SP and PGP9.5 nerve fiber density (NFD) in tracheal epithelium and SP-positive neurons projecting to the trachea. PGP9.5-immunoreactive NFD decreased in foci with denuded epithelium, suggesting loss of airway sensory innervation. However, in the intact epithelium adjacent to denuded foci, SP-immunoreactive NFD increased from 0.01 ± 0.002 in controls to 0.05 ± 0.01 after exposure to 346-ppm diacetyl. In vagal ganglia, SP-positive airway neurons increased from 3.3 ± 3.0% in controls to 25.5 ± 6.6% after inhaling 346-ppm diacetyl. Thus, diacetyl inhalation increases SP levels in sensory nerves of airway epithelium. Because SP release in airways promotes inflammation and activation of sensory nerves mediates reflexes, neural changes may contribute to flavorings-related lung disease pathogenesis.


Assuntos
Diacetil/toxicidade , Mucosa Respiratória , Substância P/metabolismo , Traqueia/efeitos dos fármacos , Traqueia/metabolismo , Animais , Corantes Fluorescentes , Exposição por Inalação , Masculino , Neurônios/química , Neurônios/efeitos dos fármacos , Ratos , Ratos Sprague-Dawley , Mucosa Respiratória/química , Mucosa Respiratória/efeitos dos fármacos , Traqueia/citologia
11.
J Toxicol Environ Health A ; 76(11): 669-89, 2013.
Artigo em Inglês | MEDLINE | ID: mdl-23941636

RESUMO

"Popcorn workers' lung" is an obstructive pulmonary disease produced by inhalation of volatile artificial butter flavorings. In rats, inhalation of diacetyl, a major component of butter flavoring, and inhalation of a diacetyl substitute, 2,3-pentanedione, produce similar damage to airway epithelium. The effects of diacetyl and 2,3-pentanedione and mixtures of diacetyl, acetic acid, and acetoin, all components of butter flavoring, on pulmonary function and airway reactivity to methacholine (MCh) were investigated. Lung resistance (RL) and dynamic compliance (Cdyn) were negligibly changed 18 h after a 6-h inhalation exposure to diacetyl or 2,3-pentanedione (100-360 ppm). Reactivity to MCh was not markedly changed after diacetyl, but was modestly decreased after 2,3-pentanedione inhalation. Inhaled diacetyl exerted essentially no effect on reactivity to mucosally applied MCh, but 2,3-pentanedione (320 and 360 ppm) increased reactivity to MCh in the isolated, perfused trachea preparation (IPT). In IPT, diacetyl and 2,3-pentanedione (≥3 mM) applied to the serosal and mucosal surfaces of intact and epithelium-denuded tracheas initiated transient contractions followed by relaxations. Inhaled acetoin (150 ppm) exerted no effect on pulmonary function and airway reactivity in vivo; acetic acid (27 ppm) produced hyperreactivity to MCh; and exposure to diacetyl + acetoin + acetic acid (250 + 150 + 27 ppm) led to a diacetyl-like reduction in reactivity. Data suggest that the effects of 2,3-pentanedione on airway reactivity are greater than those of diacetyl, and that flavorings are airway smooth muscle relaxants and constrictors, thus indicating a complex mechanism.


Assuntos
Hiper-Reatividade Brônquica/induzido quimicamente , Diacetil/toxicidade , Aromatizantes/toxicidade , Pentanonas/toxicidade , Traqueia/efeitos dos fármacos , Ácido Acético/toxicidade , Acetoína/toxicidade , Resistência das Vias Respiratórias/efeitos dos fármacos , Animais , Hiper-Reatividade Brônquica/fisiopatologia , Testes de Provocação Brônquica , Células Cultivadas , Misturas Complexas/toxicidade , Alimentos , Exposição por Inalação , Masculino , Cloreto de Metacolina , Músculo Liso/efeitos dos fármacos , Músculo Liso/fisiopatologia , Ratos , Ratos Sprague-Dawley , Traqueia/fisiopatologia
12.
J Appl Toxicol ; 33(4): 301-12, 2013 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-22431001

RESUMO

Identification of molecular target(s) and mechanism(s) of silica-induced pulmonary toxicity is important for the intervention and/or prevention of diseases associated with exposure to silica. Rats were exposed to crystalline silica by inhalation (15 mg m(-3), 6 h per day, 5 days) and global gene expression profile was determined in the lungs by microarray analysis at 1, 2, 4, 8 and 16 weeks following termination of silica exposure. The number of significantly differentially expressed genes (>1.5-fold change and <0.01 false discovery rate P-value) detected in the lungs during the post-exposure time intervals analyzed exhibited a steady increase in parallel with the progression of silica-induced pulmonary toxicity noticed in the rats. Quantitative real-time PCR analysis of a representative set of 10 genes confirmed the microarray findings. The number of biological functions, canonical pathways and molecular networks significantly affected by silica exposure, as identified by the bioinformatics analysis of the significantly differentially expressed genes detected during the post-exposure time intervals, also exhibited a steady increase similar to the silica-induced pulmonary toxicity. Genes involved in oxidative stress, inflammation, respiratory diseases, cancer, and tissue remodeling and fibrosis were significantly differentially expressed in the rat lungs; however, unresolved inflammation was the single most significant biological response to pulmonary exposure to silica. Excessive mucus production, as implicated by significant overexpression of the pendrin coding gene, SLC26A4, was identified as a potential novel mechanism for silica-induced pulmonary toxicity. Collectively, the findings of our study provided insights into the molecular mechanisms underlying the progression of crystalline silica-induced pulmonary toxicity in the rat. Published 2012. This article is a US Government work and is in the public domain in the USA.


Assuntos
Lesão Pulmonar Aguda/induzido quimicamente , Poluentes Ocupacionais do Ar/toxicidade , Dióxido de Silício/toxicidade , Silicose/etiologia , Lesão Pulmonar Aguda/genética , Lesão Pulmonar Aguda/metabolismo , Lesão Pulmonar Aguda/patologia , Administração por Inalação , Animais , Antiportadores de Cloreto-Bicarbonato/genética , Antiportadores de Cloreto-Bicarbonato/metabolismo , Progressão da Doença , Regulação da Expressão Gênica , Masculino , Muco/metabolismo , Tamanho da Partícula , Ratos , Ratos Endogâmicos F344 , Silicose/genética , Silicose/metabolismo , Silicose/patologia , Organismos Livres de Patógenos Específicos , Transportadores de Sulfato
13.
Int J Mol Sci ; 13(11): 13781-803, 2012 Oct 24.
Artigo em Inglês | MEDLINE | ID: mdl-23203034

RESUMO

Engineered nanomaterials have been developed for widespread applications due to many highly unique and desirable characteristics. The purpose of this study was to assess pulmonary inflammation and subepicardial arteriolar reactivity in response to multi-walled carbon nanotube (MWCNT) inhalation and evaluate the time course of vascular alterations. Rats were exposed to MWCNT aerosols producing pulmonary deposition. Pulmonary inflammation via bronchoalveolar lavage and MWCNT translocation from the lungs to systemic organs was evident 24 h post-inhalation. Coronary arterioles were evaluated 24-168 h post-exposure to determine microvascular response to changes in transmural pressure, endothelium-dependent and -independent reactivity. Myogenic responsiveness, vascular smooth muscle reactivity to nitric oxide, and α-adrenergic responses all remained intact. However, a severe impact on endothelium-dependent dilation was observed within 24 h after MWCNT inhalation, a condition which improved, but did not fully return to control after 168 h. In conclusion, results indicate that MWCNT inhalation not only leads to pulmonary inflammation and cytotoxicity at low lung burdens, but also a low level of particle translocation to systemic organs. MWCNT inhalation also leads to impairments of endothelium-dependent dilation in the coronary microcirculation within 24 h, a condition which does not fully dissipate within 168 h. The innovations within the field of nanotechnology, while exciting and novel, can only reach their full potential if toxicity is first properly assessed.


Assuntos
Vasos Coronários/patologia , Endotélio Vascular/patologia , Nanotubos de Carbono/toxicidade , Acetilcolina/farmacologia , Administração por Inalação , Animais , Pressão Arterial/efeitos dos fármacos , Líquido da Lavagem Broncoalveolar , Vasos Coronários/efeitos dos fármacos , Vasos Coronários/metabolismo , Dilatação Patológica , Relação Dose-Resposta a Droga , Endotélio Vascular/efeitos dos fármacos , Endotélio Vascular/metabolismo , Coração/anatomia & histologia , Coração/efeitos dos fármacos , Rim/patologia , Fígado/patologia , Pulmão/patologia , Masculino , Músculo Liso Vascular/efeitos dos fármacos , Músculo Liso Vascular/metabolismo , Miocárdio/metabolismo , Miocárdio/patologia , Nitroprussiato/farmacologia , Tamanho do Órgão , Fenilefrina/farmacologia , Pneumonia/etiologia , Pneumonia/patologia , Ratos , Fatores de Tempo
14.
Am J Pathol ; 181(3): 829-44, 2012 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-22894831

RESUMO

Flavorings-related lung disease is a potentially disabling disease of food industry workers associated with exposure to the α-diketone butter flavoring, diacetyl (2,3-butanedione). To investigate the hypothesis that another α-diketone flavoring, 2,3-pentanedione, would cause airway damage, rats that inhaled air, 2,3-pentanedione (112, 241, 318, or 354 ppm), or diacetyl (240 ppm) for 6 hours were sacrificed the following day. Rats inhaling 2,3-pentanedione developed necrotizing rhinitis, tracheitis, and bronchitis comparable to diacetyl-induced injury. To investigate delayed toxicity, additional rats inhaled 318 (range, 317.9-318.9) ppm 2,3-pentanedione for 6 hours and were sacrificed 0 to 2, 12 to 14, or 18 to 20 hours after exposure. Respiratory epithelial injury in the upper nose involved both apoptosis and necrosis, which progressed through 12 to 14 hours after exposure. Olfactory neuroepithelial injury included loss of olfactory neurons that showed reduced expression of the 2,3-pentanedione-metabolizing enzyme, dicarbonyl/L-xylulose reductase, relative to sustentacular cells. Caspase 3 activation occasionally involved olfactory nerve bundles that synapse in the olfactory bulb (OB). An additional group of rats inhaling 270 ppm 2,3-pentanedione for 6 hours 41 minutes showed increased expression of IL-6 and nitric oxide synthase-2 and decreased expression of vascular endothelial growth factor A in the OB, striatum, hippocampus, and cerebellum using real-time PCR. Claudin-1 expression increased in the OB and striatum. We conclude that 2,3-pentanedione is a respiratory hazard that can also alter gene expression in the brain.


Assuntos
Bulbo Olfatório/patologia , Pentanonas/administração & dosagem , Pentanonas/toxicidade , Sistema Respiratório/patologia , Administração por Inalação , Animais , Caderinas/metabolismo , Caspase 3/metabolismo , Morte Celular/efeitos dos fármacos , Diacetil/toxicidade , Epitélio/efeitos dos fármacos , Epitélio/patologia , Imunofluorescência , Regulação da Expressão Gênica/efeitos dos fármacos , Masculino , Neurônios/efeitos dos fármacos , Neurônios/patologia , Bulbo Olfatório/efeitos dos fármacos , Proteína de Marcador Olfatório/metabolismo , RNA Mensageiro/genética , RNA Mensageiro/metabolismo , Ratos , Ratos Sprague-Dawley , Reprodutibilidade dos Testes , Coloração e Rotulagem , Desidrogenase do Álcool de Açúcar/metabolismo , Fatores de Tempo
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