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1.
Am J Epidemiol ; 2024 May 18.
Artículo en Inglés | MEDLINE | ID: mdl-38760171

RESUMEN

NIH's Environmental influences on Child Health Outcome (ECHO) program is an innovative, large, collaborative research initiative whose mission is to enhance the health of children for generations to come. The goal of the ECHO Cohort is to examine effects of a broad array of early environmental exposures on child health and development. It includes longitudinal data and biospecimens from over 100,000 children and family members from diverse settings across the U.S. ECHO investigators have published collaborative analyses showing associations of environmental exposures--primarily in the developmentally sensitive pre-, peri-, and post-natal periods--with preterm birth and childhood asthma, obesity, neurodevelopment, and positive health. Investigators have addressed health disparities, joint effects of environmental and social determinants, and effects of mixtures of chemicals. The ECHO Cohort is now entering its second 7-year cycle (2023-2030), which will add the preconception period to its current focus on prenatal through adolescence. Through a controlled access public use database, ECHO makes its deidentified data available to the general scientific community. ECHO Cohort data provide opportunities to fill major knowledge gaps in in environmental epidemiology, and to inform policies, practices, and programs to enhance child health.

2.
Toxicol Appl Pharmacol ; 415: 115430, 2021 03 15.
Artículo en Inglés | MEDLINE | ID: mdl-33524446

RESUMEN

Air pollutants may increase risk for cardiopulmonary disease, particularly in susceptible populations with metabolic stressors such as diabetes and unhealthy diet. We investigated effects of inhaled ozone exposure and high-cholesterol diet (HCD) in healthy Wistar and Wistar-derived Goto-Kakizaki (GK) rats, a non-obese model of type 2 diabetes. Male rats (4-week old) were fed normal diet (ND) or HCD for 12 weeks and then exposed to filtered air or 1.0 ppm ozone (6 h/day) for 1 or 2 days. We examined pulmonary, vascular, hematology, and inflammatory responses after each exposure plus an 18-h recovery period. In both strains, ozone induced acute bronchiolar epithelial necrosis and inflammation on histopathology and pulmonary protein leakage and neutrophilia; the protein leakage was more rapid and persistent in GK compared to Wistar rats. Ozone also decreased lymphocytes after day 1 in both strains consuming ND (~50%), while HCD increased circulating leukocytes. Ozone increased plasma thrombin/antithrombin complexes and platelet disaggregation in Wistar rats on HCD and exacerbated diet effects on serum IFN-γ, IL-6, KC-GRO, IL-13, and TNF-α, which were higher with HCD (Wistar>GK). Ex vivo aortic contractility to phenylephrine was lower in GK versus Wistar rats at baseline(~30%); ozone enhanced this effect in Wistar rats on ND. GK rats on HCD had higher aortic e-NOS and tPA expression compared to Wistar rats. Ozone increased e-NOS in GK rats on ND (~3-fold) and Wistar rats on HCD (~2-fold). These findings demonstrate ways in which underlying diabetes and HCD may exacerbate pulmonary, systemic, and vascular effects of inhaled pollutants.


Asunto(s)
Contaminantes Atmosféricos/toxicidad , Aorta Torácica/efectos de los fármacos , Colesterol en la Dieta/toxicidad , Diabetes Mellitus Tipo 2/complicaciones , Dieta Aterogénica/efectos adversos , Lesión Pulmonar/inducido químicamente , Pulmón/efectos de los fármacos , Ozono/toxicidad , Enfermedades Vasculares/inducido químicamente , Animales , Aorta Torácica/metabolismo , Aorta Torácica/fisiopatología , Biomarcadores/sangre , Plaquetas/efectos de los fármacos , Plaquetas/metabolismo , Colesterol en la Dieta/metabolismo , Citocinas/sangre , Diabetes Mellitus Tipo 2/sangre , Modelos Animales de Enfermedad , Mediadores de Inflamación/sangre , Exposición por Inhalación , Pulmón/metabolismo , Pulmón/patología , Lesión Pulmonar/sangre , Lesión Pulmonar/patología , Masculino , Necrosis , Edema Pulmonar/sangre , Edema Pulmonar/inducido químicamente , Edema Pulmonar/patología , Ratas Wistar , Enfermedades Vasculares/sangre , Enfermedades Vasculares/fisiopatología , Vasoconstricción/efectos de los fármacos
3.
J Toxicol Environ Health A ; 83(23-24): 748-763, 2020 12 16.
Artículo en Inglés | MEDLINE | ID: mdl-33016233

RESUMEN

Wildland fires (WF) are linked to adverse health impacts related to poor air quality. The cardiovascular impacts of emissions from specific biomass sources are however unknown. The purpose of this study was to assess the cardiovascular impacts of a single exposure to peat smoke, a key regional WF air pollution source, and relate these to baroreceptor sensitivity and inflammation. Three-month-old male Wistar-Kyoto rats, implanted with radiotelemeters for continuous monitoring of heart rate (HR), blood pressure (BP), and spontaneous baroreflex sensitivity (BRS), were exposed once, for 1-hr, to filtered air or low (0.38 mg/m3 PM) or high (4.04 mg/m3) concentrations of peat smoke. Systemic markers of inflammation and sensitivity to aconitine-induced cardiac arrhythmias, a measure of latent myocardial vulnerability, were assessed in separate cohorts of rats 24 hr after exposure. PM size (low peat = 0.4-0.5 microns vs. high peat = 0.8-1.2 microns) and proportion of organic carbon (low peat = 77% vs. high peat = 65%) varied with exposure level. Exposure to high peat and to a lesser extent low peat increased systolic and diastolic BP relative to filtered air. In contrast, only exposure to low peat elevated BRS and aconitine-induced arrhythmogenesis relative to filtered air and increased circulating levels of low-density lipoprotein cholesterol, complement components C3 and C4, angiotensin-converting enzyme (ACE), and white blood cells. Taken together, exposure to peat smoke produced overt and latent cardiovascular consequences that were likely influenced by physicochemical characteristics of the smoke and associated adaptive homeostatic mechanisms.


Asunto(s)
Contaminantes Atmosféricos/toxicidad , Arritmias Cardíacas/inducido químicamente , Barorreflejo/efectos de los fármacos , Presión Sanguínea/efectos de los fármacos , Exposición por Inhalación/efectos adversos , Material Particulado/toxicidad , Humo/efectos adversos , Animales , Masculino , Ratas , Ratas Endogámicas WKY , Suelo , Pruebas de Toxicidad Aguda
4.
Inhal Toxicol ; 32(8): 342-353, 2020 07.
Artículo en Inglés | MEDLINE | ID: mdl-32838590

RESUMEN

OBJECTIVE: Previous studies have shown that air pollution exposure primes the body to heightened responses to everyday stressors of the cardiovascular system. The purpose of this study was to examine the utility of postprandial responses to a high carbohydrate oral load, a cardiometabolic stressor long used to predict cardiovascular risk, in assessing the impacts of exposure to eucalyptus smoke (ES), a contributor to wildland fire air pollution in the Western coast of the United States. MATERIALS AND METHODS: Three-month-old male Sprague Dawley rats were exposed once (1 h) to filtered air (FA) or ES (700 µg/m3 fine particulate matter), generated by burning eucalyptus in a tube furnace. Rats were then fasted for six hours the following morning, and subsequently administered an oral gavage of either water or a HC suspension (70 kcal% from carbohydrate), mimicking a HC meal. Two hours post gavage, cardiovascular ultrasound, cardiac pressure-volume (PV), and baroreceptor sensitivity assessments were made, and pulmonary and systemic markers assessed. RESULTS: ES inhalation alone increased serum interleukin (IL)-4 and nasal airway levels of gamma glutamyl transferase. HC gavage alone increased blood glucose, blood pressure, and serum IL-6 and IL-13 compared to water vehicle. By contrast, only ES-exposed and HC-challenged animals had increased PV loop measures of cardiac output, ejection fraction %, dP/dtmax, dP/dtmin, and stroke work compared to ES exposure alone and/or HC challenge alone. DISCUSSION AND CONCLUSIONS: Exposure to a model wildfire air pollution source modifies cardiovascular responses to HC challenge, suggesting air pollution sensitizes the body to systemic triggers.


Asunto(s)
Contaminantes Atmosféricos/efectos adversos , Carbohidratos de la Dieta/farmacología , Eucalyptus , Humo/efectos adversos , Administración por Inhalación , Animales , Glucemia/efectos de los fármacos , Presión Sanguínea/efectos de los fármacos , Líquido del Lavado Bronquioalveolar/química , Líquido del Lavado Bronquioalveolar/citología , Gasto Cardíaco/efectos de los fármacos , Citocinas/sangre , Masculino , Líquido del Lavado Nasal/química , Líquido del Lavado Nasal/citología , Periodo Posprandial/fisiología , Ratas Sprague-Dawley , Volumen Sistólico/efectos de los fármacos , Incendios Forestales
5.
Inhal Toxicol ; 30(11-12): 439-447, 2018.
Artículo en Inglés | MEDLINE | ID: mdl-30642191

RESUMEN

Exposure to wildland fire-related particulate matter (PM) causes adverse health outcomes. However, the impacts of specific biomass sources remain unclear. The purpose of this study was to investigate cardiopulmonary responses in rats following exposure to PM extracts collected from peat fire smoke. We hypothesized that peat smoke PM would dose-dependently alter cardiopulmonary function. Male Sprague-Dawley rats (n = 8/group) were exposed to 35 µg (Lo PM) or 350 µg (Hi PM) of peat smoke PM extracts suspended in saline, or saline alone (Vehicle) via oropharyngeal aspiration (OA). Ventilatory expiration times, measured in whole-body plethysmographs immediately after OA, were the lowest in Hi PM exposed subjects at 6 min into recovery (p = .01 vs. Lo PM, p = .08 vs. Vehicle) and resolved shortly afterwards. The next day, we evaluated cardiovascular function in the same subjects via cardiac ultrasound under isoflurane anesthesia. Compared to Vehicle, Hi PM had 45% higher end systolic volume (p = .03) and 17% higher pulmonary artery blood flow acceleration/ejection time ratios, and both endpoints expressed significant increasing linear trends by dose (p = .01 and .02, respectively). In addition, linear trend analyses across doses detected an increase for end diastolic volume and decreases for ejection fraction and fractional shortening. These data suggest that exposure to peat smoke constituents modulates regulation of ventricular ejection and filling volumes, which could be related to altered blood flow in the pulmonary circulation. Moreover, early pulmonary responses to peat smoke PM point to irritant/autonomic mechanisms as potential drivers of later cardiovascular responses.


Asunto(s)
Contaminantes Atmosféricos/efectos adversos , Corazón/efectos de los fármacos , Pulmón/efectos de los fármacos , Humo/efectos adversos , Suelo , Animales , Corazón/diagnóstico por imagen , Corazón/fisiología , Pruebas de Función Cardíaca , Pulmón/fisiología , Masculino , Arteria Pulmonar/efectos de los fármacos , Arteria Pulmonar/fisiología , Circulación Pulmonar/efectos de los fármacos , Ventilación Pulmonar/efectos de los fármacos , Ratas Sprague-Dawley , Ultrasonografía , Función Ventricular Izquierda/efectos de los fármacos
6.
Am J Physiol Lung Cell Mol Physiol ; 310(2): L142-54, 2016 Jan 15.
Artículo en Inglés | MEDLINE | ID: mdl-26589480

RESUMEN

Pulmonary instillation of multiwalled carbon nanotubes (MWCNT) has the potential to promote cardiovascular derangements, but the mechanisms responsible are currently unclear. We hypothesized that exposure to MWCNT would result in increased epithelial barrier permeability by 24 h postexposure and initiate a signaling process involving IL-6/gp130 transsignaling in peripheral vascular tissue. To test this hypothesis we assessed the impact of 1 and 10 µg/cm(2) MWCNT on transepithelial electrical resistance (TEER) and expression of barrier proteins and cell activation in vitro using normal human bronchial epithelial primary cells. Parallel studies using male Sprague-Dawley rats instilled with 100 µg MWCNT measured bronchoalveolar lavage (BAL) differential cell counts, BAL fluid total protein, and lung water-to-tissue weight ratios 24 h postexposure and quantified serum concentrations of IL-6, soluble IL-6r, and soluble gp130. Aortic sections were examined immunohistochemically for gp130 expression, and gp130 mRNA/protein expression was evaluated in rat lung, heart, and aortic tissue homogenates. Our in vitro findings indicate that 10 µg/cm(2) MWCNT decreased the development of TEER and zonula occludens-1 expression relative to the vehicle. In rats MWCNT instillation increased BAL protein, lung water, and induced pulmonary eosinophilia. Serum concentrations of soluble gp130 decreased, aortic endothelial expression of gp130 increased, and expression of gp130 in the lung was downregulated in the MWCNT-exposed group. We propose that pulmonary exposure to MWCNT can manifest as a reduced epithelial barrier and activator of vascular gp130-associated transsignaling that may promote susceptibility to cardiovascular derangements.


Asunto(s)
Vasos Coronarios/metabolismo , Receptor gp130 de Citocinas/metabolismo , Interleucina-6/metabolismo , Pulmón/metabolismo , Nanotubos de Carbono , Animales , Líquido del Lavado Bronquioalveolar/citología , Células Cultivadas , Humanos , Masculino , Permeabilidad , Arteria Pulmonar/metabolismo , Ratas Sprague-Dawley , Transducción de Señal
7.
Part Fibre Toxicol ; 13(1): 48, 2016 08 24.
Artículo en Inglés | MEDLINE | ID: mdl-27558113

RESUMEN

BACKGROUND: The uses of engineered nanomaterials have expanded in biomedical technology and consumer manufacturing. Furthermore, pulmonary exposure to various engineered nanomaterials has, likewise, demonstrated the ability to exacerbate cardiac ischemia reperfusion (I/R) injury. However, the influence of particle size or capping agent remains unclear. In an effort to address these influences we explored response to 2 different size gold core nanosilver particles (AgNP) with two different capping agents at 2 different time points. We hypothesized that a pulmonary exposure to AgNP induces cardiovascular toxicity influenced by inflammation and vascular dysfunction resulting in expansion of cardiac I/R Injury that is sensitive to particle size and the capping agent. METHODS: Male Sprague-Dawley rats were exposed to 200 µg of 20 or 110 nm polyvinylprryolidone (PVP) or citrate capped AgNP. One and 7 days following intratracheal instillation serum was analyzed for concentrations of selected cytokines; cardiac I/R injury and isolated coronary artery and aorta segment were assessed for constrictor responses and endothelial dependent relaxation and endothelial independent nitric oxide dependent relaxation. RESULTS: AgNP instillation resulted in modest increase in selected serum cytokines with elevations in IL-2, IL-18, and IL-6. Instillation resulted in a derangement of vascular responses to constrictors serotonin or phenylephrine, as well as endothelial dependent relaxations with acetylcholine or endothelial independent relaxations by sodium nitroprusside in a capping and size dependent manner. Exposure to both 20 and 110 nm AgNP resulted in exacerbation cardiac I/R injury 1 day following IT instillation independent of capping agent with 20 nm AgNP inducing marginally greater injury. Seven days following IT instillation the expansion of I/R injury persisted but the greatest injury was associated with exposure to 110 nm PVP capped AgNP resulted in nearly a two-fold larger infarct size compared to naïve. CONCLUSIONS: Exposure to AgNP may result in vascular dysfunction, a potentially maladaptive sensitization of the immune system to respond to a secondary insult (e.g., cardiac I/R) which may drive expansion of I/R injury at 1 and 7 days following IT instillation where the extent of injury could be correlated with capping agents and AgNP size.


Asunto(s)
Oro/química , Lesiones Cardíacas/inducido químicamente , Nanopartículas del Metal/química , Nanopartículas del Metal/toxicidad , Plata/química , Animales , Exposición por Inhalación , Pulmón , Masculino , Tamaño de la Partícula , Ratas , Ratas Sprague-Dawley
8.
Inhal Toxicol ; 28(4): 170-9, 2016.
Artículo en Inglés | MEDLINE | ID: mdl-26986952

RESUMEN

CONTEXT: Within urban air sheds, specific ambient air pollutants typically peak at predictable times throughout the day. For example, in environments dominated by mobile sources, peak nitrogen dioxide (NO2) levels coincide with morning and afternoon rush hours, while peak levels of ozone (O3), occur in the afternoon. OBJECTIVE: Given that exposure to a single pollutant might sensitize the cardiopulmonary system to the effects of a subsequent exposure to a second pollutant, we hypothesized that a morning exposure to NO2 will exaggerate the cardiovascular effects of an afternoon O3 exposure in rats. MATERIALS AND METHODS: Rats were divided into four groups that were each exposed for 3 h in the morning (m) and 3 h in the afternoon (a) on the same day: (1) m-Air/a-Air, (2) m-Air/a-O3 (0.3 ppm), (3) m-NO2 (0.5 ppm)/a-Air and (4) m-NO2/a-O3. Implanted telemetry devices recorded blood pressure and electrocardiographic data. Sensitivity to the arrhythmogenic agent aconitine was measured in a separate cohort. RESULTS: Only m-NO2/a-O3-exposed rats had significant changes in electrophysiological, mechanical and autonomic parameters. These included decreased heart rate and increased PR and QTc intervals and increased heart rate variability, suggesting increased parasympathetic tone. In addition, only m-NO2/a-O3 exposure decreased systolic and diastolic blood pressures and increased pulse pressure and QA interval, suggesting decreased cardiac contractility. DISCUSSION AND CONCLUSION: The findings indicate that initial exposure to NO2 sensitized rats to the cardiovascular effects of O3 and may provide insight into the epidemiological data linking adverse cardiovascular outcomes with exposures to low concentrations of O3.


Asunto(s)
Contaminantes Atmosféricos/toxicidad , Hipertensión/fisiopatología , Dióxido de Nitrógeno/toxicidad , Ozono/toxicidad , Aconitina , Administración por Inhalación , Animales , Arritmias Cardíacas/inducido químicamente , Arritmias Cardíacas/fisiopatología , Presión Sanguínea/efectos de los fármacos , Electrocardiografía/efectos de los fármacos , Frecuencia Cardíaca/efectos de los fármacos , Masculino , Ratas , Ratas Endogámicas SHR
9.
J Clin Transl Sci ; 5(1): e139, 2021.
Artículo en Inglés | MEDLINE | ID: mdl-34367683

RESUMEN

Large translational research initiatives can strengthen efficiencies and support science with enhanced impact when practical conceptual models guide their design, implementation, and evaluation. The National Institutes of Health (NIH) Environmental influences on Child Health Outcomes (ECHO) program brings together data from 72 ongoing maternal-child cohort studies - involving more than 50,000 children and over 1200 investigators - to conduct transdisciplinary solution-oriented research that addresses how early environmental exposures influence child health. ECHO uses a multi-team system approach to consortium-wide data collection and analysis to generate original research that informs programs, policies, and practices to enhance children's health. Here, we share two conceptual models informed by ECHO's experiences and the Science of Team Science. The first conceptual model illuminates a system of teams and associated tasks that support collaboration toward shared scientific goals. The second conceptual model provides a framework for designing evaluations for continuous quality improvement of manuscript writing teams. Together, the two conceptual models offer guidance for the design, implementation, and evaluation of translational and transdisciplinary multi-team research initiatives.

10.
Cardiovasc Toxicol ; 19(2): 168-177, 2019 04.
Artículo en Inglés | MEDLINE | ID: mdl-30382549

RESUMEN

The broad list of commercial applications for multi-walled carbon nanotubes (MWCNT) can be further expanded with the addition of various surface chemistry modifications. For example, standard commercial grade MWCNT (C-grade) can be carboxylated (COOH) or nitrogen-doped (N-doped) to suite specific utilities. We previously reported dose-dependent expansions of cardiac ischemia/reperfusion (I/R) injury, 24 h after intratracheal instillation of C-grade, COOH, or N-doped MWCNT in mice. Here, we have tested the hypothesis that airway exposure to MWCNT perturbs cardiovascular adenosinergic signaling, which could contribute to exacerbation of cardiac I/R injury. 100 µL of Vehicle or identical suspension volumes containing 100 µg of C-grade, COOH, or N-doped MWCNT were instilled into the trachea of CD-1 ICR mice. 1 day later, we measured cyclic adenosine monophosphate (cAMP) concentrations in cardiac tissue and evaluated arterial adenosinergic smooth muscle signaling mechanisms related to nitric oxide synthase (NOS) and cyclooxygenase (COX) in isolated aortic tissue. We also verified cardiac I/R injury expansion and examined both lung histology and bronchoalveolar lavage fluid cellularity in MWCNT exposed mice. Myocardial cAMP concentrations were reduced (p < 0.05) in the C-grade group by 17.4% and N-doped group by 13.7% compared to the Vehicle group. Curve fits to aortic ring 2-Cl-Adenosine concentration responses were significantly greater in the MWCNT groups vs. the Vehicle group. Aortic constrictor responses were more pronounced with NOS inhibition and were abolished with COX inhibition. These findings indicate that addition of functional chemical moieties on the surface of MWCNT may alter the biological responses to exposure by influencing cardiovascular adenosinergic signaling and promoting cardiac injury.


Asunto(s)
Adenosina/farmacología , Músculo Liso Vascular/efectos de los fármacos , Infarto del Miocardio/inducido químicamente , Daño por Reperfusión Miocárdica/inducido químicamente , Miocardio/metabolismo , Nanotubos de Carbono/toxicidad , Transducción de Señal/efectos de los fármacos , Adenosina/análogos & derivados , Animales , Aorta Torácica/efectos de los fármacos , Aorta Torácica/metabolismo , AMP Cíclico/metabolismo , Exposición por Inhalación , Pulmón/efectos de los fármacos , Pulmón/metabolismo , Pulmón/patología , Masculino , Ratones Endogámicos ICR , Músculo Liso Vascular/metabolismo , Infarto del Miocardio/metabolismo , Infarto del Miocardio/patología , Infarto del Miocardio/fisiopatología , Daño por Reperfusión Miocárdica/metabolismo , Daño por Reperfusión Miocárdica/patología , Daño por Reperfusión Miocárdica/fisiopatología , Miocardio/patología , Óxido Nítrico Sintasa/metabolismo , Prostaglandina-Endoperóxido Sintasas/metabolismo , Vasoconstricción/efectos de los fármacos , Vasodilatación/efectos de los fármacos
11.
Sci Rep ; 9(1): 6885, 2019 05 03.
Artículo en Inglés | MEDLINE | ID: mdl-31053794

RESUMEN

Single circulating factors are often investigated to explain air pollution-induced cardiovascular dysfunction, yet broader examinations of the identity and bioactivity of the entire circulating milieu remain understudied. The purpose of this study was to determine if exposure-induced cardiovascular dysfunction can be coupled with alterations in both serum bioactivity and the circulating proteome. Two cohorts of Spontaneously Hypertensive Rats (SHRs) were exposed to 150 or 500 µg/m3 diesel exhaust (DE) or filtered air (FA). In Cohort 1, we collected serum 1 hour after exposure for proteomics analysis and bioactivity measurements in rat aortic endothelial cells (RAECs). In Cohort 2, we assessed left ventricular pressure (LVP) during stimulation and recovery from the sympathomimetic dobutamine HCl, one day after exposure. Serum from DE-exposed rats had significant changes in 66 serum proteins and caused decreased NOS activity and increased VCAM-1 expression in RAECs. While rats exposed to DE demonstrated increased heart rate at the start of LVP assessments, heart rate, systolic pressure, and double product fell below baseline in DE-exposed rats compared to FA during recovery from dobutamine, indicating dysregulation of post-exertional cardiovascular function. Taken together, a complex and bioactive circulating milieu may underlie air pollution-induced cardiovascular dysfunction.


Asunto(s)
Sistema Cardiovascular/efectos de los fármacos , Sistema Cardiovascular/fisiopatología , Proteoma , Recuperación de la Función/efectos de los fármacos , Suero/metabolismo , Emisiones de Vehículos/toxicidad , Animales , Presión Sanguínea/efectos de los fármacos , Endotelio/efectos de los fármacos , Endotelio/metabolismo , Frecuencia Cardíaca/efectos de los fármacos , Masculino , Ratas , Ratas Endogámicas SHR
12.
Toxicol Sci ; 168(2): 535-550, 2019 04 01.
Artículo en Inglés | MEDLINE | ID: mdl-30649513

RESUMEN

Implantation is a sensitive window in reproductive development during which disruptions may increase the risk of adverse pregnancy outcomes including intrauterine growth restriction. Ozone exposure during implantation in rats reduces fetal weight near the end of gestation, potentially though impaired trophoblast migration and invasion and altered implantation. The current study characterized changes in ventilation, pulmonary injury, and circulating factors including hormonal, inflammatory, and metabolic markers related to exposure to ozone (0.4-1.2 ppm) for 4-h on gestation days 5 and 6 (window of implantation) in Long-Evans dams. To determine the effects of this exposure on trophoblast function, placental-derived, first trimester, HTR-8/SVneo cells were exposed to serum from air- or ozone (0.8 ppm×4 h)-exposed dams and examined for impacts on metabolic capacity, wound-closure, and invasion. Peri-implantation exposure to ozone induced ventilatory dysfunction and lung vascular leakage in pregnant rats, with little effect on most of the circulating markers measured. However, ozone inhalation induced a significant reduction in several serum cytokines (interferon-γ, interleukin-6, and interleukin-13). Treatment of HTR-8/SVneo trophoblasts with serum from ozone-exposed dams for 16-h downregulated metabolic capacity, wound-closure, and invasion through a Matrigel membrane compared with both air-serum and fetal bovine serum-treated cells. Ozone-serum treated cells increased the release of a critical inhibitor of invasion and angiogenesis (soluble fms-like receptor 1; sFlt1) compared with air-serum treatment. Together, our data suggest that circulating factors in the serum of pregnant rats exposed to ozone during implantation receptivity can hinder critical processes of implantation (eg, invasion and migration) and impair trophoblast metabolic capacity.


Asunto(s)
Contaminantes Atmosféricos/toxicidad , Implantación del Embrión/efectos de los fármacos , Exposición Materna/efectos adversos , Ozono/toxicidad , Suero/metabolismo , Trofoblastos/efectos de los fármacos , Animales , Líquido del Lavado Bronquioalveolar/química , Líquido del Lavado Bronquioalveolar/citología , Citocinas/sangre , Femenino , Técnicas In Vitro , Pletismografía Total , Embarazo , Ratas Long-Evans
13.
Toxicol Sci ; 167(2): 559-572, 2019 02 01.
Artículo en Inglés | MEDLINE | ID: mdl-30351402

RESUMEN

Air pollution is a complex mixture of particulate matter and gases linked to adverse clinical outcomes. As such, studying responses to individual pollutants does not account for the potential biological responses resulting from the interaction of various constituents within an ambient air shed. We previously reported that exposure to high levels of the gaseous pollutant acrolein perturbs myocardial synchrony. Here, we examined the effects of repeated, intermittent co-exposure to low levels of concentrated ambient particulates (CAPs) and acrolein on myocardial synchrony and the role of transient receptor potential cation channel A1 (TRPA1), which we previously linked to air pollution-induced sensitization to triggered cardiac arrhythmia. Female B6129 and Trpa1-/- mice (n = 6/group) were exposed to filtered air (FA), CAPs (46 µg/m3 of PM2.5), Acrolein (0.42 ppm), or CAPs+Acrolein for 3 h/day, 2 days/week for 4 weeks. Cardiac ultrasound was conducted to assess cardiac synchronicity and function before and after the first exposure and after the final exposure. Heart rate variability (HRV), an indicator of autonomic tone, was assessed after the final exposure. Strain delay (time between peak strain in adjacent cardiac wall segments), an index of myocardial dyssynchrony, increased by 5-fold after the final CAPs+Acrolein exposure in B6129 mice compared with FA, CAPs, or Acrolein-exposed B6129 mice, and CAPs+Acrolein-exposed Trpa1-/- mice. Only exposure to acrolein alone increased the HRV high frequency domain (5-fold) in B6129 mice, but not in Trpa1-/- mice. Thus, repeated inhalation of pollutant mixtures may increase risk for cardiac responses compared with single or multiple exposures to individual pollutants through TRPA1 activation.


Asunto(s)
Acroleína/toxicidad , Contaminantes Atmosféricos/toxicidad , Arritmias Cardíacas/inducido químicamente , Exposición por Inhalación/efectos adversos , Miocardio/metabolismo , Material Particulado/toxicidad , Canal Catiónico TRPA1/metabolismo , Animales , Arritmias Cardíacas/metabolismo , Sinergismo Farmacológico , Femenino , Frecuencia Cardíaca/efectos de los fármacos , Ratones , Ratones Noqueados , Canal Catiónico TRPA1/genética
14.
Sci Rep ; 9(1): 145, 2019 01 15.
Artículo en Inglés | MEDLINE | ID: mdl-30644404

RESUMEN

Heart rate assays in wild-type zebrafish embryos have been limited to analysis of one embryo per video/imaging field. Here we present for the first time a platform for high-throughput derivation of heart rate from multiple zebrafish (Danio rerio) embryos per imaging field, which is capable of quickly processing thousands of videos and ideal for multi-well platforms with multiple fish/well. This approach relies on use of 2-day post fertilization wild-type embryos, and uses only bright-field imaging, circumventing requirement for anesthesia or restraint, costly software/hardware, or fluorescently-labeled animals. Our original scripts (1) locate the heart and record pixel intensity fluctuations generated by each cardiac cycle using a robust image processing routine, and (2) process intensity data to derive heart rate. To demonstrate assay utility, we exposed embryos to the drugs epinephrine and clonidine, which increased or decreased heart rate, respectively. Exposure to organic extracts of air pollution-derived particulate matter, including diesel or biodiesel exhausts, or wood smoke, all complex environmental mixtures, decreased heart rate to varying degrees. Comparison against an established lower-throughput method indicated robust assay fidelity. As all code and executable files are publicly available, this approach may expedite cardiotoxicity screening of compounds as diverse as small molecule drugs and complex chemical mixtures.


Asunto(s)
Frecuencia Cardíaca/efectos de los fármacos , Ensayos Analíticos de Alto Rendimiento/métodos , Animales , Cardiotoxicidad , Evaluación Preclínica de Medicamentos/métodos , Embrión no Mamífero , Procesamiento de Imagen Asistido por Computador , Material Particulado/toxicidad , Pez Cebra/embriología
15.
Toxicol Sci ; 161(2): 290-299, 2018 02 01.
Artículo en Inglés | MEDLINE | ID: mdl-29048608

RESUMEN

Exposure to fine particulate matter (PM) air pollution causes adverse cardiopulmonary outcomes. Yet, the limited capacity to readily identify contributing PM sources and associated PM constituents in any given ambient air shed impedes risk assessment efforts. The health effects of PM have been attributed in part to its capacity to elicit irritant responses. A variety of chemicals trigger irritant behavior responses in zebrafish that can be easily measured. The purposes of this study were to examine the utility of zebrafish locomotor responses in the toxicity assessment of fine PM and its chemical fractions and uncover mechanisms of action. Locomotor responses were recorded in 6-day-old zebrafish exposed for 60 min in the dark at 26 °C to the extractable organic matter of a compressor-generated diesel exhaust PM (C-DEP) and 4 of its fractions (F1-F4) containing varying chemical classes of increasing polarity. The role of the transient receptor potential (TRP) cation channel TRPA1, a chemical sensor in mammals and zebrafish, in locomotor responses to C-DEP, was also examined. Acrolein, an environmental irritant and known activator of TRPA1, and all extracts induced concentration-dependent locomotor responses whose potencies ranked as follows: polar F3 > weakly polar F2 > C-DEP > highly polar F4 > nonpolar F1, indicating that polar and weakly polar fractions that included nitro- and oxy-polyaromatic hydrocarbons (PAHs), drove C-DEP responses. Irritant potencies in fish positively correlated with mutagenic potencies of the same extracts in strains of Salmonella sensitive to nitro- and oxy-PAHs, further implicating these chemical classes in the zebrafish responses to C-DEP. Pharmacologic inhibition of TRPA1 blocked locomotor responses to acrolein and the extracts. Taken together, these data indicate that the zebrafish locomotor assay may help expedite toxicity screening of fine PM sources, identify causal chemical classes, and uncover plausible biological mechanisms.


Asunto(s)
Contaminantes Atmosféricos/toxicidad , Conducta Animal/efectos de los fármacos , Genio Irritable/efectos de los fármacos , Actividad Motora/efectos de los fármacos , Material Particulado/toxicidad , Canal Catiónico TRPA1/metabolismo , Proteínas de Pez Cebra/metabolismo , Pez Cebra/fisiología , Animales , Relación Dosis-Respuesta a Droga , Pruebas de Mutagenicidad , Salmonella/efectos de los fármacos , Salmonella/genética , Canal Catiónico TRPA1/antagonistas & inhibidores , Emisiones de Vehículos/toxicidad , Pez Cebra/metabolismo , Proteínas de Pez Cebra/antagonistas & inhibidores
16.
Sci Total Environ ; 643: 378-391, 2018 Dec 01.
Artículo en Inglés | MEDLINE | ID: mdl-29940449

RESUMEN

Wildland fire emissions cause adverse cardiopulmonary outcomes, yet controlled exposure studies to characterize health impacts of specific biomass sources have been complicated by the often latent effects of air pollution. The aim of this study was to determine if postprandial responses after a high fat challenge, long used clinically to predict cardiovascular risk, would unmask latent cardiometabolic responses in rats exposed to peat smoke, a key wildland fire air pollution source. Male Wistar Kyoto rats were exposed once (1 h) to filtered air (FA), or low (0.36 mg/m3 particulate matter) or high concentrations (3.30 mg/m3) of peat smoke, generated by burning peat from an Irish bog. Rats were then fasted overnight, and then administered an oral gavage of a HF suspension (60 kcal% from fat), mimicking a HF meal, 24 h post-exposure. In one cohort, cardiac and superior mesenteric artery function were assessed using high frequency ultrasound 2 h post gavage. In a second cohort, circulating lipids and hormones, pulmonary and systemic inflammatory markers, and circulating monocyte phenotype using flow cytometry were assessed before or 2 or 6 h after gavage. HF gavage alone elicited increases in circulating lipids characteristic of postprandial responses to a HF meal. Few effects were evident after peat exposure in un-gavaged rats. By contrast, exposure to low or high peat caused several changes relative to FA-exposed rats 2 and 6 h post HF gavage including increased heart isovolumic relaxation time, decreased serum glucose and insulin, increased CD11 b/c-expressing blood monocytes, increased serum total cholesterol, alpha-1 acid glycoprotein, and alpha-2 macroglobulin (p = 0.063), decreased serum corticosterone, and increased lung gamma-glutamyl transferase. In summary, these findings demonstrate that a HF challenge reveals effects of air pollution that may otherwise be imperceptible, particularly at low exposure levels, and suggest exposure may sensitize the body to mild inflammatory triggers.


Asunto(s)
Contaminantes Atmosféricos/toxicidad , Exposición por Inhalación/efectos adversos , Material Particulado/toxicidad , Pruebas de Toxicidad Aguda , Contaminación del Aire , Animales , Masculino , Ratas , Humo , Suelo
17.
Cardiovasc Toxicol ; 17(2): 97-108, 2017 04.
Artículo en Inglés | MEDLINE | ID: mdl-26894885

RESUMEN

Acrolein is an irritating aldehyde generated during combustion of organic compounds. Altered autonomic activity has been documented following acrolein inhalation, possibly impacting myocardial synchrony and function. Given the ubiquitous nature of acrolein in the environment, we sought to better define the immediate and delayed functional cardiac effects of acrolein inhalation in vivo. We hypothesized that acrolein inhalation would increase markers of cardiac mechanical dysfunction, i.e., myocardial dyssynchrony and performance index in mice. Male C57Bl/6J mice were exposed to filtered air (FA) or acrolein (0.3 or 3.0 ppm) for 3 h in whole-body plethysmography chambers (n = 6). Echocardiographic analyses were performed 1 day before exposure and at 1 and 24 h post-exposure. Speckle tracking echocardiography revealed that circumferential strain delay (i.e., dyssynchrony) was increased at 1 and 24 h following exposure to 3.0 ppm, but not 0.3 ppm, when compared to pre-exposure and/or FA exposure. Pulsed wave Doppler of transmitral blood flow revealed that acrolein exposure at 0.3 ppm, but not 3.0 ppm, increased the Tei index of myocardial performance (i.e., decreased global heart performance) at 1 and 24 h post-exposure compared to pre-exposure and/or FA exposure. We conclude that short-term inhalation of acrolein can acutely modify cardiac function in vivo and that echocardiographic evaluation of myocardial synchrony and performance following exposure to other inhaled pollutants could provide broader insight into the health effects of air pollution.


Asunto(s)
Acroleína/toxicidad , Contaminantes Atmosféricos/toxicidad , Exposición por Inhalación/efectos adversos , Contracción Miocárdica/efectos de los fármacos , Disfunción Ventricular Izquierda/inducido químicamente , Función Ventricular Izquierda/efectos de los fármacos , Animales , Cardiotoxicidad , Relación Dosis-Respuesta a Droga , Ecocardiografía Doppler en Color , Ecocardiografía Doppler de Pulso , Pulmón/efectos de los fármacos , Pulmón/fisiopatología , Masculino , Ratones Endogámicos C57BL , Pletismografía Total , Neumonía/inducido químicamente , Neumonía/fisiopatología , Ventilación Pulmonar/efectos de los fármacos , Medición de Riesgo , Factores de Tiempo , Disfunción Ventricular Izquierda/diagnóstico por imagen , Disfunción Ventricular Izquierda/fisiopatología
18.
Environ Health Perspect ; 125(12): 127005, 2017 12 21.
Artículo en Inglés | MEDLINE | ID: mdl-29269335

RESUMEN

BACKGROUND: Epidemiological studies suggest that increased ozone exposure during gestation may compromise fetal growth. In particular, the implantation stage of pregnancy is considered a key window of susceptibility for this outcome. OBJECTIVES: The main goals of this study were to investigate the effects of short-term ozone inhalation during implantation on fetal growth outcomes and to explore the potential for alterations in uterine arterial flow as a contributing mechanism. METHODS: Pregnant Long-Evans rats were exposed to filtered air, 0.4 ppm ozone, or 0.8 ppm ozone for 4 h/d during implantation, on gestation days (GD) 5 and 6. Tail cuff blood pressure and uterine artery Doppler ultrasound were measured on GD 15, 19, and 21. To assess whether peri-implantation ozone exposure resulted in sustained pulmonary or systemic health effects, bronchoalveolar lavage fluid, serum metabolic and inflammatory end points, and kidney histopathology were evaluated in dams at GD 21. Growth parameters assessed in GD 21 offspring included fetal weight, length, and body composition. RESULTS: Measures of maternal uterine arterial flow, including resistance index and mean velocity, indicated that resistance increased between GD 15 and GD 21 in 0.8 ppm dams but decreased in controls, although absolute values were similar in both groups on GD 21. Ozone-exposed dams also had lower serum glucose and higher free fatty acid concentrations than controls on GD 21. On GD 21, both male and female offspring had lower body weight than controls, and pooled subsets of 3 male and 3 female fetuses from litters exposed to 0.8 ppm ozone had lower lean mass and fat mass than pooled control offspring. CONCLUSIONS: Findings from our experimental model suggest that the offspring of dams exposed to ozone during implantation had reduced growth compared with controls, possibly as a consequence of ozone-induced vascular dysfunction. https://doi.org/10.1289/EHP2019.


Asunto(s)
Contaminantes Atmosféricos/efectos adversos , Desarrollo Fetal/efectos de los fármacos , Exposición por Inhalación , Exposición Materna , Ozono/efectos adversos , Arteria Uterina/fisiología , Animales , Relación Dosis-Respuesta a Droga , Implantación del Embrión , Femenino , Masculino , Distribución Aleatoria , Ratas/crecimiento & desarrollo , Ratas/fisiología , Ratas Long-Evans , Flujo Sanguíneo Regional , Ultrasonografía Doppler , Arteria Uterina/diagnóstico por imagen
19.
Pharmacol Ther ; 165: 63-78, 2016 09.
Artículo en Inglés | MEDLINE | ID: mdl-27222357

RESUMEN

Exposure to particulate matter air pollution has been causally linked to cardiovascular disease in humans. Several broad and overlapping hypotheses describing the biological mechanisms by which particulate matter exposure leads to cardiovascular disease have been explored, although linkage with specific factors or genes remains limited. These hypotheses may or may not also lead to particulate matter-induced cardiac dysfunction. Evidence pointing to autocrine/paracrine signaling systems as modulators of cardiac dysfunction has increased interest in the emerging role of endothelins as mediators of cardiac function following particulate matter exposure. Endothelin-1, a well-described small peptide expressed in the pulmonary and cardiovascular systems, is best known for its ability to constrict blood vessels, although it can also induce extravascular effects. Research on the role of endothelins in the context of air pollution has largely focused on vascular effects, with limited investigation of responses resulting from the direct effects of endothelins on cardiac tissue. This represents a significant knowledge gap in air pollution health effects research, given the abundance of endothelin receptors found on cardiac tissue and the ability of endothelin-1 to modulate cardiac contractility, heart rate, and rhythm. The plausibility of endothelin-1 as a mediator of particulate matter-induced cardiac dysfunction is further supported by the therapeutic utility of certain endothelin receptor antagonists. The present review examines the possibility that endothelin-1 release caused by exposure to PM directly modulates extravascular effects on the heart, deleteriously altering cardiac function.


Asunto(s)
Endotelina-1/metabolismo , Cardiopatías/inducido químicamente , Miocardio/metabolismo , Material Particulado/efectos adversos , Animales , Cardiotoxicidad , Antagonistas de los Receptores de Endotelina/uso terapéutico , Endotelina-1/antagonistas & inhibidores , Exposición a Riesgos Ambientales/efectos adversos , Cardiopatías/tratamiento farmacológico , Cardiopatías/metabolismo , Cardiopatías/fisiopatología , Humanos , Transducción de Señal
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