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1.
Front Nutr ; 11: 1360299, 2024.
Article in English | MEDLINE | ID: mdl-38685953

ABSTRACT

The piquin chili is a wild spice widely consumed from the South United States to Central America and stands out as a source of flavonoids, essential metabolites with antioxidant properties. The concentrations of flavonoids, carotenoids, and capsaicinoids vary according to regions, maturity stages, and ripening processes. These compounds, which are known for their health benefits and industrial applications, highlight the importance of identifying ideal environmental conditions for collecting fruits with the highest contents. Comprehensive studies of the piquin chili are essential for understanding its properties for the benefit of consumers. This approach fortifies trade, contributes to resource conservation, and advances cultivated chili production.

2.
Environ Sci Pollut Res Int ; 31(21): 30497-30508, 2024 May.
Article in English | MEDLINE | ID: mdl-38607492

ABSTRACT

Detergents are highly produced pollutants with environmental problems like foam generation and toxic effects in biota. Nonylphenol ethoxylates (NPEs) are efficient, economical, and versatile surfactants, used in detergents for more than 40 years due to their detergency capacity. In the environment, NPE biodegrades into the metabolite nonylphenol (NP), classified as an endocrine disruptor. The identification and quantification of 4-NP in a designed detergent and 30 commercially available detergents were performed to prove the degradation of NPE into 4-NP during storage time. This investigation introduces the first evidence of NPE degradation during storage in commercially available detergents, demonstrating a novel exposure pathway in humans that has not been explored before, representing potential human health risks. Therefore, simple, easy, low-cost, and available approaches to remove and substitute NP is paramount. Alkyl polyglucoside (APG) was assessed as a substitute, and the feasibility of this substitution was proven according to physical and chemical properties, cleaning performance, and antimicrobial properties. NPE substitution in detergents is demonstrated as a viable strategy to minimize exposure risks in humans and the environment.


Subject(s)
Detergents , Detergents/chemistry , Ethylene Glycols/chemistry , Phenols , Surface-Active Agents/chemistry , Humans , Endocrine Disruptors/analysis
3.
Environ Sci Pollut Res Int ; 31(7): 10911-10919, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38214861

ABSTRACT

Persistent organic pollutants (POPs) are chemical substances widely distributed in the environment by the runoff from anthropic activities and can be distributed and bioaccumulated or biomagnified in the environment, affecting the health of organisms. The sea turtle, Lepidochelys olivacea, is a long-lived organism, with migratory habits and feeding behaviors that allow exposure to various pollutants. This work aimed to determine long-term exposure to POPs in adult olive ridley turtles (L. olivacea), sampled during the nesting season, in "La Escobilla" Sanctuary. Blood samples were collected and processed to obtain plasma. The quantification of POPs in blood was carried out with an extraction technique with a focused ultrasound probe. Twenty-seven POP analytes were determined. The concentrations of hexachlorocyclohexane, endosulfan isomers, dichlorodiphenyltrichloroethane, total polychlorinated biphenyls, and the total sum of POPs found in plasma are higher than those reported in other studies, which reported effects such as hematological and biochemical changes in blood, changes in immune system cells and enzymatic activity related to oxidative stress. These results are important to demonstrate the chronic exposure to POPs in olive ridley turtles in marine ecosystems and to highlight the importance of assessing the associated health risks, considering that these contaminants could be transferred to the offspring and affect future generations of this reptile. It is important to carry out studies that develop conservation strategies for the olive ridley turtle. Also, it is necessary to control the emissions of pollutants into the atmosphere, as well as reduce urban, agricultural, and industrial waste in the environment and marine ecosystems.


Subject(s)
Environmental Pollutants , Olea , Turtles , Animals , Persistent Organic Pollutants , Ecosystem , Mexico
4.
Environ Res ; 246: 118162, 2024 Apr 01.
Article in English | MEDLINE | ID: mdl-38218517

ABSTRACT

This study investigated the application of adsorption with activated carbons (ACs) and photodegradation to reduce the concentration of triclosan (TCS) in aqueous solutions. Concerning adsorption, ACs (Darco, Norit, and F400) were characterised and batch experiments were performed to elucidate the effect of pH on equilibrium. The results showed that at pH = 7, the maximum adsorption capacity of TCS onto the ACs was 18.5 mg g-1 for Darco, 16.0 mg g-1 for Norit, and 15.5 mg g-1 for F400. The diffusional kinetic model allowed an adequate interpretation of the experimental data. The effective diffusivity varied and increased with the amount of TCS adsorbed, from 1.06 to 1.68 × 10-8 cm2 s-1. In the case of photodegradation, it was possible to ensure that the triclosan molecule was sensitive to UV light of 254 nm because the removal was over 80 % using UV light. The removal of TCS increased in the presence of sulfate radicals. It was possible to identify 2,4-dichlorophenol as one of the photolytic degradation products of triclosan, which does not represent an environmental hazard at low concentrations of triclosan in water. These results confirm that the use of AC Darco, Norit, and F400 and that photodegradation processes with UV light and persulfate radicals are effective in removing TCS from water, reaching concentration levels that do not constitute a risk to human health or environmental hazard. Both methods effectively eliminate pollutants with relatively easy techniques to implement.


Subject(s)
Triclosan , Water Pollutants, Chemical , Humans , Triclosan/chemistry , Charcoal/chemistry , Adsorption , Photolysis , Water , Water Pollutants, Chemical/analysis
5.
PLoS One ; 19(1): e0294494, 2024.
Article in English | MEDLINE | ID: mdl-38170702

ABSTRACT

Establishing the infant's gut microbiota has long-term implications on health and immunity. Breastfeeding is recognized as the best practice of infant nutrition in comparison with formula feeding. We evaluated the effects of the primary feeding practices by analyzing the infant growth and the potential association with gut diseases. A cross-sectional and observational study was designed. This study included 55 mothers with infants, who were divided according to their feeding practices in breastfeeding (BF), formula feeding (FF), and combined breast and formula feeding (CF). Anthropometric measurements of the participants were recorded. Additionally, non-invasive fecal samples from the infants were collected to analyze the microbiota by sequencing, immunoglobulin A (IgA) concentration (ELISA), and volatile organic compounds (gas chromatography with an electronic nose). Results showed that the microbiota diversity in the BF group was the highest compared to the other two groups. The IgA levels in the BF group were twice as high as those in the FF group. Moreover, the child´s growth in the BF group showed the best infant development when the data were compared at birth to the recollection time, as noted by the correlation with a decreased concentration of toxic volatile organic compounds. Interestingly, the CF group showed a significant difference in health status when the data were compared with the FF group. We conclude that early health practices influence children's growth, which is relevant to further research about how those infants' health evolved.


Subject(s)
Gastrointestinal Microbiome , Volatile Organic Compounds , Infant, Newborn , Infant , Female , Child , Humans , Cross-Sectional Studies , Breast Feeding , Immunoglobulin A , Infant Formula
6.
Chemosphere ; 351: 141216, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38224748

ABSTRACT

Sulfamethoxazole and metronidazole are emerging pollutants commonly found in surface water and wastewater. These compounds have a significant environmental impact, being necessary in the design of technologies for their removal. Recently, the advanced oxidation process has been proven successful in the elimination of this kind of compounds. In this sense, the present work discusses the application of UV/H2O2 and ozonation for the degradation of both molecules in single and binary systems. Experimental kinetic data from O3 and UV/H2O2 process were adequately described by a first and second kinetic model, respectively. From the ANOVA analysis, it was determined that the most statistically significant variables were the initial concentration of the drugs (0.03 mmol L-1) and the pH = 8 for UV/H2O2 system, and only the pH (optimal value of 6) was significant for degradation with O3. Results showed that both molecules were eliminated with high degradation efficiencies (88-94% for UV/H2O2 and 79-98% for O3) in short reaction times (around 30-90 min). The modeling was performed using a quadratic regression model through response surface methodology representing adequately 90 % of the experimental data. On the other hand, an artificial neural network was used to evaluate a non-linear multi-variable system, a 98% of fit between the model and experimental data was obtained. The identification of degradation byproducts was performed by high-performance liquid chromatography coupled to a time mass detector. After each process, at least four to five stable byproducts were found in the treated water, reducing the mineralization percentage to 20% for both molecules.


Subject(s)
Ozone , Water Pollutants, Chemical , Water Purification , Artificial Intelligence , Hydrogen Peroxide/chemistry , Water Quality , Ultraviolet Rays , Oxidation-Reduction , Pharmaceutical Preparations , Water Pollutants, Chemical/analysis , Water Purification/methods , Ozone/chemistry
7.
Eur J Pharm Biopharm ; 195: 114178, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38195049

ABSTRACT

The aim of this study was the molecular imprinting polymers (MIPs) assessment as a controlled release system of ciprofloxacin. The MIPs synthesis was performed by three different methods: emulsion, bulk, and co-precipitation. Lactic acid (LA) and methacrylic acid (MA) were used as functional monomers and ethylene glycol dimethacrylate as crosslinker. Also, nonimprinted polymers (NIPs) were synthesized. MIPs and NIPs were characterized by scanning electron microscopy, Fourier Transform Infrared Reflection, specific surface area, pore size, and release kinetics. Their efficiency against Staphylococcus aureus and Escherichia coli, and their cytotoxicity in dermal fibroblast cells were proven. Results show that MIPs are mesoporous materials with a pore size between 10 and 20 nm. A higher adsorption with the co-precipitation MIP with MA as a monomer was found. The release kinetics proved that a non-Fickian process occurred and that the co-precipitation MIP with LA presented the highest release rate (90.51 mg/L) in 8 h. The minimum inhibitory concentration was found between 0.031 and 0.016 mg/L for Staphylococcus aureus and between 0.004 and 0.031 mg/L for the Escherichia coli. No cytotoxicity in cellular cultures was found; also, cellular growth was favored. This study demonstrated that MIPs present promising properties for drug administration and their application in clinical practice.


Subject(s)
Methacrylates , Molecular Imprinting , Molecularly Imprinted Polymers , Delayed-Action Preparations , Ciprofloxacin/pharmacology , Polymers , Molecular Imprinting/methods , Escherichia coli , Adsorption
8.
PLoS One ; 18(12): e0294627, 2023.
Article in English | MEDLINE | ID: mdl-38117821

ABSTRACT

This study determined the effect of dietary calcium propionate (CaPr) as a source of energy supplementation during the First Half of Gestation (FMG), the Second Half of Gestation (SMG), and during All Gestation (AG), on offspring post-weaning growth performance, meat quality, and meat metabolomic profile. Thirty-one pregnant ewes were assigned to one of four treatments: a) supplementation of 30 gd-1 of CaPr during the first half of gestation (day 1 to day 75, n = 8) (FMG); b) supplementation of 30 gd-1 of CaPr during the second half of gestation (day 76 to day 150, n = 8) (SMG); c) supplementation of 30 gd-1 of CaPr during all gestation (AG, n = 8); d) no CaPr supplementation (control; CS, n = 7). The ewes were ad libitum fed a basal diet based on oat hay and corn silage. Ewes were distributed in a completely randomized unbalanced design to four treatments. The FMG group had lower (P ≤ 0.05) birth weight and weaning weight than the CS group. However, the average daily gain was similar across all treatments. Empty body weight and FMG had lower values (P ≤ 0.05) than the other groups. Both FMG and AG had lower hot carcass weight (P ≤ 0.05) compared to CS, while CaPr treatments resulted in reduced hot carcass yield (P ≤ 0.05). Meat color and texture were similar among treatments. A principal component analysis between gestation stages showed a trend for separating CS and FMG from SMG and AG, and that was explained by 93.7% of the data variability (PC1 = 87.9% and PC2 = 5.8%). Regarding meat metabolomic profile, 23 compounds were positively correlated between all treatments. Only 2 were negatively correlated (eicosane and naphthalene 1,2,3); but tetradecanoic acid, hexadecane, undecane 5-methyl, (-)-alpha, hexadecenoic acid, octadecanoic acid, and octadecane had a highly significant correlation (P ≤ 0.05). Overall, dam supplementation with CaPr during different periods of gestation provoked changes in meat metabolites related to the biosynthesis of fatty acids in lambs without negative changes in lamb's growth performance and carcass quality.


Subject(s)
Diet , Meat , Animals , Female , Pregnancy , Animal Feed/analysis , Diet/veterinary , Dietary Supplements , Propionates/pharmacology , Sheep
9.
Environ Toxicol Pharmacol ; 103: 104280, 2023 Oct.
Article in English | MEDLINE | ID: mdl-37741478

ABSTRACT

In this study, we captured cane toads (Rhinella marina) in four sites located in different regions affected by anthropogenic activities in Mexico. Subsequently we analyzed liver tissue for the presence of organochlorine pesticides (OCs) and polychlorinated biphenyls (PCBs) The levels of these POPs in the toads' livers ranged from 863.2 to 3109.6 ng/g of lipid weight across all sites. A multivariate statistical analysis highlighted two sites with the highest POPs levels, with the most polluted site displaying a high level of PCBs, suggesting influence of industrial activities. The second most polluted site displayed significant amounts of OCs, linking this location to agricultural activity. Additionally, we found pesticide metabolites and isomers that allowed us to distinguish past and recent exposure events. Our observations indicate that R. marina is suitable bioindicator of sites impacted by anthropogenic activities.

10.
Environ Sci Pollut Res Int ; 30(39): 90741-90756, 2023 Aug.
Article in English | MEDLINE | ID: mdl-37462867

ABSTRACT

Water pollution is a current global concern caused by emerging pollutants like nonylphenol (NP). This endocrine disruptor cannot be efficiently removed with traditional wastewater treatment plants (WTPs). Therefore, this work aimed to evaluate the adsorption influence of molecularly imprinted polymers (MIPs) on the oxidative degradation (ozone and ultraviolet irradiations) of 4-nonylphenol (4-NP) and its by-products as a coadjuvant in WTPs. MIPs were synthesized and characterized; the effect of the degradation rate under system operating conditions was studied by Box-Behnken response surface design of experiments. The variables evaluated were 4-NP concentration, ozone exposure time, pH, and MIP amount. Results show that the MIPs synthesized by co-precipitation and bulk polymerizations obtained the highest retention rates (> 90%). The maximum adsorption capacities for 4-NP were 201.1 mg L-1 and 500 mg L-1, respectively. The degradation percentages under O3 and UV conditions reached 98-100% at 120 s of exposure at different pHs. The degradation products of 4-NP were compounds with carboxylic and ketonic acids, and the MIP adsorption was between 50 and 60%. Our results present the first application of MIPs in oxidation processes for 4-NP, representing starting points for the use of highly selective materials to identify and remove emerging pollutants and their degradation by-products in environmental matrices.


Subject(s)
Environmental Pollutants , Molecular Imprinting , Ozone , Molecularly Imprinted Polymers , Molecular Imprinting/methods , Polymers/chemistry , Oxidative Stress , Adsorption
12.
Rev Panam Salud Publica ; 47: e29, 2023.
Article in Spanish | MEDLINE | ID: mdl-36909806

ABSTRACT

Humanitarian crises can occur in places affected by chemical, physical, biological, and social threats, especially when these threats interact with each other and cause a syndemic. In order to avoid crises in these places, it is necessary to introduce mitigation measures that we have framed as "humanitarian scenarios". Due to their nature, implementation of these interventions requires the creation of multidisciplinary operational groups with a work strategy that integrates them into the affected community. In the case of the child population, the operational group was called the 'childhood risks in contaminated places' (CRCP) unit; contaminated places meaning localities impacted by chemical, physical, or biological threats. The strategy has six phases: (i) planning the survey and site visit; (ii) community involvement in identifying threats, vulnerabilities, and routes of exposure (the path of pollutants from their source to the receiving population), and in preparing joint work for the subsequent phases; iii) prioritization of risks identified through environmental monitoring and use of biomarkers of exposure and effects; iv) risk prevention through the creation of various 'capacities and alternatives for the prevention of syndemic threats'; (v) advocacy to implement these capacities and alternatives through risk communication and local training; and (vi) protection through measures that include telehealth, social progress, and innovation to improve health coverage. The strategy has been implemented in different contexts, and in some of them it has been enriched by analysis of respect for human rights.


Crises humanitárias podem ocorrer em locais afetados por ameaças químicas, físicas, biológicas e sociais, principalmente quando essas ameaças interagem entre si e causam uma sindemia. Para evitar as crises, é necessário introduzir nesses locais medidas de mitigação que enquadramos no termo "cenários humanitários". Por sua natureza, a implementação de tais ações de intervenção exige a formação de grupos operacionais multidisciplinares e de uma estratégia de trabalho que permita integrá-los à comunidade afetada. No caso da população infantil, o grupo operacional recebeu o nome de Unidade de Riscos Infantis em Áreas Contaminadas (na sigla em espanhol, RISC), ou seja, em locais impactados por ameaças químicas, físicas ou biológicas. A estratégia consiste nas seis fases a seguir: i) planejamento para o estudo e visita ao local; ii) participação da comunidade para identificar ameaças, vulnerabilidades e rotas de exposição (caminho que os contaminantes devem seguir desde a sua fonte até a população receptora), bem como para o trabalho conjunto nas fases seguintes; iii) priorização dos riscos identificados por meio do monitoramento ambiental e uso de biomarcadores de exposição e efeitos; iv) prevenção de riscos por meio da criação de diversas capacidades e alternativas para a prevenção diante de ameaças sindêmicas (CAPAS); v) promoção da implantação das CAPAS por meio da comunicação de riscos e capacitação local; e vi) proteção com medidas que incluem propostas de telessaúde, progresso social e inovação para melhorar a cobertura de saúde. A estratégia foi aplicada em diferentes contextos, em alguns dos quais foi enriquecida com uma análise do respeito pelos direitos humanos.

13.
Rev Panam Salud Publica ; 47, 2023. Centros Colaboradores de la OPS/OMS
Article in Spanish | PAHO-IRIS | ID: phr-57146

ABSTRACT

[RESUMEN]. Las crisis humanitarias pueden presentarse en sitios afectados por amenazas químicas, físicas, biológicas y sociales, sobre todo cuando estas amenazas interaccionan entre sí y causan una sindemia. A fin de evitar las crisis, en estos sitios se hace necesario introducir medidas de mitigación que hemos enmarcado bajo el término de “escenarios humanitarios”. Debido a su naturaleza, la implementación de dichas acciones de intervención requiere de la conformación de grupos operativos multidisciplinarios y de una estrategia de trabajo que permita integrarlos con la comunidad afectada. En el caso de la población infantil, el grupo ope- rativo recibió el nombre de unidad de riesgos infantiles en sitios contaminados (RISC), es decir, en localidades impactadas por amenazas químicas, físicas o biológicas. La estrategia consta de las siguientes seis fases: i) planificación para el estudio y la visita al sitio; ii) participación de la comunidad para identificar amena- zas, vulnerabilidades y rutas de exposición (el camino que deben seguir los contaminantes desde su fuente hasta la población receptora), así como para el trabajo conjunto en las siguientes fases; iii) priorización de riesgos identificados mediante el monitoreo ambiental y uso de biomarcadores de exposición y efectos; iv) prevención de riesgos a través de la creación de diversas capacidades y alternativas para la prevención ante amenazas sindémicas (CAPAS); v) promoción para implementar las CAPAS mediante la comunicación de riesgos y la capacitación local; y vi) protección con medidas que incluyen propuestas de telesalud, progreso social e innovación para mejorar la cobertura sanitaria. La estrategia ha sido aplicada en diferentes contextos, en algunos de los cuales, ha sido enriquecida con el análisis del respeto de los derechos humanos.


[ABSTRACT]. Humanitarian crises can occur in places affected by chemical, physical, biological, and social threats, espe- cially when these threats interact with each other and cause a syndemic. In order to avoid crises in these places, it is necessary to introduce mitigation measures that we have framed as "humanitarian scenarios". Due to their nature, implementation of these interventions requires the creation of multidisciplinary operational groups with a work strategy that integrates them into the affected community. In the case of the child popula- tion, the operational group was called the ‘childhood risks in contaminated places’ (CRCP) unit; contaminated places meaning localities impacted by chemical, physical, or biological threats. The strategy has six phases: (i) planning the survey and site visit; (ii) community involvement in identifying threats, vulnerabilities, and routes of exposure (the path of pollutants from their source to the receiving population), and in preparing joint work for the subsequent phases; iii) prioritization of risks identified through environmental monitoring and use of bio- markers of exposure and effects; iv) risk prevention through the creation of various ‘capacities and alternatives for the prevention of syndemic threats’; (v) advocacy to implement these capacities and alternatives through risk communication and local training; and (vi) protection through measures that include telehealth, social pro- gress, and innovation to improve health coverage. The strategy has been implemented in different contexts, and in some of them it has been enriched by analysis of respect for human rights.


[RESUMO]. Crises humanitárias podem ocorrer em locais afetados por ameaças químicas, físicas, biológicas e sociais, principalmente quando essas ameaças interagem entre si e causam uma sindemia. Para evitar as crises, é necessário introduzir nesses locais medidas de mitigação que enquadramos no termo “cenários huma- nitários”. Por sua natureza, a implementação de tais ações de intervenção exige a formação de grupos operacionais multidisciplinares e de uma estratégia de trabalho que permita integrá-los à comunidade afe- tada. No caso da população infantil, o grupo operacional recebeu o nome de Unidade de Riscos Infantis em Áreas Contaminadas (na sigla em espanhol, RISC), ou seja, em locais impactados por ameaças químicas, físicas ou biológicas. A estratégia consiste nas seis fases a seguir: i) planejamento para o estudo e visita ao local; ii) participação da comunidade para identificar ameaças, vulnerabilidades e rotas de exposição (caminho que os contaminantes devem seguir desde a sua fonte até a população receptora), bem como para o trabalho conjunto nas fases seguintes; iii) priorização dos riscos identificados por meio do monitoramento ambiental e uso de biomarcadores de exposição e efeitos; iv) prevenção de riscos por meio da criação de diversas capacidades e alternativas para a prevenção diante de ameaças sindêmicas (CAPAS); v) promoção da implantação das CAPAS por meio da comunicação de riscos e capacitação local; e vi) proteção com medi- das que incluem propostas de telessaúde, progresso social e inovação para melhorar a cobertura de saúde. A estratégia foi aplicada em diferentes contextos, em alguns dos quais foi enriquecida com uma análise do respeito pelos direitos humanos.


Subject(s)
Child Health , Chemical Contamination , Risk Assessment , Right to Health , Social Vulnerability , Child Health , Air Pollution , Right to Health , Social Vulnerability , Child Health , Air Pollution , Risk Assessment , Right to Health , Social Vulnerability
14.
Article in English | MEDLINE | ID: mdl-36767922

ABSTRACT

Sargassum algae has become a major environmental issue due to its abundance in the Pacific Ocean with hundreds of tons reaching the beaches of the Mexican Caribbean every year. This generates large quantities of decomposing organic matter that have a negative impact on the region's economy and ecosystems. Sargassum valorization has turned out to be a fundamental aspect to mitigate its environmental impact. This study proposes the use and application of untreated Sargassum biomass for the decontamination of waters polluted with lead (Pb) and cadmium (Cd) through single and binary adsorption tests. Physicochemical and textural properties examined by SEM, XRD, and FT-IR elucidated that Sargassum biomass is viable to be used as a potential environmental benign adsorbent, exhibiting Cd(II) and Pb(II) adsorption capacities as high as 240 mg g-1 and 350 mg g-1, respectively, outperforming conventionally used adsorbents. This is attributed to its morphology, favorable surface charge distribution, and the presence of -OH and -COH groups. A strong affinity between the biomass and metal pollutants was evidenced by a thermodynamics study, showing a spontaneous and endothermic process. This work sets a practical route for the utilization of the Sargassum biomass, demonstrating its applicability as a potential material for heavy-metal-polluted water remediation, making a substantial contribution to a circular economy system.


Subject(s)
Metals, Heavy , Sargassum , Water Pollutants, Chemical , Cadmium , Biomass , Ecosystem , Spectroscopy, Fourier Transform Infrared , Lead , Metals, Heavy/chemistry , Adsorption , Water Pollutants, Chemical/chemistry
15.
Talanta ; 256: 124299, 2023 May 01.
Article in English | MEDLINE | ID: mdl-36696734

ABSTRACT

The objective of this work was to evaluate the use of an electronic nose and chemometric analysis to discriminate global patterns of volatile organic compounds (VOCs) in breath of postCOVID syndrome patients with pulmonary sequelae. A cross-sectional study was performed in two groups, the group 1 were subjects recovered from COVID-19 without lung damage and the group 2 were subjects recovered from COVID-19 with impaired lung function. The VOCs analysis was executed using a Cyranose 320 electronic nose with 32 sensors, applying principal component analysis (PCA), Partial Least Square-Discriminant Analysis, random forest, canonical discriminant analysis (CAP) and the diagnostic power of the test was evaluated using the ROC (Receiver Operating Characteristic) curve. A total of 228 participants were obtained, for the postCOVID group there are 157 and 71 for the control group, the chemometric analysis results indicate in the PCA an 84% explanation of the variability between the groups, the PLS-DA indicates an observable separation between the groups and 10 sensors related to this separation, by random forest, a classification error was obtained for the control group of 0.090 and for the postCOVID group of 0.088 correct classification. The CAP model showed 83.8% of correct classification and the external validation of the model showed 80.1% of correct classification. Sensitivity and specificity reached 88.9% (73.9%-96.9%) and 96.9% (83.7%-99.9%) respectively. It is considered that this technology can be used to establish the starting point in the evaluation of lung damage in postCOVID patients with pulmonary sequelae.


Subject(s)
COVID-19 , Volatile Organic Compounds , Humans , Cross-Sectional Studies , Breath Tests/methods , COVID-19/diagnosis , Lung/chemistry , Sensitivity and Specificity , Exhalation , Electronic Nose , Volatile Organic Compounds/analysis
16.
ASAIO J ; 69(1): 122-126, 2023 01 01.
Article in English | MEDLINE | ID: mdl-35471245

ABSTRACT

Both overfeeding and underfeeding critically ill children are problematic. This prospective pilot study evaluated the resting energy expenditure in infants and children requiring extracorporeal membrane oxygenation (ECMO) support. An indirect calorimeter was used to measure oxygen consumption (VO 2 ) and carbon dioxide production (VCO 2 ) from the mechanical ventilator. Blood gases were used to determine VO 2 and VCO 2 from the ECMO circuit. Values from the mechanical ventilator and ECMO circuit were added, and the resting energy expenditure (REE) (Kcal/kg/day) was calculated. Measurements were obtained > 24 hours after ECMO support was initiated (day 2 of ECMO), 1 day before ECMO discontinuation or transfer, and 1 day after decannulation. Data were compared with the predicted energy expenditure. Seven patients aged 3 months to 13 years were included. The REE varied greatly both above and below predicted values, from 26 to 154 KCal/kg/day on day 2 of ECMO support. In patients with septic shock, the REE was > 300% above the predicted value on day 2 of ECMO. Before ECMO discontinuation, two of six (33%) children continued to have a REE > 110% of predicted. Three patients had measurements after decannulation, all with a REE < 90% of predicted. REE measurements can be obtained by indirect calorimetry in children receiving ECMO support. ECMO may not provide metabolic rest for all children as a wide variation in REE was observed. For optimal care, individual testing should be considered to match calories provided with the metabolic demand.


Subject(s)
Extracorporeal Membrane Oxygenation , Infant , Humans , Child , Pilot Projects , Prospective Studies , Carbon Dioxide/metabolism , Critical Illness , Energy Metabolism
17.
Environ Sci Pollut Res Int ; 30(8): 21033-21042, 2023 Feb.
Article in English | MEDLINE | ID: mdl-36264455

ABSTRACT

Environmental pollutants are involved in the development and progression of numerous cancers, including cervical cancer (CC). One possible explanation for this is the ability of several pollutants to mimic natural hormones. This study aimed to evaluate the urinary concentrations of monoesters of phthalates and bisphenol A (BPA) in women with CC. A total of 45 women were included: 15 in the control group, 12 with CC diagnosis classified in early stages IA-IIB, and 18 in late stages III-IV. Urine samples were analyzed for BPA, mono-isobutyl phthalate (MiBP), mono-n-butyl phthalate (MBP), monobenzyl phthalate (MBzP), and mono 2-ethylhexyl phthalate (MEHP) using high-performance liquid chromatography coupled to a tandem mass detector. The detection rate of environmental pollutants was 100%, with a median concentration in the control group and early-, and late-stage groups of 10.4, 9.2, 4.3, 38.4, and 12.9 µg L-1; 3.1, 3.1, 151.1, 54.5, and 30.4 µg L-1 and 1.9, 92.8, 3.6, 31.0, and 9.3 µg L-1 for BPA, MEHP, MBzP, MBP, and MiBP, respectively This study reveals high levels of phthalates, particularly MEHP, in urine samples of women with CC associated with human papillomavirus (HPV) infection. Further studies are needed to evaluate the possible role of phthalates in synergy with HPV in progression to CC.


Subject(s)
Environmental Pollutants , Papillomavirus Infections , Phthalic Acids , Uterine Cervical Neoplasms , Humans , Female , Phthalic Acids/metabolism , Environmental Pollutants/metabolism , Environmental Exposure/analysis
18.
Environ Sci Pollut Res Int ; 30(5): 13270-13282, 2023 Jan.
Article in English | MEDLINE | ID: mdl-36129651

ABSTRACT

Brick production causes a lot of pollution in the form of dust, fumes, and toxic substances. Therefore, brick workers are highly exposed to pollutants and present a high risk of developing respiratory diseases. The objective of this research was to determine the exposure to polycyclic aromatic hydrocarbons (PAHs) and toluene in urine and evaluate the effects on health using markers of oxidative stress in exhaled breath condensate (EBC) as well as the exposure to pollutants in suspended particles of the studied area. Exposure to PAHs and toluene was evaluated using hydroxylated markers (OH) of PAHs and hippuric acid in urine, respectively. Cytokines like TNF-α, INF-y, IL-2, IL-4, IL-6, IL-8, IL-10 y GMCSF in EBC were also evaluated. PM2.5 particles were measured during an 8-h work shift. The results in brick workers presented a total OH-PAHs concentration of 97.3 µg/L and hippuric acid concentration of 0.2 g/L. The environmental concentrations of suspended particles were found within a range of 41.67-3541.6 µg/m3. The median of cytokines oscillated between 11.8 pg/mL to 1041 pg/mL. In conclusion, these results are similar to those of occupations in which there is high exposure to pollutants and populations with lung diseases. For that reason, the brick production sector requires prevention and control strategies against the pollutants emitted.


Subject(s)
Environmental Pollutants , Occupational Exposure , Polycyclic Aromatic Hydrocarbons , Humans , Occupational Exposure/analysis , Cytokines , Polycyclic Aromatic Hydrocarbons/analysis , Toluene , Biomarkers/urine
19.
Rev. panam. salud pública ; 47: e29, 2023. tab, graf
Article in Spanish | LILACS | ID: biblio-1424258

ABSTRACT

RESUMEN Las crisis humanitarias pueden presentarse en sitios afectados por amenazas químicas, físicas, biológicas y sociales, sobre todo cuando estas amenazas interaccionan entre sí y causan una sindemia. A fin de evitar las crisis, en estos sitios se hace necesario introducir medidas de mitigación que hemos enmarcado bajo el término de "escenarios humanitarios". Debido a su naturaleza, la implementación de dichas acciones de intervención requiere de la conformación de grupos operativos multidisciplinarios y de una estrategia de trabajo que permita integrarlos con la comunidad afectada. En el caso de la población infantil, el grupo operativo recibió el nombre de unidad de riesgos infantiles en sitios contaminados (RISC), es decir, en localidades impactadas por amenazas químicas, físicas o biológicas. La estrategia consta de las siguientes seis fases: i) planificación para el estudio y la visita al sitio; ii) participación de la comunidad para identificar amenazas, vulnerabilidades y rutas de exposición (el camino que deben seguir los contaminantes desde su fuente hasta la población receptora), así como para el trabajo conjunto en las siguientes fases; iii) priorización de riesgos identificados mediante el monitoreo ambiental y uso de biomarcadores de exposición y efectos; iv) prevención de riesgos a través de la creación de diversas capacidades y alternativas para la prevención ante amenazas sindémicas (CAPAS); v) promoción para implementar las CAPAS mediante la comunicación de riesgos y la capacitación local; y vi) protección con medidas que incluyen propuestas de telesalud, progreso social e innovación para mejorar la cobertura sanitaria. La estrategia ha sido aplicada en diferentes contextos, en algunos de los cuales, ha sido enriquecida con el análisis del respeto de los derechos humanos.


ABSTRACT Humanitarian crises can occur in places affected by chemical, physical, biological, and social threats, especially when these threats interact with each other and cause a syndemic. In order to avoid crises in these places, it is necessary to introduce mitigation measures that we have framed as "humanitarian scenarios". Due to their nature, implementation of these interventions requires the creation of multidisciplinary operational groups with a work strategy that integrates them into the affected community. In the case of the child population, the operational group was called the 'childhood risks in contaminated places' (CRCP) unit; contaminated places meaning localities impacted by chemical, physical, or biological threats. The strategy has six phases: (i) planning the survey and site visit; (ii) community involvement in identifying threats, vulnerabilities, and routes of exposure (the path of pollutants from their source to the receiving population), and in preparing joint work for the subsequent phases; iii) prioritization of risks identified through environmental monitoring and use of biomarkers of exposure and effects; iv) risk prevention through the creation of various 'capacities and alternatives for the prevention of syndemic threats'; (v) advocacy to implement these capacities and alternatives through risk communication and local training; and (vi) protection through measures that include telehealth, social progress, and innovation to improve health coverage. The strategy has been implemented in different contexts, and in some of them it has been enriched by analysis of respect for human rights.


RESUMO Crises humanitárias podem ocorrer em locais afetados por ameaças químicas, físicas, biológicas e sociais, principalmente quando essas ameaças interagem entre si e causam uma sindemia. Para evitar as crises, é necessário introduzir nesses locais medidas de mitigação que enquadramos no termo "cenários humanitários". Por sua natureza, a implementação de tais ações de intervenção exige a formação de grupos operacionais multidisciplinares e de uma estratégia de trabalho que permita integrá-los à comunidade afetada. No caso da população infantil, o grupo operacional recebeu o nome de Unidade de Riscos Infantis em Áreas Contaminadas (na sigla em espanhol, RISC), ou seja, em locais impactados por ameaças químicas, físicas ou biológicas. A estratégia consiste nas seis fases a seguir: i) planejamento para o estudo e visita ao local; ii) participação da comunidade para identificar ameaças, vulnerabilidades e rotas de exposição (caminho que os contaminantes devem seguir desde a sua fonte até a população receptora), bem como para o trabalho conjunto nas fases seguintes; iii) priorização dos riscos identificados por meio do monitoramento ambiental e uso de biomarcadores de exposição e efeitos; iv) prevenção de riscos por meio da criação de diversas capacidades e alternativas para a prevenção diante de ameaças sindêmicas (CAPAS); v) promoção da implantação das CAPAS por meio da comunicação de riscos e capacitação local; e vi) proteção com medidas que incluem propostas de telessaúde, progresso social e inovação para melhorar a cobertura de saúde. A estratégia foi aplicada em diferentes contextos, em alguns dos quais foi enriquecida com uma análise do respeito pelos direitos humanos.


Subject(s)
Humans , Child , Relief Work , Child Welfare , Disaster Vulnerability , Environmental Pollutants , Syndemic , Right to Health
20.
Acta toxicol. argent ; 30(3): 6-6, dic. 2022. graf
Article in Spanish | LILACS | ID: biblio-1447118

ABSTRACT

Resumen El sector ladrillero se caracteriza por la elaboración del ladrillo de forma artesanal donde utilizan técnicas rudimentarias, hornos de baja tecnología y diversos combustibles de poca calidad generando humos negros con gran cantidad de contaminantes. Por lo que el objetivo de este estudio fue caracterizar los metales en suelo, HAPs en aire y biomonitoreo de HAPs en trabajadores de la zona ladrillera "Las Terceras" San Luis Potosí, México. Con el fin de conocer la exposición laboral se determinó la concentración de HAPs en partículas PM10, se caracterizó el suelo de la zona de trabajo y se realizó un biomonitoreo de me-tabolitos hidroxilados HAPs (OH-HAPs) en orina de los trabajadores. En aire se encontraron 14 de los 16 HAPs prioritarios por la Agencia de Protección Ambiental en la fracción de PM10, con una concentración media de 5293,05 gg/m3 (3,11-10510,81). Los resultados del análisis químico de los polvos mostraron que están constituidos principalmente de cuarzo (SiO2) y arcillas (SiAlOx) con presencia de óxidos de Fe-Ti, fosfatos de tierras raras (Lantano, Cerio, Neodimio Torio), silicatos de zirconio, sulfatos de bario, óxidos de zinc. En el biomonitoreo participaron 42 trabajadores ladrilleros, los resultados de la exposición a OH-HAPs en orina demostraron la media total de los OH-HAPs de 15,7 (6,92-195) ng/ml. Estos resultados muestran que el monitoreo ocupa-cional de las zonas ladrilleras es importante debido al escenario de riesgo y a las condiciones precarias de este trabajo, además de la alta exposición a contaminantes que afectan la salud de los trabajadores y sus familias, así como la propuesta de estrategias que ayuden a minimizar los impactos ambientales y prevenir los efectos en salud de las poblaciones.


Abstract The brick-making sector is characterized by artisanal brick production using rudimentary techniques, low-tech kilns and various low-quality fuels that generate black fumes with a large amount of pollutants. Therefore, the objective of this study was to characterize metals in soil, PAHs in air and biomonitoring of PAHs in workers of the "Las Terceras" brick area in San Luis Potosí, Mexico. In order to know the occupational exposure, the concentration of PAHs in PM10 particles was determined, the soil of the work area was characterized and a biomonitoring of hydroxylated PAH metabolites (OH-HAPs) in the urine of the workers was carried out. In air, 14 of the 16 PAHs prioritized by the Environmental Protection Agency were found in the PM10 fraction, with an average concentration of 5293.05 gg/m3 (3.11-10510.81). The results of the chemical analysis of the dusts showed that they are mainly constituted of quartz (SiO2) and clays (SiAlOx) with presence of Fe-Ti oxides, rare earth phosphates (Lanthanum, Cerium, Neodymium Thorium), zirconium silicates, barium sulfates, zinc oxides. The biomonitoring involved 42 brick workers, the results of OH-HAPs exposure in urine showed the mean total OH-HAPs of 15.7 (6.92-195) ng/ml. These results show that occupational moni-toring of brick-making areas is important due to the risk scenario and the precarious conditions of this work, in addition to the high exposure to pollutants that affect the health of workers and their families, as well as the proposal of strategies that help minimize environmental impacts and prevent health effects on populations.


Subject(s)
Humans , Polycyclic Aromatic Hydrocarbons/adverse effects , Phytoalexins/urine , Occupational Risks , Air Pollution/adverse effects , Mexico
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