835 research outputs found

    Emissions Reporting Maturity Model: supporting cities to leverage emissions-related processes through performance indicators and artificial intelligence

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    Climate change and global warming have been trending topics worldwide since the Eco-92 conference. However, little progress has been made in reducing greenhouse gases (GHGs). The problems and challenges related to emissions are complex and require a concerted and comprehensive effort to address them. Emissions reporting is a critical component of GHG reduction policy and is therefore the focus of this work. The main goal of this work is two-fold: (i) to propose an emission reporting evaluation model to leverage emissions reporting overall quality and (ii) to use artificial intelligence (AI) to support the initiatives that improve emissions reporting. Thus, this work presents an Emissions Reporting Maturity Model (ERMM) for examining, clustering, and analysing data from emissions reporting initiatives to help the cities to deal with climate change and global warming challenges. The Performance Indicator Development Process (PIDP) proposed in this work provides ways to leverage the quality of the available data necessary for the execution of the evaluations identified by the ERMM. Hence, the PIDP supports the preparation of the data from emissions-related databases, the classification of the data according to similarities highlighted by different clustering techniques, and the identification of performance indicator candidates, which are strengthened by a qualitative analysis of selected data samples. Thus, the main goal of ERRM is to evaluate and classify the cities regarding the emission reporting processes, pointing out the drawbacks and challenges faced by other cities from different contexts, and at the end to help them to leverage the underlying emissions-related processes and emissions mitigation initiatives

    Glycosylation with O-linked β-N-acetylglucosamine (O-GlcNAc) induces vascular dysfunction via production of superoxide anion/reactive oxygen species

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    Overproduction of superoxide anion (•O2-) and O-linked β-N-acetylglucosamine (O-GlcNAc)-modification in the vascular system are contributors to endothelial dysfunction. This study tested the hypothesis that increased levels of O-GlcNAc-modified proteins contribute to •O2- production via activation of NADPH oxidase, resulting in impaired vasodilation. Rat aortic segments and vascular smooth muscle cell (VSMCs) were incubated with vehicle (methanol) or PUGNAc (100 µM). PUGNAc produced a time-dependent increase in O-GlcNAc levels in VSMC and decreased endothelium-dependent relaxation, which was prevented by apocynin and Tiron, suggesting that •O2- contributes to endothelial dysfunction under augmented O-GlcNAc levels. Aortic segments incubated with PUGNAc also exhibited increased levels of ROS, assessed by dihydroethidium fluorescence, and augmented •O2- production, determined by lucigenin-enhanced chemiluminescence. Additionally, PUGNAc treatment increased Nox1 and Nox4 protein expression in aorta and VSMCs. Translocation of p47phox subunit from the cytosol to the membrane was greater in aortas incubated with PUGNAc. VSMCs displayed increased p22phox protein expression after PUGNAc incubation, suggesting that NADPH oxidase is activated in conditions where O-GlcNAc protein levels are increased. In conclusion, O-GlcNAc levels reduce endothelium-dependent relaxation by overproduction of •O2- via activation of NADPH oxidase. This may represent an additional mechanism by which augmented O-GlcNAc levels impair vascular function

    Adsorptive potential of Zn–Al and Mg–Fe layered double hydroxides for the removal of 2–nitrophenol from aqueous solutions

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    Two layered double hydroxides (LDH) of the type Zn–Al and Mg–Fe were synthesized, characterized and used as adsorbents to uptake 2–nitrophenol (2–NP) from aqueous solutions. XRD, FTIR, SEM, EDS, AFM and N2 adsorption/desorption curves were used to characterize the Zn–Al–LDH and Mg–Fe–LDH. The potential of both layered double hydroxides to adsorb 2–NP was investigated by adsorption kinetics, equilibrium, thermodynamics and consecutive adsorption/desorption cycles. The characterization indicated a high crystallinity degree and a well–organized and lamellar structure, confirming the efficiency of the synthesis. Elovich was the better kinetic model to describe the 2–NP adsorption onto Zn–Al–LDH, while Pseudo–second order was the best for Mg–Fe–LDH. For both LDHs, the adsorption equilibrium followed the Freundlich model. The process was endothermic, being the maximum adsorption capacities of 290 and 165 mg g–1 for Zn–Al–LDH and Mg–Fe–LDH, respectively. LDHs can be applied for five adsorption/desorption cycles with excellent adsorption capacities. It can be concluded that Zn–Al–LDH and Mg–Fe–LDH are promising materials to treat waters and wastewaters containing 2–nitropheno

    ALTERAÇÃO DE PARÂMETROS RELACIONADOS AO RISCO CARDIOVASCULAR EM ADOLESCENTES OBESOS

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    Introdução: A obesidade juvenil é considerada um problema de saúde pública e o aumento de sobrepeso e obesidade nesta fase está associado a complicações metabólicas e cardiovasculares na idade adulta1. Objetivo: Identificar alterações nos parâmetros antropométricos e bioquímicas em adolescentes obesos. Metodologia: Adolescentes (14-18 anos), de ambos os sexos, matriculados em escolas de Ensino Médio de Barra do Garças – MT foram divididos em grupos experimentais de acordo com o Índice de Massa corporal (IMC): eutróficos (IMC ˃18 e Ë‚25) e obesos (IMCË‚25)2. O IMC, circunferência abdominal, porcentagem de gordura corporal, pressão arterial, dosagens de colesterol total, triglicérides e glicemia foram avaliados em ambos grupos. Diferenças estatísticas foram calculadas através do teste T Student, (pË‚0,05). Resultados e discussões: Foram avaliados 89 adolescentes, sendo 74 eutróficos e 15 obesos. Os adolescentes obesos apresentaram aumento dos valores de pressão sistólica [(mmHg) 126 ± 3,7 vs. 116±1,7], circunferência abdominal [(cm) 87± 1,9 vs. 72 ± 0,6], porcentagem de gordura corporal [(%) 27±1,8 vs. 18 ± 0,7], IMC (27,1±0,7 vs. 21.0±0,2), quando comparados ao grupo eutrófico. Adicionalmente, os adolescentes obesos apresentaram aumento nos índices de colesterol total [(mg/dL) 160 ± 7,4 vs. 140 ± 3,8], triglicérides [(mg/dL) 106,6±14,4 vs. 64,0±3,8], se comparados ao grupo eutrófico. Tanto a pressão diastólica quanto os níveis glicêmicos não apresentaram alteração entre os grupos. Conclusões: As alterações de parâmetros antropométricos e bioquímicos observados em adolescentes obesos demonstram que fatores de risco para doenças cardiovasculares estão alterados nessa população jovem, favorecendo o surgimento precoce de doenças crônicas como Diabetes Mellitus e da hipertensão arterial

    STIM1/Orai1 contributes to sex differences in vascular responses to calcium in spontaneously hypertensive rats. Clin. Sci. (Lond

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    Sex differences in Ca 2 + -dependent signalling and homoeostasis in the vasculature of hypertensive rats are well characterized. However, sex-related differences in SOCE (store-operated Ca 2 + entry) have been minimally investigated. We hypothesized that vascular protection in females, compared with males, reflects decreased Ca 2 + mobilization due to diminished activation of Orai1/STIM1 (stromal interaction molecule 1). In addition, we investigated whether ovariectomy in females affects the activation of the Orai1/STIM1 pathway. Endothelium-denuded aortic rings from male and female SHRSP (stroke-prone spontaneously hypertensive rats) and WKY (Wistar-Kyoto) rats and from OVX (ovariectomized) or sham female SHRSP and WKY rats were used to functionally evaluate Ca 2 + influx-induced contractions. Compared with females, aorta from male SHRSP displayed: (i) increased contraction during the Ca 2 + -loading period; (ii) similar transient contraction during Ca 2 + release from the intracellular stores; (iii) increased activation of STIM1 and Orai1, as shown by the blockade of STIM1 and Orai1 with neutralizing antibodies, which reversed the sex differences in contraction during the Ca 2 + -loading period; and (iv) increased expression of STIM1 and Orai1. Additionally, we found that aortas from OVX-SHRSP showed increased contraction during the Ca 2 + -loading period and increased Orai1 expression, but no changes in the SR (sarcoplasmic reticulum)-buffering capacity or STIM1 expression. These findings suggest that augmented activation of STIM1/Orai1 in aortas from male SHRSP represents a mechanism that contributes to sex-related impaired control of intracellular Ca 2 + levels. Furthermore, female sex hormones may negatively modulate the STIM/Orai1 pathway, contributing to vascular protection observed in female rats
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