1,706 research outputs found
Physiological response of Cistus salviifolius L. to high arsenic concentrations
Arsenic is a trace element found in the environment which can be particularly toxic to living organisms. However, some plant species such as those of the genus Cistus are able to grow in soils with high As concentrations and could be used in the sustainable rehabilitation of mining areas 19 through phytostabilization. In this work, the growth and the physiological response of Cistus salviifolius L. to As induced oxidative stress at several concentrations (reaching 30 mg L-1) in an hydroponic system were evaluated for 30 days. Several growth parameters, chlorophyll content, chemical composition, one indicator of oxidative stress (H2O2) and two of the major anti-oxidative metabolites (ascorbate and glutathione) were analyzed.
The toxic effect of As was better perceived in the plants submitted to treatments with concentrations of 20 and 30 mg As L-1. Plants subjected to these treatments had higher concentration of As in roots and shoots. The concentrations of Ca, Mg, K and Fe in the plants, as well as a large part of the evaluated growth parameters were also affected. Arsenic did not interfere with the ability of the plant to perform photosynthesis, as there were no significant differences in the contents of chlorophyll a, b and total between the different treatments. Plants from all treatments accumulated higher amount of As in roots than in shoots, and it was also in the roots that the concentrations of H2O2, AsA and GSH were higher. Cistus salviifolius showed high tolerance to As up to the concentration of 5 mg L-1, which makes it a species with high potential to be used in the phytostabilization of soils contaminated with As and presenting high concentrations of the element in the soil solution.info:eu-repo/semantics/acceptedVersio
Influence of Seed Source and Soil Contamination on Ecophysiological Responses of Lavandula pedunculata in Rehabilitation of Mining Area
Mining activities have turned many areas of the Iberian Pyrite Belt (IPB) into extreme
environments with high concentrations of metal(loid)s. These harsh conditions can inhibit or reduce
the colonization and/or development of most vegetation. However, some species or populations
have developed ecophysiological responses to tolerate stress factors and contaminated soils. The
main objectives of this study are: (i) to assess the differences in germination, growth, development
and physiological behaviour against oxidative stress caused by metal(loid)s in Lavandula pedunculata
(Mill.) Cav. from two different origins (a contaminated area in São Domingos mine, SE of Portugal
and an uncontaminated area from Serra do Caldeirão, S of Portugal) under controlled conditions; and
(ii) to assess whether it is possible to use this species for the rehabilitation of mine areas of the IPB.
After germination, seedlings from São Domingos (LC) and Caldeirão (L) were planted in pots with
a contaminated soil developed on gossan (CS) and in pots with an uncontaminated soil (US) under
controlled conditions. Multielemental concentrations were determined in soils (total and available
fractions) and plants (shoots and roots). Germination rate, shoot height, dry biomass and leaf area
were determined, and pigments, glutathione, ascorbate and H2O2 contents were measured in plant
shoots. Total concentrations of As, Cr, Cu, Pb and Sb in CS, and As in US exceed the intervention
and maximum limits for ecosystem protection and human health. The main results showed that
L. pedunculata, regardless of the seed origin, activated defence mechanisms against oxidative stress
caused by high concentrations of metal(loid)s. Plants grown from seeds of both origins increased the
production of AsA to preserve its reduction levels and kept the contents of GSH stable to maintain
the cell’s redox state. Plants grown from seeds collected in non-contaminated areas showed a high
capacity for adaptation to extreme conditions. This species showed a greater growth capacity when
seeds from a contaminated area were sown in uncontaminated soils. Thus, L. pedunculata, mainly
grown from seeds from contaminated areas, may be used in phytostabilization programmes in areas
with soils with high contents of metal(loid)sinfo:eu-repo/semantics/publishedVersio
The Potential of Cistus salviifolius L. to Phytostabilize Gossan Mine Wastes Amended with Ash and Organic Residues
The São Domingos mine is within the Iberian Pyrite Belt, a mining district with large
concentrations of polymetallic massive sulfide deposits. Mine waste heaps are considered extreme
environments, since they contain high total concentrations of potentially hazardous elements (PHE),
which contribute to inhibiting the development of most plants. Autochthonous plant species, such as
Cistus salviifolius L., are able to grow naturally in this degraded environment, and may contribute
to minimizing the negative chemical impacts and improving the landscape quality. However, the
environmental rehabilitation processes associated with the development of these plants (phytostabilization)
are very slow, so the use of materials/wastes to improve some physicochemical properties
of the matrix is necessary in order to speed up the process. This work studied the effectiveness
of the phytostabilization with C. salviifolius of gossan mine wastes from the mine of São Domingos
amended with organic and inorganic wastes in order to construct Technosols. The mine wastes
have an acid pH ( 3.5), high total concentrations of PHE and low concentrations of organic C and
available nutrients. The best vegetative development occurred without visible signs of toxicity in the
Technosols containing a mixture of agriculture residues. These treatments allowed the improvement
of the soil-plant system providing a better plant cover and improved several chemical properties of
mine wastes, helping to speed up the environmental rehabilitationinfo:eu-repo/semantics/publishedVersio
Green chemistry and biorefineries: common future?
Green Chemistry and Biorefinery concepts are two approaches helping to develop new and more sustainable processes.The implementation of both methodologies impels to fossil-independent future with
bioeconomy based on natural feedstock like biowaste and industrial by-products. The development of technologies for valorisation of these resources is a key role of society in the creation of sustainable and more environmentally friendly future. Shortly after the Rio Declaration on Environment and Development, Anastas and Warner presented 12 Principles of Green Chemistry but more a decade before Trevor Kletz in his
Jubilee lecture entitled “What you don’t have, can’t leak” draw the frames in which scientific and industrial work should be performed. This basis of green chemistry created a fundament for further development and implementation of Anastas and Warner principles of green chemistry. One of these frames is integration of green chemistry principles in the biorefinery concept. The biorefinery is an industrial facility (or network of facilities) that cover an extensive range of combined technologies aiming to full sustainable transformation of biomass into their building blocks with the concomitant production of biofuels, energy, chemicals and materials, preferably of value added products. One of the principles of green chemistry is the use of more sustainable solvents. Some examples of them are ionic liquids (ILs) and supercritical fluids (scF). This work will demonstrate the successful examples of lignocellulosic biomass valorisation using green solvents answering the question regarding the feasibility of future biorefineries made in a greener manner
Serologically diagnosed acute human bocavirus 1 infection in childhood community-acquired pneumonia
AimTo assess the role of human bocavirus 1 (HBoV1) as a causative agent of non-severe community-acquired pneumonia (CAP) in children. MethodsPatients aged 2-59 months with non-severe CAP (respiratory complaints and radiographic pulmonary infiltrate/consolidation) attending a University Hospital in Salvador, Brazil were enrolled in a prospective cohort. From 820 recruited children in a clinical trial ( NCT01200706), nasopharyngeal aspirate (NPA), and acute and convalescent serum samples were obtained from 759 (92.6%) patients. NPAs were tested for 16 respiratory viruses by PCR. Acute HBoV1 infection was confirmed by measuring specific IgM and IgG responses in paired serum samples. ResultsRespiratory viruses were detected in 693 (91.3%; 95%CI: 89.1-93.2) CAP cases by PCR. HBoV1-DNA was detected in 159 (20.9%; 95%CI: 18.2-24.0) cases. Of these 159 PCR positive cases, acute HBoV1 infection was confirmed serologically in 38 cases (23.9%; 95%CI: 17.8-31.0). Overall, acute HBoV1 infection was confirmed in 5.0% (38/759) of non-severe CAP patients. HBoV1 was detected in 151 cases with at least one other virus making 31.7% of all multiple virus (n=477) detections. Among all 759 cases, 216 had one respiratory virus detected, and sole HBoV1 was detected in only 8 (3.7%). Acute HBoV1 infection was serologically diagnosed in 34 (22.5%) HBoV1-DNA-positive cases with another virus, compared to 4 (50.0%) cases with sole virus detection (p=0.09). ConclusionHBoV1 was detected by PCR in one fifth of the children with non-severe CAP and acute HBoV1 infection was serologically confirmed in one quarter of these cases.Peer reviewe
Decavanadate, decaniobate, tungstate and molybdate interactions with sarcoplasmic reticulum Ca2+-ATPase: quercetin prevents cysteine oxidation by vanadate but does not reverse ATPase inhibition
Recently we demonstrated that the decavanadate (V10) ion is a stronger Ca2+-ATPase inhibitor than other oxometalates, such as the isoelectronic and isostructural decaniobate ion, and the tungstate and molybdate monomer ions, and that it binds to this protein with a 1 : 1 stoichiometry. The V10 interaction is not affected by any of the protein conformations that occur during the process of calcium translocation
(i.e. E1, E1P, E2 and E2P) (Fraqueza et al., J. Inorg. Biochem., 2012). In the present study, we further explore this subject, and we can now show that the decaniobate ion, [Nb10 = Nb10O28]6−, is a useful tool
in deducing the interaction and the non-competitive Ca2+-ATPase inhibition by the decavanadate ion [V10 = V10O28]6−. Moreover, decavanadate and vanadate induce protein cysteine oxidation whereas no effects were detected for the decaniobate, tungstate or molybdate ions. The presence of the antioxidant quercetin prevents cysteine oxidation, but not ATPase inhibition, by vanadate or decavanadate. Definitive
V(IV) EPR spectra were observed for decavanadate in the presence of sarcoplasmic reticulum Ca2+-
ATPase, indicating a vanadate reduction at some stage of the protein interaction. Raman spectroscopy clearly shows that the protein conformation changes that are induced by V10, Nb10 and vanadate are different from the ones induced by molybdate and tungstate monomer ions. Here, Mo and W cause
changes similar to those by phosphate, yielding changes similar to the E1P protein conformation. The putative reduction of vanadium(V) to vanadium(IV) and the non-competitive binding of the V10 and Nb10
decametalates may explain the differences in the Raman spectra compared to those seen in the presence of molybdate or tungstate. Putting it all together, we suggest that the ability of V10 to inhibit the Ca2+-
ATPase may be at least in part due to the process of vanadate reduction and associated protein cysteine oxidation. These results contribute to the understanding and application of these families of mono- and
polyoxometalates as effective modulators of many biological processes, particularly those associated with calcium homeostasis.MA thanks CCMAR; LAEBC and MPMM thank QFM-UC for
financial support. CAO is grateful for a QEII fellowship and
Discovery Project grant (DP110105530) from the Australian
Research Council. WHC acknowledges support from the U.S.
Department of Energy Office of Basic Energy Science via grant
DE-FG02-05ER15693, the National Science Foundation via
EAR-0814242 and an NSF CCI grant through the Center for
Sustainable Materials Chemistry, number CHE-1102637
TREM1 regulates antifungal immune responses in invasive pulmonary aspergillosis.
Pattern recognition receptors (PRRs) are responsible for Aspergillus fumigatus recognition by innate immunity and its subsequent immune signaling. The triggering receptor expressed on myeloid cells 1 (TREM1) is a recently characterized pro-inflammatory receptor constitutively expressed on the surface of neutrophils and macrophages. A soluble form (sTREM1) of this protein that can be detected in human body fluids has been identified. Here we investigated the role of TREM1 during invasive pulmonary aspergillosis (IPA). IPA patients displayed significantly higher levels of sTREM1 in bronchoalveolar lavages when compared to control patients. Functional analysis in TREM1 showed that the levels of sTREM1 and TREM1 pathway-related cytokines were influenced by single nucleotide polymorphisms in TREM1. In addition, we confirmed a role of TREM1 on antifungal host defense against A. fumigatus in a murine model of IPA. TREM1 deficiency increased susceptibility to infection in the immunosuppressed murine host. Deletion of TREM1 showed delayed innate and adaptive immune responses and impaired pro-inflammatory cytokine responses. The absence of TREM1 in primary macrophages attenuated the TLR signaling by altering the expression of both receptor and effector proteins that are critical to the response against A. fumigatus. In this study, and for the first time, we demonstrate the key role for the TREM1 receptor pathway during IPA.This work was supported by the Fundação para a Ciência e a Tecnologia [PTDC/SAU-SER/29635/2017]; Fundação para a Ciência e a Tecnologia [UIDB/50026/2020 and UIDP/50026/2020]; Fundação para a Ciência e a Tecnologia [PTDC/MED-GEN/28778/2017]; H2020 Excellent Science [NORTE-01-0145-FEDER-000013 and NORTE-01-0145-FEDER-000023)]; Instituto de Salud Carlos III [RD16/CIII/0004/0003]; Instituto de Salud Carlos III [PI18CIII/00045]; Instituto de Salud Carlos III [MPY 1277/15]; Ministerio de Ciencia, Innovación y Universidades [RTI2018-099114-B-I00]; Associação Viver a Ciência (PT) [SFRH/BD/136814/2018]; “la Caixa” Foundation [ID 100010434].S
Environmental Research and Public Health Communication Pathogens in Ornamental Waters: A Pilot Study
Abstract: In parks, ornamental waters of easy access and populated with animals are quite attractive to children and yet might hide threats to human health. The present work focuses on the microbiota of the ornamental waters of a Lisboa park, characterized during 2015. The results show a dynamic microbiota integrating human pathogens such as Klebsiella pneumoniae, Aeromonas spp. and Enterobacter spp., and also antibiotic resistant bacteria. K. pneumoniae and Aeromonas spp. were present as planktonic and biofilm organized bacteria. In vitro K. pneumoniae and Aeromonas spp. showed an enhanced ability to assemble biofilm at 25˝C than at 37˝C. Bacteria recovered from biofilm samples showed an increased antibiotic resistance compared to the respective planktonic counterparts
Approach to Endoscopic Procedures: A Routine Protocol from a Quaternary University Referral Center Exclusively for Coronavirus Disease 2019 Patients
OBJECTIVES: The present coronavirus disease (COVID-19) pandemic has ushered in an unprecedented era of quality control that has necessitated advanced safety precautions and the need to ensure the adequate protection of healthcare professionals (HCPs). Endoscopy units, endoscopists, and other HCP may be at a significant risk for transmission of the virus. Given the immense burden on the healthcare system and surge in the number of patients with COVID-19, well-designed protocols and recommendations are needed. We aimed to systematically characterize our approach to endoscopic procedures in a quaternary university hospital setting and provide summary protocol recommendations. METHOD: This descriptive study details a COVID-19-specific protocol designed to minimize infection risks to patients and healthcare workers in the endoscopy unit. RESULTS: Our institution, located in Sa˜o Paulo, Brazil, includes a 900-bed hospital, with a 200-bed-specific intensive care unit exclusively designed for patients with moderate and severe COVID-19. We highlighted recommendations for infection prevention and control during endoscopic procedures, including appropriate triage and screening, outpatient management and procedural recommendations, role and usage of personal protective equipment (PPE), and role and procedural logistics involving COVID-19-positive patients. We also detailed hospital protocols for reprocessing endoscopes and cleaning rooms and also provided recommendations to minimize severe acute respiratory syndrome coronavirus 2 transmission. CONCLUSION: This COVID-19-specific administrative and clinical protocol can be replicated or adapted in multiple institutions and endoscopy units worldwide. Furthermore, the recommendations and summary protocol may improve patient and HCP safety in these trying times
Expected Performance of the ATLAS Experiment - Detector, Trigger and Physics
A detailed study is presented of the expected performance of the ATLAS
detector. The reconstruction of tracks, leptons, photons, missing energy and
jets is investigated, together with the performance of b-tagging and the
trigger. The physics potential for a variety of interesting physics processes,
within the Standard Model and beyond, is examined. The study comprises a series
of notes based on simulations of the detector and physics processes, with
particular emphasis given to the data expected from the first years of
operation of the LHC at CERN
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