Search results for "Pandemics"

showing 10 items of 522 documents

Cardiovascular complications in COVID-19:A systematic review and meta-analysis

2020

Microbiology (medical)2019-20 coronavirus outbreakCoronavirus disease 2019 (COVID-19)Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2)Pneumonia ViralBioinformaticsBetacoronavirusPandemicMedicineHumansCardiovascular complicationsPandemicsinfektiotauditRetrospective Studiesbiologybusiness.industrySARS-CoV-2COVID-19Covid19komplikaatiotbiology.organism_classificationCardiovascular diseaseInfectious Diseases/dk/atira/pure/core/keywords/uob_covid19Cardiovascular DiseasesMeta-analysissydän- ja verisuonitauditbusinessCoronavirus InfectionsBetacoronavirus
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World Tuberculosis Day 2021 Theme - 'THE CLOCK IS TICKING' - and the world is running out of time to deliver the United Nations General Assembly comm…

2021

Microbiology (medical)2019-20 coronavirus outbreakEconomic growthTuberculosisUnited NationsCoronavirus disease 2019 (COVID-19)General assemblySevere acute respiratory syndrome coronavirus 2 (SARS-CoV-2)Infectious and parasitic diseasesRC109-216Political sciencePandemicwc_505medicineHumansTuberculosisPandemicswa_105SARS-CoV-2COVID-19General Medicinemedicine.diseaseCoronavirusInfectious Diseaseswf_200Theme (narrative)
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Oral antiseptics against coronavirus: in-vitro and clinical evidence

2021

Background Angiotensin converting enzyme II (ACE2) is the cellular receptor for SARS-CoV-2, so ACE2-expressing cells can act as target cells and are susceptible to infection. ACE2 receptors are highly expressed in the oral cavity so this may be a potential high-risk route for SARS-CoV-2 infection. Furthermore, the virus can be detected in saliva, even before COVID-19 symptoms appear, with the consequent high risk of virus transmission in asymptomatic/pre-symptomatic patients. Reducing oral viral load could lead to a lower risk of transmission via salivary droplets or aerosols and therefore contribute to the control of the pandemic. Aim To evaluate the available evidence testing the in vitro…

Microbiology (medical)2019-20 coronavirus outbreakmedicine.medical_specialtySalivaCoronavirus disease 2019 (COVID-19)coronavirusesSevere acute respiratory syndrome coronavirus 2 (SARS-CoV-2)virusesMouthwashesCetylpyridiniumReviewmedicine.disease_causeLower riskViruslaw.inventionoral antisepticsRandomized controlled triallawInternal medicinemedicineHumansSalivaLetter to the EditorPandemicsPovidone-IodineCoronavirusMouthSARS-CoV-2Transmission (medicine)business.industryCOVID-19Hydrogen PeroxideGeneral MedicineViral LoadVirologyIn vitroCOVID-19 Drug TreatmentCoronavirusoral rinseInfectious DiseasesSystematic reviewClinical evidenceAnti-Infective Agents LocalCoronavirus InfectionsbusinessViral loadJournal of Hospital Infection
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Initial viral load and decay kinetics of SARS-CoV-2 lineage B.1.1.7 in the upper respiratory tract of adults and children

2021

We read with interest the systematic review published by Walsh et al. in the Journal of Infection,1 focusing on the dynamics of SARS-CoV-2 RNA at the upper respiratory tract (URT). In this context, a novel SARS-CoV-2 variant lineage (B.1.1.7), first detected in the UK at the end of 2020 has transmission advantage over other lineages.2 Increased transmissibility of the B.1.1.7 variant has been linked to enhanced ACE2 affinity3 allegedly resulting in higher viral loads in URT, an observation that has been reported in some,3, 4, 5, 6 but not all7 large series published to date. In addition, longer duration of SARS-CoV-2 RNA shedding in URT has been reported in individuals infected by the B.1.1…

Microbiology (medical)Adult2019-20 coronavirus outbreakLineage (genetic)Time FactorsCoronavirus disease 2019 (COVID-19)Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2)Pneumonia ViralBiologySeverity of Illness IndexBetacoronavirusFecesLimit of DetectionmedicineHumansChildLetter to the EditorAsymptomatic InfectionsPandemicsNoseSARS-CoV-2SputumCOVID-19Viral LoadVirologyVirus SheddingInfectious Diseasesmedicine.anatomical_structureRNA ViralCoronavirus InfectionsViral loadRespiratory tract
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Containment of a Large SARS-CoV-2 Outbreak Among Healthcare Workers in a Pediatric Intensive Care Unit.

2020

Objective Healthcare workers (HCWs) are particularly exposed SARS-CoV-2 because they are critical in preventing viral transmission and treating COVID-19 patients. Within HCWs, personnel of intensive care units (ICUs) are at the forefront of treating patients with a severe course of COVID-19 infection and therefore represent an extremely vulnerable group. Thus, our objective is to contribute to establish means of infection control protecting HCWs in the frontline of the current pandemic. Design An outbreak of SARS-CoV-2 was detected and contained in a pediatric ICU (PICU). The first positive case was identified with a point-of-care diagnostic system on site. Real-time PCR-based testing syste…

Microbiology (medical)AdultMalemedicine.medical_specialtyInfectious Disease Transmission Patient-to-ProfessionalSevere acute respiratory syndrome coronavirus 2 (SARS-CoV-2)Health PersonnelPneumonia ViralPsychological interventionIntensive Care Units PediatricHospitals UniversityTertiary Care Centers03 medical and health sciencesBetacoronavirusYoung Adult0302 clinical medicine030225 pediatricsIntensive careGermanyPandemicHealth caremedicineInfection controlHumansPediatrics Perinatology and Child Health030212 general & internal medicinePandemicsPediatric intensive care unitInfection Controlbusiness.industrySARS-CoV-2virus diseasesOutbreakCOVID-19Middle AgedInfectious DiseasesPediatrics Perinatology and Child HealthEmergency medicineQuarantineFemalebusinessCoronavirus InfectionsThe Pediatric infectious disease journal
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Evidence for recombination between the pandemic GII.4 norovirus strains New Orleans 2009 and Sydney 2012

2013

ABSTRACT During 2012, a novel pandemic GII.4 norovirus variant, Sydney 2012, emerged worldwide. A signature of the variant was a GII.Pe ORF1, in association with GII.4 Apeldoorn 2008-like ORF2-ORF3 genes. We report the detection of recombinant GII.4 Sydney 2012 strains, possessing the ORF1 gene of the former pandemic variant New Orleans 2009.

Microbiology (medical)Settore MED/07 - Microbiologia E Microbiologia ClinicaNorovirus GII.4 Sydney 2012 New Orleans 2009 recombinationvirusesMolecular Sequence DataBiologymedicine.disease_causeOpen Reading Framesfluids and secretionsViral geneticsVirologyPandemicmedicineHumansChildPandemicsCaliciviridae InfectionsRecombination GeneticGeneticsNorovirusvirus diseasesSequence Analysis DNAVirologyChild PreschoolNorovirusRNA Viral
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The Impact of COVID-19 on Sport in Twitter: A Quantitative and Qualitative Content Analysis

2021

The spread of the SARS-CoV-2 virus has transformed many aspects of people’s daily life, including sports. Social networks have been flooded on these issues. The present study aims to analyze the tweets produced relating to sports and COVID-19. From the end of January to the beginning of May 2020, over 4,000,000 tweets on this subject were downloaded through the Twitter search API. Once the duplicates, replicas, and retweets were removed, 119,253 original tweets were analyzed. A quantitative–qualitative content analysis was used to study the selected tweets. Posts dynamics regarding sport and exercise evolved according to the COVID-19 pandemic and subsequent lockdown, shifting from consideri…

Mixed methods020205 medical informaticsText miningmixed methodsHealth Toxicology and MutagenesisTwitterLatent Dirichlet allocationBIBLIOTECONOMIA Y DOCUMENTACION050801 communication & media studies02 engineering and technologytext mininglatent Dirichlet allocationArticleGrassroots0508 media and communicationsPandemic0202 electrical engineering electronic engineering information engineeringHumansSocial mediaPandemicsSportbiologybusiness.industryAthletesSARS-CoV-205 social sciencesSocializationPublic Health Environmental and Occupational HealthRCOVID-19Public relationsbiology.organism_classificationContent analysisCommunicable Disease ControlMedicineClubbusinessPsychologysportSocial Mediahuman activitiesCareer developmentInternational Journal of Environmental Research and Public Health
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L'aumento degli immatricolati e la diminuzione percentuale dei " movers " nelle università italiane: merito del Covid?

MobilityUniversityPandemia.Pandemics.UniversitàSettore SECS-S/05 - Statistica SocialeMezzogiornoMobilità
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In Silico Insights into the SARS CoV-2 Main Protease Suggest NADH Endogenous Defences in the Control of the Pandemic Coronavirus Infection

2020

COVID-19 is a pandemic health emergency faced by the entire world. The clinical treatment of the severe acute respiratory syndrome (SARS) CoV-2 is currently based on the experimental administration of HIV antiviral drugs, such as lopinavir, ritonavir, and remdesivir (a nucleotide analogue used for Ebola infection). This work proposes a repurposing process using a database containing approximately 8000 known drugs in synergy structure- and ligand-based studies by means of the molecular docking and descriptor-based protocol. The proposed in silico findings identified new potential SARS CoV-2 main protease (MPRO) inhibitors that fit in the catalytic binding site of SARS CoV-2 MPRO. Several sel…

Models Molecular0301 basic medicineAgingmedicine.medical_treatmentcoronaviruslcsh:QR1-502Viral Nonstructural Proteinsmedicine.disease_causelcsh:Microbiology0302 clinical medicineSettore BIO/10 - BiochimicaCoronavirus 3C ProteasesCoronavirusvirus diseasesLopinavirHypothesisMolecular Docking SimulationCysteine EndopeptidasesDrug repositioningInfectious Diseases030220 oncology & carcinogenesisCoronavirus InfectionsOxidation-Reductionmedicine.drugDNA damageIn silicoPneumonia ViralBiologyAntiviral AgentsHIV-proteaseBetacoronavirus03 medical and health sciencesSARS-CoV-2 main proteaseVirologymedicineHumansComputer SimulationProtease InhibitorsPandemicsBinding SitesProteaseSARS-CoV-2Drug RepositioningCOVID-19HIV Protease InhibitorsDRUDIT web servicemolecular dockingNADbiology.organism_classificationVirologySettore CHIM/08 - Chimica FarmaceuticaCOVID-19 Drug Treatmentcoronaviru030104 developmental biologyNADHRitonavirBetacoronavirusDNA Damage
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Role of RNA Guanine Quadruplexes in Favoring the Dimerization of SARS Unique Domain in Coronaviruses

2020

ABSTRACTCoronaviruses may produce severe acute respiratory syndrome (SARS). As a matter of fact, a new SARS-type virus, SARS-CoV-2, is responsible of a global pandemic in 2020 with unprecedented sanitary and economic consequences for most countries. In the present contribution we study, by all-atom equilibrium and enhanced sampling molecular dynamics simulations, the interaction between the SARS Unique Domain and RNA guanine quadruplexes, a process involved in eluding the defensive response of the host thus favoring viral infection of human cells. Our results evidence two stable binding modes involving an interaction site spanning either the protein dimer interface or only one monomer. The …

Models Molecular0301 basic medicineLetterSevere acute respiratory syndrome coronavirus 2 (SARS-CoV-2)DimerPneumonia ViralCoronaviruProtein dimerMolecular Dynamics SimulationViral infection01 natural sciencesVirusBetacoronavirus03 medical and health scienceschemistry.chemical_compound0302 clinical medicine0103 physical sciencesG-QuadruplexeHumans[CHIM]Chemical SciencesGeneral Materials Science030212 general & internal medicinePhysical and Theoretical ChemistryPandemicsEconomic consequences030304 developmental biology0303 health sciences010304 chemical physicsBetacoronaviruSARS-CoV-2ChemistryCoronavirus InfectionRational designCOVID-19RNASpike Glycoprotein3. Good healthG-Quadruplexes030104 developmental biologySettore CHIM/03 - Chimica Generale E InorganicaSpike Glycoprotein CoronavirusBiophysicsRNA ViralCoronavirus InfectionsGuanine-QuadruplexesDimerizationProtein Binding
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