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Antimicrobials are precious agents for combating infectious diseases and had saved millions of lives throughout the world. However, the current trend of increasing antimicrobial resistance (AMR) has become a global health problem with increased morbidity and mortality in infectious diseases. Sri La
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nka is not an exemption and face many health related issues with multidrug resistant (MDR) organisms. Currently there is a global effort in combating antimicrobial resistance. WHO extends its fullest support and plays a major role in motivating the countries to combat antimicrobial resistance with national action plans in place. Sri Lanka has initiated combating AMR with multisectoral collaboration, under one health concept. The development of the National Strategic Plan (NSP) 2017-2022 provides the roadmap to combat AMR.
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Antimicrobial agents play an indispensable role in animal health and welfare management. At the same time, the need for prudent use is obvious to ensure good food safety outcomes and to manage the potential risk of antimicrobial resistance. The emergence of multi-resistant bacteria is posing challen
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ges to health professionals and communities around the world for both human and animal health. These bacteria are not destroyed by the common antimicrobial agents and so pose a risk to people, particularly children, the elderly and those with poorly functioning immune systems, as well as to animals.
Throughout the years, the dairy sector has been very much aware of the need for responsible use and has, in many countries, implemented adequate measures throughout the dairy supply chain.
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European AIDS Clinical Society - Second meeting on Standards of Care, Brussels, 16-17 November 2016 Report
The European AIDS Clinical Society (EACS); Facts Standard of Care for HIV and Coinfections in Europe
The European AIDS Clinical Society (EACS); Facts Standard of Care for HIV and Coinfections in Europe
(2020)
C2
Accessed: 11.03.2020
The second ECDC/EFSA/EMA joint report on the integrated analysis of antimicrobial consumption (AMC) and antimicrobial resistance (AMR) in bacteria from humans and food-producing animals addressed data obtained by the Agencies’ EU-wide surveillance networks for 2013–2015. AMC in both sectors, exp
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ressed in mg/kg of estimated biomass, were compared at country and European level. Substantial variations between countries were observed in both sectors. Estimated data on AMC for pigs and poultry were used for the first time. Univariate and multivariate analyses were applied to study associations between AMC and AMR. In 2014, the average AMC was higher in animals (152 mg/kg) than in humans (124 mg/kg), but the opposite applied to the median AMC (67 and 118 mg/kg, respectively). In 18 of 28 countries, AMC was lower in animals than in humans. Univariate analysis showed statistically-significant (p < 0.05) associations between AMC and AMR for fluoroquinolones and Escherichia coli in both sectors, for 3rd- and 4th-generation cephalosporins and E. coli in humans, and tetracyclines and polymyxins and E. coli in animals. In humans, there was a statistically-significant association between AMC and AMR for carbapenems and polymyxins in Klebsiella pneumoniae. Consumption of macrolides in animals was significantly associated with macrolide resistance in Campylobacter coli in animals and humans. Multivariate analyses provided a unique approach to assess the contributions of AMC in humans and animals and AMR in bacteria from animals to AMR in bacteria from humans. Multivariate analyses demonstrated that 3rd- and 4th-generation cephalosporin and fluoroquinolone resistance in E. coli from humans was associated with corresponding AMC in humans, whereas resistance to fluoroquinolones in Salmonella spp. and Campylobacter spp. from humans was related to consumption of fluoroquinolones in animals. These results suggest that from a ‘One-health’ perspective, there is potential in both sectors to further develop prudent use of antimicrobials and thereby reduce AMR.
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This guideline covers making people aware of how to correctly use antimicrobial medicines (including antibiotics) and the dangers associated with their overuse and misuse. It also includesmeasures to prevent and control infection that can stop people needing antimicrobials or spreadinginfection to o
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thers. It aims to change people's behaviour to reduce antimicrobial resistance and thespread of resistant microbes.
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The purpose of this guidance is to assist WHO Member States, and other stakeholders, in the establishment and development of programmes of integrated surveillance of antimicrobial resistance in foodborne bacteria (i.e., bacteria commonly transmitted by food). In this guidance, “integrated surveill
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ance of antimicrobial resistance in foodborne bacteria” is defined as the collection, validation, analyses and reporting of relevant microbiological and epidemiological data on antimicrobial resistance in foodborne bacteria from humans, animals, and food, and on relevant antimicrobial use in humans and animals. Integrated surveillance of antimicrobial resistance in foodborne bacteria therefore includes data from relevant food chain sectors (animals, food and humans) and includes data on both antimicrobial resistance and antimicrobial use. Integrated surveillance of antimicrobial resistance for foodborne bacteria expands on traditional public health surveillance to include multiple elements of the food chain, and to include antimicrobial use data, to better understand the sources of infection and transmission routes.
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This survey is part of a series of eight country surveys conducted in the context of the People that Deliver Initiative (peoplethatdeliver.org). This global initiative, which brings together the world’s largest organizations, aims to improve health services performance through the professionalizat
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ion of logistics managers.
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Medizinische KlinikIntensivmedizin und Notfallmedizin
https://doi.org/10.1007/s00063-020-00674-3
The animal health subsector within the agriculture sector is the gatekeeper of antimicrobial resistance (AMR) in livestock, aquaculture, animal products, and the immediate animal environment. In support of member countries taking responsibility for and moving forward with putting AMR monitoring and
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surveillance in place for the animal sector, the Food and Agriculture Organization of the United Nations Regional Office for Asia and the Pacific (FAO-RAP) developed a regional AMR surveillance framework, each pillar of which is complemented by a guideline to reinforce its progressive implementation. The first of this series, Volume 1: Monitoring and surveillance of antimicrobial resistance in bacteria from healthy food animals intended for consumption, is centered on healthy animals reaching consumers and on the protection of public health.
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Le présent document de travail a été conçu pour offrir des conseils pratiqueset des suggestions sur la manièred’établir et de maintenir la collaboration multisectorielle nécessaire pour élaborer et mettre en œuvre les plans d’action nationaux (PAN) de lutte contre la RAM. Il s’adresse
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à tous ceux qui ont pourresponsabilité de combattre la RAM au niveau national. S’appuyant à la fois sur la littérature publiée et sur l’expérience pratique de quatre «pays focaux» (Éthiopie, Kenya, Philippines et Thaïlande), ce documentrésume les enseignements tirés et les derniers points de vuesur la collaboration multisectorielle en vue d’une action efficace contre la RAM.
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L’Assemblée mondiale de la Santé, tenue en mai 2015, a adopté un Plan d’action mondial pour combattre la résistance aux antimicrobiens, qui définit 5 objectifs:
mieux faire connaître et comprendre le problème de la résistance aux antimicrobiens grâce à une communication, une éduc
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ation et une formation efficaces;
renforcer les connaissances et les bases factuelles par la surveillance et la recherche;
réduire l’incidence des infections par des mesures efficaces d’assainissement, d’hygiène et de prévention des infections;
optimiser l’usage des médicaments antimicrobiens en santé humaine et animale;
dégager les arguments économiques en faveur d’investissements durables qui tiennent compte des besoins de tous les pays et accroître les investissements dans la mise au point de nouveaux médicaments, outils diagnostiques, vaccins et autres interventions.
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Produced by Training and Research Support Centre for the Regional Network for Equity in Health in east and southern Africa (EQUINET), March 20, 2020.
This brief summarises and provides links to official, scientific and other resources to support an understanding of and individual to regional level
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responses to the epidemic of ‘novel coronavirus’, also known as COVID-19.
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A regional guide for governments in Asia and the Pacific to review, update and develop policies to address antimicrobial resistance and antimicrobial use in animal production
Intensive Care Med (2009) 35:9–29DOI 10.1007/s00134-008-1336-9
Although thousands of papers have been devoted tohospital-acquired pneumonia (HAP), many controversiesremain, and management of HAP is probably often sub-optimal. Several reviews or guidelines have been pub-lished rec
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ently, mostly by North American initiatives(CDC, ATS). Three European Societies (ERS, ESCMID andESICM) were interested in producing a document thatcould complement in some way the last IDSA/ATS guidelines published 3 years ago. In addition, the Helics
working group supported this initiative.
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The current document is anupdate of the guidelines developed by the EUCAST subcommittee on detection of resistance mechanisms. The EUCAST Steering Committee has carried out the current update. The document has been developed mainly for routine use in clinical laboratories and doesnot cover technical
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procedures for identification of resistance mechanisms at a molecular level by reference or expert laboratories. However, much of the content is also applicable tonational reference laboratories. Furthermore, it is important to note that the document does not cover screening for asymptomatic carriage (colonization) of multidrug-resistant microorganismsor direct detectionof resistancein clinical samples.
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The ECDC, the EFSA and the EMA have for the first time jointly explored associations between consumption of antimicrobials in humans and food-producing animals, and antimicrobial resistance in bacteria from humans and food-producing animals, using 2011 and 2012 data currently available from their re
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levant five EU monitoring networks. Combined data on antimicrobial consumption and corresponding resistance in animals and humans for EU MSs and reporting countries were analysed using logistic regression models for selected combinations of bacteria and antimicrobials. A summary indicator of the proportion of resistant bacteria in the main food-producing animal species was calculated for the analysis, as consumption data in food-producing animals were not available at the species level
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WHO would like to express its gratitude and appreciation to all Member States that provided information to the WHO survey on policies and activities at the national level in the area of antimicrobial resistance. The contribution of staff in WHO Regional and Country Offices has been invaluable: in ga
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ther-ing original data and information from Member States, in supporting the process of aggregation of these data; and in reviewing the regional analysis of the findings that reflect the country situation at the point when the survey was conducted. The support and commitment of the members of the WHO Task Force on Antimicrobial Resistance, comprising WHO staff from Headquarters and Regional Offices has, is also acknowledged.
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In Kenya, the bacterial infections that contribute most to human disease are often those in which re-‐sistance is most evident. Examples are multidrug-‐resistant enteric bacterial pathogens such as typhoid,
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diarrhoeagenic Escherichia coli and invasive non-‐typhi salmonella, penicillin-‐resistant Streptococcus pneu-‐moniae, vancomycin-‐resistant enterococci, methicillin-‐resistant Staphylococcus aureus and multidrug-‐re-‐sistant Mycobacterium tuberculosis. Resistance to medicines commonly used to treat malaria is of particu-‐lar concern, as is the emerging resistance to anti-‐HIV drugs. Often, more expensive medicines are required to treat these infections, and this becomes a major challenge in resource-‐poor settings.
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Infectious diseases like COVID-19 can disrupt the environments in which children grow and develop. Disruptions to families, friendships, daily routines and the wider community can have negative consequences for children’s well-being, development and protection. In addition, measures used to preven
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t and control the spread of COVID-19 can expose children to protection risks. Home-based, facility-based and zonal-based quarantine and isolation measures can all negatively impact children and their families.
The aim of this brief is to support child protection practitioners to better respond to the child protection risks during a COVID-19 pandemic. Part 1 presents the potential child protection risks COVID-19 can pose to children. Part 2 presents programmatic options in line with the 2019 Minimum Standards for Child Protection in Humanitarian Action (CPMS) and the Guidance Note: Protection of Children During Infectious Disease Outbreaks.
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