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La evolución de los acontecimientos y el esfuerzo conjunto de la comunidad científica mundial, hangeneradogran cantidad de información que se modificarápidamente con nuevas evidencias. Este documento pretende hacer unresumen analítico de la evidencia científica dispo
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niblehasta el momento en torno a la epidemiología, características microbiológicas y clínicas del COVID-19.En esta actualización se añaden los hallazgos acerca de la transmisiónen periodo asintomático y a partir de aerosoles y superficies inanimadas, así como las características de los principales grupos de riesgo. Para información relativa a medicamentos relacionados con COVID-19 se puede consultar la web de la Agencia Española del Medicamento y ProductosSanitarios: https://www.aemps.gob.es/
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Se sabe que las mujeres embarazadas experimentan cambios inmunológicos y fisiológicos que pueden hacerlas más susceptibles a las infecciones respiratorias virales, incluido COVID-19. Varios estudios revelaron que las mujeres embarazadas con diferentes enfermedades resp
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iratorias virales tenían un alto riesgo de desarrollar complicaciones obstétricas y resultados adversos perinatales en comparación con las mujeres no grávidas, debido a los cambios en las respuestas inmunes. También sabemos que las mujeres embarazadas pueden estar en riesgo de enfermedad grave, morbilidad o mortalidad en comparación con la población general, tal y como se observa en los casos de otras infecciones por coronavirus
5relacionadas [incluido el coronavirus del síndrome respiratorio agudo severo (SARS-CoV) y el coronavirus del síndrome respiratorio del Medio Oriente (MERS-CoV)] y otras infecciones respiratorias virales, como la gripe, durante el embarazo.
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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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Molecular methods for antimicrobial resistance (AMR)diagnostics to enhance the Global Antimicrobial Resistance Surveillance System
In 1998 the Swedish Veterinary Association decided to adopt a general policy for the use of antibiotics in animals. Since then specifi c policies for the use of antibiotics in dogs and cats have been adopted and in 2011 Guidelines for the use of Antibiotics in Production animals – Cattle and Pigs,
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were accepted. By decision of the board of the Swedish Veterinary Society (SVS) these guidelines have been updated. Th e over-arching goal of SVS is to achieve a low and controlled use of antibiotics in Swedish animal production so that the fi rst-hand choices of treatment remain effi cient and that the spread of antimicrobial resistance – among animals and herds as well as in the food chain – is kept at a minimum. Keeping antimicrobial resistance in animals low is important also for human health, since we are all part of the same ecosystem. Th e authors of these guidelines hope that they may be useful for veteri-narians in clinical practice when deciding on treatments for common diseases and ailments caused by bacteria. Sometimes the decision may even be to refrain from use of antibiotics and chose other ways of improving herd health.
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Antimicrobial resistance (AMR) is a serious public health concern with economic, social and political implications that are global in scope, and cross all environmental and ethnic boundaries. As a global threat, AMR risks the achievements of modern medicine, and has the po
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tential to impact overall global development. It is important, therefore, to elevate AMR beyond health as part of a larger development agenda in the context of the Sustainable Development Goals (SDGs). This report provides in-depth technical discussions in areas that have direct implications to the containment of AMR as a development agenda. The report is organized in five chapters which served as the technical background documents for the Biregional Technical Consultation on AMR in Asia, 14-15 April 2016. More information from the meeting is available in the WHO Meeting Report: Biregional Technical Consultation on Antimicrobial Resistance in Asia. The meeting was the first time senior officials from the Ministry of Health and Ministry of Agriculture across Asia came together to tackle AMR
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This document updates the 2014 Core Elements for Hospital Antibiotic Stewardship Programs and incorporates new evidence and lessons learned from experience with the Core Elements. The Core Elements are applicable in all hospitals, regardless of size. There are suggestions specific to small and criti
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cal access hospitals in Implementation of Antibiotic Stewardship Core Elements at Small and Critical Access Hospitals (12).There is no single template for a program to optimize antibiotic prescribing in hospitals. Implementation of antibiotic stewardship programs requires flexibility due to the complexity of medical decision-making surrounding antibiotic use and the variability in the size and types of care among U.S. hospitals. In some sections, CDC has identified priorities for implementation, based on the experiences of successful stewardship programs and published data. The Core Elements are intended to be an adaptable framework that hospitals can use to guide efforts to improve antibiotic prescribing. The assessment tool that accompanies this document can help hospitals identify gaps to address.
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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 guidelines are to be used to guide the management of adults with lower respiratory tract infection (LRTI). As will be seen in the following text, this diagnosis, and the other clinical syndromes within this grouping, can be difficult to make accurately. In the absence of agreed definitions of th
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ese syndromes these guidelines are to be used when, in the opinion of a clinician, an LRTI syndrome is present. The following are put forward as def-initions to guide the clinician, but it will be seen in the ensuingtext that some of these labels will always be inaccurate. These definitions are pragmatic and based on a synthesis of available studies. They are primarily meant to be simple to apply in clinical practice, and this might be at the expense of scientific accuracy. These definitions are not mutually exclusive, with lower respiratory tract infection being an umbrella term that includes all others, which can also be used for cases that cannot be classified into one of the other groups. No new evidence has been identified that would lead to a change in the clinical definitions,which are therefore unchanged from the 2005 publication.
Clin Microbiol Infect 2011;17(Suppl. 6): 1–24 The full version of these guidelines can be found on Wiley Online Library.
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Временное руководство
6 апреля 2020 г.
В настоящем документе кратко изложены рекомендации ВОЗ по рациональному использованию средств индивидуальной защиты (СИЗ) в
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медицинских учреждениях и при оказании помощи на дому, а также при обработке грузов; в нем также дана оценка текущего нарушения глобальной цепочки поставок и приведены соображения для принятия решений в ситуации острой нехватки СИЗ.
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Internationally, there is a growing concern over antimicro-bial resistance (AMR) which is currently estimated to ac-count for more than 700,000 deaths per year worldwide. If no appropriate measures are taken to halt its pro-gress, AMR will cost approximately 10 million lives andabout US$100 trillion
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per year by 2050. In contrast tosome other health issues, AMR is a problem that con-cerns every country irrespective of its level of incomeand development as resistant pathogens do not respect borders.Despite the threat presented by AMR, the 2014 WorldHealth Organization (WHO) and the recent O’Neill re-port describe significant gaps in surveillance, standardmethodologies and data sharing. The 2014 WHOreport identified Africa and South East Asia as the regions without established AMR surveillance systems.
Tadesseet al. BMC Infectious Diseases (2017) 17:616 DOI 10.1186/s12879-017-2713-1
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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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Antibiotics and other antimicrobial agents are invaluable life savers, particularly in resource-limited countries where infectious diseases are abundant. Both uncomplicated and severe infections are potentially curable as long as the aetiological agents are susceptible to the
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antimicrobial drugs. The rapid rate with which antimicrobial agents are becoming ineffective due to resistance acquired as a result of unchecked overuse and misuse threatens to undo the benefit of controlling infections. The evidence for resistant microorganisms, many times to more than a single antimicrobial agent, has been observed globally. In Tanzania, there is evidence in the form of few scattered studies conducted in different parts of the country in a multitude of settings including health care facilities, the community, domesticated animals and wild animals
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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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Pakistan Global Antibiotic Resistance Partnership (GARP) was formed in the wake of international and national efforts for AMR curtailment. A group of experts from microbiology, infectious diseases and veterinary medicine formed a core group at the organizational meet
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ing of GARP in Kathmandu, Nepal in July 2016. In the meeting, this core group was expanded to include other members from different sectors with the selection of the Chair and co-chairs. These were asked to serve on a voluntary basis, in their own individual capacities, with no personal gains, or gains to the institutions to which they are affiliated. The first phase of GARP took place from 2009 to 2011 and involved four countries: India, Kenya, South Africa and Vietnam. Phase one culminated in the 1st Global Forum on Bacterial Infections, held in October 2011 in New Delhi, India. In 2012, phase two of GARP was initiated with the addition of working groups in Mozambique, Tanzania, Nepal and Uganda. Phase three has added Bangladesh, Lao PDR, Nigeria, Pakistan and Zimbabwe to the network to date.
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South Africa has faced many challenges over the past two decades, accomplishing profound positive changes in the social structure and government of the nation. This has not yet fully translated into better health for the population, however, particularly the poorest segment. In fact, the p
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opulation has lost ground since the 1990s in virtually all important health indicators, leaving South Africa with a high burden of infectious disease.
August 2011, Vol. 101, No. 8 SAMJ
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Antibiotic resistance is no longer a concern for the distant future but is a pressing issue, both globally and in Nepal. As part of global effort to preserve the effectiveness of antibiotics, the Global Antibiotic Resistance Partnership (GARP)-Nepal was established to doc
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ument the current state of antibiotic access, use and resistance in the country, and to identify policies and actions that could set a course for antibiotic sustainability.
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On 15–16 December 2020, WHO and the Medicines for Malaria Venture co-convened a technical consultation to consider the preferred product characteristics (PPCs) for drugs used in malaria chemoprevention. The main goal of the technical consultation was to agree on the most important PPCs for drugs t
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o protect populations from malaria (chemoprevention), while considering relevant measures of efficacy and the safety data needed to support WHO policy recommendations.
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The article "Time to Align: Development Cooperation for the Prevention and Control of Non-Communicable Diseases" argues for greater international cooperation and investment in addressing non-communicable diseases (NCDs), especially in low- and middle-income countries. Traditionally, global health fu
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nding has focused on infectious diseases, but the growing burden of NCDs—such as cardiovascular diseases, cancer, and diabetes—necessitates new approaches to development assistance.
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