These guidelines present evidence-based recommendations and best practice statements on use of medically important antimicrobials in food-producing animals, based on the WHO list of critically important antimicrobials for human medicine (WHO CIA List). These guidelines aim primarily to help preserve... the effectiveness of medically important antimicrobials, particularly those antimicrobials judged to be critically important to human medicine and also help preserve the effectiveness of antimicrobials for veterinary medicine, in direct support of the WHO global action plan on antimicrobial resistance
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Lancet Planet Health 2017 Published Online November 6, 2017 http://dx.doi.org/10.1016/S2542-5196(17)30141-9
Online Course
This online course is geared to professionals from human, animal or environmental health sectors involved in the implementation of the International Health Regulations (2005).
At the end of this course, you will be able to:
- Describe the One Health approach and principles of mult...isectoral collaboration.
- Provide examples of how a One Health approach may be taken to address a health threat or disease event.
- Explain how a One Health approach contributes to a functional national health system, including national IHR implementation, evaluation, and capacity building.
Course duration: 90 - 120 minutes.
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This guideline provides advice in regards to applications for Marketing Authorisations for antimicrobial veterinary medicinal products (VMPs) on the data required and the methodology to be used for performing an assessment of the risk to public health from antimicrobial resistance (AMR) due to use o...f the product. The scope of the guidance extends to VMPs intended for food producing species and to the transmission of AMR by the foodborne route or through direct contact with treated animals.
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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...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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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...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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In May 2015, the Sixty-eighth World Health Assembly recognized the importance of the public health problem posed by antimicrobial resistance by adopting the global action plan on antimicrobial resistance (“global action plan”). The global action plan proposes interve...ntions to control antimicrobial resistance, including reducing the unnecessary use of antimicrobials in humans and in animals. The global action plan also emphasizes the need to take a cross-sectoral, “One Health” approach for controlling antimicrobial resistance, involving efforts by actors from many disciplines including human and veterinary medicine.
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This situation analysis has gathered information about the current state of AMR, contributing factors and antimicrobial use in Zimbabwe from the human, animal, agricultural and environmental sectors. Data has been gathered from different sectors such as the general public, academia, the Ministry of ...Health and Child Care, the Ministry of Agriculture Mechanization and Irrigation Development and the Ministry of Environment, Water and Climate. It shows that AMR is a real concern in Zimbabwe and a threat to the health outcomes of humans, to the economic productivity of the livestock industry and a risk to the environment.
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The publication provides an overview and analysis of international instruments that set standards related to the use of antimicrobials across the human, animal and plant sectors, and their release into the environment. The purpose of the document is to identify existing instruments and standards in ...order to guide both their implementation and to inform discussions and direction for future international instruments related to antimicrobial use.
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La publicación ofrece una visión general y un análisis de los instrumentos internacionales que establecen normas relacionadas con el uso de antimicrobianos en los sectores humano, animal y vegetal, y su liberación en el medio ambiente. El propósito del documento es identificar los instrumentos ...y normas existentes a fin de orientar tanto su aplicación como informar los debates y la dirección de futuros instrumentos internacionales relacionados con el uso de antimicrobianos.
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A rapid review of evidence on the managing the risk of disease emergence in the wildlife trade - World Animal Health Organization (OIE)
Infectious diseases continue to impose unpredictable burdens on global health and economies, a subject that requires constant research and updates. In this sense, the objective of the present article was to review studies on the role of wild animals as reservoirs and/or dispersers of etiological age...nts of human infectious diseases in order to compile data on the main wild animals and etiological agents involved in zoonotic outbreaks.
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This report provides an overview of the main findings of the 2019–2020 harmonised AMR monitoring in the main food-producing animal populations monitored, in carcase/meat samples and in humans. Where available, monitoring data obtained from pigs, calves, broilers, laying hens and turkeys, as well a...s from carcase/meat samples and humans were combined and compared at the EU level, with particular emphasis on multidrug resistance, complete susceptibility and combined resistance patterns to critically important antimicrobials, as well as Salmonella and E. coli isolates possessing ESBL-/AmpC-/carbapenemase phenotypes.
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Over the next 8 weeks, you will explore and learn about some of the major and current Global Health Challenges at the Human-Animal-Ecosystem Interface: zoonotic emerging infections (e.g. Ebola, Nipah, MERS, Avian Influenza), antimicrobial resistance, neglected tropical diseases (e.g. rabies, leishma...niasis, zoonotic TB), snakebite and other human-animal conflicts etc. You will learn new concepts from the field of epidemiology, social anthropology, disease ecology, veterinary sciences, global health policy etc. and approaches such as One Health, Eco-Health and Planetary Health. Also, you will learn about innovative tools and frameworks used to study and tackle some of these Global Health challenges of the Sustainable Development Goals era.
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Infographic: Preventing and controlling neglected parasitic zoonoses: a key role for the animal health sector
The Quadripartite Organizations – the Food and Agriculture Organization of the United Nations (FAO), the United Nations Environment Programme (UNEP), the World Organisation for Animal Health (WOAH, founded as OIE), and the World Health Organization (WHO) – collaborate to drive the change and tra...nsformation required to mitigate the impact of current and future health challenges at the human–animal– plant–environment interface at global, regional and country level.
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This resource pack was developed for the country offices of the World Health Organization and national Public Health institutions, as an overview of the key information needed for advising their Member States in response to questions raised on human health due to influenza outbreaks or detections in... animals. It assembles the available information from WHO, FAO and WOAH, on recommendations and guidelines on influenza that might be relevant to a country experiencing detections or outbreaks of influenza in animals or facing suspicion of human infections with animal-origin influenza viruses. This resource pack updates the information provided in the Summary of Key Information Practical to Countries Experiencing Outbreaks of A(H5N1) and Other Subtypes of Avian Influenza, published in 2016. Additionally, the scope of this current document was broadened to address the risks to public health from all animal influenza viruses, not only avian influenza. Links to existing resources were updated and new resources were added where available.
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The pathway to strengthen multisectoral collaboration at the human-animal-environmental interface (HAI) aims to improve health security through One Health implementation. It outlines strategic guides and tools developed to support Member States through different steps of the HAI pathway.
The One Health (OH) High-Level Expert Panel (OHHLEP) of the Quadripartite Organizations defined OH as an integrated, unifying approach that aims to sustainably balance and optimize the health of people, animals and ecosystems.”
It recognizes the health of humans, domestic and wild animals, plan...ts, and the wider environment (including ecosystems) are closely linked and interdependent [1]. The Tripartite which comprised the Food and Agriculture Organization (FAO) of the United Nations (UN), the World Health Organization (WHO), and the World Organisation for Animal Health (WOAH) later became the Quadripartite organizations when the United Nations Environment Programme (UNEP) joined the OH alliance in 2022. There are Global and Regional Quadripartite Secretariats consisting of officials of headquarters and regional offices, respectively.
Over the years, the Tripartite/Quadripartite organizations and other partner agencies have developed several OH assessment and operational tools to support Member States in assessing their core capacities to achieve compliance with the requirements of international standards such as the International Health Regulations 2005 (IHR), WOAH’s Terrestrial and Aquatic Animal Health Codes, World Trade Organization’s Sanitary and Phytosanitary Measures (WTO-SPS), FAO/WHO Codex standards, etc. Technical areas that the existing tools currently support include progress monitoring, coordination and collaboration mechanisms, and capacity building for prevention, detection, preparedness, and response to health threats emerging at human-animal-environment interface. More OH B operational tools are in the pipeline.
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For thousands of years, humans have been using wildlife for commercial and subsistence purposes. Wildlife trade takes place at local, national and international levels, with different forms of wildlife, such as live animals, partly processed products and finished products. Wildlife is a vital source... of safe and nutritious food, clothing, medicine, and other products, in addition to having religious and cultural value. Wildlife trade also contributes to livelihoods, income generation and overall economic development.
However, wildlife trade can have detrimental effects on species conservation, depleting natural resources, impoverishing biodiversity and degrading ecosystems (Morton et al., 2021). Wildlife trade, whether legal or illegal, regulated or unregulated, can pose threats to animal health and welfare. It also presents opportunities for zoonotic pathogens to spill over between wildlife and domestic animals, and for diseases to emerge with serious consequences for public or animal health and profound economic impacts (IPBES, 2020; Swift et al., 2007; Smith et al., 2009; Gortazar et al., 2014; Stephen, 2021; Stephen et al., 2022; FAO, 2020). The risk of pathogen spillover and disease emergence is amplified with increased interaction between humans, wildlife and domestic animals. The risk of pathogen spillover has also been exacerbated by climate change, intensified agriculture and livestock production, deforestation, and other land-use changes. Wildlife trade is also a risk to ecosystem biodiversity via the introduction of invasive species (Wikramanayake et al., 2021). Therefore, increased effort must be put into understanding the potential consequences of the wildlife trade, mapping and analysing the adjacent risks, and implementing strategies to manage those risks. Reducing wildlife-trade risks not only helps to limit disease but also minimises the negative effects of invasive species. Between 1960 and 2021, invasive alien species caused estimated cumulative damage of around 116 billion euros across 39 countries in the European Union alone, despite strict import regulations (Haubrock et al., 2021). The effect of invasive species is extremely apparent.
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