This publication describes an arduous campaign to tackle the use of antimicrobials - specifically antibiotics - in the Danish swine-producing sector thanks to the collaboration between the regulatory sector within the Ministry of Environment and Food
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, private veterinary practitioners and swine producers. The document is a retrospective tribute to all those who had the foresight to make significant changes to ensure consumer protection - improving hygiene at primary sites, developing options for intervention, identifying sites for intervention, setting targets, restructuring the relationship between the veterinary services and farmers, and implementing changes in behaviour for greatest impact
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In the last quarter of 2019 Southern African Regional Interagency Standing Committee Africa (RIASCO) reported that more than 11 million people were experiencing crisis or emergency levels of food insecurity in nine Southern African countries1 due to
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deepening drought and climate related crisis. The Southern African Development Community (SADC) urged for urgent humanitarian action, and at the beginning of November 2019 Angola, Botswana, Lesotho and Namibia had declared states of drought emergencies, requiring international assistance to address the worsening food insecurity situation.
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This document provides additional guidance for the responsible and prudent use of antimicrobials in food-producing animals, and should be read in conjunction with the Recommended Intern
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ational Code of Practice for Control of the Use of Veterinary Drugs CAC/RCP 38-1993. Its objectives are to minimize the potential adverse impact on public health resulting from the use of antimicrobial agents in food-producing animals, in particular the development of antimicrobial resistance. It is also important to provide for the safe and effective use of veterinary antimicrobial drugs in veterinary medicine by maintaining their efficacy. This document defines the respective responsibilities of authorities and groups involved in the authorization, production, control, distribution and use of veterinary antimicrobials such as the national regulatory authorities, the veterinary pharmaceutical industry, veterinarians, distributors and producers of food-producing animals.
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The desired impact of the OH JPA is a world better able to prevent, predict, detect and
respond to health threats and improve the health of humans, animals, plants and the
environment while contributing to sustainable development. The OH JPA aims
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to work
towards this vision in the following way:
• Provide a framework for action and propose a set of activities the four organizations
can offer together to advance and sustainably scale up One Health.
• Provide upstream policy and legislative advice and technical assistance, to help
set national targets and priorities across the sectors for the development and
implementation of One Health legislation, initiatives and programmes.
• Take stock of existing cross-sectoral global and regional initiatives around One
Health, identify and advise on synergies and overlaps, and support coordination.
• Mobilize and make better use of resources across sectors, disciplines and
stakeholders.
• The OH JPA is guided by a theory of change and makes use of One Health principles
to strengthen collaboration, communication, capacity building and coordination
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Although Shiga toxin-producing Escherichia coli (STEC) have been isolated from a variety of food production animals, they are most commonly associated with ruminants from which we derive meat and mi
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lk. Because of the widespread and diverse nature of ruminant-derived food production, coupled with the near ubiquity of STEC worldwide, there is no single definitive solution for controlling STEC that will work alone or in all situations. Instead, the introduction of multiple interventions applied in sequence, as a “multiple-hurdle scheme” at several points throughout the food chain (including processing, transport and handling) will be most effective.
This report summarizes the review and evaluation of interventions applied for the control of STEC in cattle, raw beef and raw milk and raw milk cheese manufactured from cows’ milk, and also evaluates available evidence for other small ruminants, swine and other animals. The information is presented from primary production, to the end of processing, providing the reader with information on the currently available interventions based on the latest scientific evidence.
This work was undertaken to support the development of guidelines for the control of STEC in beef, raw milk and cheese produced from raw milk by the Codex Committee on Food Hygiene (CCFH).
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This survey of agricultural livelihoods and food security in the context of the impact of coronavirus disease 2019 (COVID-19) and other shocks was undertaken during February 2021 by the Food and Agr
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iculture Organization of the United Nations (FAO) in 1 380 villages within 129 districts of 20 provinces, covering all agro-ecological zones of Afghanistan.
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This document provides additional guidance for the responsible and prudent use of antimicrobials in food-producing animals, and should be read in conjunction with the Recommended International Code
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of Practice for Control of the Use of Veterinary Drugs CAC/RCP 38-1993. Its objectives are to minimize the potential adverse impact on public health resulting from the use of antimicrobial agents in food-producing animals, in particular the development of antimicrobial resistance.
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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 Organizatio
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n (WHO) – collaborate to drive the change and transformation 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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In aquaculture, antibiotics have been used mainly for therapeutic purposes and as prophylactic agents. The contribution to antimicrobial resistance of antibiotics used in aquaculture is reviewed here, using a risk analysis framework. Some recommendations on responsible conduct in this context are pr
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oposed, aimed at diminishing the threat of build up of antimicrobial resistance.
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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 Ant
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ibiotics in Production animals – Cattle and Pigs, 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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This manual will contribute directly to the fourth focus area of the FAO Action Plan by promoting the prevention of infections and the prudent use of antibiotics in the pig and poultry sectors. The pig and poultry sectors are addressed together, as these sectors generally have the highest use of ant
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ibiotics. This manual is jointly applicable to veterinarians, other health professionals and farmers; a key to success in using antibiotics effectively and prudently is good dialogue among these professions.
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Antimicrobials are widely used in food animal production, and use is rapidly increasing.
In an era of growing demand for animal products, there is an increasing trend towards the industrial production of
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food animals, especially in lower- and middle-income countries (LMICs). One hallmark of this method of animal production is the
use of antimicrobial drugs, which in the majority of cases are administered to healthy animals for purposes other than
treating or controlling disease (termed “therapeutic uses”)
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AMR is one of the Key priority of the global health security agenda action package, as well as it is one of the commitments of Ministry of Public Health Afghanistan to combat AMR. In Afghanistan because of war and some other political issues the borders of the country are not well secured and well c
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ontrolled therefore control of smuggling of medicine is a big challenge in front of the rational use of medicine. Lack of knowledge (professionals and public), poor economic state, conflict of war, presence of remote areas and etc…. are the other main challenges for this to won the battle of combating AMR.
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This short paper aims to identify key evidence gaps in our knowledge of livestock- and fisheries-linked antimicrobial resistance in the developing world, and to document on-going or planned research initiatives on this topic by key stakeholders.
The antimicrobial resistant (AMR) infections in
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animals that are of most potential risk to human health are likely to be zoonotic pathogens transmitted through food, especially Salmonella and Campylobacter. In addition, livestock associated methicillin resistant Staphylococcus aureus (LA MRSA) and extended spectrum beta lactamase E. coli (ESBL E. coli) are emerging problems throughout the world.
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Indian markets caused a stir across the country.1
According to the Centre for Science and the Environment (CSE), a respected New Delhi-based NGO, most honey brands
sold in India contained varying amounts of antibiotics. Their consumption over time could induce resistance to antibiotics,
putting p
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eople at risk of treatment failure in case of severe infections.
For the study, 12 samples were picked in Delhi, all well-known brands, including one each from Australia and Switzerland.
Antibiotics found included Chloramphenicol and various broad-spectrum drugs such as Ciprofloxacin and Erythromycin.
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The annual Joint Meeting of the Food and Agriculture Organization of the United Nations (FAO) Panel of Experts on Pesticide Residues in Food and the Environment and the World Health Organization (WH
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O) Core Assessment Group on Pesticide Residues (JMPR) was held in Rome, Italy, from 13 to 22 September. The FAO panel of experts had met in preparatory sessions from 8 to 12 September. The Meeting was held in pursuance of recommendations made by previous Meetings and accepted by the governing bodies of FAO and WHO that studies should be undertaken jointly by experts to evaluate possible hazards to humans arising from the occurrence of pesticide residues in foods. During the meeting the FAO Panel of Experts was responsible for reviewing pesticide use patterns (use of good agricultural practices), data on the chemistry and composition of the pesticides and methods of analysis for pesticide residues and for estimating the maximum residue levels that might occur as a result of the use of the pesticides according to good agricultural use practices. The WHO Core Assessment Group was responsible for reviewing toxicological and related data and for estimating, where possible and appropriate, acceptable daily intakes (ADIs) and acute reference doses (ARfDs) of the pesticides for humans. This report contains information on ADIs, ARfDs, maximum residue levels, and general principles for the evaluation of pesticides. The recommendations of the Joint Meeting, including further research and information, are proposed for use by Member governments of the respective agencies and other interested parties.
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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
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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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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