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 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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Antimicrobial resistance (AMR) is a threat to human and animal health and refers to the ability of microorganisms to defy the medicines prescribed. For instance when antibiotics are used improperly, such as an incorrect dose, insufficient duration or wrong frequency, resistance is heightened. The mi...suse of antimicrobials affects their efficacy, and increasingly more infections and diseases become untreatable. Many gains made in modern medicine throughout the 20th century will be lost, making AMR a global public and animal health issue that requires concerted action. AMR and the use of antimicrobials (AMU) affect food safety and security, people’s livelihoods, as well as economic and agricultural development.
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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 of Practice for Control of the Use of Veterinary Drugs CAC/RCP 38-1993. Its obj...ectives 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 WHO CIA List should be used as a reference to help formulate and prioritize risk assessment and risk management strategies for containing antimicrobial resistance. The WHO CIA List supports strategies to mitigate the human health risks associated with antimicrobial use in ...food-producing animals and has been used by both public and private sector organizations. The list helps regulators and stakeholders know which types of antimicrobials used in animals present potentially higher risks to human populations and how use of antimicrobials might be managed to minimize antimicrobial resistance of medical importance. The use of the WHO CIA List, in conjunction with the OIE list of antimicrobials of veterinary importance (1) and the WHO Model Lists of Essential Medicines (2) , will allow for prioritization of risk management strategies in the human sector, the food animal sector, inagriculture (crops) and horticulture, through a coordinated multisectoral One Health approach.
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Barbados currently has a rudimentary framework and capacity to address the issue of antimicrobial resistance. There however needs to be coordination of efforts and improvement in areas where gaps have been identified.Actions required include improved antibiotic stewardship in healthcare settings, pr...evention of the spread of drug-resistant organisms//bacteria, elimination of the use of medically-important antibiotics for growth promotion in food animals, and expanded surveillance for drug-resistant bacteria in humans and animals.
The National Action Plan will provide the roadmap to guide Barbados in the effort to address the urgent and serious threat of AMR and will be organized around three goals for collaborative action.
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In the kingdom of Bahrain, the national antibiotic committee will set the framework for the national response to AMR, especially bacterial resistance to antibiotics. It will be aligned with the World Health Organization’s (WHO) Global Action Plan on Antimicrobial Resistance, and with standards and... guidelines from the Food and Agriculture Organization of the United Nations (FAO) and the World Organisation for Animal Health (OIE).
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Antimicrobial resistance is one of the most important threats to the health worldwide. Antimicrobial resistance or drug resistance is the reduction of the pharmaceutical effects of a drug against a disease or reduction of its effectiveness in improving the clinical signs of a disease. Antimicrobial ...resistance occurs naturally but misuse of antibiotics in human and animals significantly accelerates the process of developing antimicrobial resistance. In fact, antimicrobial resistance refers to the resistance of a microorganism to one or more antimicrobial drugs which had been previously sensitive to these drugs. Antimicrobial resistance can occur in a wide variety of pathogens including bacteria, parasites, viruses, fungi, and cancer cells and may threaten the life of every person, in every age, and in every country
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Antimicrobials have been a critical public health tool since the discovery of penicillin in 1928, saving the lives of millions of people around the world. Today, however, the emergence of drug resistance is reversing the miracles of the past eighty years, with drug choices for the treatment of many ...infections becoming increasingly limited, expensive, and, in some cases, non-existent.
Conscious of the public health threats of AMR to both humans, animals and the environment, the ministries of health and sanitation, agriculture forestry and food security and the environmental protection agency put together a national multi-sectoral coordinating group tasked with the responsibility of establishing mechanisms to integrate all initiatives into a single concerted action and development of the national AMR strategic plan (2018-2022). The National Strategic Plan on Antimicrobial Resistance is the first approach which addresses AMR specifically.
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The National Department of Health and Department of Agriculture, Forestry and Fisheries have collectively engaged to determine the key interventions that will form the basis for this strategy taking into account the recommendations from the WHO and OIE.
The development and implementation of a Natio...nal Antimicrobial Resistance Strategy Framework that complements international efforts is a major step towards containment of the growing threat of antimicrobial resistance in human and animal health. Global partnerships need to be strengthened because the responsibility for reducing resistance is a shared one. This responsibility is not only limited to the health care sector, but calls for collaborative action in all sectors - human, animal and agriculture.
The National Antimicrobial Resistance Strategy Framework will affect South Africa’s response to this looming threat. We already have the tools and expertise to make a difference, now all we need is to work together toward a better future.
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Antimicrobial resistance (AMR) threatens the effective prevention and treatment of an ever-increasing range of infections caused by bacteria, parasites, viruses and fungi.
AMR occurs when bacteria, viruses, fungi and parasites change over time and no longer respond to medicines making infections ha...rder to treat and increasing the risk of disease spread, severe illness and death. As a result, the medicines become ineffective and infections persist in the body, increasing the risk of spread to others.
Antimicrobials - including antibiotics, antivirals, antifungals and antiparasitics - are medicines used to prevent and treat infections in humans, animals and plants. Microorganisms that develop antimicrobial resistance are sometimes referred to as “superbugs”.
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Antimicrobial resistance (AMR) is a multifaceted, international public health problem, which poses a direct threat to the safety of the population of South Africa. A national response is required to complement the development of a global plan, as articulated in the WHO’s draft resolution EB134/37 ...“Combating antimicrobial resistance including antibiotic resistance”, adopted by theWorld Health Assembly in May 2014. The overuse of antimicrobials is driving resistance. A return to appropriate, targeted antimicrobial use in humans, animals and the environment is critical if we are to conserve the antimicrobial armamentarium. Various interventions have been put in place to address antimicrobial resistance in South Africa. However, these are insufficient to effectively tackle the threat faced by the country. The strengths of the current system are outweighed by its weaknesses.
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Monkeypox virus is an orthopoxvirus that causes human monkeypox, a viral disease with symptoms similar to smallpox, including fever and rash. Following the worldwide eradication of smallpox in 1980, monkeypox emerged as the most significant orthopoxvirus infection in humans. Cases are most often rep...orted from rural areas of Central and West African countries, particularly in regions close to tropical rainforest where people may have contact with infected animals. Someone can become infected through direct contact with respiratory droplets of another person who has monkeypox in the home or in a health facility, or with contaminated materials such as bedding. Although these are the main modes of person-to-person transmission, monkeypox outbreaks tend to occur in small clusters of a few cases without leading to widespread community transmission. For this reason, outbreaks can be easily controlled when responded to rapidly. On several occasions, monkeypox has been reported in other regions due to importation by travelers or infected animals. This course provides a general introduction to the disease through a video and accompanying downloadable presentation that can be reviewed at your own pace. It is intended for health personnel responsible for prevention and control of monkeypox, and for the general public.
The content and scope of this course on monkeypox have been tailored for outbreaks in African countries where the disease is endemic. The course material was last updated in 2020 and may not reflect most recent WHO guidance issued for the multi-country outbreak in 2022.
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The Global guidance framework for the responsible use of the life sciences: mitigating biorisks and governing dual-use research (the framework) aims to provide values and principles, tools and mechanisms to support Member States and key stakeholders to mitigate and prevent biorisks and govern dual-u...se research.
The framework adopts the One health approach and focuses on the role that responsible life sciences research can play in preventing and mitigating risks caused by accidents, inadvertent or deliberate misuse with the intention to cause harm to humans, nonhuman animals, plants and agriculture, and the environment.
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The objectives of the meeting were:
1. To step up the commitment of national authorities and technical and financial partners toWHO’s elimination objective for g-HAT.
2. To share achievements, challenges and views on the elimination goal among countries and implementing partners.
3. To assess t...he status of critical technical aspects to be solved in research and development of drugs and diagnostic tools, epidemiology, vector control and animal reservoirs.
4. To define the mechanisms for strengthening and organizing collaboration and coordination among stakeholders.
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Snakebite envenoming is a potentially life-threatening disease that typically results from the injection of a mixture of different toxins (“venom”) following the bite of a venomous snake. Envenoming can also be caused by venom being sprayed into a person’s eyes by certain species of snakes tha...t have the ability to spit venom as a defence measure. Not all snakebites result in envenoming: some snakes are non-venomous and venomous snakes do not always inject venom during a bite. About 50–55% of all snakebites result in envenoming. Snake venoms are complex mixtures of protein and peptide toxins, varying from one species to another, and even within species. The toxins in snake venoms are evolutionarily adapted to interact with a large variety of cellular targets in the organisms exposed to them. In humans and animals, snakebite envenoming affects multiple organ systems (depending on the particular species of snake and the classes of toxins present in the venom) and can cause, among other things: haemorrhage and prolonged disruption of haemostasis, neuromuscular paralysis, tissue necrosis, myolysis (muscle degeneration), cardiotoxicity, acute kidney injury, thrombosis and hypovolaemic shock.
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The incubation period (the time the virus spreads from the peripheral nerves near the site of the bite via the spinal cord to the brain – see transmission and pathogenesis) ranges in general between 2 and 3 month (2 weeks to 6 years are reported) depending on the site of infliction, the amount of ...virus and the virus strain. Due to its neurotropism all known lyssaviruses cause severe neurological symptoms as a result of an acute encephalitis. Therefore, clinical signs in humans and animals are very similar.
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Rabies is a vaccine-preventable, zoonotic, viral disease affecting the central nervous system. Once clinical symptoms appear, rabies is virtually 100% fatal. In up to 99% of cases, domestic dogs are responsible for rabies virus transmission to humans. Yet, rabies can affect both domestic and wild an...imals. It spreads to people and animals via saliva, usually through bites, scratches or direct contact with mucosa (e.g. eyes, mouth or open wounds). Children between the age of 5 and 14 years are frequent victims.
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Website last accessed on 14.04.2023
Les trématodes d'origine alimentaire sont des zoonoses et leurs agents pathogènes ne peuvent être transmis à l'homme qu'après avoir accompli un cycle de vie complexe, dont certaines étapes se déroulent dans un hôte animal intermédiaire. Les premiers h...ôtes intermédiaires de toutes les espèces de trématodes sont les escargots d'eau douce. Le deuxième hôte diffère selon l'espèce : dans le cas de la clonorchiase et de l'opisthorchiase, il s'agit de poissons d'eau douce, et dans le cas de la paragonimiase, de crustacés.
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The guide to implementing the One Health Joint Plan of Action (OH JPA) at national level provides practical guidance on how countries can adopt and adapt the OH JPA to strengthen and support national One Health action.
Building on the OH JPA theory of change, this guide describes three pathways a...nd five key steps to implement the OH JPA at national level:
Pathway 1 -- Governance, policy, legislation, financing and advocacy
Pathway 2 -- Organizational and institutional development, implementation and sectoral integration
Pathway 3 -- Data, evidence, information systems and knowledge exchange.
The stepwise approach comprises:
Situation analysis including stakeholder mapping and review of existing assessment results
Set-up/strengthening of a multisectoral, One Health coordination mechanism
Planning for implementation, including activity prioritization and leveraging of resources
Implementation of national One Health action plans
Review, sharing and incorporation of lessons learned.
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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.