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- Regional analysis of acute food insecurity: Current situation (February-March 2015)
Sustainable food cold chains: Opportunities, challenges and the way forward
Food and Agriculture Organization of the United Nations FAO; United Nations Environment Programme UNEP
Reliefweb OCHA Services
(20022)
CC
Amid food and climate crises, investing in sustainable food cold chains crucial
- More than 3 billion people can’t afford a healthy diet
- Lack of effective refrigeration directly results in the
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loss of 526 million tons of food production, or 12 percent of the global total
- Developing countries could save 144 million tonnes of food annually if they reached the same level of food cold chain infrastructure as developed countries
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Antimicrobials play a critical role in treatment of terrestrial and aquatic food producing animals and plants, helping to assure food safety and quality, animal health and welfare and farmer livelih
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oods.
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Food safety and antimicrobial resistance research: A One Health perspective. Presented at the Emerging Pathogens Institute Seminar Series, Gainesville, Florida, 26 July 2019
Food is one of the most traded goods, and the conflict in Ukraine, one of the European breadbaskets, has triggered a significant additional disruption in the global food supply chains after the COVI
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D-19 impact. The disruption to food output, supply chains, availability, and affordability could have a long-standing impact. As a result, the availability and supply of a wide range of food raw materials and finished food products are under threat, and global markets have seen recent increases in food prices. Furthermore, the Russian-Ukrainian conflict has adversely affected food supply chains, with significant effects on production, sourcing, manufacturing, processing, logistics, and significant shifts in demand between nations reliant on imports from Ukraine.
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Antimicrobial Resistance and our Food Systems - Challenges and Solutions
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
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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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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
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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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- Key Development Challenges of a fundamental Transformation of Agriculture
- Livestock Production: A Climate Change and Food Security Hot Spot
- The Role of Research and Technology and Extension
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Services
- The Role of Changes in Land Use
- The Importance of International Trade and trade Rules for Transforming Global Agriculture
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Improvements in water sanitation and hygiene (WASH) and wastewater management in all sectors are critical elements of preventing infections and reducing the spread of antimicrobial resistance (AMR) as identified in the Global Action Plan to combat AMR. Yet, at present, WASH and wastewater management
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actors and improvement actions are under-represented in AMR multi-stakeholder platforms and national action plans (NAPs). This WHO/FAO/OIE technical brief on WASH and wastewater management to reduce the spread of AMR provides a summary of evidence and rationale for WASH and wastewater actions within AMR NAPs and sector specific policy to combat AMR. Evidence and actions are presented in the domains of; coordination and leadership, households and communities, health care facilities, animal and plant production, manufacturing of antimicrobials, and surveillance and research.
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Liberia: mVAM bulletin #16 - Food prices fall in Lofa County, March 2015
World Food Programme
(2015)
In March, households in Lofa used fewer negative coping strategies than in February. The counties with highest levels of negative coping include Bomi, Grand Cape Mount, Gbarpolu and Lofa.
Negative coping strategies are most frequently used by the poorest households, by those living in Ebola
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-affected rural areas and by households headed by women.
Imported and local rice prices remained stable. As the land preparation season advances, wage rates are improving (+3% compared to February).
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Uncontrolled use of antibiotics for disease control and treatment or growth stimulation in livestock, have increased resistance to antibiotics of bacteria that can reach humans through the food chain.
Antimicrobial resistance (AMR) is a global human, animal, plant and environment health threat that needs to be addressed by every country. The impacts of AMR are wide-ranging in terms of human health, animal health, food security and safety, environ
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mental effects on ecosystems and biodiversity, and socioeconomic development. Just like the climate crisis, AMR poses a significant threat to the delivery of the 2030 Agenda for Sustainable Development. The response to the AMR crisis has been spearheaded through the global action plan on antimicrobial resistance (GAP-AMR), developed by the World Health Organization (WHO) in 2015, in close collaboration with the Food and Agriculture Organization of the United Nations (FAO) and the World Organisation for Animal Health (WOAH), and formally endorsed by the three organizations’ governing bodies and by the Political Declaration of the high-level meeting of the United Nations General Assembly on AMR in 2016. In 2022, the three organizations officially became the Quadripartite by welcoming the United Nations Environment Programme (UNEP) into the alliance “to accelerate coordination strategy on human, animal and ecosystem health”.
The aim of the GAP-AMR is to ensure the continuity of successful treatment with effective and safe medicines.
Its strategic objectives include:
• improving the awareness and understanding of AMR;
• strengthening the knowledge and evidence base through surveillance and research;
• reducing the incidence of infection through effective sanitation, hygiene and infection prevention measures; optimizing the use of antimicrobial medicines in human and animal health; and
• developing the economic case for sustainable investment that takes account of the needs of all countries and increasing investment in new medicines, diagnostic tools, vaccines and other interventions.
With the adoption of the GAP-AMR, countries agreed to develop national action plans (NAPs) aligned with the GAP-AMR to mainstream AMR interventions nationally. Individually, the Quadripartite took action to advance AMR interventions in their respective sectors. FAO adopted a resolution on AMR recognizing that it poses an increasingly serious threat to public health and sustainable food production, and developed an AMR action plan to support the resolution’s implementation. For its part, WOAH developed a strategy on AMR aligned with the GAP-AMR, acknowledging the importance of a One Health approach to AMR. Similarly, more recently, UNEP’s governing body, the United Nations Environment Assembly, recognized that AMR is a current and increasing threat and a challenge to global health, food security and the sustainable development of all countries, and welcomed the GAP-AMR and the NAPs developed in accordance with its five overarching strategic objectives
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Climate change, conflict, COVID-19, and gender inequality impacts food security globally. Together with the Ukraine conflict, the food crisis across the world is worsening. UN Women’s Zero Hunger
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Sustainable Development Goal Map shows that 49.7% of people are facing moderate or severe food insecurity in Guatemala, 45.6% in Honduras, and 32.7% in Ecuador. Increasing prices of energy, fertilizer, and agriculture inputs are also raising the prices of food and food production.
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Antimicrobial or antibiotic resistance is a multi-sectoral global threat affecting human and animal health, food safety, plants, fisheries and the environment as a whole.
Hence, there is a need for a multi-sectoral approach to address AMR. The resu
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lting FAO Action Plan on antimicrobial resistance has four components to address the AMR threat.
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Antimicrobial resistance (AMR) is a natural phenomenon in which microorganisms such as bacteria, viruses, fungi and parasites adapt to antimicrobial agents and cause medications to be ineffective for its curing purpose. AMR is often the consequence of any use o
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f antimicrobial drugs, exacerbated by inappropriate use.
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Global Food Explorer
recommended
Explore the world's food system crop-by-crop from production to plate.
La résistance aux antimicrobiens (ou RAM, cette abréviation étant est ici également employée en mode adjectif pour désigner les organismes « résistants aux antimicrobiens ») est une préoccupation majeure pour la santé publique mondiale et une question de sécurité san
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itaire des aliments. Lorsque des pathogènes deviennent résistants aux agents antimicrobiens, ils peuvent présenter un risque plus important pour la santé découlant d’un éventuel échec thérapeutique, de la diminution de choix thérapeutiques et de la probabilité accrue d’apparition et de gravité de la maladie. Les problèmes en rapport avec la RAM sont liés de façon inhérente à l’usage des antimicrobiens dans tous les types d’environnements, y compris les utilisations humaines et non humaines. L'utilisation d’agents antimicrobiens dans la production alimentaire animale et végétale représente un facteur de risque important pour la sélection et la transmission de micro-organismes résistants aux antimicrobiens (micro-organismes RAM) et de déterminants de la résistance aux antimicrobiens (déterminants de la RAM) des animaux et des plantes alimentaires à l’humain par sa consommation d’aliments.
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