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Rabies is a fatal viral disease, but is preventable in humans. The rabies virus is transmitted to humans through virus-laden saliva from a rabid animal, mostly dogs. The virus is shed in the saliva of an infected
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animal and can be introduced into another body through bites, scratches and any other wounds that transect the skin. Contact of the infected saliva with mucous membranes is also thought to be a possible route of infection, whereas contact of infected saliva with intact skin is not considered an exposure. Rabies is preventable through pre-exposure prophylaxis (PrEP) for individuals at high and continual risk, and post-exposure prophylaxis (PEP).
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Integrating neglected tropical diseases into global health and development: fourth WHO report on neglected tropical diseases evaluates the changing global public health landscape; assesses progress
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towards the 2020 targets; and considers the possible core elements of a strategic vision to integrating neglected tropical diseases into the 2030 Agenda of the Sustainable Development Goals.
Advances have been made through expanded interventions delivered through five public health approaches: innovative and intensified disease management; preventive chemotherapy; vector ecology and management; veterinary public health services; and the provision of safe water, sanitation and hygiene. In 2015 alone nearly one billion people were treated for at least one disease and significant gains were achieved in relieving the symptoms and consequences of diseases for which effective tools are scarce; important reductions were achieved in the number of new cases of sleeping sickness, of visceral leishmaniasis in South-East Asia and also of Buruli ulcer.
The report also considers vector control strategies and discusses the importance of the draft WHO Global Vector Control Response 2017–2030. It argues that veterinary public health requires a multifaceted approach across the human–animal interface as well as a multisectoral programme of work to protect and improve the physical, mental and social well-being of humans, including veterinary, water, sanitation and hygiene.
Integration of activities and interventions into broader health systems is crucial, and despite challenges, has the potential to accelerate progress towards universal health coverage while advancing the 2030 Agenda.
In short, this report drives the message home that “no one must be left behind”.
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Smallpox eradication was certified in 1980. Mpox has been endemic in Central and West African countries since it was first detected in 1958 . It is a zoonosis; cases are often found close to tropical rainforests where various animals carry the orthopoxvirus that causes the disease. In endemic countr
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ies, most mpox infections in humans result from a primary animal-to-human transmission. Human-to-human transmission can result from close contact with respiratory secretions, skin lesions of an infected person, or recently contaminated objects. Transmission can also occur via the placenta from mother to fetus or through close contact during and after birth.
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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
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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 (AMR) is occurring everywhere in the world, compromising the ability to treat infectious diseases, as well as undermining many other advances in health and medicine. Underlying factors that drive AMR include; weak or absent
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surveillance and monitoring systems, inadequate systems to ensure quality and uninterrupted supply of medicines, inappropriate and irrational use of medicines including in animal husbandry, poor infection prevention and control practices, and depleted arsenals of diagnostics, medicines and vaccines as well as insufficient research and development of new products.
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The global tripartite self-assessment survey of country progress in addressing antimicrobial resistance (AMR) is a component of a broader approach for monitoring and evaluation of the global action plan on AMR. This report analyses the results of the second tripartite self-assessment survey. It has
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been developed and run by the three Tripartite organizations (Food and Agriculture Organization of the United Nations (FAO), World Organisation for Animal Health (OIE) and World Health Organization (WHO)) and reflects progress in the human, animal (terrestrial and aquatic), plant, food safety and environmental sectors. 154 countries out of 194 WHO Member States responded to this round of the self-assessment survey – a response rate of 79.4%.
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The animal health subsector within the agriculture sector is the gatekeeper of antimicrobial resistance (AMR) in livestock, aquaculture, animal pro
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ducts, and the immediate animal environment. In support of member countries taking responsibility for and moving forward with putting AMR monitoring and 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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Antimicrobial agents play an indispensable role in animal health and welfare management. At the same time, the need for prudent use is obvious to ensure good food safety outcomes and to manage the p
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otential risk of antimicrobial resistance. The emergence of multi-resistant bacteria is posing challenges to health professionals and communities around the world for both human and animal health. These bacteria are not destroyed by the common antimicrobial agents and so pose a risk to people, particularly children, the elderly and those with poorly functioning immune systems, as well as to animals.
Throughout the years, the dairy sector has been very much aware of the need for responsible use and has, in many countries, implemented adequate measures throughout the dairy supply chain.
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Public health challenges over the past decade have highlighted the importance of approaching health through a holistic lens of human, animal, and e
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nvironmental sectors, recognizing the need for a collaborative response against shared threats. Zoonotic diseases, transmitted between humans and animals through their shared environment, are at the forefront of the threats requiring collaborations that span human health, natural ecosystems, and food systems.
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Global Health, Local Information.
The freely available Web site 'healthmap.org' and mobile app 'Outbreaks Near Me' deliver real-time intelligence on a broad range of emerging infectious diseases for a diverse audience including libraries, local
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health departments, governments, and international travelers. HealthMap brings together disparate data sources, including online news aggregators, eyewitness reports, expert-curated discussions and validated official reports, to achieve a unified and comprehensive view of the current global state of infectious diseases and their effect on human and animal 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,
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such as an incorrect dose, insufficient duration or wrong frequency, resistance is heightened. The misuse 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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Antimicrobial resistance (AMR) has emerged as a major public health concern, around which the international leadership has come together to form strategic partnerships and action plans. The main driving force behind the emergence of AMR is selection
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pressure created due to consumption of antibiotics. Consumption of antibiotics in human as well as animal sectors are driven by a complex interplay of determinants, many of which are typical to the local settings.
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Nourish People and Planet.
Good Food empowers us to live full and productive lives. It supports healthy brains and bodies and significantly reduces the risk of disease and disability. Good Food benefits the planet and curbs climate change, making food supply chains more regenerative and encouraging
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agricultural practices that restore biodiversity, improve soil health, protect human and animal welfare, and elevate culture and community.
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Zoonotic tuberculosis (TB) is a form of TB in people predominantly caused by the bacterial species, Mycobacterium bovis, which belongs to the M. tuberculosis complex. The implications of zoonotic TB go beyond human health. The organism
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is host-adapted to cattle, where it is referred to as bovine TB, and it also causes TB in other animal species including wildlife. Bovine TB has an important economic impact and threatenslivelihoods.
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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
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a multi-sectoral approach to address AMR. The resulting FAO Action Plan on antimicrobial resistance has four components to address the AMR threat.
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As the number of transboundary pest and animal and foodborne disease outbreaks rises, so does the number of people who are chronically hungry due to these and other factors. The correlation can be explained by the link between our
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health and that of the planet. We rely on land and sea for the production of safe and quality foods for our daily nourishment. Pests and disease epidemics negatively impact the quality, quantity and safety of our food sources, and cripple economic growth and efficiencies in production. Furthermore, the epidemic and endemic levels of the pathogens and disease vectors can be difficult to control. This is why FAO stresses and promotes the special efforts required for cost-effective preventive measures rather than the more expensive control, disinfestation, treatment and disposal measures. When preventive measures are late or difficult, preparedness and contingency plans must be in place to enable rapid response. Early warning systems, based on close monitoring, surveillance, and timely reporting are fundamental to warn and empower communities to safeguard their livelihoods and assets by enhancing disease and pest prevention measures and for government services to take immediate measures to protect communities and national economies.
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Dengue is a significant public health problem. There are four dengue virus serotypes identified; however, its diagnosis is difficult due to the existence of many viruses, bacteria, and parasites producing the same clinical presentation, being presen
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t in the same geographical area and even producing coinfections. Therefore, determining whether a person has, had, or is infected with dengue virus is of great importance. In order to do so, direct and indirect laboratory tests have been developed to identify the virus or part of its structure that generally detects the antibody response. These techniques are used for diagnosis, epidemiological studies, monitoring, assessment and production of vaccines and antivirals, etc. They range from the use of cell cultures, animal models, inoculation by insects, and serology tests to the use of detection molecular tests and quantification of genetic material that are described in this chapter herein, a brief explanation of this methodology, its strengths and weaknesses, and its application in the dengue research.
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Antimicrobial resistance has become one of the most eminent threats to global health and a rising concern for healthcare specialists. All around the world, many common infections are becoming resistant to the antimicrobial medicines used to treat th
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em, resulting in high morbidity and mortality with serious social and economic implications. Additionally, there are few new antibiotics being developed but they are expensive and are not new classes. Antimicrobials are critical in the management of infectious diseases. They are also essential tools for protecting animal health and welfare, and contribute in production of safe food. Inappropriate use of antimicrobials can lead to resistance which is known as the antimicrobial resistance (AMR) resulting in high morbidity and mortality with serious social and economic implications.
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Global actions to reduce antimicrobial resistance (AMR) include optimising the use of antimicrobial medicines in human and animal health. In countries with weak healthcare regulation, this requires
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a greater understanding of the drivers of antibiotic use from the perspective of providers and consumers. In Bangladesh, there is limited research on household decision-making and healthcare seeking in relation to antibiotic use and consumption for humans and livestock. Knowledge is similarly lacking on factors influencing the supply and demand for antibiotics among qualified and unqualified healthcare providers. The aim of this study is to conduct integrated research on household decision-making for healthcare and antibiotic use, as well as the awareness, behaviours and priorities of healthcare providers and sellers of antibiotics to translate into policy development and implementation
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Antimicrobial resistance (AMR) is a growing threat to our health, causing at least 700,000 deaths globally every year. The death toll attributed to AMR is predicted to rise, with most lives lost in low and middle income countries (LMICs).
AMR is al
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so a critical challenge for many other sectors, including animal health and welfare, aquaculture, agriculture, food safety and broader socioeconomic development. A coordinated, cross-sectoral and multi-pronged approach is needed at all levels of government to ensure an effective and targeted response to this mounting resistance.
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