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1
To understand the national situation, Ethiopia did a situation assessment, launched its first strategy in 2011, and took action to contain AMR, as detailed in the blue boxes found throughout this strategy. This updated version of the strategy was in response to the revised health and medicines polic
...
ies, health sector transformation plan, and the resolutions of the 68th World Health Assembly
of May 2015 and so that Ethiopia’s efforts could be coordinated with global initiatives in the prevention and containment of AMR.
more
The current trend in AMR in Uganda and globally is rising and calls for immediate action. The 71st UN General Assembly (UNGA), the 68th World Health Assembly, and organizations including the World Health Organization (WHO), the Food and Agriculture Organization (FAO), and the World Organization for
...
Animal Health (OIE), have agreed on a set of actions that member countries such as Uganda are committed to implement. The Government of Uganda (GoU) has put in place a framework through this National AMR Action Plan to address the threat AMR poses to the welfare of the peoples of Uganda. The Action Plan sets out a coordinated and collaborative One Health approach involving key stakeholders in government and other sectors to confront the threat and shall be coordinated by a Uganda National Antimicrobial Resistance Committee (UNAMRC).
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Orientation Programme on Adolescent Health for Health-care Providers - Handout
World Health Organization (WHO); Department of Child Health and Adolescent Health (CAH)
World Health Organization (WHO); Department of Child Health and Adolescent Health (CAH)
(2020)
C_WHO
Handout
New Modules
Accessed: 09.03.2020
Introduction to HIV, AIDS and Sexually Transmitted Infection Surveillance - Overview of the HIV/AIDS Epidemic with an Introduction to Public Health Surveillance
United States Department of Health and Human Services; Centers for Disease Control and Prevention (HHS-CDC); Global AIDS Program (GAP); et al.
United States Department of Health and Human Services; Centers for Disease Control and Prevention (HHS-CDC); Global AIDS Program (GAP); et al.
(2011)
C2
Participant Manual
February 2011
Edition 3.0
Revised Version 2011
Lessons Learned in Scaling Up TB/HIV Collaborative Activities
M. Dallao; R. L’Herminez; B. Weil; et al.
USAID From the American People; The Tuberculosis Coalition for Technical Assistance (TBCTA); Family Health International (FHI)
(2020)
C2
Accessed: 10.03.2020
Children affected by HIV/AIDS in South Africa
R. Smart; HIVAIDS Consultant
Save the Children (UK) South Africa Programme; The Department of Social Development
(2003)
C2
A Rapid Appraisal of Priorities, Policies and Practices
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
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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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Le NCPI a été rempli au cours du 1er trimestre 2014 par une équipe technique de 17 personnes responsabilisées en sous-groupes pour les parties A, B et UA. Les réponses aux différentes questions se sont référées à celles de NCPI de 2012 pour permettre une meilleure logique. La responsabilit
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é générale pour collecter et soumettre les informations requises dans le NCPI partie
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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 Antibiotics in Production animals – Cattle and Pigs,
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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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The Ghanaian Cabinet approved the antimicrobial resistance (AMR)Policy and Implementation plan(hereafter referred to as the national action plan or NAP)in December 2017, whilst the country case study was in progress. This has set in motion the implementation phase for Ghana, which is a long awaited
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event since the drafting of the Policy started in 2011. This case study, whilst limited in its ability to interact with all stakeholders, has identified entrypoints within the operational divisions of Ghana Health Services,as potential areas where the AMR policy platform may seek to embed AMR activities. Much work has already been done within Ghana to identify the key entrypoints within the various ministries and government agencieswhere AMR can be incorporated. These stakeholders already form part of the AMR Policy Platform which is the governance structure for AMR and have been participating actively in the development of the AMR Policy and NAP activities formulation.
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Nepal has only recently started its journey on the path to an integrated response to the challenge of antimicrobial resistance (AMR). Despite this, it is notable that the Nepal Health Sector Strategy Plan (HSSP)-2 mentions growing antibiotic resistanceas a public health challenge.
The most significant finding of the case study for integrating antimicrobial resistance (AMR)into existing programs and mobilising resources for funding in Nigeria, is that most of the AMR activities within the Nigerian National Action Plan (NAP)canalready be incorporated within exi
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sting programs of the Federal Ministry of Health (FMOH), Federal Ministry of Agriculture and Rural Development (FMARD) and their agencies or institutes. Certain programs and initiatives already have an AMR element incorporated or could,with little effort,include some additional AMR actions, however much is already being planned and has started with existing federal funding and existing staffing and other resources including development partner support and is being driven by significant political will from the ministries as well as implementation support from the Nigerian Centers for Disease Control as the focal point.
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Produced by Training and Research Support Centre for the Regional Network for Equity in Health in east and southern Africa (EQUINET), March 20, 2020.
This brief summarises and provides links to official, scientific and other resources to support an understanding of and individual to regional level
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responses to the epidemic of ‘novel coronavirus’, also known as COVID-19.
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Antibiotic stewardship refers to coordinated efforts and activities that seek to measure and improve use of antibiotics. Implementation of ASPs has demonstrated positive public health and clinical impacts including reducing costs, lengths of hospital stays, and the burden of antibiotic resistance wh
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ile maintaining or improving patient outcomes. The U.S. Centers for Disease Control and Prevention (CDC) released the Core Elements of Hospital Antibiotic Stewardship Programs in 2014, which outlines essential components for ASPs in hospitals and provides practical guidance for implementing a robust ASPin an acute care facility. Variations to the Core Elements have been developed to deal with the particular challenges in small, rural or critical access hospitals in the United States and in outpatient facilities and nursing homes.
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South Africa has faced many challenges over the past two decades, accomplishing profound positive changes in the social structure and government of the nation. This has not yet fully translated into better health for the population, however, particularly the poorest segment. In fact, the p
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opulation has lost ground since the 1990s in virtually all important health indicators, leaving South Africa with a high burden of infectious disease.
August 2011, Vol. 101, No. 8 SAMJ
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Antibiotic resistance is no longer a concern for the distant future but is a pressing issue, both globally and in Nepal. As part of global effort to preserve the effectiveness of antibiotics, the Global Antibiotic Resistance Partnership (GARP)-Nepal was established to doc
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ument the current state of antibiotic access, use and resistance in the country, and to identify policies and actions that could set a course for antibiotic sustainability.
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Event-based surveillance (EBS) is defined as the organized collection, monitoring, assessment and interpretation of mainly unstructured ad hoc information regarding health events or risks, which may represent an acute risk to health. Both indicator-based and event-based surveillance components serve
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the early warning and response (EWAR) function of the public health surveillance system. The Framework for Event-based Surveillance offers guidance to public health practitioners seeking to implement EBS at each administrative level in their countries.
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Antimicrobial resistant (AMR) organisms are increasing globally, threatening to render existing treatments ineffective against many infectious diseases. In Africa, AMR has already been documented to be a problem for HIV and the pathogens that cause malaria, tuberculosis, typhoid, cholera, meningitis
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, gonorrhea, and dysentery. Recognizing the urgent need for action, the World Health Assembly adopted the Global Action Plan on Antimicrobial Resistance in May 2015. In accordance with the Global Action Plan and to meet needs specific to Africa, Africa CDC will establish the Anti-Microbial Resistance Surveillance Network (AMRSNET). AMRSNET is a network of public health institutions and leaders from human and animal health sectors who will collaborate to measure, prevent, and mitigate harms from AMR organisms.
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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
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guidelines from the Food and Agriculture Organization of the United Nations (FAO) and the World Organisation for Animal Health (OIE).
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