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
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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.
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Emergence of antimicrobial resistance is a result of the use, overuse and misuse of antibiotics both in humans and animals. In Ethiopia, there are indications on the misuse of antibiotics by health care providers’, unskilled practitioners, and drug consumers. These coupled with rapid spread of res
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istant bacteria and inadequate surveillance contributed to the problem. Bacterial infections are the major causes of death in Ethiopia. Studies on antibacterial resistance and on bacterial infections have shown that emerging antibacterial resistance threatens the management of bacterial infections; however, the prevention and containment has received far too little attention.
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Long-term polio vaccine security – the timely, sustained, and uninterrupted supply of suitable types of affordable, quality-assured polio vaccines – is essential in the global effort to achieve and maintain a polio free world. However, fragmented approaches and short-term planning pose considera
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ble challenges to securing long-term polio vaccine security.
This framework is designed to enhance the efforts of existing structures and workstreams within the Global Polio Eradication Initiative (GPEI) and other stakeholders by improving communication and coordination on vaccine security. Ensuring vaccine security is crucial for maintaining a timely, sustained, and uninterrupted supply of affordable, quality-assured polio vaccines in the global fight to achieve and sustain a polio-free world. However, challenges such as fragmented approaches, short-term planning, a dynamic policy environment, and a diverse product pipeline present significant risks to long-term vaccine security. This framework emphasizes the need for alignment and coordination across key polio operational domains, including Poliovirus Containment, Research and Development, and Vaccine Manufacturing and Supply. It also underscores the critical role of normative frameworks and policies in shaping long-term vaccine strategies that guide these operational areas. Additionally, it highlights the importance of cross-cutting elements such as financing and access to resources, along with the integration of communication, coordination, and advocacy efforts, as essential enablers for achieving vaccine security. To secure long-term vaccine supply, it is imperative to enhance alignment and strengthen coordinated efforts across workstreams and with stakeholders, including vaccine manufacturers.
Recognizing that vaccine security is an ongoing endeavor, requiring continuous monitoring and adaptation, this framework will undergo regular updates and revisions. Initially, the management of the framework will be carried out by the GPEI Vaccine Supply Group (VSG).
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In recognition of the growing problem of antimicrobial resistance (AMR), its increasing threat to human, animal and plant health, and the need for a One Health approach to address this issue, the 39th Session of the Codex Alimentarius Commission (CAC) agreed it was important for the food safety comm
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unity to play its part and re-established the ad hoc Codex Intergovernmental Task Force on Antimicrobial Resistance (TFAMR) ). The objectives of the Task Force were
to revise the current Codex Code of Practice to Minimise and Contain Antimicrobial Resistance and to develop new guidance on surveillance programmes relevant to foodborne AMR.
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These guidelines form part of efforts to institutionalise the prevention and containment of antimicrobial resistance (AMR) in health care facilities in South Africa, as outlined in the Antimicrobial Resistance Strategic Framework and Implementation
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Plan. The focus of these guidelines is on two interrelated aspects of prevention of healthcare associated infections (HAIs) and their spread; and the application of antimicrobial stewardship (AMS) practices at hospital level.
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This is the first NAP on the Prevention and Containment of AMR in Kenya. It has been developed based on the National Policy on Prevention and Containment of AMR and the recommendations of the situat
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ion analysis on AMR conducted in 2011 and updated in 2016. This strategy provides a regulatory and implementation framework to establish and strengthen systems to contain the emergence and spread of AMR. Implementation of this strategy will require substantial funding and high-level political commitment. Because AMR is a multidisciplinary and intersectoral issue, successful implementation of this strategy will require effective coordination and collaboration among different sectors.
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SITUATION ANALYSIS AND RECOMMENDATIONS
Environmental pollution, protection, quality and sustainability
Myanmar, as a country going through rapid socio-political transition and institutional development also suffers with a high burden of infectious disease. An ongoing challenge has been to effectively reach its 51 million population, most of whom battle tuberculosis, acute respiratory infections, diar
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rhoea and malaria including amongst under-five children.
Limited research data on the occurrence of resistant organisms in the nation have, makes it hard to estimate the exact antimicrobial resistance (AMR) scenario. Limited peer reviewed evidence indicates significant divergence from the average resistance trends in APAC region. Nevertheless, several key steps by Government of Myanmar have been instrumental in paving the way for the country to join other nations in the South East Asia Region to speed up its plan on addressing the AMR crisis. Combating antimicrobial resistance would, however, require highest political commitment, multi-sectoral coordination, sustained investment and technical assistance.
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These guidelines form part of efforts to institutionalize the prevention and containment of antimicrobial resistance (AMR) in healthcare facilities in South Africa, as outlined in the Antimicrobial Resistance Strategic Framework and Implementation P
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lan. The focus of these guidelines is on two interrelated aspects of prevention of healthcare associated infections (HAIs) and their spread; and the application of antimicrobial stewardship (AMS) practices at hospital level. They aim to serve as a practical, step-by-step or ‘how-to’ guide, addressing the infection prevention and AMS components of a robust response in a hospital. They draw on
evidence from various international guidance documents and standards for interventions that have been shown to be successful in infection
prevention and AMS programmes. These interventions have been customised to the South African hospital setting based on local
experiences in the public and private health sectors. This was done through a series of workshops and requests for comment involving
country-level experts.
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Maldives has made significant strides in the area of infectious disease prevention and control. This is exemplified by elimination of malaria from Maldives in 2015 and successes in TB control. In addition, Maldives is a front runner in infectious disease prevention through successful water, sanitati
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on, hygiene and vaccination campaigns and coverage. However, given the limited evidence that exists with respect to the occurrence of resistant organisms in the nation, it is hard to estimate the exact antimicrobial resistance (AMR) scenario. Also, it becomes difficult to compare the current situation with other countries in the region. Moreover, limited evidence exists on the trends of use of antimicrobial agents (AMA) in Maldives. Although, recent prescription audits have indicated overuse of antibiotics, especially for common conditions such as flu, cough and fever.
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Antimicrobial resistance (AMR) is a global threat that requires urgent
collaborative action within and among countries. As a result of the worldwide reports of the increasing rates of AMR to hospital and community-acquired infections and in the agricultural sector, the Global Action Plan on AMR was
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adopted in 2015. T
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Children in Kabwe are especially at risk because they are more likely to ingest lead dust when playing in the soil, their brains and bodies are still developing, and they absorb four to five times as much lead as adults. The consequences for children who are exposed to high levels of lead and are no
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t treated include reading and learning barriers or disabilities; behavioral problems; impaired growth; anemia; brain, liver, kidney, nerve, and stomach damage; coma and convulsions; and death. After prolonged exposure, the effects are irreversible. Lead also increases the risk of miscarriage and can be transmitted through both the placenta and breastmilk.
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Spread of resistance to antimicrobial agents (AMR) does not know national borders and has reached dimensions, which require immediate actions at the national, regional and global levels.
Antibiotic resistance is a natural biological response to improper use of antimicrobial agents (AMA); increasing
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number of essential drugs, which become ineffective, contributing to selection, survival and replication of resistant strains of microorganisms. When chosen antimicrobials prove to be ineffective, the second- or third-line drugs need to be used although
in the majority of cases these drugs are more expensive, less safe and not always available.
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Minimizing risk of developing antibiotic resistance and aquatic ecotoxicity in the environment resulting from the manufacturing of human antibiotic.
The Standard, facilitated by BSI Standards Limited (BSI), provides clear guidance to manufacturer
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s in the global antibiotic supply chain to ensure that their antibiotics are made responsibly, helping to minimize the risk of AMR in the environment.
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The strategic plan reflects shared commitments to enhance collaboration between environmental, animal (wildlife and domestic) and human health, and building new One Health workforce capacity through higher institutions of learning. The strategy also outlines interventions to be undertaken by governm
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ent institutions and other partners to enhance existing structures and pool together additional resources to prevent and control zoonotic diseases and other events of public health importance. Successful implementation of the strategy will contribute to the realization of vision 2020 by improving public health, food safety and security, and hence significantly improve the socioeconomic status of the people of Rwanda. It is in this regard that we call upon implementing institutions, bilateral and multilateral partners, civil society and the private sector to join us in implementing the One Health strategy in Rwanda.
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Antibiotics use with care