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1
Scientists have known for more than half a century that patients could develop resistance to the drugs used to treat them. Alexander Fleming, who is credited with creating the first antibiotic, penicillin, in 1928, cautioned of the impending crisis while accepting his Nobel prize in 1945: “There
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is the danger that the ignorant man may easily underdose himself and by exposing his microbes to non-lethal quantities of the drug make them resistant.” Since then antibiotics have proved one of the most effective interventions in human medicine. Sadly, the overuse and misuse of this precious resource have brought us to a global crisis of antimicrobial resistance (AMR). To address this crisis nearly seven decades after Fleming’s lecture the first UN general assembly meeting on drug resistance bacteria was convened in September 2017.
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Community Health Worker Assessment and Improvement Matrix (CHW AIM): A Toolkit for Improving CHW Programs and Services
L. Crigler; K. Hill; R. Furth; et al.
USAID From the American People (Health Care Improvement Project)
(2013)
C2
Revided Version
September 2013
AIDSinfo Glossary of HIV/AIDS-Related Terms
AIDSinfo; National Library of Medicine (NIH); Department of Health & Human Services USA
AIDSinfo; National Library of Medicine (NIH); Department of Health & Human Services USA
(2018)
C2
2018
9th Edition
Offering information on HIV/AIDS treatment, prevention, and research
The threat posed by antimicrobial resistance (AMR) to public health as well as global health security has been reiterated in umerous World Health Assembly (WHA) resolutions. AMR is also prioritized under the Global Health Security Agenda (GHSA), and India is one of the contributing countries. The Mi
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nistry of Health & Family Welfare (MoHFW) identified AMR as one of the top 10 priorities for the ministry’s collaborative work with WHO. The National Health Policy 2017 identifies antimicrobial resistance as a problem and calls for effective action to address it. An international conference on AMR – “Combating Antimicrobial Resistance: A
Public Health Challenge and Priority”, was jointly organized by the Government of India and World Health Organization (WHO) in February 2016, which was attended by more than 350 participants. The Hon’ble Prime Minister, Shri Narendra Modi, and the Hon’ble Union Minister for Health, Shri J.P. Nadda have reiterated government’s commitment to tackle AMR.
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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 situation analysis on AMR conducted in 2011 and updated in 2016. This strategy provides a regulatory and imp
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lementation 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.
more
National Action Plan on Antimicrobial Resistance/Afghanistan
Ministry of Public Health, Afghanistan
Food and Agriculture Organization of the United Nations FAO
(2017)
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AMR is one of the Key priority of the global health security agenda action package, as well as it is one of the commitments of Ministry of Public Health Afghanistan to combat AMR. In Afghanistan because of war and some other political issues the borders of the country are not well secured and well c
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ontrolled therefore control of smuggling of medicine is a big challenge in front of the rational use of medicine. Lack of knowledge (professionals and public), poor economic state, conflict of war, presence of remote areas and etc…. are the other main challenges for this to won the battle of combating AMR.
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This book provides significantly expanded content and experience in relation to a broader stewardship context- for example, stewardship in specific populations, different countries as well as the role of different professions in stewardship to political and media engagement. We hope this book has so
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mething to offer everyone practicing in this area. Therefore, The British Society for Antimicrobial Chemotherapy [BSAC] in collaboration with ESGAP are very pleased to present this e-book on Global Antimicrobial Stewardship that is relevant to health care professions working in preventing and managing infection across the healthcare communities and health care facilities. It aims to support health care professionals, or teams, or policy makers interested in learning about bringing the principles of stewardship to the bed side
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Antibiotic Stewardship (AS) is a coordinated program that promotes the appropriate use of antimicrobials to improve patient outcomes, reduce microbial resistance, and decrease the spread of multi-drug resistant organisms. In clinical settings, stewardship activities focus on measuring and improving
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how antibiotics are prescribed by clinicians and used by patients. Improving antibiotic prescribing involves implementing effective strategies to modify prescribing practices to align them with evidence-based recommendations for diagnosis and management.
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The purpose of this guidance is to assist WHO Member States, and other stakeholders, in the establishment and development of programmes of integrated surveillance of antimicrobial resistance in foodborne bacteria (i.e., bacteria commonly transmitted by food). In this guidance, “integrated surveill
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ance of antimicrobial resistance in foodborne bacteria” is defined as the collection, validation, analyses and reporting of relevant microbiological and epidemiological data on antimicrobial resistance in foodborne bacteria from humans, animals, and food, and on relevant antimicrobial use in humans and animals. Integrated surveillance of antimicrobial resistance in foodborne bacteria therefore includes data from relevant food chain sectors (animals, food and humans) and includes data on both antimicrobial resistance and antimicrobial use. Integrated surveillance of antimicrobial resistance for foodborne bacteria expands on traditional public health surveillance to include multiple elements of the food chain, and to include antimicrobial use data, to better understand the sources of infection and transmission routes.
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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 product of all this work is the Standard Treatment Guideline and Essential Medicines List of Common Medical Conditions in the Kingdom of Swaziland. These systematically developed statements are designed to assist practitioners in making decisions about appropriate treatment for specific clinical
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conditions. They are meant to reflect expert consensus based on a review of current and published scientific evidence of acceptable approaches to diagnosis, man-agement, or prevention of specific conditions.It is enlightening to note that section A of the document contains the STG, and effort has been made to have the conditions commonly encountered in Swaziland classified according to systems. Written in simple, clear language, each section consists of a short definition followed by common symptoms and signs of the disease or condition and then management (pharmacological and nonpharmacological)
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The infectious disease burden in India is among the highest in the world. A large amount of antibiot-ics are consumed in fighting infections, some of them saving lives, but every use adding to antibiotic resistance in bacteria. Antibiotic use is increasing steadily (table 1), particularly
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certain antibiotic classes (beta-lactam antibacterials), most notably in the more prosperous states. Resistance follows in lock-step.
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The ECDC, the EFSA and the EMA have for the first time jointly explored associations between consumption of antimicrobials in humans and food-producing animals, and antimicrobial resistance in bacteria from humans and food-producing animals, using 2011 and 2012 data currently available from their re
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levant five EU monitoring networks. Combined data on antimicrobial consumption and corresponding resistance in animals and humans for EU MSs and reporting countries were analysed using logistic regression models for selected combinations of bacteria and antimicrobials. A summary indicator of the proportion of resistant bacteria in the main food-producing animal species was calculated for the analysis, as consumption data in food-producing animals were not available at the species level
more
Methicillin-resistant Staphylococcus aureus(MRSA) strainsor multidrug-resistant S.aureus, initially described in 1960s,emerged in the last decade as a cause of nosocomial infections responsible for rapidly progressive, potential fatal diseases including life-threatening pneumonia, necrotizing fascii
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tis, endocarditis, osteomyelitis, severe sepsis, and toxinoses such as toxic shock syndrome. A multifactorial range of independent risk factors for MRSA has been reported in literature and include immunosuppression,hemodialysis, peripheral malperfusion, advanced age, extended in-hospital stays, residency in long-term care facilities (LTCFs), inadequacy of antimicrobial therapy,indwelling devices, insulin-requiring diabetes, and decubitusulcers, among others.
Hindawi Canadian Journal of Infectious Diseases and Medical Microbiology Volume 2019, Article ID 8321834, 9 pageshttps://doi.org/10.1155/2019/8321834
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Antibiotics and other antimicrobial agents are invaluable life savers, particularly in resource-limited countries where infectious diseases are abundant. Both uncomplicated and severe infections are potentially curable as long as the aetiological agents are susceptible to the
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antimicrobial drugs. The rapid rate with which antimicrobial agents are becoming ineffective due to resistance acquired as a result of unchecked overuse and misuse threatens to undo the benefit of controlling infections. The evidence for resistant microorganisms, many times to more than a single antimicrobial agent, has been observed globally. In Tanzania, there is evidence in the form of few scattered studies conducted in different parts of the country in a multitude of settings including health care facilities, the community, domesticated animals and wild animals
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Pakistan Global Antibiotic Resistance Partnership (GARP) was formed in the wake of international and national efforts for AMR curtailment. A group of experts from microbiology, infectious diseases and veterinary medicine formed a core group at the organizational meet
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ing of GARP in Kathmandu, Nepal in July 2016. In the meeting, this core group was expanded to include other members from different sectors with the selection of the Chair and co-chairs. These were asked to serve on a voluntary basis, in their own individual capacities, with no personal gains, or gains to the institutions to which they are affiliated. The first phase of GARP took place from 2009 to 2011 and involved four countries: India, Kenya, South Africa and Vietnam. Phase one culminated in the 1st Global Forum on Bacterial Infections, held in October 2011 in New Delhi, India. In 2012, phase two of GARP was initiated with the addition of working groups in Mozambique, Tanzania, Nepal and Uganda. Phase three has added Bangladesh, Lao PDR, Nigeria, Pakistan and Zimbabwe to the network to date.
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