Stenotrophomonas maltophiliais a nonfermenting Gram-negative rod that is ubiquitous in nature (predominantly occurring in aquatic environments and on plants). Biochemically, it iscatalase positive and oxidase negative, and it produces acid frommaltose (hence the name“maltophilia”). Due to it
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s chargedcell wall surface and biofilm production, it may attach to and survive on abiotic surfaces in clinical settings (eg, central venouscatheters, disinfectant and hand-washing solutions, solutions for hemodialysis, endoscopes, inspiration/expiration circuits of ventilators, nebulizers, tap water, and showerheads).
Health Services Research and Managerial Epidemiology Volume 6: 1-9ªThe Author(s) 2019
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Historically, the discovery of the sulfa drugs in the 1930s and the subsequent development of penicillin during World War II ushered in a new era in the treatment of infectious diseases. Infections that were common causes of death and disease in the pre-
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antibiotic era - rheumatic fever, syphilis, cellulitis and bacterial pneumonia - became treatable, and over the next 20 years most of the classes of antibiotics that find clinical use today were discovered and changed medicine in a profound way. The availability of antibiotics enabled revolutionary medical interventions such as cancer chemotherapy, organ transplants and essentially all major invasive surgeries from joint replacements to coronary bypass. Antibiotics, though, are unique among drugs in that their use precipitates their obsolescence. Paradoxically, these cures select for organisms that can evade them, fueling an arms race between microbes, clinicians and drug discoverers.
Wright BMC Biology 2010, 8:123 http://www.biomedcentral.com/1741-7007/8/12
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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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This situation analysis has gathered information about the current state of AMR, contributing factors and antimicrobial use in Zimbabwe from the human, animal, agricultural and environmental sectors. Data has been gathered from different sectors such as the general public, academia, the Ministry of
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Health and Child Care, the Ministry of Agriculture Mechanization and Irrigation Development and the Ministry of Environment, Water and Climate. It shows that AMR is a real concern in Zimbabwe and a threat to the health outcomes of humans, to the economic productivity of the livestock industry and a risk to the environment.
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The Global Antibiotic Resistance Partnership (GARP) aims to address the challenge of antibiotic resistance by developing actionable Policy Proposals in Vietnam and four other low- and middle-income
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countries: China, India, Kenya and South Africa. GARP will develop the evidence base for Policy action on antibiotic resistance and identify policy opportunities where research, advocacy and information have the best chance of slowing the development and spread of resistance.
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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
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formed a core group at the organizational meeting 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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In Kenya, the bacterial infections that contribute most to human disease are often those in which re-‐sistance is most evident. Examples are multidrug-‐resistant enteric bacterial pathogens such as typhoid,
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diarrhoeagenic Escherichia coli and invasive non-‐typhi salmonella, penicillin-‐resistant Streptococcus pneu-‐moniae, vancomycin-‐resistant enterococci, methicillin-‐resistant Staphylococcus aureus and multidrug-‐re-‐sistant Mycobacterium tuberculosis. Resistance to medicines commonly used to treat malaria is of particu-‐lar concern, as is the emerging resistance to anti-‐HIV drugs. Often, more expensive medicines are required to treat these infections, and this becomes a major challenge in resource-‐poor settings.
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The global emergence of antimicrobial resistance (AMR) is posing a threat to human health. Putting resources into the containment of AMR – including surveillance – is one of the highest-yield investments a country can make to mitigate its impact
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. In 2015, WHO launched the Global Antimicrobial Resistance Surveillance System (GLASS), the first global collaborative effort to foster AMR surveillance in bacteria causing acute infections. As of December 2018, 71 countries are enrolled in GLASS. The aim of this report is to document participation efforts and outcomes across these countries, and highlight differences and constraints identified to date. This report follows on from the first GLASS Report – Early implementation 2016-17, published in January 2018, and drawing on data from GLASS first data call in 2017.
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The National Department of Health and Department of Agriculture, Forestry and Fisheries have collectively engaged to determine the key interventions that will form the basis for this strategy taking into account the recommendations from the WHO and OIE.
The development and implementation of a Natio
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nal Antimicrobial Resistance Strategy Framework that complements international efforts is a major step towards containment of the growing threat of antimicrobial resistance in human and animal health. Global partnerships need to be strengthened because the responsibility for reducing resistance is a shared one. This responsibility is not only limited to the health care sector, but calls for collaborative action in all sectors - human, animal and agriculture.
The National Antimicrobial Resistance Strategy Framework will affect South Africa’s response to this looming threat. We already have the tools and expertise to make a difference, now all we need is to work together toward a better future.
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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 resist
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ance is a natural biological response to improper use of antimicrobial agents (AMA); increasing 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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The focus of the current quarterly edition of Eurohealth (from the European Observatory on Health Systems and Policies) is Antimicrobial Resistance (AMR) and contains the following articles:
• Strengthening implementation of AMR national ac
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tion plans
• Fostering clinical development and commercialisation of novel antibiotics
• Tackling AMR in the community
• Quantifying the benefits of vaccines in combating AMR
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Prevention, early diagnosis, and effective treatment are essential for the control and elimination of Neisseria gonorrhoeae as a public health problem. Currently, in Latin America and the Caribbean, treatment for gonorrhea infection is largely empiric and based on clinical diagnosis. In the Americas
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, the high burden of new N. gonorrhoeae infections (estimated at 11 million new cases a year), the complexity of the disease epidemiology, and in many countries the limited resources, make it difficult to fully understand the burden of disease and the burden of antimicrobial resistance (AMR) in N. gonorrhoeae.
PAHO has developed this document to facilitate the navigation of available guidance and recommendations for N. gonorrhoeae AMR surveillance by public health and health care professionals, at the national and subnational levels, involved in designing, implementing, and/or strengthening AMR surveillance of N. gonorrhoeae and overall surveillance of sexually transmitted infections.
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HIV-1 drug resistance (HIVDR) genotyping is an essential component of the WHO global HIVDR surveillance strategy. Plasma “gold standard” specimen type for HIVDR genotyping, but its use may not be feasible in rural, remote areas in low- and middl
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e-income countries, since preparing and storing it require personnel and laboratory infrastructure that are often lacking. An alternative specimen type is dried blood spots (DBS), which can be made without special laboratory processing. DBS are more easily transported than plasma because they can be shipped at ambient temperature as non-hazardous materials using regular mail or courier services.
3rd edition
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Antimalarial drug resistance has emerged as a threat to global malaria control efforts, particularly in the Greater Mekong subregion. Drawing on data collected through more than 1000 therapeutic efficacy studies as well as molecular marker studies o
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f Plasmodium falciparum drug resistance, the Report on antimalarial drug efficacy, resistance and response: 10 years of surveillance (2010–2019) presents a decade’s worth of data on drug efficacy and surveillance, as well as recommendations to monitor and protect the efficacy of malaria treatment in the decades to come.
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9 June 2021
Since its launch, GLASS has expanded in scope and coverage and as of May 2021, 109 countries and territories worldwide have enrolled in GLASS. A key new component in GLASS is the inclusion of antimicrobial consumption (AMC) surveillance at the national level highlighted in this fourth G
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LASS report.
The fourth GLASS report summarizes the 2019 data reported to WHO in 2020. It includes data on AMC surveillance from 15 countries and AMR data on 3 106 602 laboratory-confirmed infections reported by 24 803 surveillance sites in 70 countries, compared to the 507 923 infections and 729 surveillance sites reporting to the first data call in 2017.
The report also describes developments over the past years of GLASS and other AMR surveillance programmes led by WHO, including resistance to anti-human immunodeficiency virus and anti-tuberculosis medicines, antimalarial drug efficacy.
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The purpose of the Global Research on AntiMicrobial resistance (GRAM) Project is to generate accurate and timely estimates of the magnitude and trends in antimicrobial resistance (AMR) burden across
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the world, which can be used to inform treatment guidelines and agendas for decision-making and research, detect emerging problems and monitor trends to inform global strategies, as well as facilitate the assessment of interventions over time.
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This course offers an overview of antimicrobial resistance (AMR) as a global threat to human, animal and environmental health, and explains the role of the food and agriculture sector, and the impact of AMR on agrifood systems. It also describes how
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the Food and Agriculture Organization of the United Nations (FAO) is contributing to increased awareness and engagement of all stakeholders in the food and agriculture sector, to tackle AMR.
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Surveillance of antimicrobial resistance in Europe 2020 data: executive summary