Policy Brief November 2021 Available in English, Spanish and Portuguese
The COVID-19 pandemic has fueled the ongoing antimicrobial resistance (AMR) global crisis due to the increase in the use of antibiotics to treat COVID-19 patients, disruptions
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to infection prevention and control practices in overwhelmed health systems, and diversion of human and financial resources away from monitoring and responding to AMR threats. Moreover, AMR is likely to have caused more COVID-19 deaths, as secondary bacterial infections can worsen the outcome of severe and critical COVID-19 illness. Therefore, it is more urgent than ever to prioritize efforts towards AMR containment and support countries to improve the detection, characterization and rapid response to emerging AMR.
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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 manufacturers in the global antibiotic supply chain to ensure t
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hat their antibiotics are made responsibly, helping to minimize the risk of AMR in the environment.
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Research to develop point-of-care tests is in progress. Treatment of Buruli ulcer comprises 8 weeks of combined antibiotics (rifampicin and clarithromycin). Complementary therapies such as wound care, skin graft and prevention of disability are need
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ed in some cases to ensure full recovery.
The target set by the World Health Organization (WHO) for control of Buruli ulcer is for countries to achieve a rate of case confirmation by PCR of at least 70%. All endemic countries have at least one PCR facility to support confirmation of cases. However, most countries in the WHO African Region have not been able to reach the target, and the rate of case confirmation has been declining
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Indian markets caused a stir across the country.1
According to the Centre for Science and the Environment (CSE), a respected New Delhi-based NGO, most honey brands
sold in India contained varying amounts of antibiotics. Their consumption over time
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could induce resistance to antibiotics,
putting people at risk of treatment failure in case of severe infections.
For the study, 12 samples were picked in Delhi, all well-known brands, including one each from Australia and Switzerland.
Antibiotics found included Chloramphenicol and various broad-spectrum drugs such as Ciprofloxacin and Erythromycin.
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This chapter discusses the antibacterial treatment of leprosy infections. Antibiotic treatment is
a key component of leprosy treatment, as it is vital to prevent the progression of the infection.
Treatment with rifampin and other antibiotics is hi
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ghly effective and cures 98% of patients with
the leprosy infection. Furthermore, the relapse rate is very low, at about 1% over 5–10 years.
There is little M. leprae drug resistance in leprosy and few reports of multi-drug resistance (1, 2, 3,
4, 5, 6, 7, 8). An antibiotic treatment may take months or years to produce clinical improvement,
especially in patients with an initial high bacterial index (BI).
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The purpose of this document is to contribute to improved recognition of Buruli
ulcer (Mycobacterium ulcerans infection) and encourage greater efforts in detecting
cases at an early stage of infection.Today, patients can be cured with antibiotics
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if
diagnosed early, thus avoiding unnecessary suffering and disability.We hope that
all users of this document will help to achieve these objectives.
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The publication of the of the Antimicrobial Treatment Guidelines represents the
culmination of the efforts of the Antimicrobial Stewardship Program of ICMR to publish treatment guidelines for common syndromes in India. These guidelines are targeted for the health care settings. It aims to rationali
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ze the usage of antibiotics on our Essential Medicines Formulary (EMF) and to establish consistency in the treatment of various infectious conditions.
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Antimicrobial resistance (AMR) as a serious public health threat was globally acknowledged by WHO in 2015, through the launch of the Global Action Plan (GAP). With a limited number of new antibiotics in the developmental pipeline, many countries are
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in the process of establishing strategies for antimicrobial stewardship (AMS). Within each country, different healthcare challenges have
contributed to AMR. This has also shaped individual AMS strategies and policies. In South Africa (SA), there is a high burden of infectious diseases, mainly of bacterial origin. In addition, SA also has the highest number of people living with
human immunodeficiency virus (HIV) globally. According to the 2019 statistics, there are approximately 7.97 million people living with HIV in SA. Together with this, SA has the fourth largest tuberculosis population globally.
Other important challenges include poverty, malnutrition, a high burden of non-communicable diseases, and a dire shortage of trained healthcare professionals (e.g. clinicians, pharmacists, and nurses).
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n recent decades, a significant improvement in people’s general health conditions has occurred, leading to an increase in life expectancy at birth in most countries in the Region of the Americas. This progress has been the result of both health technology advances –
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antibiotics, vaccines, and other treatments – and improvements in the conditions in which people live, including increased access to improved drinking water and sanitation, and health services. Nevertheless, progress has slowed in recent years, and achievements have varied among countries and territories, as well as within them. In the journey toward universal health, it is essential to have the ability to monitor and assess progress in terms of the ultimate goal of health systems: improving the health and well-being of populations. To this end, this edition of Health in the Americas analyzes the standardized rate of potentially avoidable premature mortality as an indicator of health system performance, considering both its preventable component through public and intersectoral health interventions, as well as the treatable component, related to the effectiveness of health services, that is, the quality of health care. The analysis of potentially avoidable premature mortality provides a metric for comparing and tracking performance over time.
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Until fairly recently, debates about how to tackle the looming threat of antibiotic resistance have tended to focus on how to come up with new antibiotics
The NICE guideline on antimicrobial prescribing for acute exacerbations of COPD provides recommendations for optimizing antibiotic use to treat exacerbations effectively while minimizing the risk of antimicrobial resistance. It includes criteria for assessing the need for
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antibiotics, guidance on selecting antibiotics, and considerations for reassessment and follow-up care.
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Irresponsible pharmaceutical companies fuel the proliferation of superbugs through supply chain pollution, the European Public Health Alliance (EPHA) reports. The advocacy group uncovered lapses such as dirty production and inadequate waste disposal in the production of antimicrobials in China and I
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ndia, which supplies most of the antimicrobials consumed in Europe. In a briefing detailing the pollution, the EPHA urges major purchasers of antibiotics to blacklist irresponsible pharmaceutical companies, demand that the industry clean up its supply chain, introduce greater transparency on the origin of antibiotics, and review and revise procurement policies from an ethics perspective.
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The purpose of this manual is to define a limited number of indicators that will objectively describe the management and use of antimicrobials in hospitals and to provide tools and step-by-step instructions for designing and carrying out an assessment of antibiotic use and management in hospitals. T
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he indicators in this manual will complement the existing WHO (1993) indicators of outpatient antimicrobial use suggested in How to Investigate Drug Use in Health Facilities (including percentage of encounters in which an antibiotic was prescribed and percentage of medicine costs spent on antibiotics) and will address the need for antimicrobial indicators for inpatient conditions.
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1st edition.
Unitaid’s report describes a slate of new devices that can more efficiently identify dangerously ill children so that they can be treated immediately. These tools make it easier to recognize danger signs, and support integrated approaches to reducing childhood deaths from the three
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greatest childhood killers: malaria, pneumonia and diarrhoea.
The report also highlights tests that can determine whether or not a child has an illness that can be treated with antibiotics. Viral infections are a common cause of childhood fevers, but cannot be cured with antibiotics. Although many children seeking care at clinics have fever, three-quarters by some estimates, only a small fraction of those have an illness that can be treated with an antimalarial or antibiotic drug
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This document was prepared in response to a need to review and potentially update the current recommendations for the antibiotic treatment of both inpatient and outpatient management of severe acute malnutrition (SAM). The current recommendations (Table 1) are based on guidelines published in 2013 i
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n the WHO Pocketbook for Hospital Care for Children, and the 2013 update on SAM (outpatient management). The global threat of increasing antimicrobial resistance and new data on efficacy and safety profiles requires a re-review of the current evidence to ensure recommendations are the most appropriate. The evidence base for the use of antibiotics in children presenting with uncomplicated SAM has been recently enlarged.
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A large meta-analysis of observational studies that provided the basis for the recent makeover of global recommendations for multidrug-resistant tuberculosis (MDR-TB) treatment shows that newer and repurposed drugs produced better outcomes and fewer deaths than older treatments.
The meta-analysis
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of 50 studies involving 12,000 patients from 25 countries, published yesterday in The Lancet, found that bedaquiline, linezolid, levofloxacin, and moxifloxacin were associated with greater treatment success and reduced mortality compared with the previously recommended first-line treatments, while clofazimine and carbapenem antibiotics were associated with significantly improved treatment outcomes (but not reduced mortality)
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Version 1.1. The WHO protocol has been adapted to resource-limited settings and builds on existing methodologies from the European Centre for Disease Prevention and Control (ECDC), the Global PPS project from University of Antwerp, the US Centers for Disease Control and Prevention (CDC), and the Med
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icines Utilisation Research in Africa (MURIA).
Point Prevalence Surveys collects information on prescribing practices of antibiotics and other information relevant to treatment and management of infectious diseases in hospitalized patients, and complements surveillance of antimicrobial consumption.
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Despite the considerable improvement in global health, millions of people still lack access to quality health services, including access to effective antimicrobial medicines, or are impoverished as a result of health spending. At the same time, antimicrobial resistance – a consequence of overuse a
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nd misuse of antimicrobials – is increasingly a barrier to accessing effective care. The declining effectiveness of antibiotics is driven by multiple factors, many of which can be addressed through well functioning primary health care. However, primary health care has not always had much attention in national health sector responses to
antimicrobial resistance, which often focus on tertiary care, laboratory detection and surveillance. The three pillars of primary health care (community engagement, front-line health services including primary care and essential public health, and multisectoral action on wider health determinants) are central not just to Universal Health Coverage and the Sustainable Development Goals, but also to an effective response to antimicrobial resistance.
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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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The National Action Plan for Combating Antibiotic-Resistant Bacteria (CARB), 2020-2025, presents
coordinated, strategic actions that the United States Government will take in the next five years to improve the health and wellbeing of all Americans by changing the course of antibiotic resistance.
T
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his Plan is based on the U.S. Government’s 2014 National Strategy for CARB, and builds on the first National Action Plan released in 2015 by expanding evidence-based activities that have already been shown to reduce antibiotic resistance, such as optimizing the use of antibiotics in human and animal health settings.
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