BMJ Global Health, Vol. 4 (2019) no.2
Antibiotic resistance is threatening global health, development and food security; however, measures for assessing and communicating the threat of resistance
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are lacking. The Drug Resistance Index (DRI) allows for global assessment of the relative efficacy of countries’ antibiotic therapy.
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In 2019, an estimated 10 million individuals fell ill with tuberculosis (TB) and 3 million of them were not reported to have beendiagnosed and notified. The gap is proportionately even wider for drug-resistant TB. Of the estimated 465 000 patients w
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ith rifampicin-resistant and multi-drug resistant TB (RR/MDR-TB), only 206 030 (44%) were diagnosed and notified.For the first time, the World Health Organization (WHO) has provided global estimates of the incidence of isoniazid resistance: in 2019, there were 1.4 million incident cases of isoniazid-resistant TB, of which 1.1 million were susceptible to rifampicin. Most of these people were not diagnosed with drug-resistant TB and did not receive appropriate treatment.
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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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Tuberculosis MDR-TB & XDR-TB The 2008 Report
This study addresses part of the Terms of Reference for a scoping report ‘An analysis of approaches to laboratory capacity strengthening for drug resistant infections in low and middle income countries’. It has been produced as a separate report
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because it is also very relevant for a second study ‘Supporting Surveillance Capacity for Antimicrobial Resistance: Regional Networks and Educational Resources’. This study compares antimicrobial surveillance systems in three low and middle income countries in order to describe the components of these systems and to understand which surveillance models are best suited to particular contexts. Ghana, Nigeria and Nepal were selected as study countries because they cover different continents and include one ‘fragile’ context (Nigeria). Brief information from Malawi is also included.
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Of the more than 10 million people estimated to have fallen ill with tuberculosis (TB) in 2022, just over 400 000 people developed TB resistant to rifampicin (RIF), and 1.3 million people developed TB resistant isoniazid (INH). Drug
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resistance must be detected rapidly and accurately to initiate appropriate and effective treatment.
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For full publication see: http://hesperian.org/wp-content/uploads/pdf/sw_hmx/sw_comicstrip1_EPN_2011.pdf
The Libyan national action plan has been aligned with WHO five objectives. Analysis of the current situation and addressing the gaps and the needs to reach the main goal “one health” approach involves several national sectors and actors, including human and veterinary health, agriculture and foo
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d and drug control center and environmental agencies. Therefore, a large committee of all stakeholders was formed with four technical subcommittees were established to addresses every aspect to contain antimicrobial resistance in the country.
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Report: A survey conducted among the 27 high MDR-TB burden countries.
March – July 2015
Stop TB Partnership in collaboration with Medecins Sans Frontieres (MSF).
Accessed November 2017.
Antimicrobial agents like antibiotics are essential to treat some human and animal diseases. Microbes, such as bacteria, can develop resistance to antimicrobials meaning that a drug such as an antib
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iotic is no longer effective in treating the infection. The development of resistance is caused by the incorrect use of these drugs, for example, using antibiotics (which help to treat bacteria) for viral infections like flu, or as a growth promoter in agriculture.
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These updates include shorter novel 6-month all-oral regimens for the treatment of multidrug- and rifampicin-resistant TB (MDR/RR-TB), with or without additional resistance to fluoroquinolones (pre-XDR-TB) as well as an alternative 9-month all-oral
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regimen for the treatment of MDR/RR-TB.
This Rapid Communication is released in advance of updated WHO consolidated guidelines expected later in 2022, to inform national TB programmes and other stakeholders of key changes in the treatment of DR-TB and to allow for rapid transition and planning at the country level.
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Antimicrobial resistance (AMR) occurs when disease-causing pathogens are able to withstand the killing or suppressing power of antimicrobial medicines. This phenomenon increases the global burden of infectious diseases and strains health systems.Thi
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s course aims to improve the learner's awareness and understanding of the basic principles of AMR, the impact AMR has on individuals and society, and why it is a major public health concern.
A complementary course, Antimicrobial Resistance (Part 2), describes interventions that address the multiple factors contributing to AMR across the health system.
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The main objective of these guidelines is to provide guidance on up-to-date, uniform, evidence-informed practices for suspecting, diagnosing and managing various forms of extra-pulmonary tuberculosis (EPTB) at all levels of healthcare delivery. They can then contribute to the National Programme to i
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mprove detection, care and outcomes in EPTB; to help the programme with initiation of treatment, adherence and completion whilst minimizing drug toxicity and overtreatment; and contribute to practices that minimize the development of drug resistance.
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WHO
Considering programmatic implications of rising levels of HIV drug resistance: finalizing the Global Action Plan
Webinars 12 13 Dec 2016
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 highly effective and cures 98% of patients with
the
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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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This training toolkit by the European Laboratory Initiative for TB, HIV and Viral Hepatitis provides a unique combination of practical guidance and expert advice on the interpretation of selected WHO-endorsed tests for drug-resistant tuberculosis (D
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R-TB).
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