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The Practical manual on laboratory strengthening, 2022 update provides practical guidance on implementation of WHO recommendations and best practices for TB laboratory strengthening. It is an updated version of the GLI Practical Guide to Laboratory Strengthening published in 2017 and provides the la
...
test practical guidance on use of newly recommended diagnostics as well as guidance in key technical areas, including quality assurance and quality management systems, specimen collection and registration, procurement and supply-chain management, diagnostic connectivity, biosafety, data management, human resources, strategic planning, and model algorithms. The key changes are:
inclusion of recent or updated WHO recommendations for tests to diagnose TB and detect drug resistance;
alignment with the latest WHO critical concentrations for phenotypic drug-susceptibility testing (DST) and the new definitions of pre-XDR-TB and XDR-TB;
updated information on building quality-assured TB testing and management capacity using the Stepwise Laboratory Quality Improvement Process Towards Accreditation (SLIPTA) approach (Score-TB package1);
updated information on assessing, analysing and optimising TB diagnostic networks; and
updated information on the use of next-generation sequencing (NGS) to detect mutations associated with drug resistance for surveillance purposes.
The document also provides references to resources and tools relevant for work on laboratory strengthening.
more
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
...
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).
more
This Implementation Kit (I-Kit), developed by the Health Communication Capacity Collaborative (HC3), helps national and local stakeholders to design country-specific social and behavioural change communication (SBCC) campaigns that address the threat posed by substandard, spurious, falsified and fal
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sely labelled (SSFFC) malaria medicines. These poor-quality medicines endanger lives by failing to treat malaria effectively, undermine health systems, and contribute to drug resistance.
The I-Kit provides practical guidance and resources in six sections, including global examples, campaign design elements, media engagement strategies and tools for knowledge sharing. It is intended for health promotion officers, drug regulators, communication specialists and global health partners. Drawing heavily on experiences in Nigeria, the I-Kit promotes evidence-based, context-sensitive SBCC interventions to safeguard communities against SSFFC malaria medicines and enhance treatment outcomes.
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Each year, WHO’s World malaria report provides a comprehensive and up-to-date assessment of trends in malaria control and elimination across the globe. This year’s report includes, for the first time, a dedicated chapter focused on the intersection between climate change and malaria. As describe
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d in the report, climate change is one of many threats to the global response to malaria. Millions of people continue to miss out on the services they need to prevent, detect, and treat the disease. Conflict and humanitarian crises, resource constraints and biological challenges such as drug and insecticide resistance also continue to hamper progress.
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Malaria remains a significant public health concern, particularly in sub-Saharan Africa, where the majority of cases and fatalities occur, especially among children under five. Although there was a significant decline in global mortality and incidence between 2000 and 2015, progress has stalled sinc
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e the late 2010s due to climate change, conflict, drug and insecticide resistance, and the ongoing effects of the pandemic. Economic modelling shows that achieving the Sustainable Development Goal target of reducing malaria incidence by 90% by 2030 could generate substantial economic benefits, including an increase in GDP of $142.7 billion in endemic countries and $80.7 billion in global trade gains. To save lives, strengthen health systems, and drive sustainable economic growth, renewed investments in malaria control and elimination programmes, vaccine deployment, and coordinated international support are essential.
Accessed on 25/08/2025.
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To support its R&D activities on Chagas disease, DNDi launched the Chagas Clinical Research Platform (CCRP). The platform brings together partners, experts, and stakeholders to provide support for evaluation and development of new treatments for Chagas disease. The patient-centred platform aims to f
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acilitate clinical research, provide a forum for technical discussions, develop a critical mass of expertise, and strengthen institutional research capacities. In addition, it identifies and reviews priority needs, works towards standardization of methodology to assess drug efficacy and reviews alternatives for using current approved drugs (new schemes, doses, combination) and special scenarios (resistance).
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Country perceptions for implementation of the new multi-drug resistant TB (MDR-TB) medicines.
F. Brigden; M. Ya Diul; R. H.Crespo, L. Ditiu, A. Kurats, etc al.
Stop TB Partnership to reach; Medecins Sans Frontieres
(2017)
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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.
WHO commissioned a survey, carried out in September/October 2015, among some 10 000 members of the public in 12 countries (2 per WHO Region: Barbados, China, Egypt, India, Indonesia, Mexico, Nigeria, the Russian Federation, Serbia, South Africa, Sudan and Viet Nam) on their use of antibiotics, knowl
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edge of antibiotics and of antibiotic resistance. While not claiming to be exhaustive, this and other surveys will help WHO and partners to ensure efforts are focused on tackling some of the biggest gaps in understanding and the most prevalent misconceptions
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The reports bring together the latest findings and conclusions about the state of resistance to artemisinins and artemisinin-based combination therapy (ACT), summarize WHO’s current policy and treatment recommendations, and highlight areas of conc
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ern.
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The report focuses on antibacterial resistance (ABR) in common bacterial pathogens. There is a major gap in knowledge about the magnitude of this problem. Antimicrobial resistance (AMR) threatens th
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e effective revention and treatment of an ever-increasing range of infections caused by bacteria, parasites, viruses and fungi. This WHO report, produced in collaboration with Member States and other partners, provides for the first time, as accurate a picture as is presently possible of the magnitude of AMR and the current state of surveillance globally. It examines the information on AMR, in particular antibacterial resistance (ABR), at country level worldwide.
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Western Pac Surveill Response J. 2014 Oct-Dec; 5(4): 34–46.
Published online 2014 Dec 18. doi: [10.5365/WPSAR.2014.5.4.007]
Accessed November 2017
The Antimicrobial Resistance Benchmark has evaluated for the second time how the most important players in the antibiotic market are addressing the rise of resistance and the global need for appropr
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iate access to antibiotics. Although we can see progress — it’s hanging by a thread.
We have reached a tipping point where large and prominent drugmakers have retreated from the antibiotics field and smaller innovative biotech companies have gone bankrupt due to the poor financial rewards on offer.
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Comprehensive Reviews in Food Science and Food Safety, Vol.12 (2013) pp.234-248
In 2006, the Institute of Food Technologists (IFT) published an Expert Report entitled “Antimicrobial Resistance: Implications for the Food System” (IFT 2006). That
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report summarized current scientific knowledge pertaining to the public-health impact of antimicrobial use in the food system and the development and control of antimicrobial resistance. Since that time, intense interest in this topic has continued within the regulatory and scientific communities as well as the general public. This IFT Scientific Status Summary serves to update that 2006 IFT Expert Report by briefly reviewing new scientific evidence relevant to the goals of the initial report and providing a number of key observations and conclusions.
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Antimicrobial resistance (AMR) is a serious public health concern with economic, social and political implications that are global in scope, and cross all environmental and ethnic boundaries. As a global threat, AMR risks the ach
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ievements of modern medicine, and has the potential to impact overall global development. It is important, therefore, to elevate AMR beyond health as part of a larger development agenda in the context of the Sustainable Development Goals (SDGs). This report provides in-depth technical discussions in areas that have direct implications to the containment of AMR as a development agenda. The report is organized in five chapters which served as the technical background documents for the Biregional Technical Consultation on AMR in Asia, 14-15 April 2016. More information from the meeting is available in the WHO Meeting Report: Biregional Technical Consultation on Antimicrobial Resistance in Asia. The meeting was the first time senior officials from the Ministry of Health and Ministry of Agriculture across Asia came together to tackle AMR
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Information note of the Global Leaders Group on Antimicrobial Resistance.
Available in English, French, Spanish, Russian, Chinese and Arabic