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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
...
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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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
27 May 2021
All countries should increase their level of preparedness, alert and response to identify, manage and care for new cases of COVID-19. Countries should prepare to respond to different public health scenarios, recognizing that there is no one-size-fits-all approach to managing cases and o
...
utbreaks of COVID-19. Each country should assess its risk and rapidly implement the necessary measures at the appropriate scale to reduce both COVID-19 transmission and economic, public and social impacts.
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Antimicrobials are precious agents for combating infectious diseases and had saved millions of lives throughout the world. However, the current trend of increasing antimicrobial resistance (AMR) has become a global health problem with increased morbidity and mortality in infectious diseases. Sri La
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nka is not an exemption and face many health related issues with multidrug resistant (MDR) organisms. Currently there is a global effort in combating antimicrobial resistance. WHO extends its fullest support and plays a major role in motivating the countries to combat antimicrobial resistance with national action plans in place. Sri Lanka has initiated combating AMR with multisectoral collaboration, under one health concept. The development of the National Strategic Plan (NSP) 2017-2022 provides the roadmap to combat AMR.
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This FY 2019 Malaria Operational Plan presents a detailed implementation plan for Burkina Faso, based on the strategies of PMI and the National Malaria Control Program (NMCP). It was developed in consultation with the NMCP and with the participation of national and international partners involved in
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malaria prevention and control in the country. The activities that PMI is proposing to support fit in well with the national malaria control strategy and plan and build on investments made by PMI and other partners to improve and expand malaria-related services, including malaria grants from the Global Fund to Fight AIDS, Tuberculosis, and Malaria. This document briefly reviews the current status of malaria control policies and interventions in Burkina Faso, describes progress to date, identifies challenges and unmet needs to achieving the targets of the NMCP and PMI, and provides a description of activities that are planned with FY 2019 funding.
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Healthcare-associated infections (HAI) are a significant burden globally, with millions of patients affected each year. These infections affect both high- and limited-resource healthcare settings, but in limited-resource settings, rates are approximately twice as high as high-resource settings (15 o
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ut of every 100 patients versus 7 out of every 100 patients). Furthermore, rates of infections within certain patient populations are significantly higher in limited-resource settings, including surgical patients, patients in intensive-care units (ICU) and neonatal units. It is well documented that environmental contamination plays a role in the transmission of HAIs in healthcare settings. Therefore, environmental cleaning is a fundamental intervention for infection prevention and control (IPC).It is a multifaceted intervention that involves cleaning and disinfection (when indicated) of the environment alongside other key program elements to support successful implementation (e.g., leadership support, training, monitoring, and feedback mechanisms). To be effective, environmental cleaning activities must be implemented within the framework of the facility IPC program, and not as a standalone intervention. It is also essential that IPC programs advocate for and work with facility administration and government officials to budget, operate and maintain adequate water, sanitation and hygiene (WASH) infrastructure to ensure that environmental cleaning can be performed according to best practices.
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A Guide to the Application of the WHO Multimodal Hand HygieneImprovement Strategy and the “My Five Moments for Hand Hygiene”Αpproach
Timely detection of novel coronavirus (2019-nCoV) infection cases is crucial to interrupt the spread of this virus. We assessed the required expertise and capacity for molecular detection of 2019-nCoV in specialised laboratories in 30 European Union/European Economic Area (EU/EEA) countries. Thirty-
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eight laboratories in 24 EU/EEA countries had diagnostic tests available by 29 January 2020. A coverage of all EU/EEA countries was expected by mid-February. Availability of primers/probes, positive controls and personnel were main implementation barriers.
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Временные рекомендации 25 января 2020 г.
Временные рекомендации
13 марта 2020 г.
Настоящий документ является вторым изданием руководства (версия 1.2), которое первоначально представляло собой адаптированн
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ый вариант Руководства по клиническому ведению тяжелой острой респираторной инфекции при подозрении на инфекцию MERS-CoV (ВОЗ, 2019 г.).
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Nosocomial infections, or hospital-acquired infec-tions (HAI), are among the most significant causesof morbidity and mortality in healthcare settingsthroughout the world.Prevention of HAIs iscentral to providing high quality and safe health-care, even in settings with limited resources.Transmi
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ssion of infectious agents between patientsby health workers and irrational use of antibioticsare two important preventable factors involved inmany HAIs.
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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. In 2015, WHO launched the Global Antimicrobial Re
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sistance 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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Antimicrobial resistant (AMR) organisms are increasing globally, threatening to render existing treatments ineffective against many infectious diseases. In Africa, AMR has already been documented to be a problem for HIV and the pathogens that cause malaria, tuberculosis, typhoid, cholera, meningitis
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, gonorrhea, and dysentery. Recognizing the urgent need for action, the World Health Assembly adopted the Global Action Plan on Antimicrobial Resistance in May 2015. In accordance with the Global Action Plan and to meet needs specific to Africa, Africa CDC will establish the Anti-Microbial Resistance Surveillance Network (AMRSNET). AMRSNET is a network of public health institutions and leaders from human and animal health sectors who will collaborate to measure, prevent, and mitigate harms from AMR organisms.
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Revision 1: (Guidelines for Handling, Treatment and Disposal of Waste Generated during Treatment/Diagnosis/ Quarantine of COVID-19 Patients)
Ministry of Health & Family Welfare Government of India; Central Pollution Control Board (Ministry of Environment, Forest & Climate Change)
Ministry of Health & Family Welfare Government of India; Central Pollution Control Board (Ministry of Environment, Forest & Climate Change)
(2020)
C2
25th March, 2020
(In suppression earlier guidelines upload at CPCB website on 19/03/2020)
Guidelines on Clinical management of severe acute respiratory illness (SARI) in suspect/confirmed novel coronavirus (nCoV) cases
National Centre for Disease Control (formerly National Institute of Communicable Diseases)
National Centre for Disease Control (formerly National Institute of Communicable Diseases)
(2020)
C2
Accessed: 16.04.2020
Infection Prevention and Control Programmes
January 2020
The following protocol has been designed to investigate the extent of infection, as determined by seropositivity in the general population, in any country in which COVID-19 virus infection has been reported. Each country may need to tailor some aspects of this protocol to align with public health, l
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aboratory and clinical systems, according to capacity, availability of resources and cultural appropriateness. However, using a standardized protocol such as this one below, epidemiological exposure data and biological samples can be systematically collected and shared rapidly in a format that can be easily aggregated, tabulated and analyzed across many different settings globally for timely estimates of COVID-19 virus infection severity and attack rates, as well as to inform public health responses and policy decisions. This is particularly important in the context of a novel respiratory pathogen, such as COVID-19 virus
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The role of environmental contamination in transmission of COVID-19 virus is currently not clear. This protocol has been designed to determine (viable) virus presence and persistence on fomites in various locations where a patient infected with COVID-19 is currently receiving care or being isolated,
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and to understand how this may relate to COVID-19 transmission events in these settings. It is therefore important that it is done as part of a comprehensive outbreak investigation and that information obtained by environmental studies is combined with the results of epidemiological, laboratory and sequence data from COVID-19 patient investigations.
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COVID-19 Book of Five - Response and Containment Measures for ANM, ASHA, AWW
Ministry of Health & Family Welfare Government of India; National Health Mission
Ministry of Health & Family Welfare Government of India; National Health Mission
(2020)
C2
Accessed: 20.04.2020
April 2020
This Guidance Note offers a list of recommendations based on a combination of WHO guidelines, good practice and expert advice based on the latest scientific research. The situation with COVID-19 is evolving rapidly and the guidance will continue to be updated if and when new evidence o
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r information becomes available.
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