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Ebola disease and Marburg disease outbreaks continue to occur in Africa, with increased frequency. In addition to resulting in high mortality and morbidity, the outbreaks generate fear and mistrust about the response activities within the communities affected.
Infection prevention and control (IP
...
C) is a key pillar in the outbreak response; adherence to IPC practices can prevent and control transmission of infections to health and care workers, patients and their family members.
During the 2014-2016 West African Ebola disease outbreak, there was an urgent need for rapid IPC guidance to help support ministries of health, health-care providers and non-governmental organizations (NGOs). In response, WHO produced several documents related to the outbreak based on expert opinion, including IPC-specific documents and documents on clinical management that also referenced key IPC principles and practices. Since that time, many practices in the field have become institutionalized.
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The Infection prevention and control in the context of coronavirus disease 2019 (COVID-19): a living guideline consolidates technical guidance developed and published during the COVID-19 pandemic into evidence-informed recommendations for infection prevention and control (IPC). This living guideline
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is available both online and PDF.
**This version of the living guideline (version 5.0) **includes the following seven revised statements for the prevention, identification and management of SARS-CoV-2 infections among health and care workers:
a good practice statement on national and subnational testing strategies;
a good practice statement on passive syndromic surveillance of health and care workers;
a good practice statement on prioritizing health and care workers for SARS-CoV-2 testing;
a good practice statement on protocols for reporting and managing health and care worker exposures;
a good practice statement to limit in-person work of health and care workers with active SARS-CoV-2 infections;
a statement on high-risk exposures and quarantine; and,
a conditional recommendation on the duration of isolation for health and care workers.
Understanding the updated section
Prevention of infections in the health care setting includes a multi-pronged and multi-factorial approach that includes IPC and occupational health and safety measures and adherence to Public Health and Social Measures in the community by the health workforce. The underlying infection prevention and control strategy of this section is the notion that early identification of symptomatic cases, testing and quarantining/isolating health and care workers decreases the risk of nosocomial infection to patients and to other health and care workers.
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Access to safe blood and blood products is recognized as one of the key requirements for delivery of modern health care in the journey towards health for all. The foundation of safe and sustainable blood supplies depends on the collection of blood from voluntary non-remunerated and low-risk donors.
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Data from the WHO Global Database for Blood Safety (GDBS) brings out several inadequacies related to the supply and safety of blood and blood products. These inadequacies include a number of variations in safe blood practices across the world, including the quantity of blood donated (voluntary and replacement types), quality and adequate testing of the donated blood (immunohaematology [IH] and transfusion-transmitted infections [TTIs]), rational use of blood and blood components such as appropriate patient blood management protocols. These variations are very high in countries of the South-East Asian Region and most of them are either low- or middle-income countries (LMICs).
more
The Infection prevention and control in the context of coronavirus disease 2019 (COVID-19): a living guideline consolidates technical guidance developed and published during the COVID-19 pandemic into evidence-informed recommendations for infection prevention and control (IPC). This living guideline
...
is available both online and PDF.
This version of the living guideline (version 6.0) includes fifteen statements on IPC measures in health-care settings (screening and patient placement, ventilation, physical barriers, environmental cleaning, waste management, amongst others) as well as one statement on mask fit in the community context.
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Cardiovascular disease (CVD) is the leading cause of global deaths, with the majority occurring in low- and middle-income countries (LMIC). The primary and secondary prevention of CVD is suboptimal throughout the world, but the evidence-practice gaps are much more pronounced in LMIC. Barriers at the
...
patient, health-care provider, and health system level prevent the implementation of optimal primary and secondary prevention. Identification of the particular barriers that exist in resource-constrained settings is necessary to inform effective strategies to reduce the identified evidence-practice gaps. Furthermore, targeting modifiable factors that contribute most significantly to the global burden of CVD, including tobacco use, hypertension, and secondary prevention for CVD will lead to the biggest gains in mortality reduction. We review a select number of novel, resource-efficient strategies to reduce premature mortality from CVD, including: (1) effective measures for tobacco control; (2) implementation of simplified screening and management algorithms for those with or at risk of CVD, (3) increasing the availability and affordability of simplified and cost-effective treatment regimens including combination CVD preventive drug therapy, and (4) simplified delivery of health care through task-sharing (non-physician health workers) and optimizing self-management (treatment supporters). Developing and deploying systems of care that address barriers related to the above, will lead to substantial reductions in CVD and related mortality.
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One of the main aims of the WHO Global Initiative for Childhood Cancer and the CureAll Americas framework is to strengthen centers of excellence and promote the training of the health workforce, especially pediatric oncology nurses, specialized in nursing care for children and adolescents with cance
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r and their families. These health personnel provide compassionate, non traumatic, complex, continuous, ethical, conscious patient- and family-centered care in order to meet the physical, emotional, psychosocial, and cultural needs of the people involved. This publication is aimed at health administration teams, hospital management teams, and professional pediatric oncology nursing groups. Its objective is to identify, systematize, and consolidate available evidence on the scope of pediatric oncology nursing practice in Latin America and the Caribbean based on core competencies, in order to incorporate them into clinical practice, teaching, and research. The preparation process included a systematic review aimed at finding the best evidence on this subject. Patient- and family centered care and the conceptual model of competencies for teenagers and young adults with cancer, developed by the Teenage Cancer Trust with the support of the Royal College of Nursing, were the theoretical foundations supporting the systematization of recommendations.
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Chronic kidney disease (CKD) is an important contributor to mortality from noncommunicable diseases. No decrease has been seen for CKD mortality contrary to many other important non-communicable diseases (e.g., cardiovascular disease). The prevalence of CKD and kidney failure are increasing all over
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the world – and thereby also the need for dialysis. Unfortunately, the prevalence increases most rapidly in lowand middle-income countries. Globally, there are great inequities in access and quality of management of kidney failure. Many low- and middle-income countries cannot meet the increased need for dialysis. If the patients receive dialysis, it might only be for a limited period due to the out-of-pocket expenses. There are global disparities in CKD mortality reflecting the disparities in access to care. Lack of access to dialysis is an important cause of the increased CKD mortality in low- and middle-income countries.
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Cystic Fibrosis - What Is Cystic Fibrosis
National Heart, Lung, and Blood Institute (NHLBI)
U.S. Department of Health and Human Services
(2024)
CC2
The "Cystic Fibrosis Fact Sheet" by the National Heart, Lung, and Blood Institute provides an overview of cystic fibrosis (CF), a chronic and often fatal genetic disorder affecting the respiratory and digestive systems. The document outlines the causes, genetic inheritance patterns, and symptoms of
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CF, which include thick mucus buildup, respiratory issues, and digestive problems. It also discusses diagnostic methods, such as the sweat test and genetic testing, and highlights current treatment approaches focused on symptom management, including chest therapy, medications, and potential gene therapy. The fact sheet emphasizes patient and family education to improve quality of life and support coping strategies.
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Medical devices are used for the prevention, diagnosis and treatment of illness and diseases and for rehabilitation. WHO developed guidance on medical device donation in 2011, which has been now reviewed, with new evidence, new references on considerations for medical device solicitation and provisi
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on, risks associated with inappropriate donations, the responsibilities of donors and recipient, and the steps they should follow before, during and after a donation. It includes three sections: description of major problems that may be faced during the donation process, listing of best practices for donors and recipients and addressing situations requiring special attention. It also has three annexes for further reading: the criteria for the acceptability of a donation, literature review on donations of medical devices between 2010 and 2023 and a flyer. This document is intended to improve the quality of medical devices donations, including medical equipment, single-use medical devices and in-vitro diagnostics, to provide maximum benefit to all stakeholders. The considerations can be used to develop institutional or national policies and regulations for medical devices donations. This document is intended for use by any organization, expert or practitioner involved in the donation, procurement, management of medical devices, including health workers, biomedical engineers, health managers, policymakers, donors, nongovernmental organizations and academic institutions.
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- The goal of diagnostic testing for Ebola and Marburg virus diseases is to identify cases to provide timely and appropriate care and to stop disease transmission.
- All individuals meeting the case definition for Ebola or Marburg virus diseases should be tested.
- The recommended sample type
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for testing for orthoebolaviruses and orthomarburgviruses is whole blood or plasma for living patients, and oral swab for deceased individuals.
- Laboratory confirmation of Orthoebolavirus and Orthomarburgvirus infections and further species identification should be done using nucleic acid amplification testing (NAAT).
- If a suspected case tests negative (living patient) and the blood was drawn less than 72 hours after symptom onset, a second test should be performed with blood drawn more than 72 hours after symptom onset.
- All manipulations in laboratory settings of samples originating from suspected, probable or confirmed cases of Ebola and Marburg virus diseases should be conducted with appropriate biosafety measures according to a risk-based approach.
- Whole or partial genome sequencing can be used to characterize viruses and complement epidemiologic investigations.
- Member States are strongly encouraged to share genetic sequence data (GSD) in publicly accessible databases.
- Member States are required to immediately notify the World Health Organization (WHO) under the International Health Regulations (IHR) 2005 of positive laboratory results.
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Lessons learned from recent public health events such as the COVID-19 pandemic, Ebola virus disease, Zika virus disease outbreaks, and other public health threats, including earthquakes and floods, have highlighted the need for countries to continuously develop, strengthen, and maintain capacities r
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equired under the International Health Regulations (2005) (IHR (2005)).
Developing capacities for health security in a country requires the engagement of public and private entities across a broad range of sectors, including human and animal health, agriculture, environment, finance, security, emergency management, education, and transportation. The World Health Organization (WHO) is mandated through various resolutions, decisions, and reports of the World Health Assembly, and through the IHR (2005), to provide technical guidance and support to its Member States in developing, strengthening, and maintaining their health systems, including capacities required under the IHR (2005).
For countries to better prevent, prepare for, detect, notify, respond to, and recover from public health emergencies, they must build and maintain IHR core capacities and support the strengthening of health emergency prevention, preparedness, response, and resilience (HEPR) capacities. National Action Plans for Health Security (NAPHS), as capacity development plans, provide the tasks and resources needed to ensure adequate capacities are in place to prevent, detect, respond to, and recover from public health events in a sustainable manner. Investing in the resilience of these capacities within national health systems at national and local levels not only improves national health security but also helps safeguard economic, social, and political developments.
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The protracted humanitarian situation in northeastern Nigeria, particularly in Borno, Adamawa, and Yobe (BAY) States, remains a concern due to ongoing insecurity, displacement, food insecurity, disease outbreaks, and climate-related shocks. To address these complex challenges, the health sector has
...
developed a comprehensive humanitarian response strategy aligned with the three States Development plans, Durable Solutions for the Population Displacement Plan, and the Humanitarian Need Response Plan for 2025. This strategy aims to reduce morbidity and mortality among crisisaffected populations by ensuring timely, equitable, and effective delivery of lifesaving health services, while strengthen the resilience of health system and enhancing local and national capacities for sustainable health response in protracted emergency.
Supported by an in-depth analysis of the ongoing health humanitarian response using the Strengths, Weaknesses, Opportunities, and Threats (SWOT) methodology, the strategy is guided by three key objectives:
1. Provide access to lifesaving interventions and sustain an effective response to the prolonged health emergency.
2. Prevent, mitigate, and prepare for health risks from all hazards and respond to all health emergencies.
3. Advance the primary health care approach and essential health system capacities for universal health coverage.
To achieve these objectives, the strategy employs the “Five C” framework which refers to:
• Collaborative Surveillance: Enhancing collaborative efforts for effective monitoring.
• Community Protection: Implementing community-based protection measures.
• Safe and Scalable Care: Ensuring care that is both secure and scalable.
• Access to Countermeasures: Facilitating access to necessary countermeasures.
• Emergency Coordination: Coordinating emergency responses efficiently.
These proactive approaches are designed to be more anticipatory and preemptive rather than reactive, aiming to meet the needs of the crisis-affected population by providing lifesaving interventions, enhancing preventive and anticipatory actions, and ensuring the resilience of the health system. All actions are guided by International Humanitarian Standards and the Humanitarian Principles.
The implementation of the health humanitarian response strategy will involve collaboration with local authorities, non-governmental organizations (NGOs), and international organizations. The strategy emphasizes localization and resource mobilization, efficient logistics and supply chain management, mainstreaming protection, and the deployment and training of healthcare workers. Continuous monitoring and periodic evaluation will ensure the effectiveness of the response. Cross-sector collaboration with sectors such as WASH, Nutrition, Education, and Protection will be crucial to enhance the quality and reach of health interventions. Additionally, sustainability and transition approaches will ensure long-term health outcomes and benefits, bridging the gap from humanitarian to development efforts.
By adopting this comprehensive approach, the humanitarian response in northeastern Nigeria, particularly in BAY States, can be effectively guided, ultimately reducing the suffering of affected populations.
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National Strategic Plan: Malaria Elimination 2023-27
National Centre for Vector Borne Disease Control (NCVBDC)
Ministry of Health and Family Welfare (MoHFW) - India
(2023)
C2
The National Strategic Plan for Malaria Elimination in India (2023-2027) focuses on achieving malaria elimination by 2030, in alignment with the Global Technical Strategy. The document outlines the strategies, targets, and goals for malaria elimination, aiming for zero indigenous malaria cases by 20
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27. It emphasizes district-based planning, robust surveillance systems, and enhancing case management and vector control. The plan stresses the importance of universal access to treatment, prevention, and data-driven decision-making. Furthermore, it encourages innovation and research in malaria elimination efforts, fostering multisectoral coordination and community engagement.
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These guidelines promote the delivery of people-centred health services for STIs by providing evidence-based recommendations related to decentralization, integration, task sharing and digital health. These recommendations complement existing WHO guidelines for STI testing, treatment and
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management, and other service delivery interventions, such as self-care interventions. All the recommendations will be incorporated into the forthcoming WHO consolidated guidelines on STI prevention and care.
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Rwanda Malaria Strategic Plan 2020–2024
Ministry of Health, Rwanda; Rwanda Biomedical Centre (RBC)
Ministry of Health, Republic of Rwanda
(2020)
C2
The Rwanda Malaria Strategic Plan 2020–2024 outlines Rwanda’s national strategy to reduce malaria morbidity and mortality by at least 50% compared to 2019 levels. The vision is a malaria-free Rwanda contributing to socioeconomic development.
The plan includes strengthening prevention through lo
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ng-lasting insecticide-treated nets, indoor residual spraying, and larval source management; ensuring universal access to testing and treatment; improving surveillance and data use; and enhancing program management, coordination, and financing. It also emphasizes community engagement and behavior change to ensure at least 85% of the at-risk population adopts protective practices.
The strategy builds on past lessons, involves multi-sectoral collaboration, and aligns with global malaria goals. It highlights equity, quality services, and evidence-based interventions as guiding principles, aiming to mobilize national and international resources for sustained impact.
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The World Health Organization recently redefined leprosy elimination as a phased process, with the first milestone being the
interruption of transmission, achieved when no new child cases (defined as younger than 15 years) are reported for five consecutive years.
In Pakistan, the well-functioning
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leprosy programme, with effective case management, context-specific active case-finding strategies and
a robust data management system, has contributed to a decrease in new cases. Between 2001 and 2023, new adult cases dropped by 75%
(from 878 cases to 220 cases annually) and child cases by 83% (from 93 to 16). To support the country’s goal of no new child cases by 2030
and ultimately eliminate the disease, the nongovernmental organizations Marie Adelaide Leprosy Centre and Aid to Leprosy Patients, with
support from the German Leprosy and Tuberculosis Relief Association, have developed a zero leprosy roadmap. As part of this roadmap,
the leprosy elimination strategy emphasizes improving active case-finding and providing post-exposure prophylaxis for contacts of leprosy
cases, who are at the highest risk
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Developed through broad and inclusive consultation, and aligned with the WHO Global Health Sector Strategies and the Sustainable Development Goals, the framework promotes a people-centred approach and antimicrobial stewardship across 5 key domains: prevention and response, surveillance, research and
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innovation, laboratory capacity, and governance.
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The paper “Artificial Intelligence for Public Health Surveillance in Africa: Applications and Opportunities” examines how artificial intelligence (AI) can improve public health systems across Africa, particularly in low-resource settings. It explores how machine learning and other AI techniques
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are being used for disease detection, outbreak prediction, real-time surveillance, and health resource management.
The authors focus on major public health challenges such as HIV, cholera, Ebola, measles, tuberculosis, malaria, COVID-19, and mental health. Through numerous case studies, the paper shows that AI can enhance the accuracy and speed of disease detection, predict outbreaks more effectively than traditional methods, support vaccination strategies, and optimize healthcare resource allocation. At the same time, it discusses important barriers to implementation, including limited data quality, infrastructure constraints, ethical concerns, and shortages of technical expertise.
Overall, the paper highlights AI’s strong potential to strengthen disease surveillance and health outcomes in Africa while emphasizing the need for careful integration, improved data systems, and supportive policy frameworks.
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The document Integrated Disease Surveillance and Response Technical Guidelines, Booklet Four: Sections 8 and 9 (Third Edition, 2019) provides guidance for strengthening public health surveillance and response systems in the WHO African Region. It focuses on monitoring, supervision, evaluation, and f
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eedback mechanisms to improve the performance and quality of Integrated Disease Surveillance and Response (IDSR) systems. The text outlines key surveillance core functions—such as case detection, reporting, data analysis, outbreak investigation, preparedness, response, and feedback—and introduces indicators to measure system effectiveness, including timeliness, completeness, and data quality. Additionally, it discusses the implementation of electronic IDSR (eIDSR) to enhance real-time reporting and outbreak management. Overall, the booklet aims to strengthen early detection, rapid response, and health security capacity across all levels of the health system.
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The document “Strengthening the global architecture for health emergency prevention, preparedness, response and resilience” presents a report by the Director-General of the World Health Organization (WHO) to the World Health Assembly on global efforts to improve preparedness and response to heal
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th emergencies. It reviews the implementation of the Health Emergency Prevention, Preparedness, Response and Resilience (HEPR) framework and highlights lessons learned from recent crises such as COVID-19. The report describes international initiatives to strengthen global health governance, surveillance systems, laboratory networks, community protection measures, healthcare capacity and access to medical countermeasures like vaccines and diagnostics. It also discusses coordination of emergency responses, support for countries facing outbreaks or humanitarian crises, and the importance of international cooperation. In addition, the report emphasizes the need for sustainable and coordinated financing to strengthen global health security and ensure that countries can better prevent, detect and respond to future health threats.
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