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Publication Years
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Toolboxes
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This MOOC is an immersion into HIV science: from the virus biological origin and its identification to the perspectives of eradication. You will learn about the status of the HIV epidemic and diversity in the world, the complex interactions between the virus and the host cell, and how HIV evades the
...
immune system. The course will also describe exceptional individuals who control the infection and animal models of protection. Finally, it will address research questions on HIV clinical management and new treatment and prevention tools. This MOOC is organized in 6 weeks. Each week is composed of 5 sequences. In each sequence, you find an 8 - 10 minute video and two multiple choice questions (MCQ) to help participants check their understanding. This MOOC also proposes a weekly evaluation and a final test, made of 30 multiple-choice questions.
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Asia-Pacific Climate Change Adaptation Information Platform (AP-PLAT)
Center for Climate Change Adaptation (CCCA)
National Institute for Environmental Studies (NIES), Japan
(2026)
C2
The Asia-Pacific Climate Change Adaptation Information Platform (AP-PLAT) is an online platform designed to support climate change adaptation in the Asia-Pacific region. It provides scientific data, tools, and knowledge to policymakers, researchers, businesses, and the public in order to improve
...
understanding of climate risks and support evidence-based decision-making. The platform aims to strengthen resilience and sustainability by promoting collaboration between countries and institutions, sharing best practices, and enabling effective adaptation actions. Its core activities include generating and integrating scientific information on climate impacts, developing practical tools for adaptation planning, and building capacity through training and knowledge exchange. Overall, AP-PLAT functions as a central hub that connects science with stakeholders and facilitates informed responses to climate change across the region.
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Incorporating epidemics risk in the INFORM Global Risk Index
Poljanšek K., Marin-Ferrer M., Vernaccini L., Messina L.
European Commission – Joint Research Centre (JRC)
(2018)
C2
The document focuses on integrating epidemic risk into the INFORM Global Risk Index, a tool used to assess and compare crisis and disaster risks across countries. It explains how epidemics can significantly impact vulnerability and hazard exposure, and therefore should be systematically included in
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risk assessments. The report outlines methods, indicators, and data sources for incorporating epidemic risk into the index, improving its ability to capture health-related threats. Overall, the document aims to enhance risk analysis and support better preparedness, planning, and decision-making by providing a more comprehensive understanding of global risks.
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In order to meet changing global population needs and consumer expectations, healthcare systems worldwide are under transformation and face restructuring. As systems adapt and shift their emphasis in response to the disparate requests for healthcare services, oppor-tunities emerge for nurses, especi
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ally the APN, to meet these demands and unmet needs (Bryant-Lukosius et al. 2017; Carryer et al. 2018; Cassiani & Zug 2014; Cooper & Docherty 2018; Hill et al. 2017; Maier et al.2017). In 2002, the International Council of Nurses (ICN) pro-vided an official position on Advanced Practice Nursing (ICN 2008a). Since that time, worldwide development has increased significantly and simultaneously this field of nursing has matured. ICN felt that a review of its position was needed to assess the relevance of the definition and characteristics offered in 2002. This guid-ance paper defines diverse elements such as assump-tions and core components of the APN. The attributes and descriptors presented in this paper are intended to promote a common vision to continue to enable a greater understanding by the international nursing and healthcare communities for the development of roles commonly identified as Clinical Nurse Specialist (CNS) and Nurse Practitioner (NP).
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Chikungunya virus (CHIKV) is currently one of the most relevant arboviruses to public health. It is a member of the Togaviridae family and alphavirus genus and causes an arthritogenic disease known as chikungunya fever (CHIKF). It is characterized by a multifaceted disease, which is distinguished fr
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om other arbovirus infections by the intense and debilitating arthralgia that can last for months or years in some individuals. Despite the great social and economic burden caused by CHIKV infection, there is no vaccine or specific antiviral drugs currently available. Recent outbreaks have shown a change in the severity profile of the disease in which atypical and severe manifestation lead to hundreds of deaths, reinforcing the necessity to understand the replication and pathogenesis processes. CHIKF is a complex disease resultant from the infection of a plethora of cell types. Although there are several in vivo models for studying CHIKV infection, none of them reproduces integrally the disease signature observed in humans, which is a challenge for vaccine and drug development. Therefore, understanding the potentials and limitations of the state-of-the-art experimental models is imperative to advance in the field. In this context, the present review outlines the present knowledge on CHIKV epidemiology, replication, pathogenesis, and immunity and also brings a critical perspective on the current in vitro and in vivo state-of-the-art experimental models of CHIKF.
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As climate change increasingly contributes to migration and displacement in many parts of the world, there is a pressing need for measures that build resilience and prevent displacement as well as those that help climate-affected people move to safety and support receiving communities. Multilateral
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development banks (MDBs) are critical, if sometimes overlooked, players because of their ability to invest in large-scale projects that contribute to sustainable development, primarily in low- and middle-income countries.
This report explores the unique role of MDBs in the climate finance landscape and highlights opportunities for migration, humanitarian, and other key actors to partner with them on projects that effectively target climate-related migration and displacement. After reviewing the evidence on the complex linkages between climate and mobility, the report examines MDBs’ climate-related work to date, challenges they face to scaling up these efforts, and strategies to begin to address hurdles. These recommendations include learning from past MDB investments that have touched on climate migration, funding data collection or sharing to strengthen understanding of climate migration trends, and developing partnerships to support policy and project development, financing, and implementation.
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Antimicrobial resistance (AMR) is a global human, animal, plant and environment health threat that needs to be addressed by every country. The impacts of AMR are wide-ranging in terms of human health, animal health, food security and safety, environmental effects on ecosystems and biodiversity, and
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socioeconomic development. Just like the climate crisis, AMR poses a significant threat to the delivery of the 2030 Agenda for Sustainable Development. The response to the AMR crisis has been spearheaded through the global action plan on antimicrobial resistance (GAP-AMR), developed by the World Health Organization (WHO) in 2015, in close collaboration with the Food and Agriculture Organization of the United Nations (FAO) and the World Organisation for Animal Health (WOAH), and formally endorsed by the three organizations’ governing bodies and by the Political Declaration of the high-level meeting of the United Nations General Assembly on AMR in 2016. In 2022, the three organizations officially became the Quadripartite by welcoming the United Nations Environment Programme (UNEP) into the alliance “to accelerate coordination strategy on human, animal and ecosystem health”.
The aim of the GAP-AMR is to ensure the continuity of successful treatment with effective and safe medicines.
Its strategic objectives include:
• improving the awareness and understanding of AMR;
• strengthening the knowledge and evidence base through surveillance and research;
• reducing the incidence of infection through effective sanitation, hygiene and infection prevention measures; optimizing the use of antimicrobial medicines in human and animal health; and
• developing the economic case for sustainable investment that takes account of the needs of all countries and increasing investment in new medicines, diagnostic tools, vaccines and other interventions.
With the adoption of the GAP-AMR, countries agreed to develop national action plans (NAPs) aligned with the GAP-AMR to mainstream AMR interventions nationally. Individually, the Quadripartite took action to advance AMR interventions in their respective sectors. FAO adopted a resolution on AMR recognizing that it poses an increasingly serious threat to public health and sustainable food production, and developed an AMR action plan to support the resolution’s implementation. For its part, WOAH developed a strategy on AMR aligned with the GAP-AMR, acknowledging the importance of a One Health approach to AMR. Similarly, more recently, UNEP’s governing body, the United Nations Environment Assembly, recognized that AMR is a current and increasing threat and a challenge to global health, food security and the sustainable development of all countries, and welcomed the GAP-AMR and the NAPs developed in accordance with its five overarching strategic objectives
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Many features of the environment have been found to exert an important influence on cardiovascular disease (CVD) risk, progression, and severity. Changes in the environment due to migration to different geographic locations, modifications in lifestyle choices, and shifts in social policies and cultu
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ral practices alter CVD risk, even in the absence of genetic changes. Nevertheless, the cumulative impact of the environment on CVD risk has been difficult to assess
and the mechanisms by which some environment factors influence CVD remain obscure. Human environments are complex; and their natural, social and personal domains are highly variable due to diversity in human ecosystems, evolutionary histories, social structures, and individual choices. Accumulating evidence supports the notion that ecological features such as the diurnal cycles of
light and day, sunlight exposure, seasons, and geographic characteristics of the natural environment such altitude, latitude and greenspaces are important determinants of cardiovascular health and CVD risk. In highly developed societies, the influence of the natural environment is moderated by the physical characteristics of the social environments such as the built environment
and pollution, as well as by socioeconomic status and social networks. These attributes of the
social environment shape lifestyle choices that significantly modify CVD risk. An understanding
of how different domains of the environment, individually and collectively, affect CVD risk could
lead to a better appraisal of CVD, and aid in the development of new preventive and therapeutic
strategies to limit the increasingly high global burden of heart disease and stroke.
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For thousands of years, humans have been using wildlife for commercial and subsistence purposes. Wildlife trade takes place at local, national and international levels, with different forms of wildlife, such as live animals, partly processed products and finished products. Wildlife is a vital source
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of safe and nutritious food, clothing, medicine, and other products, in addition to having religious and cultural value. Wildlife trade also contributes to livelihoods, income generation and overall economic development.
However, wildlife trade can have detrimental effects on species conservation, depleting natural resources, impoverishing biodiversity and degrading ecosystems (Morton et al., 2021). Wildlife trade, whether legal or illegal, regulated or unregulated, can pose threats to animal health and welfare. It also presents opportunities for zoonotic pathogens to spill over between wildlife and domestic animals, and for diseases to emerge with serious consequences for public or animal health and profound economic impacts (IPBES, 2020; Swift et al., 2007; Smith et al., 2009; Gortazar et al., 2014; Stephen, 2021; Stephen et al., 2022; FAO, 2020). The risk of pathogen spillover and disease emergence is amplified with increased interaction between humans, wildlife and domestic animals. The risk of pathogen spillover has also been exacerbated by climate change, intensified agriculture and livestock production, deforestation, and other land-use changes. Wildlife trade is also a risk to ecosystem biodiversity via the introduction of invasive species (Wikramanayake et al., 2021). Therefore, increased effort must be put into understanding the potential consequences of the wildlife trade, mapping and analysing the adjacent risks, and implementing strategies to manage those risks. Reducing wildlife-trade risks not only helps to limit disease but also minimises the negative effects of invasive species. Between 1960 and 2021, invasive alien species caused estimated cumulative damage of around 116 billion euros across 39 countries in the European Union alone, despite strict import regulations (Haubrock et al., 2021). The effect of invasive species is extremely apparent.
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Malaria and HIV, two of the world’s most deadly diseases, are widespread, but their distribution overlaps greatly in sub-Saharan Africa. Consequently, malaria and HIV coinfection (MHC) is common in the region. In this paper, pertinent publications on the prevalence, impact, and treatment strategie
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s of MHC obtained by searching major electronic databases (PubMed, PubMed Central, Google Scholar, ScienceDirect, and Scopus) were reviewed, and it was found that the prevalence of MHC in SSA was 0.7%–47.5% overall. Prevalence was 0.7%–47.5% in nonpregnant adults, 1.2%–27.8% in children, and 0.94%–37% in pregnant women. MHC was associated with an increased frequency of clinical parasitemia and severe malaria, increased parasite and viral load, and impaired immunity to malaria in nonpregnant adults, children, and pregnant women, increased in placental malaria and related outcomes in pregnant women, and impaired antimalarial drug efficacy in nonpregnant adults and pregnant women. Although a few cases of adverse events have been reported in coinfected patients receiving antimalarial and antiretroviral drugs concurrently, available data are very limited and have not prompted major revision in treatment guidelines for both diseases. Artemisinin-based combination therapy and cotrimoxazole are currently the recommended drugs for treatment and prevention of malaria in HIV-infected children and adults. However, concurrent administration of cotrimoxazole and sulfadoxine–pyrimethamine in HIV-infected pregnant women is not recommended, because of high risk of sulfonamide toxicity. Further research is needed to enhance our understanding of the impact of malaria on HIV, drug–drug interactions in patients receiving antimalarials and antiretroviral drugs concomitantly, and the development of newer, safer, and more cost-effective drugs and vaccines to prevent malaria in HIV-infected pregnant women.
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Become familiar with One Health, a promising concept, and the effective solutions it provides for urgent health problems.
Addressing gaps and improving health system performance is simply not enough to prepare a health system to tackle the effects of the climate crisis. Climate change’s impact on the health and well-being of people globally is reaching catastrophic levels. As the earth continues to warm, tens of mill
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ions of people are at increased risk from rapid and unpredictable spread of infectious diseases, heatwaves, water and food insecurity and scarcity, air pollution, poverty and homelessness. Health services are often regarded as a first line defense in preventing adverse health outcomes, especially from those caused by climate impacts
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Towards the Peoples Health Assembly Book - 1
Towards the Peoples Health Assembly Book -2
Towards the Peoples Health Assembly Book -1
Sudan recorded the first COVID-19 case on 13 March 2020 and, at the beginning of July, the Federal Ministry of Health had confirmed that nearly 10,000 people had contracted the virus, including over 600 who died from the disease across the country. Although more than 70 per cent of the confirmed cas
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es are in the Khartoum area, COVID-19 has spread throughout the country, with the highest numbers recorded in the central and eastern states. With extremely low testing capacity — around 800 samples per day, the lowest in the region — the official figures of confirmed cases likely underestimate the extent of the pandemic and the actual situation is unknown.
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