Leptospirosis is a zoonotic disease with epidemic potential, especially after a heavy rainfall,
caused by a bacterium called Leptospira. Leptospira interrogans is pathogenic to humans and
animals, with more than 200 serologic variants or serovars.
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Humans usually acquire
leptospirosis through direct contact with the urine of infected animals or a urine-contaminated
environment. Human-to-human transmission occurs only very rarely. Leptospirosis may present
with a wide variety of clinical manifestations, from a mild illness that may progress to a serious
and sometimes fatal disease. Its symptoms may mimic many diseases, such as influenza,
dengue and other viral haemorrhagic diseases; making the correct diagnosis (clinical and
laboratory) at the onset of symptoms is important to prevent severe cases and save lives,
primarily in outbreak situations.
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Smallpox eradication was certified in 1980. Mpox has been endemic in Central and West African countries since it was first detected in 1958 . It is a zoonosis; cases are often found close to tropical rainforests where various animals carry the ortho
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poxvirus that causes the disease. In endemic countries, most mpox infections in humans result from a primary animal-to-human transmission. Human-to-human transmission can result from close contact with respiratory secretions, skin lesions of an infected person, or recently contaminated objects. Transmission can also occur via the placenta from mother to fetus or through close contact during and after birth.
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Emergence of antimicrobial resistance is a result of the use, overuse and misuse of antibiotics both in humans and animals. In Ethiopia, there are indications on the misuse of antibiotics by health care providers’, unskilled practitioners, and dru
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g consumers. These coupled with rapid spread of resistant bacteria and inadequate surveillance contributed to the problem. Bacterial infections are the major causes of death in Ethiopia. Studies on antibacterial resistance and on bacterial infections have shown that emerging antibacterial resistance threatens the management of bacterial infections; however, the prevention and containment has received far too little attention.
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BUKO Pharma-Kampagne has investigated the causes and consequences of antibiotic resistance in India, South Africa, Tanzania and Germany. Together with our partners we collected data and did interviews with numerous stakeholders. The outcome is presented in a brochure that is now available in English
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Resistant bacteria are spreading worldwide. In collaboration with partners in India, Tanzania, South Africa and Germany, we have investigated the causes and consequences of this spread.2 This Pharma-Brief Special presents the results. It examines the risks for humans, animals and the environment. It focuses on local problems and approaches, international interactions and the re-sponsibility of doctors, farmers and consumers.
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Specific action sheets offer useful guidance on mental health and psychosocial support and cover the following areas coordination assessment monitoring and evaluation protection and human rights standards human resources community mobilisation and support health services education dissemination of i
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nformation food security and nutrition shelter and site planning and water and sanitationthe guidelines include a matrix with guidance for emergency planning actions to be taken in the early stages of an emergency and comprehensive responses needed in the recovery and rehabilitation phases
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The study collected data on the impact of HIV-related diseases on income, revenues, economic dependency, consumption, education, health, food security, stigma, discrimination, quality of life, and migration. The study also assessed people living wit
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h chronic diseases in order to compare the impact of living with HIV/AIDS with the impact of living with a chronic disease.
Stigma, discrimination, and socio-economic exclusion continue to affect the rights and socio-economic opportunities of people living with HIV in Myanmar. Households with a family member who has HIV, have lower incomes, fewer assets and lower home-ownership, compared to households that are not affected by HIV. They also have more household debt, and their families pay a higher rate of interest compared to families not affected by HIV.
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Context and impact of the crisis
A year after the signing of the Revitalized Agreement on the Resolution of the Conflict in South Sudan (R-ARCSS),1 the ceasefire holds in most parts of the country. Armed conflict between State security forces and opposition armed groups has been contained to a sma
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ll number of areas in the Equatorias where Government forces continue to clash with non-signatories to the agreement. Many areas are seeing intra- and inter-communal violence, enabled by small-arms proliferation and weak rule of law. This is often driven by resource scarcity in areas that have experienced years of severe food insecurity.
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The current trend in AMR in Uganda and globally is rising and calls for immediate action. The 71st UN General Assembly (UNGA), the 68th World Health Assembly, and organizations including the World Health Organization (WHO), the Food and Agriculture
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Organization (FAO), and the World Organization for Animal Health (OIE), have agreed on a set of actions that member countries such as Uganda are committed to implement. The Government of Uganda (GoU) has put in place a framework through this National AMR Action Plan to address the threat AMR poses to the welfare of the peoples of Uganda. The Action Plan sets out a coordinated and collaborative One Health approach involving key stakeholders in government and other sectors to confront the threat and shall be coordinated by a Uganda National Antimicrobial Resistance Committee (UNAMRC).
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China is one of the major countries for the production and use of antibacterial agents. Antibacterial agents are widely used in healthcare and animal husbandry. It plays a significant role in treating infections and saving patient lives, preventing and treating animal diseases, improving farming ef
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ficiency, and guaranteeing public health security. However, antimicrobial resistance has become increasingly prominent due to insufficient research and development capacity of new antimicrobials, sales of antimicrobials without prescriptions in pharmacies, irrational use of antibacterial agents in medical and food animal sectors, non-compliant waste emissions of pharmaceutical enterprises, as well as lack of public awareness toward rational use of antimicrobials. Bacterial resistance ultimately affects human health, but the cause of bacterial resistance and consequences are beyond the health sector. Antimicrobial resistance brings increasing biosecurity threats, worsens environmental pollution, constrains economic development and other adverse effects to human society, thus, there is an urgent need to strengthen multi-sectoral and multi-domain collaborative planning to jointly cope with this issue.
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A new respiratory infectious disease, COVID-19, caused by a new coronavirus called SARS-CoV-2, emerged in early December 2019. Since then, the virus has spread to India and 106 other countries in Asia, Europe, North America, Africa, and Oceania. On March 11, the World Health Organization (WHO) decl
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ared the outbreak a pandemic, which has since rapidly evolved. As an economic hub with substantial global connectivity and movement of people and goods, India is directly impacted by the COVID-19 pandemic. Although it is too early to gauge the full spectrum of the outbreak’s social and economic impacts, COVID-19 has already caused lockdowns in China, Korea, and in many countries in Europe, and in some states of India, suspension of schools and universities, disruption of food systems and other supply chains, as well as a slowdown in trade between India and rest of the world.
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This 400 page guide, created by PHI’s Center for Climate Change and Health and the American Public Health Association (APHA), with support from the California Department of Public Health helps local health departments prepare for and mitigate climate change effects—from drought and heat to flood
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ing and food security—with concrete, implementable suggestions.
The guide: Provides a basic summary of climate change and climate impacts on health; Prioritizes health equity, explains the disproportionate impacts of climate change on vulnerable communities, and targets solutions first to the communities where they are most needed, including low-income, elderly and people of color communities; Connects what we know about climate impacts and climate solutions with the work of local health departments; and Offers specific examples of how local health departments can address and ameliorate the impacts of climate change in every area of public health practice.
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This guidance document is meant to support practitioners working in disaster prone contexts to develop and implement more effective integrated resilience programming. It promotes programming that cuts across different fields of work like rights awareness,
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food security, emergency preparedness, livelihoods, education, health etc. whilst at the same time encouraging us to work simultaneously at the individual, household, community and national level. It includes specific recommendations for developing resilience programming for communities prone to floods, cyclone, drought and earthquakes. It also includes recommendations to develop safe school programming to help reduce the impact of disasters on school infrastructure, ensure education continuity and build the resilience of students, teachers and their families.
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Healthy communities rely on well-functioning ecosystems. They provide clean air, fresh water, medicines and food security. They also limit disease and stabilize the climate. But biodiversity loss is happening at unprecedented rates, impacting human
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health worldwide, according to a new state of knowledge review of the Convention on Biological Diversity (CBD) and WHO.
The report synthesizes the available information on the most important inter-linkages between biodiversity, ecosystem stability, and epidemic infectious diseases such as the Ebola virus; and the connection between biodiversity, nutritional diversity and health. It also covers the potential benefits of closer partnerships between conservation and health, from improved surveillance of infectious diseases in wildlife and human populations, to promoting access to green spaces to promote physical activity and mental health. It also highlights the many areas in which further research is needed.
The Joint report hopes to provide a useful reference for the Sustainable Development Goals and post-2015 development agenda, which represents an unique opportunity to promote integrated approaches to biodiversity and health by highlighting that biodiversity contributes to human well-being, and highlighting that biodiversity needs protection for development to be sustainable.
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This report aims to support countries in the necessary transition toward healthier, more sustainable diets by integrating biodiversity in food-based interventions to support nutrition and health. It is intended to help guide decision-makers in the h
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ealth, nutrition and other sectors, to:
Consider the important role of biodiversity in food systems for the development of integrated interventions to support healthy, diverse and sustainable diets;
To focus investments and country support for more comprehensive, coordinated and cross-cutting public health and nutrition projects and policies; and
To strengthen the resilience of food systems, health systems, and societies, each of which are each increasingly compromised by widespread ecological degradation, biodiversity loss and climate change.
Biodiversity at every level (genetic, species and ecosystem level) is a foundational pillar for food security, nutrition, and dietary quality. It is the basic source of variety in essential foods, nutrients, vitamins and minerals, and medicines, and underpins life-sustaining ecosystem services. It is a core environmental determinant of health, often a vital ingredient of healthy nutritional outcomes and livelihoods, gender equality, social equity, and other health determinants.
Biodiversity can play a more prominent role in planning for nutritional outcomes in various ways, e.g. by facilitating the production of nutritious fruits and plant products, sustaining livelihoods through more efficient production and increasing the diversity of products available in markets. This Guidance presents and expands on six core building blocks for mainstreaming biodiversity for nutrition and health:
Cross-sectoral knowledge development and knowledge co-production;
Enabling environments;
Integration;
Conservation and the wider use of biodiversity;
Education and awareness-raising;
Monitoring and evaluation;
This WHO report builds on an unprecedented opportunity to mainstream biodiversity in order to support healthy and sustainable diets, and offers the necessary technical guidance to catalyze and support a transformation of the global food system and transition to healthier, more sustainable diets.
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Phil. Trans. R. Soc. B (2010) 365, 2959–2971; doi:10.1098/rstb.2010.0143.
Agricultural ecosystems provide humans with food, forage, bioenergy and pharmaceuticals and are essential to human wellbeing. These systems rely on ecosystem services provi
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ded by natural ecosystems, including pollination, biological pest control, maintenance of soil structure and fertility, nutrient cycling and hydrological services. Preliminary assessments indicate that the value of these ecosystem services to agriculture is enormous and often underappreciated. Agroecosystems also produce a variety of ecosystem services, such as regulation of soil and water quality, carbon sequestration, support for biodiversity and cultural services. Depending on management practices, agriculture can also be the source of numerous disservices, including loss of wildlife habitat, nutrient runoff, sedimentation of waterways, greenhouse gas emissions, and pesticide poisoning of humans and non-target species. The tradeoffs that may occur between provisioning services and other ecosystem services and disservices should be evaluated in terms of spatial scale, temporal scale and reversibility. As more effective methods for valuing ecosystem services become available, the potential for ‘win–win’ scenarios increases. Under all scenarios, appropriate agricultural management practices are critical to realizing the benefits of ecosystem services and reducing disservices from agricultural activities.
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The community-BFCI (c-BFCI) manual has been developed to facilitate training of CHVs and stakeholders providing nutrition sensitive services at community level. The manual covers a wide range of topics: basic nutrition, exclusive breastfeeding, complementary feeding, Breast Milk Substitutes Act, gro
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wth monitoring and promotion, early childhood development and stimulation, household food and nutrition security and establishment of baby friendly communities.
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The policy brief focuses on four key areas for intervention - air pollution, energy, transport and food systems. Air pollution causes 7 million deaths annually, and is a leading cause of both NCDs and climate change, thus all interventions to reduce
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air pollution have a positive impact on both human and planetary health. In the energy sector, transition from fossil fuels to renewable energy is if vital importance to improving health, with mortality rates due to coal-generated electricity 1,000 times higher than for wind-generated electricity.
Promoting active transport such as walking and cycling in place of motorised transport has the dual benefit of reducing both air pollution and physical activity. Livestock production alone accounts for 18% of greenhouse gas emissions, with added emissions from food which are highly process and transported over long distances, and thus locally sourced plant based diets both prevent NCDs and promote human and planetary health.
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Climate Smart Agriculture provides an excellent opportunity for the transformation by uniting agriculture, development and climate change under a common agenda through integrating the three dimensions of sustainable development (economic, social and environmental) by jointly addressing
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food security and climate challenge
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More than three months since the start of the war in Ukraine, people globally are facing a cost-of-living crisis not seen in more than a generation, with escalating price shocks in the global food, energy and fertilizer markets - in a world already
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grappling with the COVID-19 pandemic and climate change.
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Leptospirosis is an infectious disease caused by pathogenic organisms belonging to the genus Leptospira, that are transmitted directly or indirectly from animals to humans. Leptospirosis is a major direct zoonosis. Humanto-human transmission occurs
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only very rarely.
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