The five hepatitis viruses have different epidemiological profiles, and their impact, duration, and transmission route also vary. The most common transmission routes contributing to the spread of hepatitis are exposure to infected blood via blood transfusion or unsafe injection practices, consumptio...n of contaminated food and drinking water, and transmission from mother to child during pregnancy and delivery. Also, unsafe injection practices, including the use of unsterile needles and syringes, serve as a major pathway for the spread of hepatitis B and C, and reducing transmission of both diseases requires addressing these practices.
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Lymphatic filariasis is a vector-borne neglected tropical disease that causes damage of the lymphatic system and can lead to lymphoedema (elephantiasis) and hydrocele in infected individuals. The global baseline estimate of persons affected by lymphatic filariasis is 25 million men with hydrocele an...d over 15 million people with lymphoedema. At least 36 million persons remain with these chronic disease manifestations. The disease is endemic in 72 countries. In 2016, an estimated total population of 856 million were living in areas with ongoing transmission of the causative filarial parasites and requiring mass drug administration (MDA). Lymphatic filariasis disfigures and disables, and often leads to stigmatization and poverty. Hundreds of millions of dollars are lost annually due to reduced productivity of affected patients. WHO has ranked the disease as one of the world’s leading causes of permanent and long-term disability.
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After Workplace exposures and Sexual Assault
| DIRECTORATE: PRIMARY HEALTH CARE SERVICES
| DIVISION: PUBLIC AND ENVIRONMENTAL HEALTH
| SUB-DIVISION: OCCUPATIONAL HEALTH SERVICES
BMC Public Health (2019) 19:1608
https://doi.org/10.1186/s12889-019-7853-3
This is the first national Policy to combat AMR in Cambodia. It was developed based on conclusions and recommendations of a country situaytion analysis.
A role for nuclear techniques
Antimicrobials play a critical role in the treatment of human and animal (aquatic and terrestrial) diseases, which has led to their widespread application and use. Antimicrobial resistance (AMR) is the ability of microorganisms to stop an antibiotic, such as an antimic...robial, antiviral or antimalarial, from working against them. Globally, about 700 000 deaths per year arise from resistant infections as a result of the fact that antimicrobial drugs have become less effective at killing resistant pathogens. Antimicrobial chemicals that are present in environmental compartments can trigger the development of AMR. These chemicals can also cause antibiotic-resistant bacteria (ARB) to further spread antibiotic resistance genes (ARG) because they may have an evolutionary advantage over non-resistant bacteria.
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The global tripartite self-assessment survey of country progress in addressing antimicrobial resistance (AMR) is a component of a broader approach for monitoring and evaluation of the global action plan on AMR. This report analyses the results of the second tripartite self-assessment survey
Antimicrobials are widely used in food animal production, and use is rapidly increasing.
In an era of growing demand for animal products, there is an increasing trend towards the industrial production of food animals, especially in lower- and middle-income countries (LMICs). One hallmark of this me...thod of animal production is the
use of antimicrobial drugs, which in the majority of cases are administered to healthy animals for purposes other than
treating or controlling disease (termed “therapeutic uses”)
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Antimicrobial resistance (AMR) both in human and veterinary medicine has reached alarming levels in
most parts of the world and has now been recognized as a significant emerging threat to global public
health and food security. In June 2015, the Food and Agriculture Organization of the United Nati...ons
(FAO) passed a resolution on AMR at its governing
Conference. This followed the adoption of counterpart
resolutions on AMR by The World Organisation
for Animal Health (OIE) and the World Health Organization
(WHO) in May 20152, and marked the
beginning of a joint effort by the three organizations
to combat AMR globally.
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In recognition of the growing problem of antimicrobial resistance (AMR), its increasing threat to human, animal and plant health, and the need for a One Health approach to address this issue, the 39th Session of the Codex Alimentarius Commission (CAC) agreed it was important for the food safety comm...unity to play its part and re-established the ad hoc Codex Intergovernmental Task Force on Antimicrobial Resistance (TFAMR) ). The objectives of the Task Force were
to revise the current Codex Code of Practice to Minimise and Contain Antimicrobial Resistance and to develop new guidance on surveillance programmes relevant to foodborne AMR.
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