This manual provides a practical method for determining the pharmacovigilance indices. It is designed to be simple and can be understood by any worker in pharmacovigilance without formal training in monitoring and evaluation. Pharmacovigilance as a medical discipline is crucial in preventing
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medicine-related adverse effects in humans, promoting patient safety, and the rational use of medicines. The indicators proposed in this manual are based on the expected functions of pharmacovigilance centres as described in the WHO Mimimum Requirements for a Functional Pharmacovigilance System (1) (see Annex 1 of the manual).
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Zambia has recognised the Public Health threat of antimicrobial resistance and its impact on morbidity and mortality, as well as the subsequent economic consequences. The country has recorded microorganisms which have developed resistance to antimicrobial drugs. Notable among these are; Multidrug Re
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sistant Mycobacterium Tuberculosis (MDR), Human Immunodeficiency virus resistant to antiretroviral drugs, Plasmodium resistance to antimalarial drugs, and fungal species showing indications of resistance to antifungal drugs. Emergence of “Superbugs” such as Methicillin Resistant Staphylococcus aureus (MRSA), Extended Spectrum beta-lactam (ESBL) producing Klebsiella pneumoniae and Vancomycin Resistant Enterococci (VRE) have also been reported.
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The manufacturing process is one of the key steps where quality control is required to ensure quality of medicinal products, including herbal medicines. Good manufacturing practices (GMP) is one of the most important tools for this measure.
Human rabies remains a significant public health problem in Africa with outbreaks reported in most countries. In Nigeria–the most populous country in Africa–rabies causes a significant public health burden partly due to perennial obstacles to implementing a national prevention and control progra
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m.
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To understand the national situation, Ethiopia did a situation assessment, launched its first strategy in 2011, and took action to contain AMR, as detailed in the blue boxes found throughout this strategy. This updated version of the strategy was in response to the revised health and medicines polic
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ies, health sector transformation plan, and the resolutions of the 68th World Health Assembly
of May 2015 and so that Ethiopia’s efforts could be coordinated with global initiatives in the prevention and containment of AMR.
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Antimicrobial resistance(AMR) poses a serious threat to human, animal and environmental health. Implementing ethical practice guidelines on how to use antimicrobials effectively and responsibly within the pig industry will contribute in reducing and preventing antimicro
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bial resistance within the pig industry of South Africa. Members of Pig Vet Society (PVS) SA hereby commit themselvesto put these guidelines into good use in order to preserve the future and effectiveness of antimicrobials. PVS aims to be the leader in prevention of antimicrobial resistance and to encourage the pig industry to work together in achieving this.
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This guidance should be followed if an unlicensed medicine is prepared in
a registered pharmacy. The preparation of an unlicensed medicine (for
example unlicensed methadone, or menthol in aqueou
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s cream) in a pharmacy is called ‘extemporaneous preparation’.
The guidance should be read alongside the standards for registered pharmacies. These aim to create and maintain the right
environment, both organizational and physical, for the safe and effective practice of pharmacy.
By following this guidance, the pharmacy will:
• demonstrate that it meets our standards, and
• provide assurances that the health, safetyand wellbeing of patients and the public are safeguarded
Responsibility for making sure this guidance is followed lies with the pharmacy owner. If the registered pharmacy is owned by a ‘body
corporate’, the directors have responsibility.
Those responsible for the overall safe running of the pharmacy need to take into account the nature of the pharmacy and the range of services
already provided and, most importantly, the needs of patients and members of the public.
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The increasing global trend of Antimicrobial resistance (AMR) has gradually emerged as a major public health challenge for the entire world. AMR has spread to almost all countries and regions, including Pakistan owing to the “misuse and overuse” of Antimicrobials, contributing to the increasing
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burden of infections due to resistant bacteria, viruses, parasites and fungi, while limiting the treatment options for managing such infections.
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2018
9th Edition
Offering information on HIV/AIDS treatment, prevention, and research
Hendra virus (HeV) continues to pose a serious public health concern as spillover events occur sporadically. Terminally ill horses can exhibit a range of clinical signs including frothy nasal discharge, ataxia or forebrain signs. Early signs, if detected, can include depression, inappetence, colic o
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r mild respiratory signs. All unvaccinated ill horses in areas where flying foxes exist, may potentially be infected with HeV, posing a significant risk to the veterinary community. Equivac® HeV vaccine has been fully registered in Australia since 2015 (and under an Australian Pesticides and Veterinary Medicines Authority special permit since 2012) for immunization of horses against HeV and is the most effective and direct solution to prevent disease transmission to horses and protect humans. No HeV vaccinated horse has tested positive for HeV infection. There is no registered vaccine to prevent, or therapeutics to treat, HeV infection in humans. Previous equine HeV outbreaks tended to cluster in winter overlapping with the foaling season (August to December), when veterinarians and horse owners have frequent close contact with horses and their bodily fluids, increasing the chance of zoonotic disease transmission. The most southerly case was detected in 2019 in the Upper Hunter region in New South Wales, which is Australia's Thoroughbred horse breeding capital. Future spillover events are predicted to move further south and inland in Queensland and New South Wales, aligning with the moving distribution of the main reservoir hosts. Here we (1) review HeV epidemiology and climate change predicted infection dynamics, (2) present a biosecurity protocol for veterinary clinics and hospitals to adopt, and (3) describe diagnostic tests currently available and those under development. Major knowledge and research gaps have been identified, including evaluation of vaccine efficacy in foals to assess current vaccination protocol recommendations.
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This document provides additional guidance for the responsible and prudent use of antimicrobials in food-producing animals, and should be read in conjunction with the Recommended International Code of Practice for Control of the Use of Veterinary Dr
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ugs CAC/RCP 38-1993. Its objectives are to minimize the potential adverse impact on public health resulting from the use of antimicrobial agents in food-producing animals, in particular the development of antimicrobial resistance.
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Snakebite envenoming affects millions of people worldwide annually and is a significant source of mortality. Preventing and treating the problem is complex and requires collaboration among the fields of public health, medicine, ecology, and laborato
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ry science. After being removed from the category A neglected tropical disease (NTD) list in 2013, snakebite envenoming was reinstated in 2017 in response to antivenom shortages and advocacy from researchers and international NGOs. In 2019, the World Health Organization (WHO) set a target to halve the number of deaths and cases of snakebite envenoming by 2030.
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In 1998 the Swedish Veterinary Association decided to adopt a general policy for the use of antibiotics in animals. Since then specifi c policies for the use of antibiotics in dogs and cats have been adopted and in 2011 Guidelines for the use of Ant
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ibiotics in Production animals – Cattle and Pigs, were accepted. By decision of the board of the Swedish Veterinary Society (SVS) these guidelines have been updated. Th e over-arching goal of SVS is to achieve a low and controlled use of antibiotics in Swedish animal production so that the fi rst-hand choices of treatment remain effi cient and that the spread of antimicrobial resistance – among animals and herds as well as in the food chain – is kept at a minimum. Keeping antimicrobial resistance in animals low is important also for human health, since we are all part of the same ecosystem. Th e authors of these guidelines hope that they may be useful for veteri-narians in clinical practice when deciding on treatments for common diseases and ailments caused by bacteria. Sometimes the decision may even be to refrain from use of antibiotics and chose other ways of improving herd health.
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In aquaculture, antibiotics have been used mainly for therapeutic purposes and as prophylactic agents. The contribution to antimicrobial resistance of antibiotics used in aquaculture is reviewed here, using a risk analysis framework. Some recommendations on responsible conduct in this context are pr
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oposed, aimed at diminishing the threat of build up of antimicrobial resistance.
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Antimicrobial resistance (AMR) is described as a situation when bacteria, viruses, fungi and parasites
change over time and no longer respond to medicines, making infections harder or impossible to treat,
and increasing the risk of disease spread, severe illness and death.1 AMR in recent years has
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become
a global priority in public health due to its widespread consequences and increasing occurrence from
time to time. AMR has a formidable impact where the existing antibiotics and other antimicrobial
medicines become ineffective, and infections become increasingly difficult or impossible to treat.
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