Presently, there is no evidence that the virus responsible for the current COVID-19 pandemic is carried by domestic food-producing animals, such as chickens, ducks, other poultry, pigs, cattle, camels, horses, sheep, goats, rabbits, guinea pigs or fish. While live animals can be a source of pathogen
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s, all types of food can potentially be contaminated through contact with contaminated equipment, surfaces or environments. Proper cleaning and the prevention of cross-contamination are critical in the control of foodborne illnesses. The application of sound principles of environmental sanitation, personal hygiene and established food safety practices will reduce the likelihood that harmful pathogens will threaten the safety of the food supply, regardless of whether the food is sourced from intensive agriculture, small stakeholders or wildlife.
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This paper focuses on the Sustainable Development Goals related to poverty, economic growth, inequality, health, food production and the environment. It presents concrete examples of the underlying and complex aspects of antibiotic resistance and its impacts across different Sustainable Development
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Goals. The aim of this paper is to inform and stimulate discussions on how to further advance the implementation of 2030 Agenda for Sustainable Development, the Global Action Plan on Antimicrobial Resistance, National Action plans on Antimicrobial Resistance, as well as work within all sectors that affect and are affected by antibiotic resistance
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Cовершенствование теоретических знаний и практических навыков по вопросам диагностики и лечения туберкулеза с множественной лекарственной устойчивостью (МЛУ) ми
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кобактерий.
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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
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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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As a public good, antimicrobial medicines require rational use if their effectiveness is to be preserved. However, up to 50% of antibiotic use is inappropriate, adding considerable costs to patient care, and increasing morbidity and mortality. In addition, there is compelling evidence that antimicro
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bial resistance is driven by the volume of antimicrobial agents used. High rates of antimicrobial resistance to common treatments are currently reported all over the world, both in health care settings and in the community. For over two decades, the Region of the Americas has been a pioneer in confronting antimicrobial resistance from a public health perspective. However, those efforts need to be stepped up if we are to have an impact on antimicrobial resistance and want to quantify said impact.
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The Guideline for Disinfection and Sterilization in Healthcare Facilities, 2008, presents evidence-
based recommendations on the preferred methods for cleaning, disinfection and sterilization of patient-
care medical devices and for cleaning and disinfecting the healthcare environment. This docume
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nt
supercedes the relevant sections contained in the 1985 Centers for Disease Control (CDC) Guideline for
Handwashing and Environmental Control. 1 Because maximum effectiveness from disinfection and
sterilization results from first cleaning and removing organic and inorganic materials, this document also
reviews cleaning methods. The chemical disinfectants discussed for patient-care equipment include
alcohols, glutaraldehyde, formaldehyde, hydrogen peroxide, iodophors, ortho-phthalaldehyde, peracetic
acid, phenolics, quaternary ammonium compounds, and chlorine. The choice of disinfectant,
concentration, and exposure time is based on the risk for infection associated with use of the equipment
and other factors discussed in this guideline. The sterilization methods discussed include steam
sterilization, ethylene oxide (ETO), hydrogen peroxide gas plasma, and liquid peracetic acid. When
properly used, these cleaning, disinfection, and sterilization processes can reduce the risk for infection
associated with use of invasive and noninvasive medical and surgical devices. However, for these
processes to be effective, health-care workers should adhere strictly to the cleaning, disinfection, and
sterilization recommendations in this document and to instructions on product labels.
LAST UPDATE 2019
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Vaccine Management in Indonesia
• provide scientific information on the safety, efficacy, and quality control/ quality assurance of widely used medicinal plants, in order to facilitate their appropriate use in Member States;
• provide models to assist Member States in developing their own mono- graphs or formularies for these
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or other herbal medicines; and
• facilitate information exchange among Member States.
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Antimicrobial resistance (AMR) has emerged as a major public health problem all over the world. Infections caused by resistant microbes fail to respond to treatment, resulting in prolonged illness and greater risk of death. This document focuses on the mechanism to develop a practically applicable h
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ospital antibiotic policy and standard treatment guidelines (STG). In addition, the document contains information on various effective strategies for implementation of STG. It also discusses various activities and information required for the development of the antibiogram, antibiotic policy and standard treatment guidelines, such as surveillance programmes, the cause and controlling strategies for AMR and HAI; performance measures of antibiogram, antibiotic policy and standard treatment guidelines. A model hospital STG for community-acquired pneumonia in adults is included.
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Monatsschrift Kinderheilkunde December 2015, Volume 163, Issü 12, pp 1269-1286.
Stellungnahme der Deutschen Gesellschaft für Pädiatrische Infektiologie, der Gesellschaft für Tropenpädiatrie und Internationale Kindergesundheit und des Berufsverbandes der Kinder- und Jugendärzte
Public Health Situation Analysis and Interventions 10 October 2017
Final Draft narrative December 6, 2012 - This strategic plan, developed through the joint collaboration of all stakeholders in the different sectors is aimed at harnessing and bringing together all the stakeholders who have a role in the prevention, detection and management of epidemic and infectiou
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s diseases in the country. The plan describes the common epidemic and infectious diseases, the measures that need to be undertaken to ensure their control, the key partners and their roles and sets out milestones to monitor progress.
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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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Antimicrobials are precious agents for combating infectious diseases and had saved millions of lives throughout the world. However, the current trend of increasing antimicrobial resistance (AMR) has become a global health problem with increased morbidity and mortality in infectious diseases. Sri La
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nka is not an exemption and face many health related issues with multidrug resistant (MDR) organisms. Currently there is a global effort in combating antimicrobial resistance. WHO extends its fullest support and plays a major role in motivating the countries to combat antimicrobial resistance with national action plans in place. Sri Lanka has initiated combating AMR with multisectoral collaboration, under one health concept. The development of the National Strategic Plan (NSP) 2017-2022 provides the roadmap to combat AMR.
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The present National action plan on antimicrobial resistance (AMR) with component of antimicrobial consumption (AMC) covering both human and agriculture sectors was developed based on the World Health Organization's (WHO) Global plan on AMR dated 2015. With the purpose to develop this plan, in May 2
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016 an intersectoral and interagency working group was established under coordination of the State Sanitary and Epidemiological Surveillance Service (SSESS), the Ministry of Health and Social Protection of Population (MoHSPP) of the Republic of Tajikistan. With technical as- sistance from the WHO a number of seminars, consultation meetings and workshops were conducted to identify country's priority areas and required actions for AMR con- tainment and AMC and control.
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This module is part of the WHO series The Immunological Basis for Immunization, which was initially developed in 1993 as a set of eight modules, comprising one module on general immunology and seven modules each devoted to one of the vaccines recommended for the Expanded Programme on Immunization, i
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.e. vaccines against diphtheria, measles, pertussis, polio, tetanus, tuberculosis and yellow fever. Since then, this series has been updated and extended to include other vaccines of international importance. The main purpose of the modules is to provide national immunization managers and vaccination professionals with an overview of the scientific basis of vaccination against a range of important infectious diseases. The modules developed since 1993 continue to be vaccine-specific, reflecting the biological differences in immune responses to the individual pathogens and the differing strategies employed to create the best possible level of protection that can be provided by vaccination. The modules also serve as a record of the immunological basis for the WHO recommendations on vaccine use, published in the WHO vaccine position papers.*
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