Minimizing risk of developing antibiotic resistance and aquatic ecotoxicity in the environment resulting from the manufacturing of human antibiotic.
The Standard, facilitated by BSI Standards Limited (BSI), provides clear guidance to manufacturers in the global antibiotic supply chain to ensure t
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hat their antibiotics are made responsibly, helping to minimize the risk of AMR in the environment.
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Waste Management & Research 39(1) DOI: 10.1177/0734242X211029175
Prepared for the Stunting Prevention and Reduction Project - The project Medical Waste Management Plan’s (MWMP) overall objective is to prevent and/or mitigate the negative effects of increased generation of medical waste on human health and the environment. The plan proposes measures to prevent t
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he spread of infection and reduce the
exposure of health workers, patients and the general public to the risks from medical waste. The plan is to be used by all project implementation entities to manage medical waste associated with
project activities. These entities will have appropriate procedures and capacities in place to manage the medical waste.
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This booklet presents key messages for action, summarized from a set of
chapters on different environmental health issues.
The climate crisis has many consequences – among them widespread health impacts that will lead to immense societal, ecological, and economic harm.
Over the past two decades multiple large-scale reviews on climate change and health have made clear the need for a multi-sectoral approach to target t
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he drivers and impacts of climate change, biodiversity loss, and ecosystem degradation. Despite this abundance of scientific evidence underscoring urgency of action, policy implementation responses lag behind. Even at COP26, itself delayed due to an ongoing pandemic, health continues to be considered by many countries a problem independent from climate and environment.
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Sector Environmental Guidelines, Full technical Update
Bull World Health Organ 2017;95:594–598
Pharmaceutical residues occur globally in the environment. This is demonstrated in the updated database “PHARMS-UBA”. Residues of pharmaceuticals in the environment have been measured in 89 countries in all UN regions. For Germany, 414 active su
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bstances or their transformation products were reported, 749 for the European Union and 992 worldwide.
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In this edition, the Antimicrobial Resistance chapter discusses the growing, dangerous trend of antimicrobial resistance and the potential catastrophic consequences on global health.
Chapter 1 of Frontier 2017: Emerging Issues of Environmental Concern
Healthcare Waste Management Toolkit for Global Fund Practitioners and Policy Makers. Part B
One health Response to AMR Containment.
In a significant move for the public health sector, Kerala has become the first state in India to launch an action plan to combat the growing cases of antimicrobial immunity, arising primarily from irrational use of medicines and excessive antibiotics used in
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livestock and poultry.
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The booklet starts with a general overview of how illicit drugs and the environment are linked within the bigger picture of the Sustainable Development Goals, climate change and environmental sustainability. It highlights direct and indirect linkages and gives examples of the significant local and i
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ndividual-level impact that drugs can have on the environment. This is followed by a more in-depth overview of the latest scientific evidence for plant-based drugs and for synthetic drugs. For plant-based drugs, for example, this includes an analysis of the relationship between illicit crop cultivation and deforestation. For synthetic drugs, it includes an analysis of waste composition, volumes, and dumping and discharge, as well as the relation with wastewater treatment.
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A view of global supply chains, pressure points, and implications for antimicrobial resistance response
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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International Journal of Basic & Clinical Pharmacology 5(6):2290-2294
DOI: 10.18203/2319-2003.ijbcp20164081