Strict storage recommendations for insulin are difficult to follow in hot tropical regions and even more challenging in conflict and humanitarian emergency settings, adding an extra burden to the management of people with diabetes. According to pharmacopeia unopened insulin vials must be stored in a... refrigerator (2–8°C), while storage at ambient temperature (25–30°C) is usually permitted for the 4-week usage period during treatment. In the present work we address a critical question towards improving diabetes care in resource poor settings, namely whether insulin is stable and retains biological activity in tropical temperatures during a 4-week treatment period. To answer this question, temperature fluctuations were measured in Dagahaley refugee camp (Northern Kenya) using log tag recorders. Oscillating temperatures between 25 and 37°C were observed. Insulin heat stability was assessed under these specific temperatures which were precisely reproduced in the laboratory. Different commercialized formulations of insulin were quantified weekly by high performance liquid chromatography and the results showed perfect conformity to pharmacopeia guidelines, thus confirming stability over the assessment period (four weeks). Monitoring the 3D-structure of the tested insulin by circular dichroism confirmed that insulin monomer conformation did not undergo significant modifications. The measure of insulin efficiency on insulin receptor (IR) and Akt phosphorylation in hepatic cells indicated that insulin bioactivity of the samples stored at oscillating temperature during the usage period is identical to that of the samples maintained at 2–8°C. Taken together, these results indicate that insulin can be stored at such oscillating ambient temperatures for the usual four–week period of use. This enables the barrier of cold storage during use to be removed, thereby opening up the perspective for easier management of diabetes in humanitarian contexts and resource poor settings.
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The Epidemic Preparedness and Response Plan for Cholera in Syria (November 2015) outlines strategies to prevent, detect, and manage cholera outbreaks in the country, where poor water and sanitation conditions, displacement, and damaged healthcare infrastructure increase the risk of disease spread. T...he plan aims to reduce morbidity and mortality through early detection, rapid response, and coordinated interventions. It is divided into four key phases: the Pre-Epidemic Phase, which includes risk assessment, resource mapping, stockpiling medical supplies, training health workers, and raising community awareness; the Alert Phase, which focuses on surveillance, laboratory confirmation, and mobilization of rapid response teams; the Epidemic Phase, which involves case management, infection control, environmental measures such as water chlorination and improved sanitation, and public awareness campaigns; and the Post-Epidemic Phase, which evaluates the response effectiveness and identifies lessons to improve future preparedness. The plan emphasizes multi-sectoral coordination, strengthening health surveillance, and ensuring timely intervention to control and prevent cholera outbreaks in vulnerable communities.
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The preparedness strengthening team deployed to Ghana focused on specific objectives in order to assist the country in becoming as operationally prepared as possible to detect, investigate and report potential EVD cases effectively and safely and to mount an effective response to prevent a larger o...utbreak. To accomplish this goal, the team conducted “scoping” activities, stakeholder meetings, site visits and a “table-top” simulation exercise to determine what systems were in place and what aspects of preparedness could be strengthened.
It is organized in 10 components of the WHO consolidated checklist for EVD preparedness: 1) planning and coordination; 2) epidemiological and laboratory surveillance; 3) rapid response teams; 4) contact tracing; 5) points of entry; 6) laboratory; 7) case management; 8) infection prevention and control; 9) social mobilization and risk communication; 10) budget.
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This is a pocket-sized manual for use by doctors, senior nurses and other senior health workers who are responsible for the care of young children at the first referral level in developing countries. It presents up-to-date clinical guidelines which are based on a review of the available published ev...idence by subject experts, for both inpatient and outpatient care in small hospitals where basic laboratory facilities and essential drugs and inexpensive medicines are available. It focuses on the inpatient management of the major causes of childhood mortality, such as pneumonia, diarrhoea, severe malnutrition, malaria, meningitis, measles, HIV infection and related conditions. It covers neonatal problems and surgical conditions of children which can be managed in small hospitals. This pocket book is part of a series of documents and tools that support the Integrated Management of Childhood Illness (IMCI).
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User GuideThe toolkit is composed of three sections: Hospital and Health System Resources - includes a readiness assessment tool, the starting point in developing or enhancing a successful Antimicrobial Stewardship Program (ASP). The tool, a checklist developed by the CDC, should be shared with se...nior management, a senior leader for quality, purchasing directors, clinic managers, nurse managers, key physician leaders, risk managers, pharmacy leaders, infection preventionists and hospital epidemiologists, laboratory staff and information technology staff. For ease of use, it is divided into two sections, one for those just beginning a program, the other for those who wish to enhance an existing program. Clinician Resources - includes webinars, clinical evidence supporting appropriate use of antibiotics, implementation guides and related articles.Patient Resources - includes frequently asked questions, pamphlets and handouts on how patients can best engage in their care and resources on appropriate use of antibiotics.
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This National Action Plan addresses actions needed to be taken in order to combat antimicrobial resistance (AMR) in the country. It is obligatory to raise awareness of antimicrobial resistance and promote behavioral change through public communication
programmes that targets human, animal and plant... health. Inclusion of the use of antimicrobial agents and resistance in school curricula will further promote better understanding and awareness from an early age. Antimicrobial Resistance knowledge, surveillance and research will be strengthened through establishing a national surveillance system for antimicrobial resistance, establishing and building capacity for a national reference laboratory and designated laboratories for AMR surveillance, developing a national research agenda on AMR and establishing and supporting a coordinated mechanism that will ensure harmonized AMR guidelines, data management and sharing systems in human, animal and plant health settings.
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First published in 2020, this toolkit is intended for clinicians working in acute care, managing adult and paediatric patients with acute respiratory infection, including severe pneumonia, acute respiratory distress syndrome, sepsis and septic shock. The main objective is to provide key tools for us...e in the care of critically ill patients – from hospital entry to hospital discharge.
The 2022 updated version includes new tools and adapted algorithms, checklists, memory aids for COVID-19 and influenza, and the latest clinical evidence regarding clinical management of SARI. It is intended to help clinicians care for SARI patients: from epidemiology of severe acute respiratory infections, screening and triage, infection prevention and control, monitoring of patients, laboratory diagnosis, principles of oxygen therapy and different types of ventilation (invasive and non-invasive), as well as antimicrobial and immunomodulator therapies, to ethical and quality of care assessments.
The first edition is availbel in Ukrainian and Russian
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The immediate objective of the country visit to Cameroon was to ensure that the country is as operationally ready as possible to effectively and safely detect, investigate and report potential Ebola virus disease cases and to mount an effective response that will prevent a larger outbreak. After te...chnical working group meetings, field visits, a “table-top” exercise and a hospital-based simulation exercises were undertaken.
Key strengths and weaknesses were identified, and the following areas for improvement were proposed to the Ministry of Health: coordination, surveillance, contact tracing, infection prevention and control, rapid response teams, case management, social mobilization, laboratory, points of entry, budget, logistics.
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The BRM ATP is an advanced course in biorisk management. The 10-day train-the-trainer course introduces the concept of biorisk management, which combines risk assessment, risk mitigation, and performance systems (AMP). The course also includes a cutting-edge training component based on the latest sc...ience and theory behind accelerated and adult learning
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Improve identification, verification, communication and coordination.
Accessed 3rd of October 2015
The purpose of this document is to provide interim guidance to laboratories and stakeholders involved in laboratory testing for Middle East respiratory syndrome coronavirus (MERS-CoV).
The 7th edition of the Orange Guide provides practical guidance to health workers on the front line of TB control. It includes sections on HIV, MDR-TB and a review of the recommended treatment regimens
2nd edition.
Like the original, this second edition of the guidance aims to inform the revision of existing national guidelines and standards for managing Tuberculosis (TB), many of which include guidance on children. It includes recommendations, based on the best available evidence, for improving ...the management of children with TB and of children living in families with TB. National and regional TB control programmes may wish to adapt these recommendations according to local circumstances
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