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1.
Transfus Apher Sci ; 60(4): 103207, 2021 Aug.
Article in English | MEDLINE | ID: covidwho-1336983

ABSTRACT

Blood transfusions come with risks and high costs, and should be utilized only when clinically indicated. Decisions to transfuse are however not always well informed, and lack of clinician knowledge and education on good clinical transfusion practices contribute to the inappropriate use of blood. Low and middle-income countries in particular take much strain in their efforts to address blood safety challenges, demand-supply imbalances, high blood costs as well as high disease burdens, all of which impact blood usage and blood collections. Patient blood management (PBM), which is a patient-focused approach aimed at improving patient outcomes by preemptively diagnosing and correcting anaemia and limiting blood loss by cell salvage, coagulation optimization and other measures, has become a major approach to addressing many of the challenges mentioned. The associated decrease in the use of blood and blood products may be perceived as being in competition with blood conservation measures, which is the more traditional, but primarily product-focused approach. In this article, we hope to convey the message that PBM and blood conservation should not be seen as competing concepts, but rather complimentary strategies with the common goal of improving patient care. This offers opportunity to improve the culture of transfusion practices with relief to blood establishments and clinical services, not only in South Africa and LMICs, but everywhere. With the COVID-19 pandemic impacting blood supplies worldwide, this is an ideal time to call for educational interventions and awareness as an active strategy to improve transfusion practices, immediately and beyond.


Subject(s)
Blood Banks/organization & administration , Blood Transfusion , Bloodless Medical and Surgical Procedures , Anemia/therapy , Blood Banks/economics , Blood Loss, Surgical , Blood Safety , Blood Transfusion/economics , Blood-Borne Infections/prevention & control , Bloodless Medical and Surgical Procedures/economics , COVID-19 , Clinical Decision-Making , Developing Countries , Donor Selection/economics , Evidence-Based Medicine , Female , HIV Infections/epidemiology , HIV Infections/prevention & control , Health Services Needs and Demand , Humans , Male , Pandemics , Postpartum Hemorrhage/therapy , Practice Guidelines as Topic , Pregnancy , Prevalence , Procedures and Techniques Utilization , SARS-CoV-2 , South Africa/epidemiology , Transfusion Medicine/education
2.
Transfus Apher Sci ; 60(4): 103154, 2021 Aug.
Article in English | MEDLINE | ID: covidwho-1230803

ABSTRACT

BACKGROUND: Convalescent plasma (CP) has been used in the past in various pandemics, in particular in H1N1, SARS and MERS infections. In Spring 2020, when ongoing the SARS-CoV-2 pandemics, the Veneto Region (V-R) has proposed setting-up an anti-SARS-CoV-2 CP (CCP) Bank, with the aim of preparing a supply of CCP immediately available in case of subsequest epidemic waves. MATERIALS AND METHODS: Key-points to be developed for a quick set-up of the V-R CCP Bank have been recruitment of donors recovered from COVID-19 infection, laboratory analysis for the biological qualification of the CCP units, including titre of neutralizing antibodies and reduction of pathogens, according to National Blood Centre (CNS) Directives, adaptation of the V-R Information Technology systems and cost analysis. Some activities, including diagnostic and viral inactivation processes, have been centralized in 2 or 3 sites. Laboratory analysis upon preliminary admission of the donor included all tests required by the Italian laws and the CNS directives. RESULTS: From April to August 2020, 3,298 people have contacted the V-R Blood Transfusion Services: of these, 1,632 have been evaluated and examined as first time donors and those found to be suitable have carried out 955 donations, from which 2,626 therapeutic fractions have been obtained, at a cost around 215,00 Euro. Since October 2020, the number of COVID-19 inpatients has had a surge with a heavy hospital overload. Moreover, the high request of CCP therapy by clinicians has been just as unexpected, showing a wide therapeutic use. CONCLUSIONS: The organizational model here presented, which has allowed the rapid collection of a large amount of CCP, could be useful when facing new pandemic outbreaks, especially in low and middle income countries, with generally acceptable costs.


Subject(s)
Blood Banks/organization & administration , COVID-19/therapy , Civil Defense/organization & administration , Pandemics , Antibodies, Neutralizing/blood , Antibodies, Viral/blood , Blood Banks/economics , Blood Donors , Blood Safety/methods , Blood-Borne Infections/prevention & control , Costs and Cost Analysis , Donor Selection/legislation & jurisprudence , Humans , Immunization, Passive/statistics & numerical data , Italy , Models, Organizational , Plasma , SARS-CoV-2/immunology , Virus Inactivation , COVID-19 Serotherapy
3.
Transfusion ; 60(12): 2828-2833, 2020 12.
Article in English | MEDLINE | ID: covidwho-808782

ABSTRACT

BACKGROUND: Arkansas is a rural state of 3 million people. It is ranked fifth for poverty nationally. The first case of coronavirus disease 2019 (COVID-19) in Arkansas occurred on 11 March 2020. Since then, approximately 8% of all Arkansans have tested positive. Given the resource limitations of Arkansas, COVID-19 convalescent plasma (CCP) was explored as a potentially lifesaving, therapeutic option. Therefore, the Arkansas Initiative for Convalescent Plasma was developed to ensure that every Arkansan has access to this therapy. STUDY DESIGN AND METHOD: This brief report describes the statewide collaborative response from hospitals, blood collectors, and the Arkansas Department of Health (ADH) to ensure that CCP was available in a resource-limited state. RESULTS: Early contact tracing by ADH identified individuals who had come into contact with "patient zero" in early March. Within the first week, 32 patients tested positive for COVID-19. The first set of CCP collections occurred on 9 April 2020. Donors had to be triaged carefully in the initial period, as many had recently resolved their symptoms. From our first collections, with appropriate resource and inventory management, we collected sufficient CCP to provide the requested number of units for every patient treated with CCP in Arkansas. CONCLUSIONS: The Arkansas Initiative, a statewide effort to ensure CCP for every patient in a resource-limited state, required careful coordination among key players. Collaboration and resource management was crucial to meet the demand of CCP products and potentially save lives.


Subject(s)
COVID-19/therapy , Health Resources/supply & distribution , Health Services Accessibility/organization & administration , Pandemics , Resource Allocation/organization & administration , SARS-CoV-2/immunology , Antibodies, Viral/blood , Arkansas/epidemiology , Blood Banks/economics , Blood Banks/organization & administration , Blood Donors/supply & distribution , COVID-19/blood , COVID-19/economics , COVID-19/epidemiology , Community Health Planning/economics , Community Health Planning/organization & administration , Contact Tracing , Convalescence , Health Resources/economics , Health Services Accessibility/economics , Humans , Immunization, Passive , Intersectoral Collaboration , Poverty , Resource Allocation/economics , Rural Population , COVID-19 Serotherapy
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