Mycobacterium microti isolated from two pigs.
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Biomedical subjects
Publications and source records attributed to Clare Taylor.
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The Serious Hazards of Transfusion (SHOT) scheme is a UK-wide, independent, professionally led hemovigilance system focused on learning from adverse events. SHOT was established in 1996 as a confidential reporting system for significant transfusion-related events, building an evidence base to support blood safety policy decisions, clinical guidelines, clinician education, and improvements in transfusion practice. Recommendations are formulated by an independent steering group drawn from medical royal colleges and professional bodies. Ten years after its inception, SHOT has analyzed 2630 transfusion safety events, published 8 annual reports with recommendations, and presented data nationally and internationally. These recommendations have underpinned key initiatives, in particular the UK Department of Health "Better Blood Transfusion" strategy. SHOT has encouraged open reporting of adverse events and "near-misses" in a supportive, learning culture, vigilance in hospital transfusion practice, and evaluation of information technology to support this process. The importance of education and training has been emphasized. Detailed analysis of events has identified weaknesses in the transfusion chain. A collaborative initiative between SHOT, the Chief Medical Officer for England's National Blood Transfusion Committee, and the National Patient Safety Agency aims to reduce ABO-incompatible transfusions by improving bedside practice. Cumulative SHOT data have documented the decline in transfusion-related graft vs host disease after implementation of leucodepletion and have highlighted transfusion-related acute lung injury and bacterial contamination of platelets as important causes of death and morbidity. The UK blood services have developed strategies to reduce these risks. Future SHOT data will evaluate the success of these and other blood safety improvements.
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Heparin remains a major drug in prevention of thromboembolic disease. Concerns related to its animal source have prompted search for heparin analogues. The anticoagulant activity of heparin depends on a specific pentasaccharide sequence that binds antithrombin. We report the generation of a product with antithrombin-binding, anticoagulant, and antithrombotic properties similar to those of heparin, through combined chemical and enzymatic modification of a bacterial (E. coli K5) polysaccharide. The process is readily applicable to large-scale production.
BACKGROUND: Epstein-Barr virus (EBV)-associated post-transplantation lymphoproliferative disease (PTLD) is a common, often fatal, complication of bone-marrow and solid-organ transplantation. Since tumour growth results from inadequate T-cell control of latent EBV, new immunotherapeutic approaches to treatment are being pioneered. METHODS: In a phase 1/2 trial, eight patients with progressive PTLD unresponsive to conventional treatment were given one to six infusions of partly HLA-matched allogeneic EBV-specific cytotoxic T lymphocytes (CTLs) from a frozen bank of CTLs derived from healthy blood donors. FINDINGS: Of the five patients who completed treatment, three had complete remission and two had no clinical response. One patient partly responded after two infusions. No graft-versus-host disease or allo-specific antibodies were detected, and graft function improved in three cases. Tumour responses were mainly seen in those with early, localised, polyclonal disease. EBV load in peripheral blood fell to undetectable levels in all patients who responded to treatment, but was more variable in those who did not. INTERPRETATION: Treatment of EBV-associated PTLD with partly HLA-matched CTLs grown from unrelated donors is effective. Spontaneous remission is very unlikely to account for tumour regression in our patients; however, a larger, controlled trial is needed to assess this treatment further. The frozen bank of allogeneic CTLs is less prohibitively labour intensive and expensive for wide scale use than treatment with autologous CTLs. Such banks could be established to treat other infectious and neoplastic diseases in many patients.
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Adoptive immunotherapy using Epstein-Barr virus (EBV)-specific cytotoxic T lymphocytes (CTL) generated ex vivo can be an effective treatment of EBV-positive posttransplantation lymphoproliferative disease (PTLD). We describe the establishment of a cryopreserved repository of allogeneic virus-specific CTL lines, to our knowledge the first of its kind in the world. CTL lines were grown by weekly stimulation with autologous EBV immortalized lymphoblastoid cell lines (LCLs) from 96 EBV-seropositive blood donors. Analysis of 60 CTL lines grown continuously for 7 to 10 weeks showed an average proportional weekly increase in cell numbers of 1.4, with an overall increase ranging from 1.1 to 83.4. The greatest increase occurred during the early culture period. After four rounds of stimulation, killing of autologous LCLs was generally high (mean 48%); however, most lines required 9 or 10 stimulations to reduce the killing of nonspecific targets. Overall, 79% of CTLs generated showed acceptable levels of specific killing. Phenotypically, the CTL lines consisted of TCRalpha beta+, CD8+ T cells (medians 97% and 90% respectively) with a minority population of CD4+ T cells (median 2%). Most cells expressed the activation and differentiation markers, HLA-DR, CD26, CD45RO, CD69, and CD150. Favorable results have been obtained in an open trial using partially HLA-matched, allogeneic CTLs from this bank to treat PTLD patients. This now represents a single resource that can provide therapeutic CTLs rapidly on a countrywide basis, superseding the time-consuming, expensive practice of generating autologous CTLs from each patient requiring treatment. Additionally, other patient groups, such as those with EBV-positive Hodgkin disease, may benefit from CTL treatment.