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1.
Eur J Neurosci ; 24(10): 2691-3, 2006 Nov.
Article in English | MEDLINE | ID: mdl-17156195

ABSTRACT

This article is a markedly condensed summary of a longer report [Resource allocation to brain research in Europe (RABRE), part 2] that is simultaneously published on line: (i) as supplementary material linked to this European Journal of Neuroscience article (http://www.blackwell-synergy.com/loi/ejn) and (ii) on the website of the European Brain Council (http://www.europeanbraincouncil.org/publications). We have recently shown that brain diseases account for 35% of the overall disease burden and cost European society almost euro 400 billion per year (a billion is understood to mean one thousand million throughout this report). The aim of the present study was to estimate funding for brain research in Europe and the cost-benefit of further investments in this area of research. The assessment of funding included public sources (governmental agencies plus charities) and industry funding. The assessment of publicly financed research support for brain research was based on a comprehensive survey, and industry investment in brain research was assessed based on published data on pharmaceutical development. The total funding of brain research in Europe was estimated at euro 4.1 billion in 2005, of which public grants amounted to < euro 900 million. Thus, industry funding accounted for 79%. Although cancer only incurred 50% of the cost of brain diseases in 2005, public grants for cancer research were almost twice as high as the public financial support of brain research. US-based funding of brain research was almost four times higher than European funding. We assessed the cost-benefit of further investment in brain research using different methods. They all showed that increased investment in brain research is likely to be highly cost-effective. We conclude that European spending on brain research, particularly public spending, is low compared to other fields of research and to the US, and that increased investment in brain research seems warranted.


Subject(s)
Biomedical Research/economics , Brain , European Union , Resource Allocation/economics , Animals , Costs and Cost Analysis/methods , Humans , Research Support as Topic/economics , Research Support as Topic/statistics & numerical data
2.
Exp Cell Biol ; 56(1-2): 39-48, 1988.
Article in English | MEDLINE | ID: mdl-3053282

ABSTRACT

A cell surface antigen has been defined by a monoclonal antibody 1D2, raised following immunisation with lectin-purified syncytiotrophoblast glycoproteins. 1D2 was nonreactive with any one of 8 common trophoblast proteins in immunodot. Analysis of nonreduced western blots of syncytiotrophoblast microvillous plasma membrane (StMPM) protein indicated that mAb 1D2 was reactive with a series of sialylated proteins with molecular weights of 16-22 kilodaltons. Immunoprecipitates of radiolabelled StMPM protein contained molecules that co-migrated with placental alkaline phosphatase in addition to those identified by western blotting. This set of human trophoblast molecules has not been previously identified by monoclonal antibodies; the antigenicity is widely distributed in human tissues.


Subject(s)
Glycoproteins/analysis , Pregnancy Proteins/analysis , Trophoblasts/analysis , Alkaline Phosphatase/analysis , Antibodies, Monoclonal , Blotting, Western , Chromatography, Gel , Enzyme-Linked Immunosorbent Assay , Female , Fluorescent Antibody Technique , Humans , Immunoenzyme Techniques , Immunologic Techniques , Placenta/enzymology , Pregnancy
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