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  1. Accelerating Innovation in the Creation of Biovalue: The Cell and Gene Therapy Catapult.Andrew Webster & John Gardner - 2017 - Science, Technology, and Human Values 42 (5):925-946.
    The field of regenerative medicine has considerable therapeutic promise that is proving difficult to realize. As a result, governments have supported the establishment of intermediary agencies to “accelerate” innovation. This article examines in detail one such agency, the United Kingdom’s Cell and Gene Therapy Catapult. We describe CGTC’s role as an accelerator agency and its value narrative, which combines both “health and wealth.” Drawing on the notion of sociotechnical imaginaries, we unpack the tensions within this narrative and its instantiation as (...)
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  • Des pairs aux experts : l'émergence d'un « nouveau management » de la recherche scientifique?Catherine Vilkas - 2009 - Cahiers Internationaux de Sociologie 126 (1):61-79.
    RéSUMé Parmi les transformations qui touchent le dispositif public de recherche français, il en est une, dans un espace situé entre savoir et politique, qui demeure inaperçue et que cet article vise à explorer : le rôle renforcé de nouveaux experts proposant sous une forme opérationnelle des compétences destinées à aider décideurs politico-administratifs et gestionnaires dans leurs actions. Issus non plus des laboratoires en sciences exactes et de la nature mais d’une fraction des sciences sociales, économiques et de gestion, parfois (...)
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  • Scientific Research: Commodities or Commons?Koen Vermeir - 2013 - Science & Education 22 (10):2485-2510.
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  • Coding ethical behaviour: The challenges of biological weapons.Brian Rappert - 2003 - Science and Engineering Ethics 9 (4):453-470.
    Since 11 September 2001 and the anthrax attacks that followed in the US, public and policy concerns about the security threats posed by biological weapons have increased significantly. With this has come an expansion of those activities in civil society deemed as potential sites for applying security controls. This paper examines the assumptions and implications of national and international efforts in one such area: how a balance or integration can take place between security and openness in civilian biomedical research through (...)
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  • Which Scientific Knowledge is a Common Good?Hans Radder - 2017 - Social Epistemology 31 (5):431-450.
    In this article, I address the question of whether science can and should be seen as a common good. For this purpose, the first section focuses on the notion of knowledge and examines its main characteristics. I discuss and assess the core view of analytic epistemology, that knowledge is, basically, justified true belief. On the basis of this analysis, I then develop an alternative, multi-dimensional theory of the nature of knowledge. Section 2 reviews and evaluates several answers to the question (...)
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  • Post-Science in a Post-Modern World.Evgeny V. Maslanov - forthcoming - Social Epistemology.
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  • Science and Public Good: Max Weber’s Ethical Implications.Ilya T. Kasavin - 2019 - Social Epistemology 34 (2):184-196.
    ABSTRACTThe ethics of science becomes a significant part of science and technology studies since it pays attention not exclusively to the moral impact of society on scientists but to that of scienc...
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  • Gift versus Trade: On the Culture of Science Communication.Ilya Kasavin - 2019 - Philosophy of the Social Sciences 49 (6):453-472.
    This article aims at a critical reevaluation of the trading zone concept. It starts from a case study of the Faraday–Whewell collaboration in coming to terms with electrolysis experiments. The case is supposed to be an example of a trade zone of science/philosophy interaction though it demonstrates the unequal nature of the “trade.” This requires the analysis to log in some details concerning Galison’s metaphor of trading zones, which reveals its market-oriented connotations. The following criticism of the market metaphor for (...)
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  • On Commodification and the Governance of Academic Research.Merle Jacob - 2009 - Minerva 47 (4):391-405.
    The new prominence given to science for economic growth and industry comes with an increased policy focus on the promotion of commodification and commercialization of academic science. This paper posits that this increased interest in commodification is a new steering mechanism for governing science. This is achieved by first outlining what is meant by the commodification of scientific knowledge through reviewing a selection of literatures on the concept of commodification. The paper concludes with a discussion of how commodification functions as (...)
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  • Selective Ignorance and Agricultural Research.Kevin C. Elliott - 2012 - Science, Technology, and Human Values 38 (3):328-350.
    Scholars working in science and technology studies have recently argued that we could learn much about the nature of scientific knowledge by paying closer attention to scientific ignorance. Building on the work of Robert Proctor, this article shows how ignorance can stem from a wide range of selective research choices that incline researchers toward partial, limited understandings of complex phenomena. A recent report produced by the International Assessment of Agricultural Knowledge, Science, and Technology for Development serves as the article’s central (...)
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  • The laboratory revisited.Robert Doubleday - 2007 - NanoEthics 1 (2):167-176.
    UK science policy now includes ‘upstream public engagement’ as an element in the responsible development of nanotechnology. This paper explores different understandings of the term upstream engagement before discussing in more detail a laboratory-based collaboration between social science and nanoscience aimed at exploring the social dimensions of nanotechnology. The paper concludes that concern with defining what counts as ‘upstream’ can obscure more critical questions about how to make public, and therefore accountable, deliberations about the interrelated social and technical aspects of (...)
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  • Producing, Controlling, and Stabilizing Pasteur's Anthrax Vaccine: Creating a New Industry and a Health Market.Maurice Cassier - 2008 - Science in Context 21 (2):253-278.
    ArgumentWhen Pasteur and Chamberland hastily set up their small biological industry to meet the agricultural demand for the anthrax vaccine, their methods for preparation and production had not yet been stabilized. The process of learning how to standardize biological products was accelerated in 1882 when vaccination accidents required the revision of production norms as the first hypotheses on fixity, inalterability, and transportability of vaccines were invalidated and replaced by procedures for continuous monitoring of the calibration of vaccines and the renewal (...)
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  • Appropriation and commercialization of the Pasteur anthrax vaccine.Maurice Cassier - 2005 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 36 (4):722-742.
    Whereas Pasteur patented the biotechnological processes that he invented between 1857 and 1873 in the agro-food domain, he did not file any patents on the artificial vaccine preparation processes that he subsequently developed. This absence of patents can probably be explained by the 1844 patent law in France that established the non-patentable status of pharmaceutical preparations and remedies, including those for use in veterinary medicine. Despite the absence of patents, the commercial exploitation of the anthrax vaccine in the 1880s and (...)
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  • The Scientific Discovery of ‘Natural Capital’: The Production of Catalytic Antibodies.Michael Ben-Chaim - 2001 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 32 (3):413-433.
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  • The scientific discovery of 'natural capital': The production of catalytic antibodies.M. Ben-Chaim - 2001 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 32 (3):413-433.
    Modern science has undoubtedly become one the principal engines of economic growth, even though the epistemological status of scientific knowledge has been continuously contested. Leaving the philosophical problem of knowledge aside, this paper examines how scientific discovery contributes to the production of wealth. The analysis focuses on a recent achievement at the crossroads of chemistry, immunology and biotechnology: antibody catalysis. For this purpose, we develop a model of entrepreneurial work to explain how the discovery of natural products and processes generates (...)
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  • The Gap Between Science and Society and the Intrinsically Capitalistic Character of Science Communication.Luis Arboledas-Lérida - 2023 - Social Epistemology 37 (5):698-712.
    The purpose of this paper is to demonstrate that Science Communication inheres to the capitalist relations of production. By making use of Marxist dialectics, the enquiry will elucidate the enquiry will elucidate that capital creates the gap between science and society that Science Communication is deemed to bridge, for capitalism deprives workers of the ‘intellectual potencies of the material process of production’ and makes both impossible and meaningless for them to appropriate scientific knowledge in a direct, unmediated manner. Along these (...)
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  • ‘Give the Money Where it’s Due’: The Impact of Knowledge-Sharing via Social Media on the Reproduction of the Academic Labourer.Luis Arboledas-Lérida - 2022 - Social Epistemology 36 (2):251-266.
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  • Protect My Privacy or Support the Common-Good? Ethical Questions About Electronic Health Information Exchanges.Corey M. Angst - 2009 - Journal of Business Ethics 90 (S2):169 - 178.
    When information is transformed from what has traditionally been a paper-based format into digitized elements with meaning associated to them, new and intriguing discussions begin surrounding proper and improper uses of this codified and easily transmittable information. As these discussions continue, some health care providers, insurers, laboratories, pharmacies, and other healthcare stakeholders are creating and retroactively digitizing our medical information with the unambiguous endorsement of the federal government.Some argue that these enormous databases of medical information offer improved access to timely (...)
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