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  1. Ethics and Nanopharmacy: Value Sensitive Design of New Drugs. [REVIEW]Job Timmermans, Yinghuan Zhao & Jeroen van den Hoven - 2011 - NanoEthics 5 (3):269-283.
    Although applications are being developed and have reached the market, nanopharmacy to date is generally still conceived as an emerging technology. Its concept is ill-defined. Nanopharmacy can also be construed as a converging technology, which combines features of multiple technologies, ranging from nanotechnology to medicine and ICT. It is still debated whether its features give rise to new ethical issues or that issues associated with nanopharma are merely an extension of existing issues in the underlying fields. We argue here that, (...)
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  • Nanoethics—A Collaboration Across Disciplines.Anna Julie Rasmussen, Mette Ebbesen & Svend Andersen - 2012 - NanoEthics 6 (3):185-193.
    The field of nanoscience and nanotechnology is expanding rapidly, promising great benefits for society in the form of better medicine, more efficient energy production, new types of materials, etc. Naturally, in order for the science and technology to live up to these promises, it is important to continue scientific research and development, but equally important is the ethical dimension. Giving attention to the social, ethical and legal aspects of the field, among others, will help in developing a fully responsible—and thereby (...)
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  • Discernment and Denial: Nanotechnology Researchers' Recognition of Ethical Responsibilities Related to Their Work.Robert McGinn - 2013 - NanoEthics 7 (2):93-105.
    To what extent do nanotechnology researchers discern specific work-related ethical responsibilities that are incumbent upon them? A questionnaire was designed and administered to answer this question. Analysis of responses to 11 ethical responsibility statements (ERSs) by 213 researchers at the Stanford Nanofabrication Facility revealed widespread agreement about a number of work-related ethical responsibilities and substantial divergence in the views about several others. Explanations of this divergence are proposed. A new variable is defined that gauges the respondent’s overall level of discernment (...)
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  • Nanomedicine First-in-Human Research: Challenges for Informed Consent.Nancy M. P. King - 2012 - Journal of Law, Medicine and Ethics 40 (4):823-830.
    First-in-human research has several characteristics that require special attention with respect to ethics and human subjects protections. At least some nanomedical technologies may also have characteristics that merit special attention in clinical research, as other papers in this symposium show. This paper considers how to address these characteristics in the consent form and process for FIH nanomedicine research, focusing principally on experimental nanotherapeutic interventions but also considering nanodiagnostic interventions.It is essential, as a starting point, to recognize that the consent form (...)
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  • Safer by Design and Trump Rights of Citizens.Angela Kallhoff - 2017 - NanoEthics 11 (3):291-295.
    The debate on “safer by design” has primarily been focused on strategies to render products safer during the design process. This article focuses on correlated basic legal rights of citizens. The reference to “trump rights” is helpful in highlighting two normative claims: Firstly, products that are “safer by design” are suitable instruments to protect the bodily integrity and health of potential users. Both figure as trump rights in Ronald Dworkin’s sense. In this perspective, “safer by design” strategies can guarantee some (...)
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  • Development and Pilot Testing of an Evidence-Based Training Module for Integrating Social and Ethical Implications into the Lab.Lee Ann Kahlor, Xiaoshan Li & Jacy Jones - 2019 - NanoEthics 13 (1):37-52.
    In this project, we explore perceptions of the social and ethical implications of nanotechnology among US scientists who work at the nanoscale, and develop and pilot test an online training module to foster consideration of social and ethical implications in the lab. To meet our first goal, we drew qualitative insights from open-ended survey data collected from scientists affiliated with the National Nanotechnology Infrastructure Network. Our data suggest that while the survey participants responded positively to the idea that consideration of (...)
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  • Nanotechnologies and Green Knowledge Creation: Paradox or Enhancer of Sustainable Solutions?Caroline Gauthier & Corine Genet - 2014 - Journal of Business Ethics 124 (4):571-583.
    By exploring whether nanotechnologies have the potential to generate green innovations, we consider the paradox between the negative and positive side-effects that could come with the development of nanotechnologies. Starting from the conceptual framework of green product innovation, the potential green innovation activity of more than 14,000 firms of the nanotech sector is investigated. Using a query-search method, their patenting activity is explored. Results first show that there is an increasing trend toward the creation of fundamental green knowledge by firms (...)
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  • Wide Reflective Equilibrium as a Normative Model for Responsible Governance.Neelke Doorn - 2013 - NanoEthics 7 (1):29-43.
    Soft regulatory measures are often promoted as an alternative for existing regulatory regimes for nanotechnologies. The call for new regulatory approaches stems from several challenges that traditional approaches have difficulties dealing with. These challenges relate to general problems of governability, tensions between public interests, but also (and maybe particularly) to almost complete lack of certainty about the implications of nanotechnologies. At the same time, the field of nanotechnology can be characterized by a high level of diversity. In this paper, we (...)
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  • Framing the Discussion: Nanotechnology and the Social Construction of Technology--What STS Scholars Are Saying.Stephen H. Cutcliffe, Christine M. Pense & Michael Zvalaren - 2012 - NanoEthics 6 (2):81-99.
    The emergence of nanotechnology, with all its promises of economic, social, and medical benefits, along with dire predictions of environmental, health, and safety threats, has occasioned an active debate in the Science and Technology Studies field, in which we have seen five distinct conversations that frame the discussion. The topical threads include ethics, regulation, opportunities and threats including utopian/dystopian visions of the future, public perception, public participation. These conversational distinctions are not absolutes with firm borders as they clearly overlap at (...)
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