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  1. Engineering Values Into Genetic Engineering: A Proposed Analytic Framework for Scientific Social Responsibility.Pamela L. Sankar & Mildred K. Cho - 2015 - American Journal of Bioethics 15 (12):18-24.
    Recent experiments have been used to “edit” genomes of various plant, animal and other species, including humans, with unprecedented precision. Furthermore, editing the Cas9 endonuclease gene with a gene encoding the desired guide RNA into an organism, adjacent to an altered gene, could create a “gene drive” that could spread a trait through an entire population of organisms. These experiments represent advances along a spectrum of technological abilities that genetic engineers have been working on since the advent of recombinant DNA (...)
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  • Is Nutritional Advocacy Morally Indigestible? A Critical Analysis of the Scientific and Ethical Implications of 'Healthy' Food Choice Discourse in Liberal Societies.Christopher Mayes & Donald B. Thompson - 2014 - Public Health Ethics 7 (2):158-169.
    Medical and non-medical experts increasingly argue that individuals, whether they are diagnosed with a specific chronic disease or condition or not (and whether they are judged at minimal risk of these consequences or not), have an obligation to make ‘healthy’ food choices. We argue that this obligation is neither scientifically nor ethically justified at the level of the individual. Our intent in the article is not simply to argue against moralization of the value of prudential uses of food for nutritional (...)
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  • The Ethics of Synthetic Biology: Next Steps and Prior Questions.Gregory E. Kaebnick, Michael K. Gusmano & Thomas H. Murray - 2014 - Hastings Center Report 44 (S5):4-26.
    A majority opinion seems to have emerged in scholarly analysis of the assortment of technologies that have been given the label “synthetic biology.” According to this view, society should allow the technology to proceed and even provide it some financial support, while monitor­ing its progress and attempting to ensure that the development leads to good outcomes. The near‐consensus is captured by the U.S. Presidential Commission for the Study of Bioethical Issues in its report New Directions: The Ethics of Synthetic Biology (...)
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  • The ethics of biosafety considerations in gain-of-function research resulting in the creation of potential pandemic pathogens: Table 1.Nicholas Greig Evans, Marc Lipsitch & Meira Levinson - 2015 - Journal of Medical Ethics 41 (11):901-908.
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  • Biological Dual-Use Research and Synthetic Biology of Yeast.Angela Cirigliano, Orlando Cenciarelli, Andrea Malizia, Carlo Bellecci, Pasquale Gaudio, Michele Lioj & Teresa Rinaldi - 2017 - Science and Engineering Ethics 23 (2):365-374.
    In recent years, the publication of the studies on the transmissibility in mammals of the H5N1 influenza virus and synthetic genomes has triggered heated and concerned debate within the community of scientists on biological dual-use research; these papers have raised the awareness that, in some cases, fundamental research could be directed to harmful experiments, with the purpose of developing a weapon that could be used by a bioterrorist. Here is presented an overview regarding the dual-use concept and its related international (...)
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  • Virtue and the Scientist: Using Virtue Ethics to Examine Science’s Ethical and Moral Challenges.Jiin-Yu Chen - 2015 - Science and Engineering Ethics 21 (1):75-94.
    As science has grown in size and scope, it has also presented a number of ethical and moral challenges. Approaching these challenges from an ethical framework can provide guidance when engaging with them. In this article, I place science within a virtue ethics framework, as discussed by Aristotle. By framing science within virtue ethics, I discuss what virtue ethics entails for the practicing scientist. Virtue ethics holds that each person should work towards her conception of flourishing where the virtues enable (...)
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