Results for 'Genetic engineering Philosophy'

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  1.  15
    Food, Genetic Engineering and Philosophy of Technology: Magic Bullets, Technological Fixes and Responsibility to the Future.N. Dane Scott - 2018 - Cham: Springer Verlag.
    This book describes specific, well-know controversies in the genetic modification debate and connects them to deeper philosophical issues in philosophy of technology. It contributes to the current, far-reaching deliberations about the future of food, agriculture and society. Controversies over so-called Genetically Modified Organisms regularly appear in the press. The biotechnology debate has settled into a long-term philosophical dispute. The discussion goes much deeper than the initial empirical questions about whether or not GM food and crops are safe for (...)
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  2.  18
    Genetic Engineering and the Integrity of Animals.Rob Vries - 2006 - Journal of Agricultural and Environmental Ethics 19 (5):469-493.
    Genetic engineering evokes a number of objections that are not directed at the negative effects the technique might have on the health and welfare of the modified animals. The concept of animal integrity is often invoked to articulate these kind of objections. Moreover, in reaction to the advent of genetic engineering, the concept has been extended from the level of the individual animal to the level of the genome and of the species. However, the concept of (...)
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  3. Evolution, Genetic Engineering, and Human Enhancement.Russell Powell, Guy Kahane & Julian Savulescu - 2012 - Philosophy and Technology 25 (4):439-458.
    There are many ways that biological theory can inform ethical discussions of genetic engineering and biomedical enhancement. In this essay, we highlight some of these potential contributions, and along the way provide a synthetic overview of the papers that comprise this special issue. We begin by comparing and contrasting genetic engineering with programs of selective breeding that led to the domestication of plants and animals, and we consider how genetic engineering differs from other contemporary (...)
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  4.  28
    Genetic Engineering.Kevin Wilger - 2019 - The National Catholic Bioethics Quarterly 19 (4):601-615.
    Genetic engineering is a rapidly evolving field of research with potentially powerful therapeutic applications. The technology CRISPR-Cas9 not only has improved the accuracy and overall feasbility of genome editing but also has increased access to users by lowering cost and increasing usability and speed. The potential benefits of genetic engineering may come with an increased risk of off-target events or carcinogenic growth. Germ-line cell therapy may also pose risks to potential progeny and thus have an additional (...)
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  5.  99
    Enhancing the Species: Genetic Engineering Technologies and Human Persistence.Chris Gyngell - 2012 - Philosophy and Technology 25 (4):495-512.
    Many of the existing ethical analyses of genetic engineering technologies (GET) focus on how they can be used to enhance individuals—to improve individual well-being, health and cognition. There is a gap in the current literature about the specific ways enhancement technologies could be used to improve our populations and species, viewed as a whole. In this paper, I explore how GET may be used to enhance the species through improvements in the gene pool. I argue one aspect of (...)
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  6.  9
    Genetically Engineered Foods and Moral Absolutism: A Representative Study from Germany.Johanna Jauernig, Matthias Uhl & Gabi Waldhof - 2023 - Science and Engineering Ethics 29 (5):1-17.
    There is an ongoing debate about genetic engineering (GE) in food production. Supporters argue that it makes crops more resilient to stresses, such as drought or pests, and should be considered by researchers as a technology to address issues of global food security, whereas opponents put forward that GE crops serve only the economic interests of transnational agrifood-firms and have not yet delivered on their promises to address food shortage and nutrient supply. To address discourse failure regarding the (...)
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  7. Genetic engineering and autonomous agency.Linda Barclay - 2003 - Journal of Applied Philosophy 20 (3):223–236.
    abstract In this paper I argue that the genetic manipulation of sexual orientation at the embryo stage could have a detrimental effect on the subsequent person's later capacity for autonomous agency. By focussing on an example of sexist oppression I show that the norms and expectations expressed with this type of genetic manipulation can threaten the development of autonomous agency and the kind of social environment that makes its exercise likely.
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  8.  32
    Genetic Engineering and the Autonomous Individual.Shyli Karin-Frank - 1987 - Royal Institute of Philosophy Lecture Series 22:213-229.
    The aim of this paper is to expose the unique muddle in which moral philosophy finds itself with regard to genetic engineering. The latter can be essentially defined as the correcting of nature's mistakes at their source, the DNA acid molecule of the gene. I shall discuss the moral nature of genetic engineering with respect to a single issue: the potential harm it may inflict upon the autonomous individual. I shall also consider the distinctions between (...)
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  9.  5
    Cybernetics, Genetic Engineering and the Future of Psychotherapy.Robert M. Anderson & Yevgenyia K. Melnik - 2013 - Journal of Interdisciplinary Studies 25 (1-2):39-53.
    This essay describes possible futures that may result from accelerating technological advances and the challenges these futures present to psychotherapists. In the next 100 years, human beings will be likely to increasingly use computers and artificial intelligence and become extremely dependent on this relationship. Chip and stem cell implants may provide people with greater memory capacity, computational capacity, and skill sets. Genetic engineering, cryonics, and cloning may allow dramatic increases in the human life span these developments occur, they (...)
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  10.  17
    Genetic engineering and the risk of harm.Matti Häyry & Tuija Takala - 1998 - Medicine, Health Care and Philosophy 1 (1):61-64.
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  11.  28
    Genetic Engineering and the Risk of Harm.Matti Häyry & Tuija Lehto - 1998 - The Paideia Archive: Twentieth World Congress of Philosophy 4:51-55.
    There are many risks involved in genetic engineering. The release of genetically altered organisms in the environment can increase human suffering, decrease animal welfare, and lead to ecological disasters. The containment of biotechnological material in laboratories and industrial plants contributes to the risk of accidental release, especially if the handling and storage are inadequate. The purely political dangers include intensified economic inequality, the possibility of large-scale eugenic programs, and totalitarian control over human lives. How should the acceptability of (...)
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  12.  73
    Genetic Engineering and Social Justice.David B. Resnik - 1997 - Social Theory and Practice 23 (3):427-448.
  13.  36
    Genetic engineering and the risk of harm.Matti Häyry - 1998 - Medicine, Health Care and Philosophy 1 (1):61-64.
  14. The Hermeneutic Challenge of Genetic Engineering: Habermas and the Transhumanists.Andrew Edgar - 2009 - Medicine, Health Care and Philosophy 12 (2):157-167.
    The purpose of this paper is to explore the impact that developments in transhumanist technologies may have upon human cultures, and to do so by exploring a potential debate between Habermas and the transhumanists. Transhumanists, such as Nick Bostrom, typically see the potential in genetic and other technologies for positively expanding and transcending human nature. In contrast, Habermas is a representative of those who are fearful of this technology, suggesting that it will compound the deleterious effects of the colonisation (...)
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  15.  40
    ‘Ethical concepts regarding the genetic engineering of laboratory animals’: A confrontation with moral beliefs from the practice of biomedical research.R. de Vries - 2006 - Medicine, Health Care and Philosophy 9 (2):211-225.
    Intrinsic value and animal integrity are two key concepts in the debate on the ethics of the genetic engineering of laboratory animals. These concepts have, on the one hand, a theoretical origin and are, on the other hand, based on the moral beliefs of people not directly involved in the genetic modification of animals. This ‘external’ origin raises the question whether these concepts need to be adjusted or extended when confronted with the moral experiences and opinions of (...)
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  16. Ian Holliday.Genetic Engineering & A. Towards - 2002 - In Julia Lai Po-Wah Tao (ed.), Cross-Cultural Perspectives on the (Im) Possibility of Global Bioethics. Kluwer Academic.
     
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  17. Latina feminist metaphysics and genetically engineered foods.Lisa A. Bergin - 2009 - Journal of Agricultural and Environmental Ethics 22 (3):257--271.
    In this paper I critique two popular, non-scientific attitudes toward genetically engineered foods. In doing so, I will be employing the concepts of ambiguity, purity/impurity, control/resistance, and unity/diversity as developed by Latina feminist metaphysicians. I begin by casting a critical eye toward a specific anti-biotech account of transgenic food crops, an account that I will argue relies on an anti-feminist metaphysics. I then cast that same critical eye toward a specific pro-biotech account, arguing that it also relies on such an (...)
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  18.  84
    Genetic Engineering, Post-Genomic Ethics, and the Catholic Tradition.Rev Nicanor Austriaco - 2001 - The National Catholic Bioethics Quarterly 1 (4):497-506.
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  19.  11
    Genetic Engineering, Post-Genomic Ethics, and the Catholic Tradition.Nicanor Austriaco - 2001 - The National Catholic Bioethics Quarterly 1 (4):497-506.
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  20.  63
    Genetic Engineering, Moral Autonomy, and Equal Treatment.Stéphane Courtois - 2006 - The Monist 89 (4):442-465.
  21.  12
    Genetic Engineering, Moral Autonomy, and Equal Treatment.Stéphane Courtois - 2006 - The Monist 89 (4):442-465.
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  22.  4
    Biotech time-bomb: how genetic engineering could irreversibly change our world.Scott Eastham - 2003 - Auckland [N.Z.]: RSVP.
  23.  53
    The Ethics of Genetic Engineering.Emy Lucassen - 1996 - Journal of Applied Philosophy 13 (1):51-62.
    ABSTRACT The aim of this article is to determine whether genetic engineering is ever acceptable. The prominent arguments which have been put forward by the opponents of genetic engineering are examined and evaluated. The arguments ‘we should not interfere with nature’, ‘we should not alter the genetic constitution of organisms’, and ‘we should not alter the genetic constitution of organisms to this extent’are found to be inadequate as valid arguments against all genetic (...). However, it remains a possibility that there is nothing intrinsically unethical about genetic engineering, but that the risks of misuse render the techniques ethically unacceptable. Since universal legislation is not possible, and the risks of genetic engineering are so real, this alone may be sufficient to dismiss all genetic engineering as wrong. (shrink)
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  24.  31
    Playing God? Human Genetic Engineering and the Rationalization of Public Bioethical Debate.John Berkman, Stanley Hauerwas, Jeffrey Stout, Gilbert Meilaender, James F. Childress & John H. Evans - 2004 - Journal of the Society of Christian Ethics 24 (1):183-217.
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  25.  47
    The Hard Sell of Genetically Engineered (GE) Mosquitoes with Gene Drives as the Solution to Malaria: Ethical, Political, Epistemic, and Epidemiological Issues in Global Health Governance.Zahra Meghani - 2020 - In Sharon Crasnow & Kristen Intemann (eds.), Routledge Handbook of Feminist Philosophy of Science. Routledge. pp. 435-457.
    This chapter analyzes the ‘hard sell’ of genetically engineered (GE) mosquitoes with gene drives as the solution to mosquito-borne diseases. A defining characteristic of the aggressive sell of the bio-technology is the ‘biologization’ of the significant prevalence of mosquito-borne diseases in certain socio-economically marginalized regions of the global South. Specifically, hard sell narratives either minimize or ignore the structural, systemic factors that are partially responsible for the public health problem that the GE mosquitoes are intended to bio-solve. The biologization of (...)
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  26.  14
    ‘Ethical concepts regarding the genetic engineering of laboratory animals’: A confrontation with moral beliefs from the practice of biomedical research.R. Vries - 2006 - Medicine, Health Care and Philosophy 9 (2):211-225.
    Intrinsic value and animal integrity are two key concepts in the debate on the ethics of the genetic engineering of laboratory animals. These concepts have, on the one hand, a theoretical origin and are, on the other hand, based on the moral beliefs of people not directly involved in the genetic modification of animals. This ‘external’ origin raises the question whether these concepts need to be adjusted or extended when confronted with the moral experiences and opinions of (...)
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  27.  46
    Germ-Line Genetic Engineering and Moral Diversity: Moral Controversies in a Post-Christian World.H. Tristram Engelhardt - 1996 - Social Philosophy and Policy 13 (2):47.
    The prospect of germ-line genetic engineering, the ability to engineer genetic changes that can be passed on to subsequent generations, raises a wide range of moral and public policy questions. One of the most provocative questions is, simply put: Are there moral reasons that can be articulated in general secular terms for accepting human nature as we find it? Or, at least in terms of general secular moral restraints, may we reshape human nature better to meet our (...)
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  28.  21
    Germ-Line Genetic Engineering and Moral Diversity: Moral Controversies in a Post-Christian World.H. Tristram Engelhardt - 1996 - Social Philosophy and Policy 13 (2):47-62.
    The prospect of germ-line genetic engineering, the ability to engineer genetic changes that can be passed on to subsequent generations, raises a wide range of moral and public policy questions. One of the most provocative questions is, simply put: Are there moral reasons that can be articulated in general secular terms for accepting human nature as we find it? Or, at least in terms of general secular moral restraints, may we reshape human nature better to meet our (...)
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  29.  43
    The hermeneutic challenge of genetic engineering: Habermas and the transhumanists.Edgar Andrew Robert - 2009 - Medicine, Health Care and Philosophy 12 (2):157-167.
    The purpose of this paper is to explore the impact that developments in transhumanist technologies may have upon human cultures (and thus upon the lifeworld), and to do so by exploring a potential debate between Habermas and the transhumanists. Transhumanists, such as Nick Bostrom, typically see the potential in genetic and other technologies for positively expanding and transcending human nature. In contrast, Habermas is a representative of those who are fearful of this technology, suggesting that it will compound the (...)
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  30.  8
    The double-edged helix: genetic engineering in the real world.Liebe F. Cavalieri - 1981 - New York: Praeger.
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  31.  87
    Ethics and the genetic engineering of food animals.Paul B. Thompson - 1997 - Journal of Agricultural and Environmental Ethics 10 (1):1-23.
    Biotechnology applied to traditional foodanimals raises ethical issues in three distinctcategories. First are a series of issues that arise inthe transformation of pigs, sheep, cattle and otherdomesticated farm animals for purposes that deviatesubstantially from food production, including forxenotransplantation or production of pharmaceuticals.Ethical analysis of these issues must draw upon theresources of medical ethics; categorizing them asagricultural biotechnologies is misleading. The secondseries of issues relate to animal welfare. Althoughone can stipulate a number of different philosophicalfoundations for the ethical assessment of welfare,most (...)
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  32.  32
    Moral psychology and genetic engineering.Gregory E. Kaebnick - 2016 - Hastings Center Report 46 (3):2-2.
    For the last six months or so, some of us at The Hastings Center have been participating in a kind of short-term book group. Together we have been thinking about the contribution of moral psychology to bioethics. One of our questions is whether bioethics’ understanding of moral values should draw on what moral psychology tells us about moral values. Bioethics tends to look to philosophy for guidance. Can it learn from insights in moral psychology into the biological, environmental, and (...)
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  33.  86
    The Frankenstein Syndrome: Ethical and Social Issues in the Genetic Engineering of Animals.Bernard E. Rollin - 1995 - Cambridge University Press.
    This book is a philosophically sophisticated and scientifically well-informed discussion of the moral and social issues raised by genetically engineering animals, a powerful technology which has major implications for society. Unlike other books on this emotionally charged subject, the author attempts to inform, not inflame, the reader about the real problems society must address in order to manage this technology. Bernard Rollin is both a professor of philosophy, and physiology and biophysics, and writes from a uniquely well-informed perspective (...)
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  34. The Evolutionary Biological Implications of Human Genetic Engineering.Russell Powell - 2012 - Journal of Medicine and Philosophy 37 (1):22.
    A common worry about the genetic engineering of human beings is that it will reduce human genetic diversity, creating a biological monoculture that could not only increase our susceptibility to disease but also hasten the extinction of our species. Thus far, however, the evolutionary implications of human genetic modification remain largely unexplored. In this paper, I consider whether the widespread use of genetic engineering technology is likely to narrow the present range of genetic (...)
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  35.  84
    Dis/integrating animals: ethical dimensions of the genetic engineering of animals for human consumption. [REVIEW]Traci Warkentin - 2006 - AI and Society 20 (1):82-102.
    Research at the intersections of feminism, biology and philosophy provides dynamic starting grounds for this discussion of genetic technologies and animals. With a focus on animal bodies, I will examine moral implications of the genetic engineering of “domesticated” animals—primarily pigs and chickens—for the purposes of human consumption. Concepts of natural and artificial, contamination and purity, integrity and fragmentation and mind and body will feature in the discussion. In this respect, Margaret Atwood’s novel, Oryx and Crake, serves (...)
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  36. Seeking perfection: A Kantian look at human genetic engineering.Martin Gunderson - 2007 - Theoretical Medicine and Bioethics 28 (2):87-102.
    It is tempting to argue that Kantian moral philosophy justifies prohibiting both human germ-line genetic engineering and non-therapeutic genetic engineering because they fail to respect human dignity. There are, however, good reasons for resisting this temptation. In fact, Kant’s moral philosophy provides reasons that support genetic engineering—even germ-line and non-therapeutic. This is true of Kant’s imperfect duties to seek one’s own perfection and the happiness of others. It is also true of the (...)
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  37.  90
    Karl Rahner and Genetic Engineering.David F. Kelly - 1995 - Philosophy and Theology 9 (1-2):177-200.
    Karl Rahner’s analysis of genetic manipulation is found most explicitly in two articles written in 1966 and 1968: “The Experiment with Man,” and “The Problem of Genetic Manipulation.” The articles have received some attention in ethical literature. The present paper analyzes Rahner’s use of theological and ethical principles, comparing and contrasting the two articles. In the first article, Rahner emphasizes humankind’s essential openness to self-creativity. What has always been true on the transcendental level—-we choose our final destiny and (...)
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  38.  23
    The Trouble with Natural Genetic Engineering: James A. Shapiro: Evolution: A View from the 21st Century. FT Press Science, Upper Saddle River, NJ, 2011, 272 pp., $27.99 hbk, $27.99 ebook, ISBN 978-0-13-278093-3.Davide Vecchi - 2013 - Biological Theory 7 (1):80-88.
  39.  33
    Brave New World of Genetic Engineering.David A. Prentice - 2001 - The National Catholic Bioethics Quarterly 1 (4):529-539.
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  40. Getting a rise out of genetic engineering.Massimo Pigliucci - 2013 - In John Huss (ed.), Planet of the Apes and Philosophy: Great Apes Think Alike. Chicago, Illinois: Open Court.
    What makes humans different from other animals, what humans are entitled to do to other species, whether time travel is possible, what limits should be placed on science and technology, the morality and practicality of genetic engineering—these are just some of the philosophical problems raised by Planet of the Apes. Planet of the Apes and Philosophy looks at all the deeper issues involved in the Planet of the Apes stories. It covers the entire franchise, from Pierre Boulle’s (...)
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  41. Essay Reviews-Genetic Engineering and Ethical Arithmetic.Jeremy Caddick - 1999 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 30 (4):545.
     
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  42.  10
    Is it Progress or Dystopia? Attitudes toward Genetic Engineering in Contemporary Film.Maria Russo - 2020 - Phenomenology and Mind 19 (19):72.
    In this paper, I will present how film, and especially science fiction, illustrates and considers the theme of genetic engineering in its ethical implications. Drawing from the work of Thomas Wartenberg, I suggest that movies can be read as philosophy, since they present philosophical argumentations in the form of narrative. I will discuss popular science fiction films that address this theme, showcasing some of the most recurrent reflections and representations of future scientific and technological developments in the (...)
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  43. Bacteria are small but not stupid: cognition, natural genetic engineering and socio-bacteriology.J. A. Shapiro - 2007 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 38 (4):807-819.
    Forty years’ experience as a bacterial geneticist has taught me that bacteria possess many cognitive, computational and evolutionary capabilities unimaginable in the first six decades of the twentieth century. Analysis of cellular processes such as metabolism, regulation of protein synthesis, and DNA repair established that bacteria continually monitor their external and internal environments and compute functional outputs based on information provided by their sensory apparatus. Studies of genetic recombination, lysogeny, antibiotic resistance and my own work on transposable elements revealed (...)
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  44.  40
    The principle of procreative beneficence and its implications for genetic engineering.Luvuyo Gantsho - 2022 - Theoretical Medicine and Bioethics 43 (5):307-328.
    Molecular genetic engineering technologies such as CRISPR/Cas9 have made the accurate and safe genetic engineering of human embryos possible. Further advances in genomics have isolated genes that predict qualities and traits associated with intelligence. Given these advances, prospective parents could use these biotechnologies to genetically engineer future children for genes that enhance their intelligence. While Julian Savulescu’s Principle of Procreative Beneficence (PPB) argues for the moral obligation of prospective parents to use in-vitro fertilization and preimplantation (...) diagnosis to make eugenic selections of embryos for intelligence, the PPB could imply obligations to genetically engineer selected embryos for intelligence as well. I argue that the PPB implies an additional moral obligation for prospective parents to genetically engineer the embryonic germline identity of selected embryos for genes that predict intelligence. Objections to my argument for the PPB’s extension are also discussed. (shrink)
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  45. Bacteria are small but not stupid: Cognition, natural genetic engineering and socio-bacteriology.J. A. Shapiro - 2007 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 38 (4):807-819.
    Forty years’ experience as a bacterial geneticist has taught me that bacteria possess many cognitive, computational and evolutionary capabilities unimaginable in the first six decades of the twentieth century. Analysis of cellular processes such as metabolism, regulation of protein synthesis, and DNA repair established that bacteria continually monitor their external and internal environments and compute functional outputs based on information provided by their sensory apparatus. Studies of genetic recombination, lysogeny, antibiotic resistance and my own work on transposable elements revealed (...)
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  46. Selecting children: The ethics of reproductive genetic engineering.S. Matthew Liao - 2008 - Philosophy Compass 3 (5):973-991.
    Advances in reproductive genetic engineering have the potential to transform human lives. Not only do they promise to allow us to select children free of diseases, they can also enable us to select children with desirable traits. In this paper, I consider two clusters of arguments for the moral permissibility of reproductive genetic engineering, what I call the Perfectionist View and the Libertarian View; and two clusters of arguments against reproductive genetic engineering, what I (...)
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  47.  47
    Catholicism, the Human Form, and Genetic Engineering.James J. Delaney - 2010 - Proceedings of the American Catholic Philosophical Association 84:75-87.
    In September of 2008, the Congregation for the Doctrine of the Faith published Dignitas Personae, which addresses several newly emerging topics in thearea of biomedical ethics. One of these topics is genetic engineering, which we can define as the intentional manipulation of genetic material so as to produce some desired trait or characteristic. Genetic engineering is discussed in Dignitas Personae, but is done so relatively briefly. In this paper, I explore some of the metaphysical and (...)
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  48.  17
    Catholicism, the Human Form, and Genetic Engineering.James J. Delaney - 2010 - Proceedings of the American Catholic Philosophical Association 84:75-87.
    In September of 2008, the Congregation for the Doctrine of the Faith published Dignitas Personae, which addresses several newly emerging topics in thearea of biomedical ethics. One of these topics is genetic engineering, which we can define as the intentional manipulation of genetic material so as to produce some desired trait or characteristic. Genetic engineering is discussed in Dignitas Personae, but is done so relatively briefly. In this paper, I explore some of the metaphysical and (...)
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  49.  47
    Human Rights, Dignity, and the Science of Genetic Engineering.Martin Gunderson - 2006 - Social Philosophy Today 22:43-57.
    In the past decade several international declarations have called for banning reproductive non-therapeutic and germ-line engineering. Article 11 of UNESCO’s Universal Declaration on the Human Genome and Human Rights states that practices that are contrary to human dignity such as cloning of human beings should not be permitted. Article 12 of the same declaration restricts genetic applications to the relief from suffering and the improvement of health. The European Council has also taken a strong stand on germ-line (...) engineering in general and cloning in particular. Article 13 of the Convention for the Protection of Human Rights and Dignity of the Human Being with regard to the Application of Biology and Medicine: Convention on Human Rights and Biomedicine simply forbidsgerm-line engineering except for diagnostic or therapeutic purposes. The convention along with its explanatory report make it clear that the rationale for the decision is based, in large part, on the need to protect the dignity of persons.Several notions of dignity have been advanced to support bans on non-therapeutic germ-line engineering. I argue that they fail to provide a rationale for such a ban. I consider both secular and religious views of human dignity. In addition, I argue that there are forms of germ-line and non-therapeutic engineering that are compatible with human rights. (shrink)
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  50.  24
    Human Rights, Dignity, and the Science of Genetic Engineering.Martin Gunderson - 2006 - Social Philosophy Today 22:43-57.
    In the past decade several international declarations have called for banning reproductive non-therapeutic and germ-line engineering. Article 11 of UNESCO’s Universal Declaration on the Human Genome and Human Rights states that practices that are contrary to human dignity such as cloning of human beings should not be permitted. Article 12 of the same declaration restricts genetic applications to the relief from suffering and the improvement of health. The European Council has also taken a strong stand on germ-line (...) engineering in general and cloning in particular. Article 13 of the Convention for the Protection of Human Rights and Dignity of the Human Being with regard to the Application of Biology and Medicine: Convention on Human Rights and Biomedicine simply forbidsgerm-line engineering except for diagnostic or therapeutic purposes. The convention along with its explanatory report make it clear that the rationale for the decision is based, in large part, on the need to protect the dignity of persons.Several notions of dignity have been advanced to support bans on non-therapeutic germ-line engineering. I argue that they fail to provide a rationale for such a ban. I consider both secular and religious views of human dignity. In addition, I argue that there are forms of germ-line and non-therapeutic engineering that are compatible with human rights. (shrink)
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