Results for 'Genetic engineering'

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  1. Ian Holliday.Genetic Engineering & A. Towards - 2002 - In Julia Lai Po-Wah Tao, Cross-cultural perspectives on the (im) possibility of global bioethics. Boston: Kluwer Academic. pp. 2--131.
     
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  2. Genetically engineered mosquitoes, Zika and other arboviruses, community engagement, costs, and patents: Ethical issues.Zahra Meghani & Christophe Boëte - 2018 - PLoS Neglected Tropical Diseases 7 (12).
    Genetically engineered (GE) insects, such as the GE OX513A Aedes aegypti mosquitoes, have been designed to suppress their wild-type populations so as to reduce the transmission of vector-borne diseases in humans. Apart from the ecological and epidemiological uncertainties associated with this approach, such biotechnological approaches may be used by individual governments or the global community of nations to avoid addressing the underlying structural, systemic causes of those infections... We discuss here key ethical questions raised by the use of GE mosquitoes, (...)
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  3. Designing Genetic Engineering Technologies For Human Values.Steven Umbrello - 2022 - Etica E Politica (2):481-510.
    Genetic engineering technologies are a subclass of the biotechnology family, and are concerned with the use of laboratory-based technologies to intervene with a given organism at the genetic level, i.e., the level of its DNA. This class of technologies could feasibly be used to treat diseases and disabilities, create disease-resistant crops, or even be used to enhance humans to make them more resistant to certain environmental conditions. However, both therapeutic and enhancement applications of genetic engineering (...)
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  4. Genetically Engineered Animals, Drugs, and Neoliberalism: The Need for a New Biotechnology Regulatory Policy Framework.Zahra Meghani - 2017 - Journal of Agricultural and Environmental Ethics 30 (6):715-743.
    Genetically engineered animals that are meant for release in the wild could significantly impact ecosystems given the interwoven or entangled existence of species. Therefore, among other things, it is all too important that regulatory agencies conduct entity appropriate, rigorous risk assessments that can be used for informed decision-making at the local, national and global levels about the release of those animals in the wild. In the United States, certain GE animals that are intended for release in the wild may be (...)
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  5. 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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  6.  71
    Genetically Engineered Oil Seed Crops and Novel Terrestrial Nutrients: Ethical Considerations.Chris MacDonald, Stefanie Colombo & Michael T. Arts - 2019 - Science and Engineering Ethics 25 (5):1485-1497.
    Genetically engineered organisms have been at the center of ethical debates among the public and regulators over their potential risks and benefits to the environment and society. Unlike the currently commercial GE crops that express resistance or tolerance to pesticides or herbicides, a new GE crop produces two bioactive nutrients and docosahexaenoic acid ) that heretofore have largely been produced only in aquatic environments. This represents a novel category of risk to ecosystem functioning. The present paper describes why growing oilseed (...)
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  7. Genetic engineering and the sacred.Bernard E. Rollin - 2005 - Zygon 40 (4):939-952.
    Genetic engineering of life forms could well have a profound effect upon our sense of the sacred. Integrating the experience of the sacred as George Bataille does, we can characterize it as a phenomenological encounter with prelinguistic, noncategoreal experience. This view of the sacred is similar to Friedrich Nietzsche's Dionysian experience or Rudolf Otto's mysterium tremendum and diminishes one's sense of self. It seems similar to the eighteenth‐century aesthetic categorization of “the sublime.” Despite the dominant rational approach to (...)
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  8. Genetic Engineering.Dan W. Brock - 2008 - In R. G. Frey & Christopher Heath Wellman, A Companion to Applied Ethics. Malden, MA: Wiley-Blackwell. pp. 356–368.
    This chapter contains sections titled: The Various Uses of Genetic Engineering The Disability Rights Challenge to the Prevention of Disabilities The Goal of a World without Disabilities Use of Genetic Engineering to Enhance Normal Function Environmental versus Genetic Changes When are Enhancements Benefits? The Magnitude of Enhancement The Means Used for Enhancement Who is Using Genetic Engineering? Impact of Genetic Engineering on Fairness and Inequality Acknowledgments.
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  9. 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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  10.  19
    Genetically Engineered Nonhuman Animals: A Global Overview and Research Agenda.Oliver Keane - 2019 - Society and Animals 29 (2):173-202.
    This paper suggests studies on genetically engineering nonhuman animal genes have globalized over the last 30 years. The results unveil maps that give a global overview of universities’ studies into engineering animal genes, by purpose and by species, at a state scale. A network map also shows how studies on engineering animal genes are co-constituted internationally, at a state scale. Some of the more notable map findings are developed using a novel ontological approach. This ontology relates the (...)
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  11. Genetic Engineering, Nature Conservation, and Animal Ethics.Leonie N. Bossert & Thomas Potthast - 2025 - Environmental Ethics 47 (2):117-139.
    The use of genetic engineering is increasingly discussed for nature conservation. At the same time, recent animal ethics approaches debate whether humans should genetically engineer wild animals to improve their welfare. This paper examines if obligations towards wild sentient animals require humans to genetically engineering wild animals, while arguing that there is no moral need to do so. The focus is on arguments from animal ethics, but they are linked to conservation ethics, highlighting the often neglected overlap (...)
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  12.  13
    Human Genetic Engineering.Alexander M. Capron - 2011 - In Henri Colt, Silvia Quadrelli & Friedman Lester, The Picture of Health: Medical Ethics and the Movies. New York, US: Oup Usa. pp. 351-356.
    This chapter discusses the issue of genetic engineering raised by the film _Gattaca_ (1997). The film is set in the future when certain people are classified as _valids_, born from embryos that have been screened, selected, and genetically manipulated to be free of diseases and weaknesses, while others—those conceived the way babies have always been—are called _in-valids_, faith births or, more ominously, _de-gene-erates_. The protagonist Vincent Freeman (Ethan Hawke) falls into the latter category. The chapter analyzes the various (...)
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  13. Genetic engineering and the moral status of non-human species.Anders Melin - 2004 - Journal of Agricultural and Environmental Ethics 17 (6):479-495.
    Genetic modification leads to several important moral issues. Up until now they have mainly been discussed from the viewpoint that only individual living beings, above all animals, are morally considerable. The standpoint that also collective entities such as species belong to the moral sphere have seldom been taken into account in a more thorough way, although it is advocated by several important environmental ethicists. The main purpose of this article is to analyze in more detail than often has been (...)
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  14.  20
    Mandatory Genetic Engineering Labels and Consumer Autonomy.Peter Markie - 2008 - In Paul Weirich, Labeling Genetically Modified Food: The Philosophical and Legal Debate. New York, US: OUP Usa. pp. 88-105.
    Some proponents of mandatory labels for GE (genetically engineered) products present the autonomy argument: The labeling of GE products as such should be mandatory because consumers need this information to make purchase decisions that are informed by their values. The argument's appeal to consumer values and autonomy seems to settle the issue of mandatory labels independently of safety issues. This chapter examines three versions of the argument, shows that each is unsuccessful, and explains the poor prospects for a successful autonomy (...)
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  15.  53
    Genetic engineering and the concept of the natural.Mark Sagoff - 2001 - In [no title]. NABC.
    Many consumers view genetically engineered foods with suspicion partly because the food industry has taught them to do so. Consumers learn from advertisements and labels that the foods they buy are all natural only to realize that that is not the case. The food industry wishes to embrace the efficiencies offered by advances in genetic engineering, but this technology belies the image of nature to which the food industry constantly and conspicuously appeals. Consumers who believe genetically modified foods (...)
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  16.  83
    Anti-genetic engineering activism and scientized politics in the case of “contaminated” Mexican maize.Abby J. Kinchy - 2010 - Agriculture and Human Values 27 (4):505-517.
    The struggle over genetically-engineered (GE) maize in Mexico reveals a deep conflict over the criteria used in the governance of agri-food systems. Policy debate on the topic of GE maize has become “scientized,” granting experts a high level of political authority, and narrowing the regulatory domain to matters that can be adjudicated on the basis of scientific information or “managed” by environmental experts. While scientization would seem to narrow opportunities for public participation, this study finds that Mexican activists acting “in (...)
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  17.  75
    Genetic Engineering--A Technique of the Future.Kazimierz Kloskowski - 1996 - Dialogue and Universalism 6 (8):115-120.
    Genetic engineering takes advantage of the knowledge on the molecular genetics, in making changes in DNA sequences of a lot of organisms in vitro. In other words, genetic engineering is a technique of the introducing some new genes into the organism of a receiver. In its essence, it consists in “removing” from a genome (a set of genes) a fragment of DNA and inserting it into a different DNA particle of another organism. Such possibilities of human (...)
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  18.  67
    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 human (...)
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  19. Genetic engineering to avoid genetic neglect: From chance to responsibility.Jessica Hammond - 2008 - Bioethics 24 (4):160-169.
    Currently our assessment of whether someone is a good parent depends on the environmental inputs (or lack of such inputs) they give their children. But new genetic intervention technologies, to which we may soon have access, mean that how good a parent is will depend also on the genetic inputs they give their children. Each new piece of available technology threatens to open up another way that we can neglect our children. Our obligations to our children and our (...)
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  20.  96
    Genetically Engineering Human-Animal Chimeras and Lives Worth Living.Dennis R. Cooley - 2008 - Between the Species 13 (8):1.
    Genetic engineering often generates fear of out of control scientists creating Frankenstein creatures that will terrorize the general populace, especially in the cases of human-animal chimeras. While sometimes an accurate characterization of some researchers, this belief is often the result of repugnance for new technology rather than being rationally justified. To facilitate thoughtful discussion the moral issues raised by human-animal chimeras, ethicists and other stakeholders must develop a rational ethical framework before raw emotion has a chance of becoming (...)
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  21.  11
    Genetic Engineering — The Promise and the Perils.Kazimierz Kloskowski - 2000 - Dialogue and Universalism 10 (5):25-30.
    Genetic engineering takes advantage of the knowledge of molecular genetics and applies it to making changes in DNA sequences of organisms in vitro. In other words, genetic engineering is a technology of introducing new genes into the organism of a recipient. In its essence, it consists in “removing” a fragment of DNA from a genome (a set of genes) and in inserting it into a different DNA particle of another organism. Such possibilities of human activity pertaining (...)
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  22. Genetic Engineering and the Speciation of Superions from Humans.Lucas Alexander Haley Commons-Miller, Michael Lamport Commons & Geoffrey David Commons - 2008 - World Futures 64 (5):436-443.
    (2008). Genetic Engineering and the Speciation of Superions from Humans. World Futures: Vol. 64, Postformal Thought and Hierarchical Complexity, pp. 436-443.
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  23.  61
    Genetic Engineering Revolution.Benjamin Gregg - 2023 - In Nathanaël Wallenhorst & Christoph Wulf, Handbook of the Anthropocene. Cham: Springer Verlag. pp. 505-510.
    Genetic engineering in general, and human genetic editing in particular, is revolutionizing humankind’s self-understanding: an evolved organism taking ever greater control of its own evolution. This Anthropocenic phenomenon is deeply equivocal (Gregg B. Human genetic engineering: biotic justice in the anthropocene? In: DellaSala D, Goldstein M (eds) Encyclopedia of the Anthropocene, vol 4. Elsevier, Oxford, pp 351–359, 2018). While delivering humans from some risks, it renders them vulnerable to unintended consequences as well. Even in the (...)
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  24. 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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  25. 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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  26. Genetic engineering and the dignity of creatures.Robert Heeger - 2000 - Journal of Agricultural and Environmental Ethics 13 (1):43-51.
    The Swiss expert report suggests thatthe inherent dignity of a living being be identifiedwith its inherent value. But the phrase ``inherentvalue of a living being'' seems to connote two conceptsof inherent value. One has a morally obligatingcharacter but is counterintuitive because of itsegalitarianism. The other is one of non-moral value.It is more compatible with considered intuitions butinsufficient for substantiating the expert report'sclaim that human beings have moral duties towardsanimals and plants. The paper discusses theseconcepts. Consideration is then given to the (...)
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  27.  99
    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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  28. Genetic Engineering and The Non-Identity Problem.Tomasz Żuradzki - 2008 - Diametros 16:63-79.
    In my essay I consider the imaginary case of a future mother who refuses to undergo genetic alteration on her germline although she knows that her, as yet unconceived, child will have a serious genetic disorder. I analyze the good and bad points of two branches of arguments directed against her decision, consequentialist and rights-based. Then I discuss whether accepting one line of these arguments or the other makes a difference in moral assessment. I conclude that, although from (...)
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  29. Genetic Engineering and what is Natural.Mary Warnock - 2002 - Think 1 (1):21-27.
    Some argue that genetic engineering and other scientific practices are morally wrong because they are ‘unnatural’. Prince Charles took this line in his 2000 Reith Lecture. But as Mary Warnock here points out, attempts to justify the moral condemnation of a practice on the grounds that it is ‘contrary to nature’ are notoriously difficult to sustain.
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  30. Regulation of genetically engineered (GE) mosquitoes as a public health tool: a public health ethics analysis.Zahra Meghani - 2022 - Globalization and Health 1 (18):1-14.
    In recent years, genetically engineered (GE) mosquitoes have been proposed as a public health measure against the high incidence of mosquito-borne diseases among the poor in regions of the global South. While uncertainties as well as risks for humans and ecosystems are entailed by the open-release of GE mosquitoes, a powerful global health governance non-state organization is funding the development of and advocating the use of those bio-technologies as public health tools. In August 2016, the US Food and Drug Agency (...)
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  31.  80
    Genetic Engineering and Human Mental Ecology: Interlocking Effects and Educational Considerations.Ramsey Affifi - 2017 - Biosemiotics 10 (1):75-98.
    This paper describes some likely semiotic consequences of genetic engineering on what Gregory Bateson has called “the mental ecology” of future humans, consequences that are less often raised in discussions surrounding the safety of GMOs. The effects are as follows: an increased 1) habituation to the presence of GMOs in the environment, 2) normalization of empirically false assumptions grounding genetic reductionism, 3) acceptance that humans are capable and entitled to decide what constitutes an evolutionary improvement for a (...)
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  32. Genetically Engineered Animals and the Ethics of Food Labeling.Robert Streiffer & Alan Rubel - 2008 - In Paul Weirich, Labeling Genetically Modified Food: The Philosophical and Legal Debate. New York, US: OUP Usa. pp. 63--87.
    The current debate about labeling genetically engineered (GE) food focuses on food derived from GE crops, neglecting food derived from GE animals. This is not surprising, as GE animal products have not yet reached the market. Participants in the debate may also be assuming that conclusions about GE crops automatically extend to GE animals. But there are two GE animals - the Enviropig and the AquAdvantage Bred salmon - that are approaching the market, animals raise more ethical issues than plants, (...)
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  33. Should Parents Genetically Engineer their Children?Walter Veit - 2019 - Psychology Today.
    Imagine a world where everyone is healthy, intelligent, long living and happy. Intuitively this seems wonderful, albeit unrealistic. However, recent scientific developments in genetic engineering, namely CRISPR/Cas bring the question into public discourse, how the genetic enhancement of humans should be evaluated morally.
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  34. Genetic Engineering and the Consent of Future Persons.Martin Gunderson - 2008 - Journal of Evolution and Technology 18 (1):86-93.
    The debate over whether germ-line genetic engineering is justified on the basis of the consent or presumed consent of future generations is mired in philosophical confusion. Because of this, the principle of informed consent fails to provide a reason to restrict germ-line genetic engineering. Most recent bioethicists ground the consent requirement on individual autonomy. While conceptually coherent, the notion of individual autonomy also fails to provide a reason for prohibiting germ-line genetic engineering. Moreover, it (...)
     
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  35.  73
    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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  36.  21
    Genetic Engineering.David B. Resnik - 2021 - In Precautionary Reasoning in Environmental and Public Health Policy. Cham: Springer Verlag. pp. 165-240.
    In this chapter I will apply the PP to ethical and policy issues related to genetic engineering of microbes, plants, animals, and human beings. I will argue that the PP can provide some useful insights into these issues, due to the scientific and morally uncertainty surrounding the consequences of genetic engineering for public health, the environment, society, and patients.
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  37. Genetic engineering and environmental ethics.Andrew Dobson - 1997 - Cambridge Quarterly of Healthcare Ethics 6 (2):205.
    When God gave humankind dominion over the earth he may not have known exactly what we would be able to do with it. The technical capacities to which the production and reproduction of our everyday life have given rise have grown at an astonishing and, it seems, ever-increasing rate. The instruments that we use to do work on the world have become sharper and more refined, and the implications of human interventions in the nonhuman environment are much more far-reaching than (...)
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  38. 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 (...) engineering and other activities affecting human existence, in order to establish that the moral issues presented by genetic engineering are unique to it. (shrink)
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  39.  99
    Genetic engineering: Prospects and recommendations.Bernard D. Davis & H. Tristram Engelhardt - 1984 - Zygon 19 (3):277-280.
    At the 1983 Summer Conference on the Institute on Religion in an Age of Science, working groups chaired by the coauthors outlined some of the prospects for the use of somatic and germ line genetic engineering and related biological technologies to alleviate disease and to modify human behavior. They then offered a series of recommendations concerning the application of genetic engineering to persons and the monitoring of medical research and therapy.
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  40. Genetic engineering: A major threat to vegetarians.Ron Epstein - manuscript
    Imagine a world in which as part of their basic substances tomatoes contain fish and tobacco, potatoes contain chicken, moths and other insects, and corn contains fireflies. Is this science-fiction? No, these plant-animal hybrids already exist today and may soon be on your supermarket shelves without any special labeling to warn you. Furthermore, in a few years the types of these genetically engineered "vegetables" are sure to increase and may very possibly also include human genes. If you are a vegetarian, (...)
     
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  41. Suicidal genetically engineered microorganisms for bioremediation: Need and perspectives.Debarati Paul, Gunjan Pandey & Rakesh K. Jain - 2005 - Bioessays 27 (5):563-573.
    In the past few decades, increased awareness of environmental pollution has led to the exploitation of microbial metabolic potential in the construction of several genetically engineered microorganisms (GEMs) for bioremediation purposes. At the same time, environmental concerns and regulatory constraints have limited the in situ application of GEMs, the ultimate objective behind their development. In order to address the anticipated risks due to the uncontrolled survival/dispersal of GEMs or recombinant plasmids into the environment, some attempts have been made to construct (...)
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  42.  89
    Genetic Engineering in Contemporary Islamic Thought.Vardit Rispler-Chaim - 1998 - Science in Context 11 (3-4):567-573.
    The ArgumentMuslims share with others both the interest in and the concern about genetic engineering. Naturally their reactions and views stem from general Islamic dogma and from Islamic medical ethics, but they are not unaware of Western scientific data. Particularly relevant is the Islamic religious prohibition against “changing what Allah has created.” Muslim muftis try to offer practical solutions for individuals. Islamic law is concerned about maintaining pure lineage. Consanguineous matings are very common, but induced abortions are usually (...)
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  43. Should we genetically engineer hogs?Gary Comstock - 1992 - Between the Species 8 (4):5.
    The paper argues that we should not genetically engineer hogs to suit the preferences of farmers and consumers.
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  44. 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 (...)
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  45.  67
    How consumers use mandatory genetic engineering (GE) labels: evidence from Vermont.Jane Kolodinsky, Sean Morris & Orest Pazuniak - 2019 - Agriculture and Human Values 36 (1):117-125.
    Food labels legislated by the U.S. government have been designed to provide information to consumers. It has been asserted that the simple disclosures “produced using genetic engineering” on newly legislated U.S. food labels will send a signal that influences individual preferences rather than providing information. Vermont is the only US state to have experienced mandatory labeling of foods produced using genetic engineering via simple disclosures. Using a representative sample of adults who experienced Vermont’s mandatory GE labeling (...)
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  46. Rawlsian Decisionmaking and Genetic Engineering.Andrew Sneddon - 2006 - Cambridge Quarterly of Healthcare Ethics 15 (1):35-41.
    This paper evaluates Sara Goering’s recent attempt to use the Rawlsian notion of the veil of ignorance as a tool for distinguishing permissible from impermissible forms of genetic engineering. I argue that her article fails due to a failure to include vital contextual information in the right way.
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  47.  49
    Made in Whose Image?: Genetic Engineering and Christian Ethics.Thomas Anthony Shannon - 1997 - Humanities Press.
    The ability of medical science to clone and perhaps even predetermine characteristics of certain species conflicts dramatically with many claims of the religious establishment. Opening with a description of various developments in plant, animal, and human genetics, Made in Whose Image? highlights the progress genetic research has achieved, its future promise, and its social impact. The developments are analyzed from the perspective of Christian ethics, as expounded by Roman Catholic and Protestant theorists, to give an overview of crucial ethical (...)
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  48.  59
    Creating Human Nature: The Political Challenges of Genetic Engineering.Benjamin Gregg - 2022 - Cambridge University Press.
    Human genetic enhancement, examined from the standpoint of the new field of political bioethics, displaces the age-old question of truth: What is human nature? This book displaces that question with another: What kind of human nature should humans want to create for themselves? To answer that question, this book answers two others: What constraints should limit the applications of rapidly developing biotechnologies? What could possibly form the basis for corresponding public policy in a democratic society? Benjamin Gregg focuses on (...)
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  49. Genetic engineering and our human nature.Harold W. Baillie - 2003 - Philosophy and Public Policy Quarterly 23 (1-2):28-31.
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  50.  83
    Genetically-engineered crops and their effects on varietal diversity: a case of Bt eggplant in India.Deepthi Elizabeth Kolady & William Lesser - 2012 - Agriculture and Human Values 29 (1):3-15.
    Building on the evidence from the impact of hybrid technology on varietal diversity loss, this paper explores ex ante the possible effects of introduction of Bt eggplant on on-farm varietal diversity of eggplant. The public–private partnership involved in the development and introduction of Bt eggplant provides a great opportunity to develop locally-adapted Bt open-pollinated varieties (OPVs) instead of having a limited number of generic hybrid varieties. The study shows that introduction of multiple Bt OPVs by public institutions will reduce the (...)
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