Results for 'Genetic Modification'

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  1. Genetic modification and genetic determinism.David B. Resnik & Daniel B. Vorhaus - 2006 - Philosophy, Ethics, and Humanities in Medicine 1:9.
    In this article we examine four objections to the genetic modification of human beings: the freedom argument, the giftedness argument, the authenticity argument, and the uniqueness argument. We then demonstrate that each of these arguments against genetic modification assumes a strong version of genetic determinism. Since these strong deterministic assumptions are false, the arguments against genetic modification, which assume and depend upon these assumptions, are therefore unsound. Serious discussion of the morality of (...) modification, and the development of sound science policy, should be driven by arguments that address the actual consequences of genetic modification for individuals and society, not by ones propped up by false or misleading biological assumptions. (shrink)
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  2.  56
    Genetic modification of characteristic masculine traits: enhancement or deformity?Jeff McMahan - 2013 - Journal of Medical Ethics 39 (12):736-740.
    Some philosophers, most notably Julian Savulescu, have argued that potential parents have a moral reason to do what they can to have a child with the highest expected level of well-being.1 This is not just a reason to do what will make a particular child better off than he or she would otherwise be but also a reason to choose, from among different possible children, the one that has the highest expected well-being. The claim that potential parents have such a (...)
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  3.  20
    Genetic modifications for personal enhancement: a defence.Timothy F. Murphy - 2014 - Journal of Medical Ethics 40 (4):242-245.
    Bioconservative commentators argue that parents should not take steps to modify the genetics of their children even in the name of enhancement because of the damage they predict for values, identities and relationships. Some commentators have even said that adults should not modify themselves through genetic interventions. One commentator worries that genetic modifications chosen by adults for themselves will undermine moral agency, lead to less valuable experiences and fracture people's sense of self. These worries are not justified, however, (...)
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  4. Genetic modifications for personal enhancement: a defense.Timothy F. Murphy - 2013 - Journal of Medical Ethics (4):2012-101026.
    Bioconservative commentators argue that parents should not take steps to modify the genetics of their children even in the name of enhancement because of the damage they predict for values, identities and relationships. Some commentators have even said that adults should not modify themselves through genetic interventions. One commentator worries that genetic modifications chosen by adults for themselves will undermine moral agency, lead to less valuable experiences and fracture people's sense of self. These worries are not justified, however, (...)
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  5. Inheritable Genetic Modification and a Brave New World: Did Huxley Have It Wrong?Mark S. Frankel - 2003 - Hastings Center Report 33 (2):31-36.
    What makes inheritable genetic modification attractive is not its ability to treat disease, but its capacity, someday, to enhance human traits beyond what mere good health requires. But, these discoveries will not be imposed on us by government, as Huxley thought. If they take over our lives, it will be because they were sold to us on the open market, as commodities we cannot do without.
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  6. Genetic Modification and Future Generations.David Sackris - 2006 - Macalester Journal of Philosophy 15 (1).
    One of the most difficult issues to sort out morally is our obligation to future generations. Most individuals feel that they do indeed have some kind of obligation, but face difficulty in explaining the exact nature of the obligation. For one, it seems impossible to know the wants and desires of future generations, and furthermore the existence of the persons we are obligated to is entirely dependent upon the choices that we in fact make. In essence, we could shape future (...)
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  7. Genetic modification (gm) in sport: Legal implications.Andy Miah - unknown
    Despite an emerging body of literature, an analysis of the legal issues arising from science and technology in sport remains largely unexplored.1 Perhaps one of the most common areas for the synthesis of these issues is found in regard to the use of drugs and other doping methods. However, there remains no theorising about legal issues arising from the possibility of using genetic technologies in sport. Nevertheless, an awareness of the imminent use of genetic technologies by athletes is (...)
     
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  8.  23
    Domestication, crop breeding, and genetic modification are fundamentally different processes: implications for seed sovereignty and agrobiodiversity.Natalie G. Mueller & Andrew Flachs - 2021 - Agriculture and Human Values 39 (1):455-472.
    Genetic modification of crop plants is frequently described by its proponents as a continuation of the ancient process of domestication. While domestication, crop breeding, and GM all modify the genomes and phenotypes of plants, GM fundamentally differs from domestication in terms of the biological and sociopolitical processes by which change occurs, and the subsequent impacts on agrobiodiversity and seed sovereignty. We review the history of domestication, crop breeding, and GM, and show that crop breeding and GM are continuous (...)
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  9.  64
    Genetic Modification of Animals.Henk Verhoog - 1996 - The Monist 79 (2):247-263.
    In this article I will explore the problem of 'forbidden knowledge' on the basis of my own experience in the Netherlands with the development of a regulative framework for all research involving the production and use of genetically modified animals. Although it is not yet definitely settled, this regulative framework is based on what is called the 'no, unless'-principle. The 'no, unless' policy has been defined by Brom and Schroten in the following way.
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  10. Genetic modification and genetic determinism.Resnik David & Vorhaus Daniel - 2006 - Philosophy, Ethics, and Humanities in Medicine 1.
     
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  11.  74
    Genome Editing Technologies and Human Germline Genetic Modification: The Hinxton Group Consensus Statement.Sarah Chan, Peter J. Donovan, Thomas Douglas, Christopher Gyngell, John Harris, Robin Lovell-Badge, Debra J. H. Mathews, Alan Regenberg & On Behalf of the Hinxton Group - 2015 - American Journal of Bioethics 15 (12):42-47.
    The prospect of using genome technologies to modify the human germline has raised profound moral disagreement but also emphasizes the need for wide-ranging discussion and a well-informed policy response. The Hinxton Group brought together scientists, ethicists, policymakers, and journal editors for an international, interdisciplinary meeting on this subject. This consensus statement formulated by the group calls for support of genome editing research and the development of a scientific roadmap for safety and efficacy; recognizes the ethical challenges involved in clinical reproductive (...)
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  12.  52
    Similarity Arguments in the Genetic Modification Debate.Andreas Christiansen - 2017 - Ethical Theory and Moral Practice 20 (2):239-255.
    In the ethical debate on genetic modification, it is common to encounter the claim that some anti-GM argument would also apply an established, ethically accepted technology, and that the anti-GM argument is therefore unsuccessful. The paper discusses whether this argumentative strategy, the Similarity Argument, is sound. It presents a logically valid, generic form of the Similarity Argument and then shows that it is subject to three types of objection: It does not respect the difference between pro tanto reasons (...)
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  13.  75
    The ethics of inheritable genetic modification: a dividing line?John E. J. Rasko, Gabrielle O'Sullivan & Rachel A. Ankeny (eds.) - 2006 - New York: Cambridge University Press.
    Is inheritable genetic modification the new dividing line in gene therapy? The editors of this searching investigation, representing clinical medicine, public health and biomedical ethics, have established a distinguished team of scientists and scholars to address the issues from the perspectives of biological and social science, law and ethics, including an intriguing Foreword from Peter Singer. Their purpose is to consider how society might deal with the ethical concerns raised by inheritable genetic modification, and to re-examine (...)
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  14.  35
    Reproductive cloning combined with genetic modification.C. Strong - 2005 - Journal of Medical Ethics 31 (11):654-658.
    Although there is widespread opposition to reproductive cloning, some have argued that its use by infertile couples to have genetically related children would be ethically justifiable. Others have suggested that lesbian or gay couples might wish to use cloning to have genetically related children. Most of the main objections to human reproductive cloning are based on the child’s lack of unique nuclear DNA. In the future, it may be possible safely to create children using cloning combined with genetic modifications, (...)
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  15.  45
    On the Genetic Modification of Psychology, Personality, and Behavior.Alex B. Neitzke - 2012 - Kennedy Institute of Ethics Journal 22 (4):307-343.
    I argue that the use of heritable modifications for psychology, personality, and behavior should be limited to the reversal or prevention of relatively unambiguous instances of pathology or likely harm (e.g. sociopathy). Most of the likely modifications of psychological personality would not be of this nature, however, and parents therefore should not have the freedom to make such modifications to future children. I argue by examining the viewpoints of both the individual and society. For individuals, modifications would interfere with their (...)
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  16.  23
    Genetically Modified Babies: Ethical issues raised by the genetic modification of germ cells and embryos.Commission de L’éthique en Science et en Technologie - 2019 - Jahrbuch für Wissenschaft Und Ethik 24 (1):225-254.
  17.  39
    Green symbolism in the genetic modification debate.Ian M. Scott - 2000 - Journal of Agricultural and Environmental Ethics 13 (3-4):293-311.
    The character of the current controversy over geneticallymodified (GM) agriculture, typified by protesters' use of emotivesymbolism, has been largely inspired by the Green movement'snon-governmental organizations and political parties. This articleexplores the deeper philosophical and spiritual motivations of the Greenmovement, to inquire why it is implacably opposed to GM agriculture. TheGreen movement's anti-capitalism, exemplified by the hate-symbol statusof Monsanto as the company pioneering GM crops, is viewed within thewider context of alienation in the modern era. A complex of meanings isseen in (...)
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  18. Risks associated with genetic modification: – An annotated bibliography of Peer reviewed natural science publications. [REVIEW]Sean A. Weaver & Michael C. Morris - 2005 - Journal of Agricultural and Environmental Ethics 18 (2):157-189.
    We present an annotated bibliography of peer reviewed scientific research highlighting the human health, animal welfare, and environmental risks associated with genetic modification. Risks associated with the expression of the transgenic material include concerns over resistance and non-target effects of crops expressing Bt toxins, consequences of herbicide use associated with genetically modified herbicide-tolerant plants, and transfer of gene expression from genetically modified crops through vertical and horizontal gene transfer. These risks are not connected to the technique of (...) modification as such, but would be present for any conventionally produced crops with the same heritable traits. In contrast, other risks are a direct consequence of the method used in gene manipulation. These come about because of the unstable nature of the transgene and vectors used to insert it, and because of unpredictable interactions between the transgene and the host genome. The debate over the release of genetically modified organisms is not merely a scientific one; it encompasses economics, law, ethics, and policy. Any discussion on these levels does, however, need to be informed by sound science. We hope that the scientific references provided here will provide a useful starting point for further debate. (shrink)
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  19.  5
    Bioethics and hereditary genetic modifications.Zeljko Kaludjerovic - 2019 - Conatus 3 (1):31.
    Significant breakthroughs in genetic research promoted by the human genome project, advances in molecular biology and new reproductive technologies have improved the understanding and the possibility of genetic interventions as a potential medication for diseases caused by differentiated disorders, especially those that originated in irregularities in individual genes. The progress achieved in contemporary studies has created the likelihood that the man has the technical capacity to modify the genes that will be transmitted to the next generations as well. (...)
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  20. Breaking Evolution's Chains: The Prospect of Deliberate Genetic Modification in Humans.Russell Powell & Allen Buchanan - 2011 - Journal of Medicine and Philosophy 36 (1):6-27.
    Many philosophers invoke the "wisdom of nature" in arguing for varying degrees of caution in the development and use of genetic enhancement technologies. Because they view natural selection as akin to a master engineer that creates functionally and morally optimal design, these authors tend to regard genetic intervention with suspicion. In Part II, we examine and ultimately reject the evolutionary assumptions that underlie the master engineer analogy (MEA). By highlighting the constraints on ordinary unassisted evolution, we show how (...)
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  21.  8
    Taking Sides on Genetic Modification.Dov Fox - 2010 - American Journal of Bioethics Neuroscience 1 (2):56-57.
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  22.  7
    Attitudes Toward Genetic Modification Research: An Analysis of the Views of the Sputnik Generation.Jon D. Miller - 1982 - Science, Technology and Human Values 7 (2):37-43.
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  23. Crop plant genetic modification.J. Bryant - 2004 - Bioethics Briefing 2.
     
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  24. Human Germline Genetic Modification – A Utilitarian Bioethical Perspective.Kevin Smith - 2004 - Ethics 4 (2).
     
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  25.  83
    Biomedical ethics: Muslim perspectives on genetic modification.Fatima Agha Al-Hayani - 2007 - Zygon 42 (1):153-162.
    Technology pertaining to genetically modified foods has created an abundance of food and various methods to protect new products and enhance productivity. However, many scientists, economists, and humanitarians have been critical of the application of these discoveries. They are apprehensive about a profit-driven mentality that, to them, seems to propel the innovators rather than a poverty-elimination mentality that should be behind such innovations. The objectives should be to afford the most benefit to those in need and to prevent hunger around (...)
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  26.  23
    Re-negotiating Science in Environmentalists' Submissions to New Zealand's Royal Commission on Genetic Modification.Tee Rogers-Hayden & John R. Campbell - 2003 - Environmental Values 12 (4):515 - 534.
    The debate about genetic modification (GM) can be seen as characteristic of our time. Environmental groups, in challenging GM, are also challenging modernist faith in progress, and science and technology. In this paper we use the case of New Zealand's Royal Commission on Genetic Modification to explore the application of science discourses as used by environmental groups. We do this by situating the debate in the framework of modernity, discussing the use of science by environmental groups, (...)
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  27.  32
    Between Treatment and Enhancement: Islamic Discourses on the Boundaries of Human Genetic Modification.Ayman Shabana - 2022 - Journal of Religious Ethics 50 (3):386-411.
    Recent developments in genomic technology, especially those enabling gene editing, promise to put an end to hitherto intractable medical problems and to usher us into the age of personalized medicine. These technologies, however, raise a number of serious ethical challenges. Given the global impact of this technology, recent international regulations emphasize the need for intercultural dialogue on these ethical issues. This paper concentrates on Islamic perspectives on human genetic modification. It examines Islamic juristic discourses on the issue of (...)
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  28.  29
    Between Treatment and Enhancement: Islamic Discourses on the Boundaries of Human Genetic Modification.Ayman Shabana - 2022 - Journal of Religious Ethics 50 (3):386-411.
    Recent developments in genomic technology, especially those enabling gene editing, promise to put an end to hitherto intractable medical problems and to usher us into the age of personalized medicine. These technologies, however, raise a number of serious ethical challenges. Given the global impact of this technology, recent international regulations emphasize the need for intercultural dialogue on these ethical issues. This paper concentrates on Islamic perspectives on human genetic modification. It examines Islamic juristic discourses on the issue of (...)
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  29.  6
    Processes of Inclusion, Cultures of Calculation, Structures of Power: Scientific Citizenship and the Royal Commission on Genetic Modification.Joanna Goven - 2006 - Science, Technology, and Human Values 31 (5):565-598.
    The significance of political-economic context for scientific citizenship is argued through an analysis of New Zealand’s Royal Commission on Genetic Modification. My intention is not to provide an account of why the commission came to the decisions it did but to illustrate how the political-economic context and the culture of regulatory science both exacerbate public concerns about unacknowledged uncertainty and commercial influence and make it difficult for those concerns to influence the outcomes of public dialogues. The discursive flexibility (...)
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  30.  42
    From goodness to good looks: Changing images of human germline genetic modification.Derek So - 2021 - Bioethics 36 (5):556-568.
    Bioethics, Volume 36, Issue 5, Page 556-568, June 2022.
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  31.  6
    "Challenged Forth by the Need for Paper": Ethical Aspects of Genetic Modification of Trees.Mary Richardson - 2007 - The Proceedings of the Twenty-First World Congress of Philosophy 1:269-274.
    Genetic modification of trees has the potential to change our forests forever, yet there has been little publicly available information or debate on this important topic. Ethical analysis of genetic modification of plants to date has been focussed mainly on food and feed crops and pharmaceutical production. The purpose of this paper is to examine one major ethical issue arising in connection with the genetic modification of trees, the necessity to examine the practice in (...)
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  32.  59
    A Kantian argument against comparatively advantageous genetic modification.D. Jensen - 2011 - Journal of Medical Ethics 37 (8):479-482.
    The genetic modification of children is becoming a more likely possibility given our rapid progress in medical technologies. I argue, from a broadly Kantian point of view, that at least one kind of such modificationmodification by a parent for the sake of a child's comparative advantage—is not rationally justified. To argue this, I first characterize a necessary condition on reasons and rational justification: what is a reason for an agent to do an action in one set (...)
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  33.  7
    Conflicting Futures: Environmental Regulation of Plant Targeted Genetic Modification.Jennifer Kuzma & Adam Kokotovich - 2014 - Bulletin of Science, Technology and Society 34 (3-4):108-120.
    Novel targeted genetic modification (TagMo) techniques for plants have the potential to increase the speed and ease of genetic modification and fall outside existing regulatory authority. We conducted 31 interviews with expert-stakeholders to explore the differing visions they have for the future of plant TagMo environmental regulation. To guide our analysis we review the tenets of anticipatory governance in light of future studies literature on emerging technology, focusing on how to contribute to reflexivity by making explicit (...)
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  34.  4
    Talking ‘facts’: identity and rationality in industry perspectives on genetic modification.George Cheney, C. Kay Weaver & Alison Henderson - 2007 - Discourse Studies 9 (1):9-41.
    Despite the potential political impact of industry attempts to influence public policy about genetic modification, little research has focused on critical understanding of industry perspectives. This article explores the rhetorical and discursive construction of public messages about this controversial issue by two major New Zealand export industries. The kiwifruit industry advocates a very cautious public policy position, while the dairy industry has been a strong advocate for the commercial development of genetic modification. We demonstrate that these (...)
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  35.  59
    Christian Ethics and Human Germ Line Genetic Modification.B. Waters - 2012 - Christian Bioethics 18 (2):171-186.
    The principal objective of this article is to develop an overtly theological interpretive lens for assessing the ethics of human germ line genetic modification (GGM). In constructing this lens, I draw upon four selected doctrinal or thematic strands: Incarnation, resurrection, procreative mandate, and sin. In turn, I derive four corresponding moral claims: there is no Christian essentialist understanding of the body, the body cannot be perfected, offspring remain a good of marriage, and sin is a universal human disability. (...)
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  36.  35
    CRISPR immunity: a case study for justified somatic genetic modification?Eli Y. Adashi & Ivan Glenn Cohen - 2022 - Journal of Medical Ethics 48 (2):83-85.
    The current SARS-CoV-2 pandemic has killed thousands across the world. SARS-CoV-2 is the latest but surely not the last such global pandemic we will face. The biomedical response to such pandemics includes treatment, vaccination, and so on. In this paper, though, we argue that it is time to consider an additional strategy: the somatic enhancement of human immunity. We argue for this approach and consider bioethics objections we believe can be overcome.
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  37.  23
    It Is Time to Consult the Children: A Mother Who Faced Mitochondrial Replacement and Her Son Consider the Limits of Genetic Modification.Susan M. Wolf & Jacob S. Borgida - 2020 - American Journal of Bioethics 20 (8):41-43.
    Volume 20, Issue 8, August 2020, Page 41-43.
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  38.  27
    Designing Methuselah: an ethical argument against germline genetic modification to prolong human longevity.Isabelle L. Robertson - 2017 - Journal of Medical Ethics 43 (9):645-647.
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  39. Biomedical Ethics: Muslim Perspectives on Genetic Modification.Fatima Agha al Hayani - 2007 - Zygon 42:153-62.
     
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  40.  22
    Modality and Counterfactuals: Understanding the Role and Context of Metaphysical Underpinnings for Harm, Benefit and Identity Claims Arising from Genome Editing and Genetic Modification.Anthony Wrigley - 2022 - American Journal of Bioethics 22 (9):52-54.
    Deriving ethical conclusions from arguments that rely heavily on metaphysical foundations, as Parfit (1984) does in generating his Nonidentity Problem, is an approach fraught with problems. Sparrow...
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  41. International Approaches to Regulation of Human Genetic Modification.Darryl Macer - 2019 - Eubios Journal of Asian and International Bioethics 29 (1):4-7.
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  42.  38
    Introduction: Theological Anthropology and the Ethics of Human Germ Line Genetic Modification.N. Messer - 2012 - Christian Bioethics 18 (2):115-125.
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  43.  32
    Privacy, Liberty, Property, and the Genetic Modification of Humans.Adam D. Moore - 2005 - Journal of Philosophical Research 30 (9999):81-94.
  44.  20
    J. Rasko, G. O’Sullivan, and R. Ankeny, eds. The Ethics of Inheritable Genetic Modification: Cambridge: Cambridge University Press, 2006, 315 pp. + xxxv. ISBN 0-521-52973-5. [REVIEW]David B. Resnik - 2012 - Journal of Value Inquiry 46 (3):383-385.
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  45.  18
    Book Review: The ethics of inheritable genetic modification. A dividing line? [REVIEW]R. Iredale - 2006 - Nursing Ethics 13 (6):668-669.
  46. Genetic Protection Modifications: Moving Beyond the Binary Distinction Between Therapy and Enhancement for Human Genome Editing.Rasmus Bjerregaard Mikkelsen, Henriette Reventlow S. Frederiksen, Mickey Gjerris, Bjørn Holst, Poul Hyttel, Yonglun Luo, Kristine Freude & Peter Sandøe - 2019 - CRISPR Journal 2 (6):362-369.
    Current debate and policy surrounding the use of genetic editing in humans often relies on a binary distinction between therapy and human enhancement. In this paper, we argue that this dichotomy fails to take into account perhaps the most significant potential uses of CRISPR-Cas9 gene editing in humans. We argue that genetic treatment of sporadic Alzheimer’s disease, breast- and ovarian-cancer causing BRCA1/2 mutations and the introduction of HIV resistance in humans should be considered within a new category of (...)
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  47. Modification of farm animals by genetic engineering and immunomodulation.I. Wilmut - 1995 - In T. B. Mepham, G. A. Tucker & J. Wiseman (eds.), Issues in Agricultural Bioethics. Nottingham University Press. pp. 229--246.
     
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  48. Genetic immunization: enhancement or public health measure? (2nd edition).Tess Johnson - 2018 - In Sorin Hostiuc (ed.), Clinical Ethics at the Crossroads of Genetic and Reproductive Technologies. Academic Press. pp. Chapter 21.
    Imagine a future in which a country’s government is thinking about whether to pursue human enhancement. There are several ways that humans might be enhanced, among them physical aids, pharmaceutical interventions, and genetic modification. In this imagined scenario...
     
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  49. 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 raise serious (...)
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  50. Genetically Modifying Livestock for Improved Welfare: A Path Forward.Adam Shriver & Emilie McConnachie - 2018 - Journal of Agricultural and Environmental Ethics 31 (2):161-180.
    In recent years, humans’ ability to selectively modify genes has increased dramatically as a result of the development of new, more efficient, and easier genetic modification technology. In this paper, we argue in favor of using this technology to improve the welfare of agricultural animals. We first argue that using animals genetically modified for improved welfare is preferable to the current status quo. Nevertheless, the strongest argument against pursuing gene editing for welfare is that there are alternative approaches (...)
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