Results for 'Human genetic resources'

1000+ found
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  1.  13
    Human Genetics Commission calls for tougher rules on use and storage of genetic data.Human Genetics Commission - 2003 - Human Reproduction and Genetic Ethics 9 (1):3.
  2.  39
    Making Babies: Reproductive Decisions and Genetic Technologies.Human Genetics Commission - 2006 - Jahrbuch für Wissenschaft Und Ethik 11 (1).
  3.  43
    Potential International Approaches to Ownership/Control of Human Genetic Resources.Catherine Rhodes - 2016 - Health Care Analysis 24 (3):260-277.
    In its governance activities for genetic resources, the international community has adopted various approaches to their ownership, including: free access; common heritage of mankind; intellectual property rights; and state sovereign rights. They have also created systems which combine elements of these approaches. While governance of plant and animal genetic resources is well-established internationally, there has not yet been a clear approach selected for human genetic resources. Based on assessment of the goals which international (...)
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  4.  23
    The case against sex selection.Genetics Alert Human - 2005 - Human Reproduction and Genetic Ethics 11 (1):3.
  5.  61
    Human Genetics and Politics as Mutually Beneficial Resources: The Case of the Kaiser Wilhelm Institute for Anthropology, Human Heredity and Eugenics During the Third Reich.Sheila Faith Weiss - 2006 - Journal of the History of Biology 39 (1):41-88.
    This essay analyzes one of Germany's former premier research institutions for biomedical research, the Kaiser Wilhelm Institute for Anthropology, Human Heredity and Eugenics (KWIA) as a test case for the way in which politics and human heredity served as resources for each other during the Third Reich. Examining the KWIA from this perspective brings us a step closer to answering the questions at the heart of most recent scholarship concerning the biomedical community under the swastika: (1) How (...)
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  6.  26
    Human genetic diversity, a critical resource for man's future.Hampton L. Carson - 1993 - Biology and Philosophy 8 (1):33-45.
    The human gene pool displays exuberant genetic variation; this is normal for a sexual species. Even small isolated populations contain a large percentage of the total variability, emphasizing the basic genetic unity of our species. As modern man spread across the world from its African source, the genetic basis for man''s unique mental acuity was retained everywhere. Nevertheless, some geographical genetic variation such as skin color, stature and physiognomy was established. These changes were biologically relatively (...)
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  7.  92
    Sharing the benefits of genetic resources: From biodiversity to human genetics.Doris Schroeder & Carolina Lasén-díaz - 2006 - Developing World Bioethics 6 (3):135–143.
    Benefit sharing aims to achieve an equitable exchange between the granting of access to a genetic resource and the provision of compensation. The Convention on Biological Diversity, adopted at the 1992 Earth Summit in Rio de Janeiro, is the only international legal instrument setting out obligations for sharing the benefits derived from the use of biodiversity. The CBD excludes human genetic resources from its scope, however, this article considers whether it should be expanded to include those (...)
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  8.  62
    News from the National Reference Center for Bioethics Literature (NRCBL) and the National Information Resource on Ethics and Human Genetics (NIREHG).National Reference Center for Bioet - 2007 - Kennedy Institute of Ethics Journal 17 (4):399-403.
  9.  39
    Searching across boundaries: National information resource on ethics and human genetics.Martina Darragh, Harriet Hutson Gray, Pat Milmoe McCarrick & Susan Cartier Poland - 2002 - Kennedy Institute of Ethics Journal 12 (1):103-113.
    In lieu of an abstract, here is a brief excerpt of the content:Kennedy Institute of Ethics Journal 12.1 (2002) 103-113 [Access article in PDF] Scope Note Update Searching Across Boundaries: National Information Resource on Ethics and Human Genetics* While indeed an historical moment, the announcement of the mapping of the human genome has been treated in the literature as a beginning—a new way to think about biology and the ways in which biological concepts are applied to medicine. Issues (...)
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  10.  73
    Equitable Access to Human Biological Resources in Developing Countries: Benefit Sharing Without Undue Inducement.Roger Scarlin Chennells - 2015 - Cham: Imprint: Springer.
    The main question explored by the book is: How can cross-border access to human genetic resources, such as blood or DNA samples, be governed in such a way as to achieve equity for vulnerable populations in developing countries? The book situates the field of genomic and genetic research within global health and research frameworks, describing the concerns that have been raised about the potential unfairness in exchanges during recent decades. Access to and sharing in the benefits (...)
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  11.  8
    Genebanking plant genetic resources in the postgenomic era.Sylvain Aubry - 2023 - Agriculture and Human Values 40 (3):961-971.
    Genebanking, the process of preserving genetic resources, is a central practice in the modern management of crop genetics, especially for the species used for food and agriculture. Closely interrelated networks of local, national and global actors are responsible for ex situ conservation. They all seek to make plant genetic resources accessible for all and now face new challenges arising from digitisation. Plant sciences are entering the postgenomic era, moving fast from initially providing a single reference genome (...)
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  12.  13
    Flattening and Unpacking Human Genetic Variation in Mexico, Postwar to Present.Víctor Hugo Anaya-Muñoz, Vivette García-Deister & Edna Suárez-Díaz - 2017 - Science in Context 30 (1):89-112.
    ArgumentThis paper analyzes the research strategies of three different cases in the study of human genetics in Mexico – the work of Rubén Lisker in the 1960s, INMEGEN's mapping of Mexican genomic diversity between 2004 and 2009, and the analysis of Native American variation by Andrés Moreno and his colleagues in contemporary research. We make a distinction between an approach that incorporates multiple disciplinary resources into sampling design and interpretation (unpacking), from one that privileges pragmatic considerations over more (...)
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  13.  42
    Vicissitudes of benefit sharing of crop genetic resources: Downstream and upstream.Bram de Jonge & Michiel Korthals - 2006 - Developing World Bioethics 6 (3):144–157.
    ABSTRACT In this article, we will first give a historic overview of the concept of benefit sharing and its appearance in official agreements, particularly with respect to crop genetic resources. It will become clear that, at present, benefit sharing is primarily considered as an instrument of compensation or exchange, and thus refers to commutative justice. However, we believe that such a narrow interpretation of benefit sharing disregards, and even undermines, much of its (historical) content and potency, especially where (...)
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  14.  9
    Screening Out Controversy: Human Genetics, Emerging Techniques of Diagnosis, and the Origins of the Social Issues Committee of the American Society of Human Genetics, 1964–1973.M. X. Mitchell - 2017 - Journal of the History of Biology 50 (2):425-456.
    In the years following World War II, and increasingly during the 1960s and 1970s, professional scientific societies developed internal sub-committees to address the social implications of their scientific expertise. This article explores the early years of one such committee, the American Society of Human Genetics’ “Social Issues Committee,” founded in 1967. Although the committee’s name might suggest it was founded to increase the ASHG’s public and policy engagement, exploration of the committee’s early years reveals a more complicated reality. Affronted (...)
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  15.  7
    Vicissitudes of Benefit Sharing of Crop Genetic Resources: Downstream and Upstream.Michiel Korthals Bram De Jonge - 2006 - Developing World Bioethics 6 (3):144-157.
    In this article, we will first give a historic overview of the concept of benefit sharing and its appearance in official agreements, particularly with respect to crop genetic resources. It will become clear that, at present, benefit sharing is primarily considered as an instrument of compensation or exchange, and thus refers to commutative justice. However, we believe that such a narrow interpretation of benefit sharing disregards, and even undermines, much of its (historical) content and potency, especially where crop (...)
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  16.  33
    Cultural Challenges to Biotechnology: Native American Genetic Resources and the Concept of Cultural Harm.Rebecca Tsosie - 2007 - Journal of Law, Medicine and Ethics 35 (3):396-411.
    This article examines the intercultural context of issues related to genetic research on Native peoples. In particular, the article probes the disconnect between Western and indigenous concepts of property, ownership, and privacy, and examines the harms to Native peoples that may arise from unauthorized uses of blood and tissue samples or the information derived from such samples. The article concludes that existing legal and ethical frameworks are inadequate to address Native peoples' rights to their genetic resources and (...)
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  17.  24
    Cultural Challenges to Biotechnology: Native American Genetic Resources and the Concept of Cultural Harm.Rebecca Tsosie - 2007 - Journal of Law, Medicine and Ethics 35 (3):396-411.
    Our society currently faces many complex and perplexing issues related to biotechnology, including the need to define the outer boundaries of genetic research on human beings and the need to protect individual and group rights to human tissue and the knowledge gained from the study of that tissue. Scientists have increasingly become interested in studying so-called “population isolates” to discover the nature and location of genes that are unique to particular groups. Indigenous peoples are often targeted by (...)
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  18.  22
    Native American crop diversity, genetic resource conservation, and the policy of neglect.Gary P. Nabhan - 1985 - Agriculture and Human Values 2 (3):14-17.
  19.  11
    Innovation and the commons: lessons from the governance of genetic resources in potato breeding.Koen Beumer, Dirk Stemerding & Jac A. A. Swart - 2021 - Agriculture and Human Values 38 (2):525-539.
    This article explores the relation between innovation and resources that are governed as commons by looking at the governance of potato genetic resources, especially in the context of the emergence ofhybrid diploid potato breedingthat will enable potato propagation through true seeds. As a new breeding tool, hybrid diploid potato breeding may not only revolutionize traditional potato breeding practices, it may also strongly affect current governance modes of potato genetic resources as a commons. Contrary to conventional (...)
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  20.  33
    Sovereign and property rights over plant genetic resources.Carlos M. Correa - 1995 - Agriculture and Human Values 12 (4):58-79.
    The existence of sovereign rights over genetic resources is today well recognized in international law. However, the legal status of such resources in terms of property rights is still unclear. The consideration of this issue requires a clear distinction between physical and intangible property. Legislation in developed countries has extended patent protection to genetic resources, in addition to the protection of plant varieties via breeders' rights. The extension of protection and the implementation of the TRIPs (...)
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  21.  14
    From texts to enacting practices: defining fair and equitable research principles for plant genetic resources in West Africa.F. Jankowski, S. Louafi, N. A. Kane, M. Diol, A. Diao Camara, J.-L. Pham, C. Berthouly-Salazar & A. Barnaud - 2020 - Agriculture and Human Values 37 (4):1083-1094.
    Collaborative research practices in the field of plant genetic resources must follow the principles of fairness and equity as defined in the Convention on Biological Diversity (CBD) and in the International Treaty on Plant Genetic Resources for Food and Agriculture (ITPGRFA). In this context the concepts of fairness and equity generally refer to the substantive and procedural dimensions associated with sharing the benefits of this research. But neither term is clearly defined by these international treaties, and (...)
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  22.  33
    Genetic frontiers: Challenges for humanity and our religious traditions.Philip Hefner - 2007 - Zygon 42 (1):183-192.
    Abstract.Genetic research and its applications pose a significant challenge today, in particular to religious communities. The most critical challenge is to our understanding of human nature and values. This article surveys the challenges and the resources that the monotheistic religions can bring to bear in response. It is important for those religious communities to communicate to the larger society both their common beliefs and values and the diversity among them.
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  23. Age of Genetics and the age of biotechnology on the way to editing of, human genome.Valentin Teodorovich Cheshko (ed.) - 2016 - Moscow Russia: Kurs-INFRA-M.
    The book discusses some of the stages in the development of genetics, biotechnology in terms of basic strategy of humanity towards the formation of a modern agrarian civilization. Agricultural civilization is seen as part of the biosphere and primary user of its energy flows. Consistently a steps of creation of management tools for live objects to increasing the number of food security of mankind are outlines. The elements of the biosphere degradation started in the results of human activities, and (...)
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  24.  47
    The Epic of Evolution: A Course Developmental Project.Russell Merle Genet - 1998 - Zygon 33 (4):635-644.
    The Epic of Evolution is a course taught at Northern Arizona University. It engages the task of formulating a new epic myth that is based on the physical, natural, social, and cultural sciences. It aims to serve the need of providing meaning for human living in the vast and complex universe that the sciences now depict for us. It is an interdisciplinary effort in an academic setting that is often divided by specializations; it focuses on values in a climate (...)
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  25.  61
    Ethical Guidelines for Human Embryonic Stem Cell Research (A Recommended Manuscript).Chinese National Human Genome Center at Shanghai Ethics Committee - 2004 - Kennedy Institute of Ethics Journal 14 (1):47-54.
    In lieu of an abstract, here is a brief excerpt of the content:Kennedy Institute of Ethics Journal 14.1 (2004) 47-54 [Access article in PDF] Ethical Guidelines for Human Embryonic Stem Cell Research*(A Recommended Manuscript) Adopted on 16 October 2001Revised on 20 August 2002 Ethics Committee of the Chinese National Human Genome Center at Shanghai, Shanghai 201203 Human embryonic stem cell (ES) research is a great project in the frontier of biomedical science for the twenty-first century. Be- cause (...)
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  26.  18
    The Double-Edged Helix: Social Implications of Genetics in a Diverse Society.Joseph S. Alper, Catherine Ard, Adrienne Asch, Peter Conrad, Jon Beckwith, American Cancer Society Research Professor of Microbiology and Molecular Genetics Jon Beckwith, Harry Coplan Professor of Social Sciences Peter Conrad & Lisa N. Geller - 2002
    The rapidly changing field of genetics affects society through advances in health-care and through implications of genetic research. This study addresses the impacts of new genetic discoveries and technologies on different segments of today's society. The book begins with a chapter on genetic complexity, and subsequent chapters discuss moral and ethical questions arising from today's genetics from the perspectives of health care professionals, the media, the general public, special interest groups and commercial interests.
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  27. The Ethics of Genetic Engineering.Roberta M. Berry - 2007 - Routledge.
    Human genetic engineering may soon be possible. The gathering debate about this prospect already threatens to become mired in irresolvable disagreement. After surveying the scientific and technological developments that have brought us to this pass, _The Ethics of Genetic Engineering_ focuses on the ethical and policy debate, noting the deep divide that separates proponents and opponents. The book locates the source of this divide in differing framing assumptions: reductionist pluralist on one side, holist communitarian on the other. (...)
     
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  28.  23
    Genetic Research and Aboriginal and Torres Strait Islander Australians.Emma Kowal, Glenn Pearson, Chris S. Peacock, Sarra E. Jamieson & Jenefer M. Blackwell - 2012 - Journal of Bioethical Inquiry 9 (4):419-432.
    While human genetic research promises to deliver a range of health benefits to the population, genetic research that takes place in Indigenous communities has proven controversial. Indigenous peoples have raised concerns, including a lack of benefit to their communities, a diversion of attention and resources from non-genetic causes of health disparities and racism in health care, a reinforcement of “victim-blaming” approaches to health inequalities, and possible misuse of blood and tissue samples. Drawing on the international (...)
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  29.  8
    Conocimiento, ambiente y poder: perspectivas desde la ecología política: segundo libro colectivo de la Red de Estudios sobre Sociedad y Medio Ambiente (RESMA).Mauricio Genet Guzmán, Leonardo Tyrtania & Claudio Garibay Orozco (eds.) - 2018 - Morelia, Michoacán, México: Centro de Investigaciones en Geografía Ambiental.
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  30.  37
    New Genetics, New Indentities.Paul Atkinson - 2006 - Routledge. Edited by Peter E. Glasner & Helen Greenslade.
    New genetic technologies and their applications in biomedicine have important implications for social identities in contemporary societies. In medicine, new genetics is increasingly important for the identification of health and disease, the imputation of personal and familial risk, and the moral status of those identified as having genetic susceptibility for inherited conditions. There are also consequent transformations in national and ethnic collective identity, and the body and its investigation is potentially transformed by the possibilities of genetic investigations (...)
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  31.  9
    Genetics and the Law.Aubrey Milunsky, George J. Annas, National Genetics Foundation & American Society of Law and Medicine - 2012 - Springer.
    Society has historically not taken a benign view of genetic disease. The laws permitting sterilization of the mentally re tarded~ and those proscribing consanguineous marriages are but two examples. Indeed as far back as the 5th-10th centuries, B.C.E., consanguineous unions were outlawed (Leviticus XVIII, 6). Case law has traditionally tended toward the conservative. It is reactive rather than directive, exerting its influence only after an individual or group has sustained injury and brought suit. In contrast, state legislatures have not (...)
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  32.  15
    Court of Appeal allows tissue typing for human embryos under strict conditions.Fertilisation Human - 2003 - Human Reproduction and Genetic Ethics 9 (2):23.
  33.  24
    Genetic databases and pharmacogenetics: introduction.Richard E. Ashcroft & Adam M. Hedgecoe - 2006 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 37 (3):499-502.
    Since the inception of the Human Genome Project, human genetics has frequently been conducted through big science projects, combining academic, state and industrial methods, interests and resources. The legitimacy of such projects has been linked to national prestige and images of the nation, the purity of scientific endeavour, the entrepreneurial spirit, medical progress and the public health. A key complication in these discourses is that large-scale genetic research has yet to show major results when considered in (...)
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  34.  16
    House of Lords rejects challenge to therapeutic cloning.Fertilisation Human - 2003 - Human Reproduction and Genetic Ethics 9 (2):23.
  35.  11
    Genetic databases and pharmacogenetics: introduction.Richard E. Ashcroft & Adam M. Hedgecoe - 2004 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 37 (3):499-502.
    Since the inception of the Human Genome Project, human genetics has frequently been conducted through big science projects, combining academic, state and industrial methods, interests and resources. The legitimacy of such projects has been linked to national prestige and images of the nation, the purity of scientific endeavour, the entrepreneurial spirit, medical progress and the public health. A key complication in these discourses is that large-scale genetic research has yet to show major results when considered in (...)
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  36.  93
    Equal Opportunity and Genetic Intervention.Allen Buchanan - 1995 - Social Philosophy and Policy 12 (2):105 - 35.
    What does the prospect of being able to alter a human being's “natural assets” by genetic engineering imply for our understanding of the requirements of justice, and of equal opportunity in particular? Although their proponents are reluctant to admit it, some of the most prominent contemporary theories of justice yield a quite radical conclusion: If safe and effective intervention in the genetic “natural lottery” becomes feasible, there will be at least a strong prima facie case for doing (...)
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  37.  24
    Genetic Biotechnology and Evolutionary Theory: Some Unsolicited Advice to Rhetors.David Depew - 2001 - Journal of Medical Humanities 22 (1):15-28.
    In his book The Biotech Century Jeremy Rifkin makes arguments about the dangers of market-driven genetic biotechnology in medical and agricultural contexts. Believing that Darwinism is too compromised by a competitive ethic to resist capitalist depredations of the genetic commons, and perhaps hoping to pick up anti-Darwinian allies, he turns for support to unorthodox non-Darwinian views of evolution. The Darwinian tradition, more closely examined, contains resources that might better serve his argument. The robust tradition associated with Theodosius (...)
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  38. The human genome as public: Justifications and implications.Michelle J. Bayefsky - 2016 - Bioethics 31 (3):209-219.
    Since the human genome was decoded, great emphasis has been placed on the unique, personal nature of the genome, along with the benefits that personalized medicine can bring to individuals and the importance of safeguarding genetic privacy. As a result, an equally important aspect of the human genome – its common nature – has been underappreciated and underrepresented in the ethics literature and policy dialogue surrounding genetics and genomics. This article will argue that, just as the personal (...)
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  39. Funding the scientific foundations of race policies : Ernst rüdin and the impact of career resources on pyschiatric genetics, ca. 1910-1945.Volker Roelcke - 2006 - In Wolfgang Uwe Eckart (ed.), Man, Medicine, and the State: The Human Body As an Object of Government Sponsored Medical Research in the 20th Century. Steiner.
  40.  20
    The informed consent aftermath of the genetic revolution. An Italian example of implementation.Federica Artizzu - 2008 - Medicine, Health Care and Philosophy 11 (2):181-190.
    A great part of human genetics research is carried out collecting data and building large databases of biological samples that are in a non-anonymous format. These constitute a valuable resource for future research. The construction of such databases and tissue banks facilitates important scientific progress. However, biobanks have been recognized as ethically problematic because they contain thousands of data that could expose individuals and populations to discrimination, stigmatization and psychological stress if misused. Informed consent is regarded as a cornerstone (...)
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  41.  35
    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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  42. Sex Selection and Preimplantation Genetic Diagnosis: A Response to the Ethics Committee of the American Society for Reproductive Medicine.Edgar Dahl & Julian Savulescu - 2000 - Human Reproduction 15 (9):1879-1880.
    In its recent statement 'Sex Selection and Preimplantation Genetic Diagnosis', the Ethics Committee of the American Society of Reproductive Medicine concluded that preimplantation genetic diagnosis for sex selection for non-medical reasons should be discouraged because it poses a risk of unwarranted gender bias, social harm, and results in the diversion of medical resources from genuine medical need. We critically examine the arguments presented against sex selection using preimplantation genetic diagnosis. We argue that sex selection should be (...)
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  43.  81
    Genetic and reproductive technologies in the light of religious dialogue.Stephen M. Modell - 2007 - Zygon 42 (1):163-182.
    Abstract.Since the gene splicing debates of the 1980s, the public has been exposed to an ongoing sequence of genetic and reproductive technologies. Many issue areas have outcomes that lose track of people's inner values or engender opposing religious viewpoints defying final resolution. This essay relocates the discussion of what is an acceptable application from the individual to the societal level, examining technologies that stand to address large numbers of people and thus call for policy resolution, rather than individual fiat, (...)
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  44.  39
    Human Nuclear Genome Transfer : Clearing the Underbrush.Françoise Baylis - 2016 - Bioethics 31 (1):7-19.
    In this article, I argue that there is no compelling therapeutic ‘need’ for human nuclear genome transfer to prevent mitochondrial diseases caused by mtDNA mutations. At most there is a strong interest in this technology on the part of some women and couples at risk of having children with mitochondrial disease, and perhaps also a ‘want’ on the part of some researchers who see the technology as a useful precedent – one that provides them with ‘a quiet way station’ (...)
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  45.  11
    Mouse models of human single gene disorders I: Non‐transgenic mice.Susan M. Darling & Catherine M. Abbott - 1992 - Bioessays 14 (6):359-366.
    Mouse models of human genetic disorders provide a valuable resource for investigating the pathogenesis of genetic disease and for testing potential therapies. The high degree of resolution of linkage mapping in the mouse allows mutant phenotypes to be mapped precisely which, combined with the accurate definition of areas of homology between the mouse and human genomes, greatly facilitates the identification of mouse models. We describe here mouse models of human single gene disorders dividing them into (...)
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  46. 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 (...)
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  47.  16
    Changing Human Nature: Ecology, Ethics, Genes, and God by James C. Peterson.Dolores L. Christie - 2013 - Journal of the Society of Christian Ethics 33 (1):187-188.
    In lieu of an abstract, here is a brief excerpt of the content:Reviewed by:Changing Human Nature: Ecology, Ethics, Genes, and God by James C. PetersonDolores L. ChristieChanging Human Nature: Ecology, Ethics, Genes, and God James C. Peterson Grand Rapids, Mich.: Eerdmans, 2010. 259 pp. $18.00Grounding himself in the Christian tradition, James Peterson argues for the moral efficacy of human genetic manipulation. Interpreting intentional intervention as part of human stewardship rather than as a wrongful interference with (...)
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  48.  11
    Genomic Justice for Native Americans: Impact of the Havasupai Case on Genetic Research.Nanibaa' A. Garrison - 2013 - Science, Technology, and Human Values 38 (2):201-223.
    In 2004, the Havasupai Tribe filed a lawsuit against the Arizona Board of Regents and Arizona State University researchers upon discovering their DNA samples, initially collected for genetic studies on type 2 diabetes, had been used in several other genetic studies. The lawsuit reached a settlement in April 2010 that included monetary compensation and return of DNA samples to the Havasupai but left no legal precedent for researchers. Through semistructured interviews, institutional review board chairs and human genetics (...)
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  49.  15
    Patenting human genes: Chinese academic articles’ portrayal of gene patents.Li Du - 2018 - BMC Medical Ethics 19 (1):29.
    The patenting of human genes has been the subject of debate for decades. While China has gradually come to play an important role in the global genomics-based testing and treatment market, little is known about Chinese scholars’ perspectives on patent protection for human genes. A content analysis of academic literature was conducted to identify Chinese scholars’ concerns regarding gene patents, including benefits and risks of patenting human genes, attitudes that researchers hold towards gene patenting, and any legal (...)
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  50.  13
    Laboratory Specimens and Genetic Privacy: Evolution of Legal Theory.Michelle Huckaby Lewis - 2013 - Journal of Law, Medicine and Ethics 41 (s1):65-68.
    Human biological tissue samples are an invaluable resource for biomedical research designed to find causes of diseases and their treatments. Controversy has arisen, however, when research has been conducted with laboratory specimens either without the consent of the source of the specimen or when the research conducted with the specimen has expanded beyond the scope of the original consent agreement. Moreover, disputes have arisen regarding which party, the researcher or the source of the specimen, has control over who may (...)
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