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  1. Environmental biosafety in the age of Synthetic Biology: Do we really need a radical new approach?Victor de Lorenzo - 2010 - Bioessays 32 (11):926-931.
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  • Ethical issues in manipulating the human germ line.Marc Lappé - 1991 - Journal of Medicine and Philosophy 16 (6):621-639.
    This essay examines the arguments for and against working towards the objective of human germ line engineering for medical purposes. Germ line changes which result as a secondary consequence of other well designed and ethically acceptable manipulations of somatic cells to cure an otherwise fatal disease can be seen as acceptable. More serious objections apply to intentional germ line interventions because of the unacceptability of using a person solely as a vehicle for creating uncertain genetic change in his descendants. It (...)
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  • The precautionary principle: Scientific uncertainty and omitted research in the context of GMO use and release. [REVIEW]Anne Ingeborg Myhr & Terje Traavik - 2002 - Journal of Agricultural and Environmental Ethics 15 (1):73-86.
    Commercialization of genetically modified organisms (GMOs) have sparked profound controversies concerning adequate approaches to risk regulation. Scientific uncertainty and ambiguity, omitted research areas, and lack of basic knowledge crucial to risk assessmentshave become apparent. The objective of this article is to discuss the policy and practical implementation of the Precautionary Principle. A major conclusion is that the void in scientific understanding concerning risks posed by secondary effects and the complexity ofcause-effect relations warrant further research. Initiatives to approach the acceptance or (...)
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  • Germline Manipulation and Our Future Worlds.John Harris - 2015 - American Journal of Bioethics 15 (12):30-34.
    Two genetic technologies capable of making heritable changes to the human genome have revived interest in, and in some quarters a very familiar panic concerning, so-called germline interventions. These technologies are: most recently the use of CRISPR/Cas9 to edit genes in non-viable IVF zygotes and Mitochondrial Replacement Therapy the use of which was approved in principle in a landmark vote earlier this year by the United Kingdom Parliament. The possibility of using either of these techniques in humans has encountered the (...)
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  • How the choice of experimental organism matters: Epistemological reflections on an aspect of biological practice.Richard M. Burian - 1993 - Journal of the History of Biology 26 (2):351-367.
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  • From humanized mice to human disease: guiding extrapolation from model to target.Monika Piotrowska - 2013 - Biology and Philosophy 28 (3):439-455.
    Extrapolation from a well-understood base population to a less-understood target population can fail if the base and target populations are not sufficiently similar. Differences between laboratory mice and humans, for example, can hinder extrapolation in medical research. Mice that carry a partial or complete human physiological system, known as humanized mice, are supposed to make extrapolation more reliable by simulating a variety of human diseases. But what justifies our belief that these mice are similar enough to their human counterparts to (...)
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  • (1 other version)Model Organisms as Models: Understanding the 'Lingua Franca' of the Human Genome Project.Rachel A. Ankeny - 2001 - Philosophy of Science 68 (S3):S251-S261.
    Through an examination of the actual research strategies and assumptions underlying the Human Genome Project, it is argued that the epistemic basis of the initial model organism programs is not best understood as reasoning via causal analog models. In order to answer a series of questions about what is being modeled and what claims about the models are warranted, a descriptive epistemological method is employed that uses historical techniques to develop detailed accounts which, in turn, help to reveal forms of (...)
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  • Human germ-line therapy: The case for its development and use.Burke K. Zimmerman - 1991 - Journal of Medicine and Philosophy 16 (6):593-612.
    The rationale for pursuing the development and use of Germ-Line selection and modification techniques is examined in this essay. The argument is put forth that it is the moral obligation of the medical profession to make available to the public any technology that can cure or prevent pathology leading to death and disability, in both the present and future generations. Society should pursue the development of strategies for preventing or correcting, at the Germ-Line level, genetic features that will lead to, (...)
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  • (1 other version)Model organisms as models: Understanding the 'lingua Franca' of the human genome project.Rachel A. Ankeny - 2001 - Proceedings of the Philosophy of Science Association 2001 (3):S251-.
    Through an examination of the actual research strategies and assumptions underlying the Human Genome Project (HGP), it is argued that the epistemic basis of the initial model organism programs is not best understood as reasoning via causal analog models (CAMs). In order to answer a series of questions about what is being modeled and what claims about the models are warranted, a descriptive epistemological method is employed that uses historical techniques to develop detailed accounts which, in turn, help to reveal (...)
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  • Theologians Testing Transhumanism.Ted Peters - 2015 - Theology and Science 13 (2):130–149.
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  • CRISPR/Cas9 and Germline Modification: New Difficulties in Obtaining Informed Consent.Joanna Smolenski - 2015 - American Journal of Bioethics 15 (12):35-37.
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  • Extrapolation from Animal Models.Kenneth F. Schaffner - 2001 - In Peter McLaughlin, Peter Machamer & Rick Grush (eds.), Theory and Method in the Neurosciences. Pittsburgh University Press. pp. 200.
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  • Model systems in developmental biology.Jessica A. Bolker - 1995 - Bioessays 17 (5):451-455.
    The practical criteria by which developmental biologists choose their model systems have evolutionary correlates. The result is a sample that is not merely small, but biased in particular ways, for example towards species with rapid, highly canalized development. These biases influence both data collection and interpretation, and our views of how development works and which aspects of it are important.
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