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  1. Can Enhancement Be Distinguished from Prevention in Genetic Medicine?Eric T. Juengst - 1997 - Journal of Medicine and Philosophy 22 (2):125-142.
    In discussions of the ethics of human gene therapy, it has become standard to draw a distinction between the use of human gene transfer techniques to treat health problems and their use to enhance or improve normal human traits. Some dispute the normative force of this distinction by arguing that it is undercut by the legitimate medical use of human gene transfer techniques to prevent disease - such as genetic engineering to bolster immune function, improve the efficiency of DNA repair, (...)
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  • Comparative ethical evaluation of epigenome editing and genome editing in medicine: first steps and future directions.Karla Alex & Eva C. Winkler - 2023 - Journal of Medical Ethics (doi: 10.1136/jme-2022-108888):1-9.
    Targeted modifications of the human epigenome, epigenome editing (EE), are around the corner. For EE, techniques similar to genome editing (GE) techniques are used. While in GE the genetic information is changed by directly modifying DNA, intervening in the epigenome requires modifying the configuration of DNA, for example, how it is folded. This does not come with alterations in the base sequence (‘genetic code’). To date, there is almost no ethical debate about EE, whereas the discussions about GE are voluminous. (...)
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  • Altering Humans—The Case For and Against Human Gene Therapy.Nils Holtug - 1997 - Cambridge Quarterly of Healthcare Ethics 6 (2):157-174.
    The case in favor of gene therapy is quite simple. Gene therapy is likely to improve the health and well-being of some people that are among the worst off in society, namely patients with painful and life-threatening diseases. However, two types of objection have been raised.
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  • Comparative ethical evaluation of epigenome editing and genome editing in medicine: first steps and future directions.Karla Alex & Eva C. Winkler - 2024 - Journal of Medical Ethics 50 (6):398-406.
    Targeted modifications of the human epigenome, epigenome editing (EE), are around the corner. For EE, techniques similar to genome editing (GE) techniques are used. While in GE the genetic information is changed by directly modifying DNA, intervening in the epigenome requires modifying the configuration of DNA, for example, how it is folded. This does not come with alterations in the base sequence (‘genetic code’). To date, there is almost no ethical debate about EE, whereas the discussions about GE are voluminous. (...)
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