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  1. CRISPR Gene-Therapy: A Critical Review of Ethical Concerns and a Proposal for Public Decision-Making.Victor Lange & Klemens Kappel - unknown
    CRISPR is currently viewed as the central tool for future gene therapy. Yet, many prominent scientists and bioethicists have expressed ethical concerns around CRISPR gene therapy. This paper provides a critical review of concerns about CRISPR gene therapy as expressed in the mainstream academic literature, paired with replies also generally found in that literature. The expressed concerns can be categorised into three types depending on whether they stress risk/benefit ratio, autonomy and informed consent, or concerns related to various aspects of (...)
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  • Intergenerational monitoring in clinical trials of germline gene editing.Bryan Cwik - 2020 - Journal of Medical Ethics 46 (3):183-187.
    Design of clinical trials for germline gene editing stretches current accepted standards for human subjects research. Among the challenges involved is a set of issues concerningintergenerational monitoring—long-term follow-up study of subjects and their descendants. Because changes made at the germline would be heritable, germline gene editing could have adverse effects on individuals’ health that can be passed on to future generations. Determining whether germline gene editing is safe and effective for clinical use thus may require intergenerational monitoring. The aim of (...)
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  • Trust in Science: CRISPR–Cas9 and the Ban on Human Germline Editing.Stephan Guttinger - 2018 - Science and Engineering Ethics 24 (4):1077-1096.
    In 2015 scientists called for a partial ban on genome editing in human germline cells. This call was a response to the rapid development of the CRISPR–Cas9 system, a molecular tool that allows researchers to modify genomic DNA in living organisms with high precision and ease of use. Importantly, the ban was meant to be a trust-building exercise that promises a ‘prudent’ way forward. The goal of this paper is to analyse whether the ban can deliver on this promise. To (...)
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  • Human germline editing in the era of CRISPR-Cas: risk and uncertainty, inter-generational responsibility, therapeutic legitimacy.Sebastian Schleidgen, Hans-Georg Dederer, Susan Sgodda, Stefan Cravcisin, Luca Lüneburg, Tobias Cantz & Thomas Heinemann - 2020 - BMC Medical Ethics 21 (1):1-12.
    BackgroundClustered Regularly Interspaced Short Palindromic Repeats-associated technology may allow for efficient and highly targeted gene editing in single-cell embryos. This possibility brings human germline editing into the focus of ethical and legal debates again.Main bodyAgainst this background, we explore essential ethical and legal questions of interventions into the human germline by means of CRISPR-Cas: How should issues of risk and uncertainty be handled? What responsibilities arise regarding future generations? Under which conditions can germline editing measures be therapeutically legitimized? For this (...)
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  • Initial heritable genome editing: mapping a responsible pathway from basic research to the clinic.Robert Ranisch, Katharina Trettenbach & Gardar Arnason - 2023 - Medicine, Health Care and Philosophy 26 (1):21-35.
    Following the Second Summit on Human Gene Editing in Hong Kong in 2018, where the birth of two girls with germline genome editing was revealed, the need for a responsible pathway to the clinical application of human germline genome editing has been repeatedly emphasised. This paper aims to contribute to the ongoing discussion on research ethics issues in germline genome editing by exploring key issues related to the initial applications of CRISPR in reproductive medicine. Following an overview of the current (...)
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  • Germline Genome Editing and the Functions of Consent.Robert Ranisch - 2017 - American Journal of Bioethics 17 (12):27-29.
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  • Gene Drives and Genome Modification in Nonhuman Animals: A Concern for Informed Consent?Joanna Smolenski - 2019 - Cambridge Quarterly of Healthcare Ethics 28 (1):93-99.
    In recent years, CRISPR-Cas9 has become one of the simplest and most cost-effective genetic engineering techniques among scientists and researchers aiming to alter genes in organisms. As Zika came to the fore as a global health crisis, many suggested the use of CRISPR-Cas9 gene drives in mosquitoes as a possible means to prevent the transmission of the virus without the need to subject humans to risky experimental treatments. This paper suggests that using gene drives or other forms of genome editing (...)
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  • Research on Controlled Drug Use: A Paradigm for Public Health Research in Sustainable Health.Evert van Leeuwen - 2016 - American Journal of Bioethics 16 (4):50-52.
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