Results for 'RNA editing'

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  1. DNA Habitats and Their RNA Inhabitants.Guenther Witzany (ed.) - 2015
    Most molecular biological concepts derive from physical chemical assumptions about the genetic code that are basically more than 40 years old. Additionally, systems biology, another quantitative approach, investigates the sum of interrelations to obtain a more holistic picture of nucleotide sequence order. Recent empirical data on genetic code compositions and rearrangements by mobile genetic elements and non-coding RNAs, together with results of virus research and their role in evolution, does not really fit into these concepts and compel a re-examination. In (...)
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  2. Natural Genome Editing from a Biocommunicative Perspective.Guenther Witzany - 2011 - Biosemiotics 4 (3):349-368.
    Natural genome editing from a biocommunicative perspective is the competent agent-driven generation and integration of meaningful nucleotide sequences into pre-existing genomic content arrangements, and the ability to (re-)combine and (re-)regulate them according to context-dependent (i.e. adaptational) purposes of the host organism. Natural genome editing integrates both natural editing of genetic code and epigenetic marking that determines genetic reading patterns. As agents that edit genetic code and epigenetically mark genomic structures, viral and subviral agents have been suggested because (...)
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  3. On the Possibility of Constructive Neutral Evolution.Arlin Stoltzfus - 1999 - Journal of Molecular Evolution 49 (2):169-181.
    The neutral theory often is presented as a theory of "noise" or silent changes at an isolated "molecular level", relevant to marking the steady pace of divergence, but not to the origin of biological structure, function, or complexity. Nevertheless, precisely these issues can be addressed in neutral models, such as those elaborated here in regard to scrambled ciliate genes, gRNA-mediated RNA editing, the transition from self-splicing to spliceosomal splicing, and the retention of duplicate genes. All of these are instances (...)
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  4. Artificial and Natural Genetic Information Processing.Guenther Witzany - 2017 - In Mark Burgin & Wolfgang Hofkirchner (eds.), Information Studies and the Quest for Transdisciplinarity. Singapore: World Scientific. pp. 523-547.
    Conventional methods of genetic engineering and more recent genome editing techniques focus on identifying genetic target sequences for manipulation. This is a result of historical concept of the gene which was also the main assumption of the ENCODE project designed to identify all functional elements in the human genome sequence. However, the theoretical core concept changed dramatically. The old concept of genetic sequences which can be assembled and manipulated like molecular bricks has problems in explaining the natural genome-editing (...)
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  5. Crucial steps to life: From chemical reactions to code using agents.Witzany Guenther - 2016 - Biosystems 140:49-57.
    The concepts of the origin of the genetic code and the definitions of life changed dramatically after the RNA world hypothesis. Main narratives in molecular biology and genetics such as the “central dogma,” “one gene one protein” and “non-coding DNA is junk” were falsified meanwhile. RNA moved from the transition intermediate molecule into centre stage. Additionally the abundance of empirical data concerning nonrandom genetic change operators such as the variety of mobile genetic elements, persistent viruses and defectives do not fit (...)
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  6. RNA’s Role in the Origins of Life: An Agentic ‘Manager’, or Recipient of ‘Off-loaded’ Constraints?John E. Stewart - 2021 - Biosemiotics 14 (3):643-650.
    In his Target Article, Terrence Deacon develops simple models that assist in understanding the role of RNA in the origins of life. However, his models fail to adequately represent an important evolutionary dynamic. Central to this dynamic is the selection that impinges on RNA molecules in the context of their association with proto-metabolisms. This selection shapes the role of RNA in the emergence of life. When this evolutionary dynamic is appropriately taken into account, it predicts a role for RNA that (...)
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  7. That is life: communicating RNA networks from viruses and cells in continuous interaction.Guenther Witzany - 2019 - Annals of the New York Academy of Sciences:1-16.
    All the conserved detailed results of evolution stored in DNA must be read, transcribed, and translated via an RNAmediated process. This is required for the development and growth of each individual cell. Thus, all known living organisms fundamentally depend on these RNA-mediated processes. In most cases, they are interconnected with other RNAs and their associated protein complexes and function in a strictly coordinated hierarchy of temporal and spatial steps (i.e., an RNA network). Clearly, all cellular life as we know it (...)
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  8. The Non-Coding RNA Ontology : a comprehensive resource for the unification of non-coding RNA biology.Huang Jingshan, Eilbeck Karen, Barry Smith, A. Blake Judith, Dou Dejing, Huang Weili, A. Natale Darren, Ruttenberg Alan, Huan Jun & T. Zimmermann Michael - 2016 - Journal of Biomedical Semantics 7 (1).
    In recent years, sequencing technologies have enabled the identification of a wide range of non-coding RNAs (ncRNAs). Unfortunately, annotation and integration of ncRNA data has lagged behind their identification. Given the large quantity of information being obtained in this area, there emerges an urgent need to integrate what is being discovered by a broad range of relevant communities. To this end, the Non-Coding RNA Ontology (NCRO) is being developed to provide a systematically structured and precisely defined controlled vocabulary for the (...)
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  9. Editorial: Genome Invading RNA Networks.L. P. Villarreal & Guenther Witzany - 2018 - Frontiers in Microbiology 9:1-3.
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  10. Gene Editing, the Mystic Threat to Human Dignity.Vera Lúcia Raposo - 2019 - Journal of Bioethical Inquiry 16 (2):249-257.
    Many arguments have been made against gene editing. This paper addresses the commonly invoked argument that gene editing violates human dignity and is ultimately a subversion of human nature. There are several drawbacks to this argument. Above all, the concept of what human dignity means is unclear. It is not possible to condemn a practice that violates human dignity if we do not know exactly what is being violated. The argument’s entire reasoning is thus undermined. Analyses of the (...)
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  11. The development of non-coding RNA ontology.Jingshan Huang, Karen Eilbeck, Barry Smith, Judith Blake, Deijing Dou, Weili Huang, Darren Natale, Alan Ruttenberg, Jun Huan, Michael Zimmermann, Guoqian Jiang, Yu Lin, Bin Wu, Harrison Strachan, Nisansa de Silva & Mohan Vamsi Kasukurthi - 2016 - International Journal of Data Mining and Bioinformatics 15 (3):214--232.
    Identification of non-coding RNAs (ncRNAs) has been significantly improved over the past decade. On the other hand, semantic annotation of ncRNA data is facing critical challenges due to the lack of a comprehensive ontology to serve as common data elements and data exchange standards in the field. We developed the Non-Coding RNA Ontology (NCRO) to handle this situation. By providing a formally defined ncRNA controlled vocabulary, the NCRO aims to fill a specific and highly needed niche in semantic annotation of (...)
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  12. A domain ontology for the non-coding RNA field.Jingshan Huang, Karen Eilbeck, Judith A. Blake, Dejing Dou, Darren A. Natale, Alan Ruttenberg, Barry Smith, Michael T. Zimmermann, Guoqian Jiang & Yu Lin - 2015 - In Huang Jingshan, Eilbeck Karen, Blake Judith A., Dou Dejing, Natale Darren A., Ruttenberg Alan, Smith Barry, Zimmermann Michael T., Jiang Guoqian & Lin Yu (eds.), IEEE International Conference on Bioinformatics and Biomedicine (IEEE BIBM 2015). pp. 621-624.
    Identification of non-coding RNAs (ncRNAs) has been significantly enhanced due to the rapid advancement in sequencing technologies. On the other hand, semantic annotation of ncRNA data lag behind their identification, and there is a great need to effectively integrate discovery from relevant communities. To this end, the Non-Coding RNA Ontology (NCRO) is being developed to provide a precisely defined ncRNA controlled vocabulary, which can fill a specific and highly needed niche in unification of ncRNA biology.
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  13. Germline edits: Trust ethics review process.Julian Savulescu, Chris Gyngell & Thomas Douglas - 2015 - Nature 520.
    Summary: Edward Lanphier and colleagues contend that human germline editing is an unethical technology because it could have unpredictable effects on future generations. In our view, such misgivings do not justify their proposed moratorium.
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  14. Seconde édition révisée et augmentée de Spinoza, le spinozisme et les fondements de la sécularisation (2nd edition).Jacques J. Rozenberg - 2023 - Amazon.
    Spinoza, le spinozisme et les fondements de la sécularisation est un ouvrage dédié à la mémoire d’Emmanuel Levinas, dont l’auteur a été l’élève durant plusieurs années. Il vise, à travers une analyse d’ordre philosophique, historique, épistémologique et théologique, à mettre au jour les conditions d’émergence interrelatées du spinozisme et de la sécularisation. Il présente une recherche interdisciplinaire devant permettre d’éclairer l’origine des difficultés théoriques que ce système philosophique présente. Ce volume est le premier d’une pentalogie consacrée à Spinoza et au (...)
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  15. Genome editing: slipping down toward Eugenics?Davide Battisti - 2019 - Medicina Historica 3 (3):206-218.
    In this paper, I will present the empirical version of the slippery slope argument (SSA) in the field of genome editing. According to the SSA, if we adopt germline manipulation of embryos we will eventually end up performing or allowing something morally reprehensible, such as new coercive eugenics. I will investigate the actual possibility of sliding towards eugenics: thus, I will examine enhancement and eugenics both in the classical and liberal versions, through the lens of SSA. In the first (...)
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  16. Self-empowerment of life through RNA networks, cells and viruses.Villarreal Luis & Witzany Guenther - 2023 - F1000 Research 12 (138).
    Our understanding of the key players in evolution and of the development of all organisms in all domains of life has been aided by current knowledge about RNA stem-loop groups, their proposed interaction motifs in an early RNA world and their regulative roles in all steps and substeps of nearly all cellular processes, such as replication, transcription, translation, repair, immunity and epigenetic marking. Cooperative evolution was enabled by promiscuous interactions between single-stranded regions in the loops of naturally forming stem-loop structures (...)
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  17. Edited Transcript of the Class (Dr. of 6-L Dg).Maxson J. McDowell, Joenine E. Roberts & Rachel McRoberts - manuscript
    (NOTE: This is a transcript of the class. FOR THE FULL PAPER please click on "Maxson J McDowell" above.) An edited transcript of an experiment performed within a class on dream interpretation. Knowing only the dreamer’s age and gender, we interpreted his dream from its text. Our interpretation included predictions about the dreamer's psychological issues, and about his defenses. It also identified a series of jokes within the dream which would tend to penetrate the dreamer's defenses. When we had finished (...)
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  18. Public views on gene editing and its uses.Hub Zwart, George Gaskell & Imre Bard - 2017 - Nature Biotechnology 35 (11):121-123.
    Rapid advances in genome editing and its potential application in medicine and enhancement have been hotly debated by scientists and ethicists. Although it has been proposed that germline gene editing be discouraged for the time being1, the use of gene editing in somatic human cells in the clinical context remains controversial, particularly for interventions aimed at enhancement2. In a report on human genome editing, the US National Academies of Sciences, Engineering, and Medicine (NAS; Washington, DC) notes (...)
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  19. Editing”: A Productive Metaphor for Regulating CRISPR.Ben Merriman - 2015 - American Journal of Bioethics 15 (12):62-64.
    The metaphor of “gene editing” has been employed widely in popular discussions of CRISPR technology. The editing metaphor obscures the physical mechanism of action in CRISPR techniques, and understates the present frequency of off-target effects. However, the editing metaphor may be a useful means to think about approaches to regulating the future use of CRISPR. Conceiving of CRISPR as an information technology recalls the highly computational, information-oriented context of genomic research in which CRISPR has emerged. More importantly, (...)
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  20. Reproductive genome editing interventions are therapeutic, sometimes.César Palacios-González - 2021 - Bioethics 35 (6):557-562.
    In this paper I argue that some human reproductive genome editing interventions can be therapeutic in nature, and thus that it is false that all such interventions just create healthy individuals. I do this by showing that the conditions established by a therapy definition are met by certain reproductive genome editing interventions. I then defend this position against two objections: (a) reproductive genome editing interventions do not attain one of the two conditions for something to be a (...)
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  21. Reasons to Genome Edit and Metaphysical Essentialism about Human Identity.Tomasz Żuradzki & Vilius Dranseika - 2022 - American Journal of Bioethics 22 (9):34-36.
    In this commentary paper, we are taking one step further in questioning the central assumptions in the bioethical debates about reproductive technologies. We argue that the very distinction between “person affecting” and “identity affecting” interventions is based on a questionable form of material-origin essentialism. Questioning of this form of essentialist approach to human identity allows treating genome editing and genetic selection as more similar than they are taken to be in the standard approaches. It would also challenge the idea (...)
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  22. Gene Editing and Journal Editing.Trevor Stammers - 2018 - The New Bioethics 24 (1):1-1.
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  23. The Secrets of Life - The Vital Roles of RNA Networks and Viruses.Luis Villarreal & Guenther Witzany - 2020 - In Nancy Dess (ed.), A Multidisciplinary Aproach to Embodiment - Understanding Human Being. London: Routledge. pp. 20-26.
    Viruses and related infectious genetic parasites are the most abundant biological agents on this planet. They invade all cellular organisms, are key agents in the generation of adaptive and innate immune systems, and drive nearly all regulatory processes within living cells.
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  24. The DNA Habitat and its RNA Inhabitants.Luis Villarreal & Guenther Witzany - 2013 - Genomics Insights 6:1-12.
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  25. The Editioning of Gardens.Gavin Keeney - manuscript
    Many of the following literary-critical texts (not all quite conventional “long-form” essays) originally appeared on the Landscape Agency New York website, LANY Archive-Grotto, on the web portal Geocities, between the years 1997 and 2008 – i.e., over a period of roughly ten years. Versions of some were published in various journals, academic or otherwise. In re-presenting them here, the intention is to trace a proverbial “red thread” that crosses the entirety of the work, arguably what might be denoted the works-based (...)
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  26. Two genetic codes: Repetitive syntax for active non-coding RNAs; non-repetitive syntax for the DNA archives.Witzany Guenther - 2017 - Communicative and Integrative Biology 10 (2):e1297352-1 - e1297352-12.
    Current knowledge of the RNA world indicates 2 different genetic codes being present throughout the living world. In contrast to non-coding RNAs that are built of repetitive nucleotide syntax, the sequences that serve as templates for proteins share—as main characteristics—a non-repetitive syntax. Whereas non-coding RNAs build groups that serve as regulatory tools in nearly all genetic processes, the coding sections represent the evolutionarily successful function of the genetic information storage medium. This indicates that the differences in their syntax structure are (...)
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  27. Покоління , Міжгенераційні Відносини, Політика Міжгенераційних Відносин. Багатомовний Компендіум - Edition 2017.Kurt Lüscher, Andreas Hoff, Andrzej Klimczuk, Giovanni Lamura, Marta Renzi, Paulo de Salles Oliveira, Mariano Sánchez, Gil Viry, Eric Widmer, Ágnes Neményi, Enikő Veress, Cecilia Bjursell, Ann-Kristin Boström, Gražina Rapolienė, Sarmitė Mikulionienė, Sema Oğlak, Ayşe Canatan, Ana Vujović, Ajda Svetelšek, Nedim Gavranović, Olga Ivashchenko, Valentina Shipovskaya, Qing Lin & Xiying Wang - 2017 - Universität Konstanz.
    K. Lüscher, A. Klimczuk, Generations, intergenerational relationships, generational policy: A multilingual compendium, 17 languages, Universität Konstanz, Konstanz 2017, 428pp. TS - BibTeX M4 - Citavi.
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  28. Reproductive Embryo Editing: Attending to Justice.Inmaculada De Melo-Martín - 2022 - Hastings Center Report 52 (4):26-33.
    The use of genome embryo editing tools in reproduction is often touted as a way to ensure the birth of healthy and genetically related children. Many would agree that this is a worthy goal. The purpose of this paper is to argue that, if we are concerned with justice, accepting such goal as morally appropriate commits one to rejecting the development of embryo editing for reproductive purposes. This is so because safer and more effective means exist that can (...)
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  29. Bioethics in Canada, second edition.Anthony Skelton (ed.) - 2019 - Don Mills: Oxford University Press.
    This is the second edition of the textbook Bioethics in Canada. It is the most up to date bioethics textbook on the Canadian market. Twenty-nine of its 54 contributions are by Canadians. All the chapters carried over from the first edition are revised in full (especially the chapters on obligations to the global poor, on medical assistance in dying, and on public health). It comprises *new* chapters on emerging genetic technologies and on indigenous peoples' health. It contains *new* case studies (...)
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  30. Обзор статей, опубликованных в журнале «European Science Editing» (Европейское научное редактирование) в 2018 году.Алимова Наталья Константиновна - 2020 - Научная Периодика: Проблемы И Решения 2020 (7):1-8.
    «European Science Editing» (ESE) является официальным журналом Европейской ассоциации научных редакторов (EASE). ESE это рецензируемый журнал с открытым доступом, который публикует оригинальные исследования, рецензии и комментарии по всем аспектам научного, научного редактирования и публикации.
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  31.  36
    Introduction to "Diálogos : A Special Edition on Environmental Philosophy".Shawn Simpson - 2024 - Diálogos. Revista de Filosofía de la Universidad de Puerto Rico 55 (114):9-16. Translated by Etienne Helmer.
    Environmental philosophy plays an important role, directly and indirectly, in many parts of society, including land and wildlife management (Leopold, 1949; Minteer, 2015), political activism (Abbey, 1968; Malm, 2020),and technological research and development (Baum & Owe, 2022; Donhauser et al., 2021). Environmental philosophy uncovers the ethical relationships existing between humans and the living and non-living world. It reveals the nuances of our scientific ecological concepts. And it tries to tell us how we might act – individually or collectively – to (...)
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  32. Preface to the print edition of the New Testament in Russian. [REVIEW]Andrej Poleev - 2021 - Enzymes 19.
    Preface to the print edition of the New Testament in Russian, edited and published by Dr. Andrej Poleev in Berlin, 2021, 622 pages.
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  33. The Clarendon Edition of the Works of John Locke: Correspondence: Volume Viii. Letters 3287-3648.John Locke (ed.) - 1976 - Clarendon Press.
    A scholarly edition of The Clarendon Edition of the Works of John Locke: Correspondence: Letters 3287-3648 by E. S. de Beer. The edition presents an authoritative text, together with an introduction, commentary notes, and scholarly apparatus.
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  34. The Duty to Edit the Human Germline.Parker Crutchfield - 2022 - Res Publica 29 (3):347-365.
    Many people find the manipulation of the human germline—editing the DNA of sperm or egg cells such that these genetic changes are passed to the resulting offspring—to be morally impermissible. In this paper, I argue for the claim that editing the human germline is morally permissible. My argument starts with the claim that outcome uncertainty regarding the effects of germline editing shows that the duty to not harm cannot ground the prohibition of germline editing. Instead, if (...)
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  35. forall x (UBC Edition).P. D. Magnus & Jonathan Jenkins Ichikawa - 2020 - Creative Commons: Attribution-ShareAlike 3.0.
    This is an open-access introductory logic textbook, prepared by Jonathan Ichikawa, based on P.D. Magnus's forallx. This (v2.0, July 2020) is intended as a stable, ready-for-teaching edition.
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  36. Ethical Discourse on Epigenetics and Genome Editing: The Risk of (Epi-) genetic Determinism and Scientifically Controversial Basic Assumptions.Karla Alex & Eva C. Winkler - 2021 - In Michael Welker, Eva Winkler & John Witte Jr (eds.), The Impact of Health Care on Character Formation, Ethical Education, and the Communication of Values in Late Modern Pluralistic Societies. Leipzig: Evangelische Verlagsanstalt & Wipf & Stock Publishers. pp. 77-99.
    Excerpt: 1. Introduction This chapter provides insight into the diverse ethical debates on genetics and epigenetics. Much controversy surrounds debates about intervening into the germline genome of human embryos, with catchwords such as genome editing, designer baby, and CRISPR/Cas. The idea that it is possible to design a child according to one’s personal preferences is, however, a quite distorted view of what is actually possible with new gene technologies and gene therapies. These are much more limited than the (...) and design metaphors suggest. Such metaphors are therefore highly problematic phrases in the context of new gene technologies, for two reasons. On one hand, to design a child of choice by modifying the genome would require modifying any gene of choice, which is more than can be done with current gene technologies, such as CRISPR/Cas. On the other hand, a modification of genes would need to be enough to create any characteristic of choice in the future child. The latter presupposes the assumption of genetic determinism. Moreover, the CRISPR/Cas technology can not only be used in a potentially therapeutic manner at the germline level. In addition, there is the (more likely) scenario of a future clinical therapeutic use of these new gene technologies for modifying the DNA sequence of other cells of the body (somatic genome editing). There is also the option of modifying the epigenome, that is, the spatial configuration of DNA (epigenome editing) (see table 1). Like genetics and genome editing, epigenetics has been at the center of recent popular scientific and ethical discourse as well as scientific debates. The concept of epigenetics has given rise to very different notions of inheritability and responsibility for health, which, however, are oftentimes based on scientifically controversial basic assumptions. That there continues to be covert genetic determinism in the form of epigenetic determinism (see table 2) in debates about epigenetics has been pointed out in ethical analyses of epigenetics. Neither genetic determinism nor epigenetic determinism has been confirmed scientifically. It is therefore important to recognize the concepts that are discussed (and sometimes harshly criticized) in debates about genome editing and epigenetics—for example, concepts about the causal role of DNA for our own life course. This importance is based on the fact that if we understand such controversial concepts, we will be able to remain critical when evaluating scientific knowledge and ethical arguments about genome editing and epigenetics. This chapter, therefore, explains some of these concepts. For an ethical analysis of epigenetics as well as of genome editing, it is necessary to understand and critically reflect upon the underlying concepts of genetic determinism and other, related -isms. The following section offers a detailed introduction to these -isms (section 2; see also table 2). Section 3 provides an ethical analysis of genome editing and epigenetics based on the explanations in section 2. Section 3 focuses on inheritability and responsibility, justice, safety, the problem of consent, and the effects of genome editing and epigenetics on embryos and future generations. This section does not discuss in detail further points that can be found in ethical debates about epigenetics as well as in ethical debates about genome editing. These points include (among others): • fear that the findings of epigenetics and that the methods of genome editing are misused—this also with respect to eugenics and enhancement; • naturalness—an issue we mention in passing a few times in the following analysis; • a possible connection between the genome/epigenome and the concept of human dignity, and the derived danger of instrumentalization and infringement of autonomy when intervening in the genome or epigenome. Since current discourse about ethical issues associated with genome editing focuses mainly on germline interventions, which are, for instance, interventions into a human embryo’s genome, we mainly focus on germline interventions when comparing the debates on genome editing and on epigenetics in section 3. (shrink)
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  37. Self-empowerment of life through RNA networks, cells and viruses. [REVIEW]Witzany Guenther - 2023 - F1000Research 12 (138):1-27.
    Our understanding of the key players in evolution and of the development of all organisms in all domains of life has been aided by current knowledge about RNA stem-loop groups, their proposed interaction motifs in an early RNA world and their regulative roles in all steps and substeps of nearly all cellular processes, such as replication, transcription, translation, repair, immunity and epigenetic marking. Cooperative evolution was enabled by promiscuous interactions between single-stranded regions in the loops of naturally forming stem-loop structures (...)
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  38. Great Minds Think Different: Preserving Cognitive Diversity in an Age of Gene Editing.Jonny Anomaly, Julian Savulescu & Christopher Gyngell - 2020 - Bioethics 34 (1):81-89.
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  39. Moral Phenomenology (2nd edition).Uriah Kriegel - 2021 - In Hugh LaFollette (ed.), The International Encyclopedia of Ethics, 2nd print edition. Oxford: Blackwell.
    Moral phenomenology is the dedicated study of the experiential dimension of our moral inner life – of the phenomenal character of moral mental states. Many different questions arise within moral phenomenology, but three stand out. The first concerns the scope of moral experience: How much of our moral mental life is experienced by us? The second concerns the nature of moral experience: What is it like to undergo the various kinds of moral experience we have? The third concerns the theoretical (...)
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  40. Renascent Rationalism, 5th Edition (5th edition).Helier J. Robinson - 2008
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  41. Affecting future individuals: Why and when germline genome editing entails a greater moral obligation towards progeny.Davide Battisti - 2021 - Bioethics 35 (5):1-9.
    Assisted reproductive technologies have greatly increased our control over reproductive choices, leading some bioethicists to argue that we face unprecedented moral obligations towards progeny. Several models attempting to balance the principle of procreative autonomy with these obligations have been proposed. The least demanding is the minimal threshold model (MTM), according to which every reproductive choice is permissible, except creating children whose lives will not be worth living. Hence, as long as the future child is likely to have a life worth (...)
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  42. Snipping or editing? Parsimony in the chimpanzee mind-reading debate: Elliott Sober: Ockham’s razors: A user’s manual. Cambridge: Cambridge University Press, 322 pp, $ 29.99 PB, $ 99.99 HB.Kristin Andrews - 2016 - Metascience 25 (3):377-386.
    on ). Advice about how to move forward on the mindreading debate, particularly when it comes to overcoming the logical problem, is much needed in comparative psychology. In chapter 4 of his book Ockham’s Razors, Elliott Sober takes on the task by suggesting how we might uncover the mechanism that mediates between the environmental stimuli that is visible to all, and chimpanzee social behavior. I argue that Sober's proposed method for deciding between the behaivor-reading and mindreading hypotheses fails given the (...)
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  43. Introduction to the guest edited section: world government.Attila Tanyi - 2017 - Journal of Global Ethics 13 (3):260-263.
    In this introduction, I first present the general problematic of the special section. Our world faces several existential challenges war, and global injustice) and some would argue that the only adequate answer to these challenges is setting up a world government. I then introduce the contributions that comprise the scholarly body of the special section: Andrić on global democracy; Hahn on global political reconciliation; Pinheiro Walla on Kant and world government; Miklós & Tanyi on institutional consequentialism and world governance. Lastly, (...)
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  44. Thomas Reid: An Inquiry into the Human Mind on the Principles of Common Sense: A Critical Edition.Derek R. Brookes (ed.) - 1997 - University Park, Pa.: Edinburgh University Press.
    Thomas Reid (1710–96) is increasingly being seen as a highly significant philosopher and a central figure in the Scottish Enlightenment. This new edition of Reid's classic philosophical text in the philosophy of mind at long last gives scholars a complete, critically edited text of the Inquiry. The critical text is based on the fourth life-time edition (1785). A selection of related documents showing the development of Reid's thought, textual notes, bibliographical details of previous editions and a full introduction by the (...)
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  45. 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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  46. Morality and the Emotions. Edited by Carla Bagnoli. (Oxford UP, 2011. Pp. vi + 304. Price £37.50.).Jonathan Way - 2013 - Philosophical Quarterly 63 (252):610-612.
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  47. Gibt es einen therapeutischen Imperativ zum genome editing in der menschlichen Keimbahn? [Is there a therapeutic imperative for editing the human germline genome? / Existe-t-il un impératif thérapeutique à l'édition du génome dans la lignée germinale humaine].Karla Alex & Christoph Rehmann-Sutter - 2022 - URPP Human Reproduction Reloaded | H2R (University of Zurich), Working Paper Series, 05/2022. Zurich and Geneva: Seismo 1 (5):1-21.
    Abstract: This working paper focuses on the question whether there is a therapeutic imperative that, in specific situations, would oblige us to perform genome editing at the germline level in the context of assisted reproduction. The answer to this central question is discussed primarily with reference to specific scenarios where preimplantation genetic diagnosis (PGD) does not represent an acceptable alternative to germline genome editing based on either medical, or ethical, or – from the perspective of the potential parents (...)
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  48. The New French Edition of Pierre Duhem’s The Aim and Structure of the Physical Theory.Stoffel Jean-François - 2017 - Transversal: International Journal for the Historiography of Science 2:160-162.
    The New French Edition of Pierre Duhem’s The Aim and Structure of the Physical Theory reviewed by Jean-François Stoffel.
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  49. The First Nine Months of Editing Wittgenstein - Letters from G.E.M. Anscombe and Rush Rhees to G.H. von Wright.Christian Eric Erbacher & Sophia Victoria Krebs - 2015 - Nordic Wittgenstein Review 4 (1):195-231.
    The National Library of Finland and the Von Wright and Wittgenstein Archives at the University of Helsinki keep the collected correspondence of Georg Henrik von Wright, Wittgenstein’s friend and successor at Cambridge and one of the three literary executors of Wittgenstein’s Nachlass. Among von Wright’s correspondence partners, Elizabeth Anscombe and Rush Rhees are of special interest to Wittgenstein scholars as the two other trustees of the Wittgenstein papers. Thus, von Wright’s collections held in Finland promise to shed light on the (...)
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  50. A critical review of the ethical and legal issues in human germline gene editing: Considering human rights and a call for an African perspective.B. Shozi - 2020 - South African Journal of Bioethics and Law 13 (1):62.
    In the wake of the advent of genome editing technology CRISPR-Cas9 (clustered regularly interspaced palindromic repeat (CRISPR)-associated protein 9), there has been a global debate around the implications of manipulating the human genome. While CRISPR-based germline gene editing is new, the debate about the ethics of gene editing is not – for several decades now, scholars have debated the ethics of making heritable changes to the human genome. The arguments that have been raised both for and against (...)
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