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  1. The dawn of active genetics.Valentino M. Gantz & Ethan Bier - 2016 - Bioessays 38 (1):50-63.
    On December 18, 2014, a yellow female fly quietly emerged from her pupal case. What made her unique was that she had only one parent carrying a mutant allele of this classic recessive locus. Then, one generation later, after mating with a wild‐type male, all her offspring displayed the same recessive yellow phenotype. Further analysis of other such yellow females revealed that the construct causing the mutation was converting the opposing chromosome with 95% efficiency. These simple results, seen also in (...)
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  • States of knowledge: the co-production of science and social order.Sheila Jasanoff (ed.) - 2004 - New York: Routledge.
    In the past twenty years, the field of science and technology studies (S&TS) has made considerable progress toward illuminating the relationship between scientific knowledge and political power. These insights have not yet been synthesized or presented in a form that systematically highlights the connections between S&TS and other social sciences. This timely collection of essays by some of the leading scholars in the field attempts to fill that gap. The book develops the theme of "co-production", showing how scientific knowledge both (...)
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  • The Anthropocene as the End of Nature?Keje Boersma - 2022 - Environmental Ethics 44 (3):195-219.
    In this article, I address and argue against the tendency to understand the anthropocene as inaugurating the end of nature. I conduct two key moves. First, by way of an engagement with the concept of anthropocene technology I explain how understanding the anthropocene as the end of nature prevents us from recognizing what the anthropocene is all about: interventionism. Secondly, I illustrate how a nondualist understanding of the human-nature relation allows us to recognize interventionism as the hallmark of the anthropocene (...)
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  • Governing Gene Drive Technologies: A Qualitative Interview Study.N. de Graeff, Karin R. Jongsma, Jeantine E. Lunshof & Annelien L. Bredenoord - 2022 - AJOB Empirical Bioethics 13 (2):107-124.
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  • Thinking Like a Mall: Environmental Philosophy After the End of Nature.Steven Vogel - 2015 - Cambridge, MA, USA: MIT Press.
    A provocative argument that environmental thinking would be better off if it dropped the concept of “nature” altogether and spoke instead of the built environment. -/- Environmentalism, in theory and practice, is concerned with protecting nature. But if we have now reached “the end of nature,” as Bill McKibben and other environmental thinkers have declared, what is there left to protect? In Thinking like a Mall, Steven Vogel argues that environmental thinking would be better off if it dropped the concept (...)
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  • Driven to extinction? The ethics of eradicating mosquitoes with gene-drive technologies.Jonathan Pugh - 2016 - Journal of Medical Ethics 42 (9):578-581.
    Mosquito-borne diseases represent a significant global disease burden, and recent outbreaks of such diseases have led to calls to reduce mosquito populations. Furthermore, advances in ‘gene-drive’ technology have raised the prospect of eradicating certain species of mosquito via genetic modification. This technology has attracted a great deal of media attention, and the idea of using gene-drive technology to eradicate mosquitoes has been met with criticism in the public domain. In this paper, I shall dispel two moral objections that have been (...)
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  • An Ethical Overview of the CRISPR-Based Elimination of Anopheles gambiae to Combat Malaria.India Jane Wise & Pascal Borry - 2022 - Journal of Bioethical Inquiry 19 (3):371-380.
    Approximately a quarter of a billion people around the world suffer from malaria each year. Most cases are located in sub-Saharan Africa where Anopheles gambiae mosquitoes are the principal vectors of this public health problem. With the use of CRISPR-based gene drives, the population of mosquitoes can be modified, eventually causing their extinction. First, we discuss the moral status of the organism and argue that using genetically modified mosquitoes to combat malaria should not be abandoned based on some moral value (...)
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  • Experts’ moral views on gene drive technologies: a qualitative interview study.Annelien L. Bredenoord, Karin R. Jongsma & N. de Graeff - 2021 - BMC Medical Ethics 22 (1):1-15.
    BackgroundGene drive technologies (GDTs) promote the rapid spread of a particular genetic element within a population of non-human organisms. Potential applications of GDTs include the control of insect vectors, invasive species and agricultural pests. Whether, and if so, under what conditions, GDTs should be deployed is hotly debated. Although broad stances in this debate have been described, the convictions that inform the moral views of the experts shaping these technologies and related policies have not been examined in depth in the (...)
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  • The Co-production of Science, Ethics, and Emotion.Martyn Pickersgill - 2012 - Science, Technology, and Human Values 37 (6):579-603.
    The concept of “ethical research” holds considerable sway over the ways in which contemporary biomedical, natural, and social science investigations are funded, regulated, and practiced within a variety of countries. Some commentators have viewed this “new” means of governance positively; others, however, have been resoundingly critical, regarding it as restrictive and ethics bodies and regulations unfit for the task they have been set. Regardless, it is clear that science today is an “ethical” business. The ways in which formal and informal (...)
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  • The ethical landscape of gene drive research.Daniel Edward Callies - 2019 - Bioethics 33 (9):1091-1097.
    Gene drive technology has immense potential. The ability to bypass the laws of Mendelian inheritance and almost ensure the transmission of specific genetic material to future generations creates boundless possibilities. But alongside these boundless possibilities are major social and ethical issues. This article aims to introduce gene drive technology, some of its potential applications, and some of the social and ethical issues that arise during research into the technology. For example, is investigation into gene drives hubristic? Would applications of gene (...)
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  • Ethics of community engagement in field trials of genetically modified mosquitoes.David B. Resnik - 2018 - Developing World Bioethics 18 (2):135-143.
    Effective community engagement is an important legal, ethical, and practical prerequisite for conducting field trials of genetically modified mosquitoes, because these studies can substantially impact communities and it is usually not possible to obtain informed consent from each community member. Researchers who are planning to conduct field trials should develop a robust community engagement strategy that meets widely recognized standards for seeking approval from the affected population, such as timeliness, consent, information sharing, transparency, understanding, responsiveness, mutual understanding, inclusiveness, and respectfulness. (...)
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  • Wild Animals in Our Backyard. A Contextual Approach to the Intrinsic Value of Animals.Jac A. A. Swart & Jozef Keulartz - 2011 - Acta Biotheoretica 59 (2):185-200.
    As a reflection on recent debates on the value of wild animals we examine the question of the intrinsic value of wild animals in both natural and man-made surroundings. We examine the concepts being wild and domesticated. In our approach we consider animals as dependent on their environment, whether it is a human or a natural environment. Stressing this dependence we argue that a distinction can be made between three different interpretations of a wild animal’s intrinsic value: a species-specific, a (...)
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  • Active genetics comes alive.Valentino M. Gantz & Ethan Bier - 2022 - Bioessays 44 (8):2100279.
    Clustered Regularly Interspaced Short Palindromic Repeats (CRISPR)‐based “active genetic” elements developed in 2015 bypassed the fundamental rules of traditional genetics. Inherited in a super‐Mendelian fashion, such selfish genetic entities offered a variety of potential applications including: gene‐drives to disseminate gene cassettes carrying desired traits throughout insect populations to control disease vectors or pest species, allelic drives biasing inheritance of preferred allelic variants, neutralizing genetic elements to delete and replace or to halt the spread of gene‐drives, split‐drives with the core constituent (...)
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  • (1 other version)Beyond Mendelian Genetics: Anticipatory Biomedical Ethics and Policy Implications for the Use of CRISPR Together with Gene Drive in Humans.Michael W. Nestor & Richard L. Wilson - 2020 - Journal of Bioethical Inquiry 17 (1):133-144.
    Clustered regularly interspaced short palindromic repeats genome editing has already reinvented the direction of genetic and stem cell research. For more complex diseases it allows scientists to simultaneously create multiple genetic changes to a single cell. Technologies for correcting multiple mutations in an in vivo system are already in development. On the surface, the advent and use of gene editing technologies is a powerful tool to reduce human suffering by eradicating complex disease that has a genetic etiology. Gene drives are (...)
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  • De-extinction and Taking Control of Earth's “Metabolism”.Christopher J. Preston - 2017 - Hastings Center Report 47 (S2):S37-S42.
    In a laboratory on a university campus in Santa Cruz, California, Ben Novak is doing everything he can to bring Ectopistes migratorius back from the dead. Using techniques now available in genome reading and gene synthesis, he and paleogenomicist Beth Shapiro hope that, by 2032, a flock of passenger pigeons ten thousand or more strong will have resumed an ecologically significant role in the mast forests of the Eastern United States. Novak knows—and the International Union for Conservation of Nature (IUCN) (...)
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  • Climate Change, Ethics, and the Wildness of Wild Animals.Clare Palmer - 2016 - In Bernice Bovenkerk & Jozef Keulartz (eds.), Animal Ethics in the Age of Humans: Blurring Boundaries in Human-Animal Relationships. Cham: Springer.
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  • Precautionary Reasoning in Environmental and Public Health Policy.David B. Resnik - 2021 - Springer Verlag.
    This book fills a gap in the literature on the Precautionary Principle by placing the principle within the wider context of precautionary reasoning and uses philosophical arguments and case studies to demonstrate when it does—and does not—apply. The book invites the reader to take a step back from the controversy surrounding the Precautionary Principle and consider the overarching rationales for responding to threats to the environment or public health. It provides practical guidance and probing insight for the intended audience, including (...)
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  • (1 other version)Beyond Mendelian Genetics: Anticipatory Biomedical Ethics and Policy Implications for the Use of CRISPR Together with Gene Drive in Humans.Michael Nestor & Richard Wilson - forthcoming - Ethics in Biology, Engineering and Medicine: An International Journal.
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  • Justifying an Intentional Species Extinction: The Case of Anopheles gambiae.Daniel Edward Callies & Yasha Rohwer - 2022 - Environmental Values 31 (2):193-210.
    Each year, over 200 million people are infected with the malaria parasite, nearly half a million of whom succumb to the disease. Emerging genetic technologies could, in theory, eliminate the burden of malaria throughout the world by intentionally eradicating the mosquitoes that transmit the disease. In this paper, we offer an ethical examination of the intentional eradication of Anopheles gambiae, the main malaria vector of sub-Saharan Africa. In our evaluation, we focus on two main considerations: the benefit of alleviating the (...)
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  • Teilhard de Chardin’s oeuvre within an ongoing discussion of a gene drive release for public health reasons.Anto Čartolovni - 2017 - Life Sciences, Society and Policy 13 (1):1-15.
    Within the domain of public health, vector-borne diseases are among the most vehemently discussed issues. Recent scientific breakthroughs in genome editing technology provided a solution to this issue in the form of a gene drive that might decrease and even eradicate vector-borne diseases. Gene drives are engineered, and designed genes that can break typical inheritance rules and be passed to almost all of the carrier’s offspring. This genome editing and gene drive technology has become a powerful tool for ecological and (...)
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  • Regulating animals with gene drive systems: lessons from the regulatory assessment of a genetically engineered mosquito.Zahra Meghani & Jennifer Kuzma - 2018 - Journal of Responsible Innovation 5 (S1).
    For the purposes of conservation or suppression of species, gene drive technology has significant potential. Theoretically speaking, with the release of even relatively few animals with gene drive systems in an ecosystem, beneficial or harmful genes could be introduced into the entire wild-type population of that species. Given the profound impact that gene drives could have on species and ecosystems, their use is a highly contentious issue. Communities and groups have differing beliefs about nature and its conservation or preservation, as (...)
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  • Informed consent and community engagement in open field research: lessons for gene drive science.Jerome Amir Singh - 2019 - BMC Medical Ethics 20 (1):54.
    The development of the CRISPR/Cas9 gene editing system has generated new possibilities for the use of gene drive constructs to reduce or suppress mosquito populations to levels that do not support disease transmission. Despite this prospect, social resistance to genetically modified organisms remains high. Gene drive open field research thus raises important questions regarding what is owed to those who may not consent to such research, or those could be affected by the proposed research, but whose consent is not solicited. (...)
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