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  1. How Smart are Smart Materials? A Conceptual and Ethical Analysis of Smart Lifelike Materials for the Design of Regenerative Valve Implants.Annelien L. Bredenoord, Carlijn V. C. Bouten, Karin R. Jongsma & Anne-Floor J. de Kanter - 2023 - Science and Engineering Ethics 29 (5):1-18.
    It may soon become possible not just to replace, but to re-grow healthy tissues after injury or disease, because of innovations in the field of Regenerative Medicine. One particularly promising innovation is a regenerative valve implant to treat people with heart valve disease. These implants are fabricated from so-called ‘smart’, ‘lifelike’ materials. Implanted inside a heart, these implants stimulate re-growth of a healthy, living heart valve. While the technological development advances, the ethical implications of this new technology are still unclear (...)
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  • Genomes, gender and the psychodynamics of a scientific crisis: A psychoanalytic reading of Michael Crichton’s genomics novels.Hub Zwart - 2015 - New Genetics and Society 34 (1):1-24.
    Michael Crichton (1942–2008) was a prolific writer of “science novels”, portraying the psychodynamics and sociodynamics of genomics and other NBIC (Nanotechnology, Biotechnology, Information technology and Cognitive science) fields, fostering critical reflection on their societal dimensions. Science novels may serve as “literary experiments”, as windows into the (future) impacts of current research. Although on the surface level Crichton’s books may be seen as entertaining bestsellers, an in-depth reading allows them to emerge as exploratory exercises, usable as course material for science students. (...)
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  • Organoids as hybrids: ethical implications for the exchange of human tissues.Sarah N. Boers, Johannes J. M. van Delden & Annelien L. Bredenoord - 2019 - Journal of Medical Ethics 45 (2):131-139.
    Recent developments in biotechnology allow for the generation of increasingly complex products out of human tissues, for example, human stem cell lines, synthetic embryo-like structures and organoids. These developments are coupled with growing commercial interests. Although commercialisation can spark the scientific and clinical promises, profit-making out of human tissues is ethically contentious and known to raise public concern. The traditional bioethical frames of gift versus market are inapt to capture the resulting practical and ethical complexities. Therefore, we propose an alternative (...)
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  • New perspectives in the history of twentieth-century life sciences: historical, historiographical and epistemological themes.Robert Meunier & Kärin Nickelsen - 2018 - History and Philosophy of the Life Sciences 40 (1):19.
    The history of twentieth-century life sciences is not exactly a new topic. However, in view of the increasingly rapid development of the life sciences themselves over the past decades, some of the well-established narratives are worth revisiting. Taking stock of where we stand on these issues was the aim of a conference in 2015, entitled “Perspectives for the History of Life Sciences”. The papers in this topical collection are based on work presented and discussed at and around this meeting. Just (...)
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  • Bringing in the controversy: re-politicizing the de-politicized strategy of ethics committees.Malin Ideland, Tora Holmberg & Lonneke Poort - 2013 - Life Sciences, Society and Policy 9 (1):1-13.
    Human/animal relations are potentially controversial and biotechnologically produced animals and animal-like creatures – bio-objects such as transgenics, clones, cybrids and other hybrids – have often created lively political debate since they challenge established social and moral norms. Ethical issues regarding the human/animal relations in biotechnological developments have at times been widely debated in many European countries and beyond. However, the general trend is a move away from parliamentary and public debate towards institutionalized ethics and technified expert panels. We explore by (...)
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  • Biobanks as Exteriorized Memories of Life.Emanuele Clarizio - 2022 - Philosophy and Technology 35 (1):1-18.
    The aim of this article is to consider biobanks through the conceptual tools of French Thought and twentieth-century French philosophy of technology. Firstly, two pairs of authors and their respective conceptions of the relationship between technics and memory are considered: on the one hand, Jacques Derrida and Bernard Stiegler, who thought of memory and technics on the model of writing; on the other hand, Henri Bergson and André Leroi-Gourhan, who thought of memory as linked to biological life, and of technics (...)
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  • Recombinant DNA and Genome-editing Technologies: Embodied Utopias and Heterotopias.Eva Šlesingerová - 2021 - Body and Society 27 (2):32-57.
    Recombinant DNA technology is an essential area of life engineering. The main aim of research in this field is to experimentally explore the possibilities of repairing damaged human DNA, healing or enhancing future human bodies. Based on ethnographic research in a Czech biochemical laboratory, the article explores biotechnological corporealities and their specific ontology through dealings with bio-objects, the bodywork of scientists. Using the complementary concepts of utopia and heterotopia, the text addresses the situation of bodies and bio-objects in a laboratory. (...)
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  • Regimes of Evidence in Complexity Sciences.Fabrizio Li Vigni - 2021 - Perspectives on Science 29 (1):62-103.
    Since their inception in the 1980s, complexity sciences have been described as a revolutionary new domain of research. By describing some of the practices and assumptions of its representatives, the present article shows that this field is an association of subdisciplines laying on existing disciplinary footholds. The general question guiding us here is: On what basis do complexity scientists consider their inquiry methods and results as valuable? To answer it, I describe five “epistemic argumentative regimes,” namely the ways in which (...)
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  • Translational neonatology research: transformative encounters across species and disciplines.Mie S. Dam, Per T. Sangild & Mette N. Svendsen - 2018 - History and Philosophy of the Life Sciences 40 (1):21.
    This paper explores the laborious and intimate work of turning bodies of research animals into models of human patients. Based on ethnographic research in the interdisciplinary Danish research centre NEOMUNE, we investigate collaboration across species and disciplines, in research aiming at improving survival for preterm infants. NEOMUNE experimental studies on piglets evolved as a platform on which both basic and clinical scientists exercised professional authority. Guided by the field of multi-species research, we explore the social and material agency of research (...)
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  • Unexpected tissue and the biobank that closed: an exploration of value and the momentariness of bio-objectification processes.Neil Stephens & Rebecca Dimond - 2015 - Life Sciences, Society and Policy 11 (1).
    Unanticipated situations can arise in biobanking. This paper empirically documents unexpected situations at the anonymous biobank ‘Xbank’. Firstly, Xbank received an unexpected and significant quantity of tissue from the historical archive of a hospital network. Secondly, Xbank had its funding withdrawn before the designated end date for the grant, meaning the bank needed to either re-house or destroy its holdings. This paper articulates and uses the theoretical frameworks of bio-objectification and tissue economies to analyse the experiences of Xbank and draw (...)
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  • Governing the research-care divide in clinical biobanking: Dutch perspectives.Conor M. W. Douglas & Martin Boeckhout - 2015 - Life Sciences, Society and Policy 11 (1):1-16.
    Biobanking, the large-scale, systematic collection of data and tissue for open-ended research purposes, is on the rise, particularly in clinical research. The infrastructures for the systematic procurement, management and eventual use of human tissue and data are positioned between healthcare and research. However, the positioning of biobanking infrastructures and transfer of tissue and data between research and care is not an innocuous go-between. Instead, it involves changes in both domains and raises issues about how distinctions between research and care are (...)
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  • Cord blood banking – bio-objects on the borderlands between community and immunity.Rosalind Williams & Nik Brown - 2015 - Life Sciences, Society and Policy 11 (1):1-18.
    Umbilical cord blood has become the focus of intense efforts to collect, screen and bank haematopoietic stem cells in hundreds of repositories around the world. UCB banking has developed through a broad spectrum of overlapping banking practices, sectors and institutional forms. Superficially at least, these sectors have been widely distinguished in bioethical and policy literature between notions of the ‘public’ and the ‘private’, the commons and the market respectively. Our purpose in this paper is to reflect more critically on these (...)
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  • Editors introduction: biobanks as sites of bio-objectification.Neil Stephens, Nik Brown & Conor Douglas - 2018 - Life Sciences, Society and Policy 14 (1):1-5.
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  • Global Fertility Chains: An Integrative Political Economy Approach to Understanding the Reproductive Bioeconomy.Michal Nahman, Vincenzo Pavone & Sigrid Vertommen - 2022 - Science, Technology, and Human Values 47 (1):112-145.
    Over the last two decades, social scientists across disciplines have been researching how value is extracted and governed in the reproductive bioeconomy, which broadly refers to the various ways reproductive tissues, bodies, services, customers, workers, and data are inserted into capitalist modes of accumulation. While many of these studies are empirically grounded in single country–based analyses, this paper proposes an integrative political economy framework, structured around the concept of “global fertility chains.” The latter articulates the reproductive bioeconomy as a nexus (...)
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  • Open Genetic Code: on open source in the life sciences.Eric Deibel - 2014 - Life Sciences, Society and Policy 10 (1):1-23.
    The introduction of open source in the life sciences is increasingly being suggested as an alternative to patenting. This is an alternative, however, that takes its shape at the intersection of the life sciences and informatics. Numerous examples can be identified wherein open source in the life sciences refers to access, sharing and collaboration as informatic practices. This includes open source as an experimental model and as a more sophisticated approach of genetic engineering. The first section discusses the greater flexibly (...)
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