Results for ' synthetic'

968 found
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  1.  41
    Mammalian synthetic biology – from tools to therapies.Dominique Aubel & Martin Fussenegger - 2010 - Bioessays 32 (4):332-345.
    Mammalian synthetic biology holds the promise of providing novel therapeutic strategies, and the first success stories are beginning to be reported. Here we focus on the latest generation of mammalian transgene control devices, highlight state‐of‐the‐art synthetic gene network design, and cover prototype therapeutic circuits. These will have an impact on future gene‐ and cell‐based therapies and help bring drug discovery into a new era. The inventory of biological parts that are essential for life on this planet is becoming (...)
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  2.  32
    Synthetic Biology: From Having Fun to Jumping the Gun.Manuel Porcar - 2016 - NanoEthics 10 (1):105-109.
    Synthetic biology aims at making life easier to an engineer by applying biotechnology engineering principles such as standardization and modularity. I argue that living organisms are inherently non-machine, non-standardized entities and that the current state-of-the-art in SynBio combines pre- and post-standardization efforts, in a scenario without evidence that full standardization in biology is even possible. I finally propose a new view on SynBio based on purpose rather than on technicalities.
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  3.  33
    (1 other version)The Synthetic Unity of Reason and Nature in the Third Critique.Saniye Vatansever - 2023 - International Journal of Philosophical Studies 31 (5):633-664.
    ABSTRACT In this paper, I advance a new interpretation of the argumentative structure of the third Critique, which in turn clarifies the connection between its two apparently unrelated parts. I propose to read the third Critique as a response to Kant’s question of hope, which concerns the satisfaction of reason’s practical and theoretical interests. On this proposal, while the first part on aesthetics describes what we—as possessors of theoretical reason – may hope for, the second part, on teleology, describes what (...)
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  4. Are Synthetic Genomes Parts of a Genetic Lineage?Gunnar Babcock - 2021 - British Journal for the Philosophy of Science 72 (4):995-1011.
    Biologists are nearing the creation of the first fully synthetic eukaryotic genome. Does this mean that we still soon be able to create genomes that are parts of an existing genetic lineage? If so, it might be possible to bring back extinct species. But do genomes that are synthetically assembled, no matter how similar they are to native genomes, really belong to the genetic lineage on which they were modelled? This article will argue that they are situated within the (...)
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  5. Synthetic Philosophy, a Restatement.Eric Schliesser - forthcoming - Proceedings of the Aristotelian Society.
    The guiding thread of the paper is the diagnosis that the advanced division of cognitive labor (that is, intellectual specialization) engenders a set of perennial, political and epistemic challenges (Millgram 2015) that, simultaneously, also generate opportunities for philosophy. In this paper, I re-characterize the nature of synthetic philosophy as a means to advance and institutionalize philosophy. For my definition of synthetic philosophy see section 2. In section 1, I treat Plato’s Republic as offering two models to represent philosophy's (...)
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  6.  39
    Chinese synthetic verbs: a further challenge to manner/result complementarity on the basis of lexical root meaning analysis.Tianyu Li - 2023 - Cognitive Linguistics 34 (2):231-260.
    This paper introduces Chinese synthetic verbs and analyses their contributions to debates in manner/result complementarity studies and cognitive typology studies. Chinese synthetic verbs simultaneously express manner information and path/result information, but encode them into separate root slots under Beavers and Koontz-Garboden’s (2012. Manner and result in the roots of verbal meaning. Linguistic Inquiry 43(3). 331–369) scopal modifier test, so they differ from English “manner+result verbs” and further challenge the manner/result complementarity hypothesis. Synthetic verbs followed by redundant path/result (...)
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  7. Synthetic Biology and the Moral Significance of Artificial Life: A Reply to Douglas, Powell and Savulescu.Andreas Christiansen - 2016 - Bioethics 30 (5):372-379.
    I discuss the moral significance of artificial life within synthetic biology via a discussion of Douglas, Powell and Savulescu's paper 'Is the creation of artificial life morally significant’. I argue that the definitions of 'artificial life’ and of 'moral significance’ are too narrow. Douglas, Powell and Savulescu's definition of artificial life does not capture all core projects of synthetic biology or the ethical concerns that have been voiced, and their definition of moral significance fails to take into account (...)
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  8.  70
    Synthetic biology and genetic causation.Gry Oftedal & Veli-Pekka Parkkinen - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (2):208-216.
    Synthetic biology research is often described in terms of programming cells through the introduction of synthetic genes. Genetic material is seemingly attributed with a high level of causal responsibility. We discuss genetic causation in synthetic biology and distinguish three gene concepts differing in their assumptions of genetic control. We argue that synthetic biology generally employs a difference-making approach to establishing genetic causes, and that this approach does not commit to a specific notion of genetic program or (...)
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  9.  59
    Using Synthetic Biology to Avert Runaway Climate Change: A Consequentialist Appraisal.Daniele Fulvi & Josh Wodak - 2024 - Ethics, Policy and Environment 27 (1):89-107.
    We attempt to justify the use of synthetic biology in response to the climate crisis, based on the premise that it is impossible to avert runaway climate change without sequestering sufficient greenhouse gases (GHG), which could only become possible through Negative Emissions Technologies (NETs). Then, moving from a consequentialist standpoint, we acquiesce to how the consequences of using NETs through synthetic biology are preferable to the catastrophic consequences of runaway climate change. In conclusion, we show how our analysis (...)
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  10.  93
    Synthetic phenomenology.Ron Chrisley - 2009 - International Journal of Machine Consciousness 1 (1):53-70.
    The term \synthetic phenomenology" refers to: 1) any attempt to characterize the phenomenal states possessed, or modeled by, an artefact ; or 2) any attempt to use an artefact to help specify phenomenal states. The notion of synthetic phenomenology is clari¯ed, and distinguished from some related notions. It is argued that much work in machine consciousness would bene¯t from being more cognizant of the need for synthetic phenomenology of the ¯rst type, and of the possible forms it (...)
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  11. Synthetic philosophy.Eric Schliesser - 2019 - Biology and Philosophy 34 (2):19.
    In this essay, I discuss Dennett’s From Bacteria to Bach and Back: The Evolution of Minds and Godfrey Smith’s Other Minds: The Octopus and The Evolution of Intelligent Life from a methodological perspective. I show that these both instantiate what I call ‘synthetic philosophy.’ They are both Darwinian philosophers of science who draw on each other’s work. In what follows I first elaborate on synthetic philosophy in light of From Bacteria and Other Minds; I also explain my reasons (...)
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  12.  16
    Synthetic biology and therapeutic strategies for the degenerating brain.Carmen Agustín-Pavón & Mark Isalan - 2014 - Bioessays 36 (10):979-990.
    Synthetic biology is an emerging engineering discipline that attempts to design and rewire biological components, so as to achieve new functions in a robust and predictable manner. The new tools and strategies provided by synthetic biology have the potential to improve therapeutics for neurodegenerative diseases. In particular, synthetic biology will help design small molecules, proteins, gene networks, and vectors to target disease‐related genes. Ultimately, new intelligent delivery systems will provide targeted and sustained therapeutic benefits. New treatments will (...)
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  13. Synthetic Biology and IP: How Do Definitions of “Products of Nature” Affect their Implications for Health?David Koepsell - 2014 - In Iñigo de Miguel Beriain Carlos María Romeo Casabona (ed.), Synbio and Human Health. pp. 45-53.
    Currently, under the law of intellectual property, IP owners may exclude from use or production substances and processes that we would ordinarily consider to be products of nature. This has helped companies monopolize disease genes, and thus diagnostic testing for those diseases, and “biosimilar” products, pharmaceutical materials that mimic biological materials. Extending the current paradigm to the world of synthetic biology and nanotechnology will create further injustices in the delivery of health care to billions of people around the world. (...)
     
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  14.  67
    From bricolage to BioBricks™: Synthetic biology and rational design.Tim Lewens - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (4b):641-648.
    Synthetic biology is often described as a project that applies rational design methods to the organic world. Although humans have influenced organic lineages in many ways, it is nonetheless reasonable to place synthetic biology towards one end of a continuum between purely ‘blind’ processes of organic modification at one extreme, and wholly rational, design-led processes at the other. An example from evolutionary electronics illustrates some of the constraints imposed by the rational design methodology itself. These constraints reinforce the (...)
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  15.  54
    Synthetic Biology and Morality: Artificial Life and the Bounds of Nature.Gregory E. Kaebnick & Thomas H. Murray (eds.) - 2013 - Cambridge, Massachusetts: MIT Press.
    A range of views on the morality of synthetic biology and its place in public policy and political discourse.
  16.  37
    Synthetic Modelling of Biological Communication: A Theoretical and Operational Framework for the Investigation of Minimal Life and Cognition.Leonardo Bich & Ramiro Frick - 2018 - Complex Systems 27 (3):267-287.
    This paper analyses conceptual and experimental work in synthetic biology on different types of interactions considered as minimal examples or models of communication. It discusses their pertinence and relevance for the wider understanding of this biological and cognitive phenomenon. It critically analyses their limits and it argues that a conceptual framework is needed. As a possible solution, it provides a theoretical account of communication based on the notion of organisation, and characterised in terms of the functional influence exerted by (...)
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  17.  62
    Synthetic Vision in Virtual Reality Documentaries.Jihoon Kim - 2021 - Film-Philosophy 25 (3):321-345.
    Based on a nuanced understanding of immersion and sense of presence as two key aesthetic effects that the application of virtual reality to cinema is believed to innovate, this paper develops the concept of synthetic vision as fundamental to understanding the visual experience of VR media, particularly VR documentaries. The concept contends that viewers’ experience in VR is based on two visions that seemingly contradict each other: first, a disembodied vision that transports them to a simulated world, and second, (...)
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  18. Connectionist Synthetic Epistemology: Requirements for the Development of Objectivity.Ron Chrisley & Andy Holland - unknown
    A connectionist system that is capable of learning about the spatial structure of a simple world is used for the purposes of synthetic epistemology: the creation and analysis of artificial systems in order to clarify philosophical issues that arise in the explanation of how agents, both natural and artificial, represent the world. In this case, the issues to be clarified focus on the content of representational states that exist prior to a fully objective understanding of a spatial domain. In (...)
     
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  19. Synthetic fictions: turning imagined biological systems into concrete ones.Tarja Knuuttila & Rami Koskinen - 2020 - Synthese 198 (9):8233-8250.
    The recent discussion of fictional models has focused on imagination, implicitly considering fictions as something nonconcrete. We present two cases from synthetic biology that can be viewed as concrete fictions. Both minimal cells and alternative genetic systems are modal in nature: they, as well as their abstract cousins, can be used to study unactualized possibilia. We approach these synthetic constructs through Vaihinger’s notion of a semi-fiction and Goodman’s notion of semifactuality. Our study highlights the relative existence of such (...)
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  20.  63
    Synthetic Biology and Ethics: Past, Present, and Future.Matti Häyry - 2017 - Cambridge Quarterly of Healthcare Ethics 26 (2):186-205.
    :This article explores the ethical issues that have been identified in emerging technologies, from early genetic engineering to synthetic biology. The scientific advances in the field form a continuum, and some ethical considerations can be raised time and again when new developments occur. An underlying concern is the cumulative effect of scientific advances and ensuing technological innovation that can change our understanding of life and humanity.
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  21.  49
    A Critical Perspective on Synthetic Biology.Michel Morange - 2009 - Hyle 15 (1):21 - 30.
    Synthetic biology emerged around 2000 as a new biological discipline. It shares with systems biology the same modular vision of organisms, but is more concerned with applications than with a better understanding of the functioning of organisms. A herald of this new discipline is Craig Venter who aims to create an artificial microorganism with the minimal genome compatible with life and to implement into it different 'functional modules' to generate new micro-organisms adapted to specific tasks. Synthetic biology is (...)
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  22.  7
    Synthetic Times: Media Art China 2008.Fan Di'an & Zhang Ga (eds.) - 2008 - MIT Press.
    The artworks in 'Synthetic Times' explore a trajectory of uncanny visions ranging from the desire to transcend the corporal to the construction of synthetic worlds.
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  23.  45
    The meaning of synthetic gametes for gay and lesbian people and bioethics too.Timothy F. Murphy - 2013 - Journal of Medical Ethics (11):doi:10.1136/medethics-2013-10169.
    Some commentators indirectly challenge the ethics of using synthetic gametes as a way for same-sex couples to have children with shared genetics. These commentators typically impose a moral burden of proof on same-sex couples they do not impose on opposite-sex couples in terms of their eligibility to have children. Other commentators directly raise objections to parenthood by same-sex couples on the grounds that it compromises the rights and/or welfare of children. Ironically, the prospect of synthetic gametes neutralises certain (...)
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  24. Explaining Synthetic A Priori Knowledge: The Achilles Heel of Transcendental Idealism?Robert Stern - 2022 - Kantian Review 27 (3):385-404.
    This article considers an apparent Achilles heel for Kant’s transcendental idealism, concerning his account of how synthetic a priori knowledge is possible. The problem is that while Kant’s distinctive attempt to explain synthetic a priori knowledge lies at the heart of his transcendental idealism, this explanation appears to face a dilemma: either the explanation generates a problematic regress, or the explanation it offers gives us no reason to favour transcendental idealism over transcendental realism. In the article, I consider (...)
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  25.  88
    Synthetic biology between technoscience and thing knowledge.Axel Gelfert - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (2):141-149.
    Synthetic biology presents a challenge to traditional accounts of biology: Whereas traditional biology emphasizes the evolvability, variability, and heterogeneity of living organisms, synthetic biology envisions a future of homogeneous, humanly engineered biological systems that may be combined in modular fashion. The present paper approaches this challenge from the perspective of the epistemology of technoscience. In particular, it is argued that synthetic-biological artifacts lend themselves to an analysis in terms of what has been called ‘thing knowledge’. As such, (...)
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  26.  74
    Synthetic biology and the search for alternative genetic systems: Taking how-possibly models seriously.Koskinen Rami - 2017 - European Journal for Philosophy of Science 7 (3):493-506.
    Many scientific models in biology are how-possibly models. These models depict things as they could be, but do not necessarily capture actual states of affairs in the biological world. In contemporary philosophy of science, it is customary to treat how-possibly models as second-rate theoretical tools. Although possibly important in the early stages of theorizing, they do not constitute the main aim of modelling, namely, to discover the actual mechanism responsible for the phenomenon under study. In the paper it is argued (...)
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  27.  41
    Synthetic Biology: A Utilitarian Perspective.Kevin Smith - 2013 - Bioethics 27 (8):453-463.
    I examine the positive and negative features of synthetic biology (‘SynBio’) from a utilitarian ethical perspective. The potential beneficial outcomes from SynBio in the context of medicine are substantial; however it is not presently possible to predict precise outcomes due to the nascent state of the field. Potential negative outcomes from SynBio also exist, including iatrogenesis and bioterrorism; however it is not yet possible to quantify these risks. I argue that the application of a ‘precautionary’ approach to SynBio is (...)
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  28.  69
    Synthetic Biology Needs A Synthetic Bioethics.Paul B. Thompson - 2012 - Ethics, Policy and Environment 15 (1):1 - 20.
    Recent developments in synthetic biology are described and characterized as moving the era of biotechnology into platform technologies. Platform technologies enable rapid and diffuse innovations and simultaneous product development in diffuse markets, often targeting sectors of the economy that have traditionally been thought to have little relationship to one another. In the case of synthetic biology, pharmaceutical and biofuel product development are occurring interactively. But the regulatory and ethical issues associated with these two applications share very little overlap. (...)
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  29.  51
    Synthetic Biology Ethics: A Deontological Assessment.Patrick Heavey - 2013 - Bioethics 27 (8):442-452.
    In this article I discuss the ethics of synthetic biology from a broadly deontological perspective, evaluating its morality in terms of the integrity of nature, the dignity of life and the relationship between God and his creation. Most ethical analyses to date have been largely consequentialist in nature; they reveal a dual use dilemma, showing that synbio has potential for great good and great evil, possibly more so than any step humanity has taken before. A deontological analysis may help (...)
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  30.  58
    Synthetic versus analytic approaches to protein and DNA structure determination.Agnes Bolinska - 2018 - Biology and Philosophy 33 (3-4):26.
    The structures of protein and DNA were discovered primarily by means of synthesizing component-level information about bond types, lengths, and angles, rather than analyzing X-ray diffraction photographs of these molecules. In this paper, I consider the synthetic and analytic approaches to exemplify alternative heuristics for approaching mid-twentieth-century macromolecular structure determination. I argue that the former was, all else being equal, likeliest to generate the correct structure in the shortest period of time. I begin by characterizing problem solving in these (...)
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  31. The mismeasure of machine: Synthetic biology and the trouble with engineering metaphors.Maarten Boudry & Massimo Pigliucci - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (4):660-668.
    The scientific study of living organisms is permeated by machine and design metaphors. Genes are thought of as the ‘‘blueprint’’ of an organism, organisms are ‘‘reverse engineered’’ to discover their functionality, and living cells are compared to biochemical factories, complete with assembly lines, transport systems, messenger circuits, etc. Although the notion of design is indispensable to think about adaptations, and engineering analogies have considerable heuristic value (e.g., optimality assumptions), we argue they are limited in several important respects. In particular, the (...)
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  32.  39
    Synthetic Biology and Religion.William Daley - 2015 - Essays in the Philosophy of Humanism 23 (2):159-174.
    Through the relatively new science and technology known as synthetic biology, scientists are attempting to create useful new life forms. Any attempt to “create life” inevitably prompts some to ask whether man is trespassing into areas properly reserved for a divine creator. The potential creative power of synthetic biology raises this concern to a level that has not been known before. Thus a new chapter in the history of the relationship between science and religion is being written. This (...)
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  33.  75
    Are synthetic a priori propositions informative?Yongfeng Yuan - unknown
    According to rationalists, synthetic a priori propositions convey new knowledge, whereas analytic propositions are non-informative or vacuous conceptual truths. However, as we argue in this article, each a priori proposition is necessarily true because of its semantic constituents and the way they are combined, and hence can be transformed into its equivalent analytic form. So each synthetic a priori proposition conveys only non-informative conceptual truths like analytic propositions.
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  34.  33
    Synthetic polymers and their potential as genetic materials.Vitor B. Pinheiro, David Loakes & Philipp Holliger - 2013 - Bioessays 35 (2):113-122.
    DNA and RNA are the only known natural genetic materials. Systematic modification of each of their chemical building blocks (nucleobase, sugar, and phosphate) has enabled the study of the key properties that make those nucleic acids genetic materials. All three moieties contribute to replication and, significantly, all three moieties can be replaced by synthetic analogs without loss of function. Synthetic nucleic acid polymers capable of storing and propagating information not only expand the central dogma, but also highlight that (...)
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  35.  16
    Synthetic Biology - Cultural and Anthropological Perspectives.Olivia Macovei - 2022 - Postmodern Openings 13 (3):216-233.
    This article aims to make an analysis of the cultural and anthropological issues raised by synthetic biology. The novelty of the field makes it relatively difficult to compose a comprehensive analysis, even for philosophers with experience, but who are not familiar with the specifics of the field. The article will follow the synthesis of the models of ethical decision applicable in the field of ethical evaluation of technologies from a cultural and anthropological perspective, their critical analysis and will highlight (...)
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  36.  52
    Rational Engineering Principles in Synthetic Biology: A Framework for Quantitative Analysis and an Initial Assessment.Bernd Giese, Stefan Koenigstein, Henning Wigger, Jan C. Schmidt & Arnim von Gleich - 2013 - Biological Theory 8 (4):324-333.
    The term “synthetic biology” is a popular label of an emerging biotechnological field with strong claims to robustness, modularity, and controlled construction, finally enabling the creation of new organisms. Although the research community is heterogeneous, it advocates a common denominator that seems to define this field: the principles of rational engineering. However, it still remains unclear to what extent rational engineering—rather than “tinkering” or the usage of random based or non-rational processes—actually constitutes the basis for the techniques of (...) biology. In this article, we present the results of a quantitative bibliometric analysis of the realized extent of rational engineering in synthetic biology. In our analysis, we examine three issues: (1) We evaluate whether work at three levels of synthetic biology (parts, devices, and systems) is consistent with the principles of rational engineering. (2) We estimate the extent of rational engineering in synthetic biology laboratory practice by an evaluation of publications in synthetic biology. (3) We examine the methodological specialization in rational engineering of authors in synthetic biology. Our analysis demonstrates that rational engineering is prevalent in about half of the articles related to synthetic biology. Interestingly, in recent years the relative number of respective publications has decreased. Despite its prominent role among the claims of synthetic biology, rational engineering has not yet entirely replaced biotechnological methods based on “tinkering” and non-rational principles. (shrink)
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  37.  63
    The synthetic experience as an exoskeleton of the mind.Julieta Aguilera - 2012 - Technoetic Arts 9 (2-3):271-276.
    The synthetic experience can be understood as the natural experience extended through technological means. These means are usually designed to immerse a person or people into a representation of reality, being that reality is one of being immersed in a task, a state of mind or an imagined space, or a combination of them. To represent reality, technology is built around the human perceptual system that connects with the focus of its attention towards the outside world. In handling reality, (...)
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  38. Synthetic Biology: Drawing a Line in Darwin's Sand.Christopher J. Preston - 2008 - Environmental Values 17 (1):23-39.
    Maintaining the coherence of the distinction between nature and artefact has long been central to environmental thinking. By building genomes from scratch out of 'bio-bricks', synthetic biology promises to create biotic artefacts markedly different from anything created thus far in biotechnology. These new biotic artefacts depart from a core principle of Darwinian natural selection – descent through modification – leaving them with no causal connection to historical evolutionary processes. This departure from the core principle of Darwinism presents a challenge (...)
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  39.  42
    Synthetic biology as red herring.Beth Preston - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (4b):649-659.
    It has become commonplace to say that with the advent of technologies like synthetic biology the line between artifacts and living organisms, policed by metaphysicians since antiquity, is beginning to blur. But that line began to blur 10,000 years ago when plants and animals were first domesticated; and has been thoroughly blurred at least since agriculture became the dominant human subsistence pattern many millennia ago. Synthetic biology is ultimately only a late and unexceptional offshoot of this prehistoric development. (...)
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  40. Synthetic biology and the ethics of knowledge.T. Douglas & J. Savulescu - 2010 - Journal of Medical Ethics 36 (11):687-693.
    Synthetic biologists aim to generate biological organisms according to rational design principles. Their work may have many beneficial applications, but it also raises potentially serious ethical concerns. In this article, we consider what attention the discipline demands from bioethicists. We argue that the most important issue for ethicists to examine is the risk that knowledge from synthetic biology will be misused, for example, in biological terrorism or warfare. To adequately address this concern, bioethics will need to broaden its (...)
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  41. The synthetic a priori in Kant and German idealism.Seung-Kee Lee - 2009 - Archiv für Geschichte der Philosophie 91 (3):288-328.
    In twentieth-century Kant scholarship, few have provided an account of the analytic-synthetic distinction and of the problem of the synthetic a priori that takes into consideration the views of Kant's idealist successors such as Maimon, Fichte, Schelling, and Hegel. I first explain how Kant formulates the analytic-synthetic distinction in terms of the determinate-indeterminate distinction, which, in turn, is based on the distinction between general and transcendental logic. Kant's problem of the synthetic a priori , then, is (...)
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  42.  10
    X—Synthetic Philosophy: A Restatement1.Eric Schliesser - 2024 - Proceedings of the Aristotelian Society 124 (3):229-252.
    The guiding thread of the paper is the diagnosis that the advanced division of cognitive labour (that is, intellectual specialization) engenders a set of perennial, political and epistemic challenges (Millgram 2015) that, simultaneously, also generate opportunities for philosophy. In this paper, I re-characterize the nature of synthetic philosophy as a means to advance and institutionalize philosophy. In §i, I treat Plato’s Republic as offering two models to represent philosophy’s relationship to the other sciences within the advanced division of labour. (...)
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  43.  25
    Synthetic cells and organelles: compartmentalization strategies.Renée Roodbeen & Jan C. M. van Hest - 2009 - Bioessays 31 (12):1299-1308.
    The recent development of RNA replicating protocells and capsules that enclose complex biosynthetic cascade reactions are encouraging signs that we are gradually getting better at mastering the complexity of biological systems. The road to truly cellular compartments is still very long, but concrete progress is being made. Compartmentalization is a crucial natural methodology to enable control over biological processes occurring within the living cell. In fact, compartmentalization has been considered by some theories to be instrumental in the creation of life. (...)
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  44. Knowledge-Making Distinctions in Synthetic Biology.Maureen A. O'Malley, Alexander Powell, Jonathan F. Davies & Jane Calvert - 2008 - Bioessays 30 (1):57-65.
    Synthetic biology is an increasingly high-profile area of research that can be understood as encompassing three broad approaches towards the synthesis of living systems: DNA-based device construction, genome-driven cell engineering and protocell creation. Each approach is characterized by different aims, methods and constructs, in addition to a range of positions on intellectual property and regulatory regimes. We identify subtle but important differences between the schools in relation to their treatments of genetic determinism, cellular context and complexity. These distinctions tie (...)
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  45.  27
    From Synthetic Bioethics to One Bioethics: A Reply to Critics.Paul B. Thompson - 2015 - Ethics, Policy and Environment 18 (2):215-224.
    Replies to commentaries on my 2012 article ‘Synthetic Biology Needs a Synthetic Bioethics,’ note that I do not, in fact, call for some ‘new’ kind of ethics. The focus then and now is on integrating questions that relate to distributive justice and environmental quality more faithfully into the topics that have come to preoccupy mainstream bioethics as institutionalized in medical schools and medical research institutions.
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  46. Synthetic Biology and Biofuels.Catherine Kendig - 2012 - In Paul B. Thompson & David M. Kaplan (eds.), Encyclopedia of Food and Agricultural Ethics. New York: Springer Verlag.
    Synthetic biology is a field of research that concentrates on the design, construction, and modification of new biomolecular parts and metabolic pathways using engineering techniques and computational models. By employing knowledge of operational pathways from engineering and mathematics such as circuits, oscillators, and digital logic gates, it uses these to understand, model, rewire, and reprogram biological networks and modules. Standard biological parts with known functions are catalogued in a number of registries (e.g. Massachusetts Institute of Technology Registry of Standard (...)
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  47. Basic science through engineering? Synthetic modeling and the idea of biology-inspired engineering.Tarja Knuuttila & Andrea Loettgers - 2013 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 44 (2):158-169.
    Synthetic biology is often understood in terms of the pursuit for well-characterized biological parts to create synthetic wholes. Accordingly, it has typically been conceived of as an engineering dominated and application oriented field. We argue that the relationship of synthetic biology to engineering is far more nuanced than that and involves a sophisticated epistemic dimension, as shown by the recent practice of synthetic modeling. Synthetic models are engineered genetic networks that are implanted in a natural (...)
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  48. Synthetic Biology and Synthetic Knowledge.Christophe Malaterre - 2013 - Biological Theory (8):346–356.
    Probably the most distinctive feature of synthetic biology is its being “synthetic” in some sense or another. For some, synthesis plays a unique role in the production of knowledge that is most distinct from that played by analysis: it is claimed to deliver knowledge that would otherwise not be attained. In this contribution, my aim is to explore how synthetic biology delivers knowledge via synthesis, and to assess the extent to which this knowledge is distinctly synthetic. (...)
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    Synthetic Biology Analysed: Tools for Discussion and Evaluation.Margret Engelhard (ed.) - 2016 - Cham: Imprint: Springer.
    Synthetic biology is a dynamic, young, ambitious, attractive, and heterogeneous scientific discipline. It is constantly developing and changing, which makes societal evaluation of this emerging new science a challenging task, prone to misunderstandings. Synthetic biology is difficult to capture, and confusion arises not only regarding which part of synthetic biology the discussion is about, but also with respect to the underlying concepts in use. This book offers a useful toolbox to approach this complex and fragmented field. It (...)
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  50.  31
    A synthetic approach to sustainable agriculture and resource conservation.Jerry Moles - 1992 - Agriculture and Human Values 9 (4):64-71.
    The NeoSynthesis Research Centre (NSRC) was organized to promote sustainable agriculture and resource conservation in the island nation of Sri Lanka. Staffed by people with varied life and cultural backgrounds, NSRC has attempted to develop frameworks or ways of understanding agriculture from more than a single perspective. It is assumed that even a partial understanding of agriculture requires many perspectives because no single set of opinions or discourse based upon a narrow range of life experiences can account for the life (...)
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