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The molecular revolution in biology

In R. C. Olby, G. N. Cantor, J. R. R. Christie & M. J. S. Hodge (eds.), Companion to the History of Modern Science. Routledge. pp. 93--100 (1989)

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  1. Engineers of Life? A Critical Examination of the Concept of Life in the Debate on Synthetic Biology.Johannes Steizinger - 2016 - In Toepfer Georg & Engelhard Margret (eds.), : Ambivalences of Creating Life – Societal and Philosophical Dimensions of Synthetic Biology. Springer. pp. 275−292.
    The concept of life plays a crucial role in the debate on synthetic biology. The first part of this chapter outlines the controversial debate on the status of the concept of life in current science and philosophy. Against this background, synthetic biology and the discourse on its scientific and societal consequences is revealed as an exception. Here, the concept of life is not only used as buzzword but also discussed theoretically and links the ethical aspects with the epistemological prerequisites and (...)
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  • The human genome project: Towards an analysis of the empirical, ethical, and conceptual issues involved. [REVIEW]Marga Vicedo - 1992 - Biology and Philosophy 7 (3):255-278.
    In this paper I claim that the goal of mapping and sequencing the human genome is not wholly new, but rather is an extension of an older project to map genes, a central aim of genetics since its birth. Thus, the discussion about the value of the HGP should not be posed in global terms of acceptance or rejection, but in terms of how it should be developed. The first section of this paper presents a brief history of the project. (...)
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  • Vintage PhysiologyVintage Physiology. Otto Warburg’s Laboratory Manuals and Instruments.Mathias Grote - 2013 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 21 (2):171-185.
    Laboratory manuals, notebooks and instrumentation from Otto Warburg’s Institute of Cell Physiology have been discovered at the Max Planck Institute of Biochemistry. Following Warburg’s death in 1970 one of his technicians was transferred from Berlin-Dahlem to the newly founded biochemical institute at Martinsried near Munich, and brought with him these resources, which epitomize the singular position of Warburg’s work style and institute in the 1950s and 1960s. Since the technician’s skills and apparently outmoded instrumentation like the Warburg apparatus were still (...)
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  • In search of the best explanation about the nature of the gene: Avery on pneumococcal transformation.Eleonora Cresto - 2008 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 39 (1):65-79.
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  • A New Insight into Sanger’s Development of Sequencing: From Proteins to DNA, 1943–1977. [REVIEW]Miguel García-Sancho - 2010 - Journal of the History of Biology 43 (2):265 - 323.
    Fred Sanger, the inventor of the first protein, RNA and DNA sequencing methods, has traditionally been seen as a technical scientist, engaged in laboratory bench work and not interested at all in intellectual debates in biology. In his autobiography and commentaries by fellow researchers, he is portrayed as having a trajectory exclusively dependent on technological progress. The scarce historical scholarship on Sanger partially challenges these accounts by highlighting the importance of professional contacts, institutional and disciplinary moves in his career, spanning (...)
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  • Specialisation by Value Divergence: The Role of Epistemic Values in the Branching of Scientific Disciplines.Matteo De Benedetto & Michele Luchetti - 2023 - International Studies in the Philosophy of Science 36 (2):121-141.
    According to Kuhn's speciation analogy, scientific specialisation is fundamentally analogous to biological speciation. In this paper, we extend Kuhn's original language-centred formulation of the speciation analogy, to account for episodes of scientific specialisation centred around methodological differences. Building upon recent views in evolutionary biology about the process of speciation by genetic divergence, we will show how these methodology-centred episodes of scientific specialisation can be understood as cases of specialisation driven by value divergence. We will apply our model of specialisation by (...)
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  • A New Insight into Sanger’s Development of Sequencing: From Proteins to DNA, 1943–1977.Miguel García-Sancho - 2010 - Journal of the History of Biology 43 (2):265-323.
    Fred Sanger, the inventor of the first protein, RNA and DNA sequencing methods, has traditionally been seen as a technical scientist, engaged in laboratory bench work and not interested at all in intellectual debates in biology. In his autobiography and commentaries by fellow researchers, he is portrayed as having a trajectory exclusively dependent on technological progress. The scarce historical scholarship on Sanger partially challenges these accounts by highlighting the importance of professional contacts, institutional and disciplinary moves in his career, spanning (...)
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  • Organismo y organización en la biología teórica¿ Vuelta al organicismo.Arantza Etxeberria & Jon Umerez - 2006 - Ludus Vitalis 14 (26):3-38.
    ABSTRACT. This paper contemplates Organicism and its relation with molecular and evolutionary biology. We explore whether twentieth-first century biology is returning to positions held at the beginning of the twentieth century and then abandoned. The guiding line is a history of theoretical biology in which we distinguish three periods: 1. The 20s-30s, and the Theoretical Biology Club (Needham, Woodger, and Waddington, among others); 2. An intermediate period in the 60s-70s, in which, in spite of the eclosion of the molecular and (...)
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  • The Laboratory Technology of Discrete Molecular Separation: The Historical Development of Gel Electrophoresis and the Material Epistemology of Biomolecular Science, 1945–1970.Howard Hsueh-Hao Chiang - 2009 - Journal of the History of Biology 42 (3):495-527.
    Preparative and analytical methods developed by separation scientists have played an important role in the history of molecular biology. One such early method is gel electrophoresis, a technique that uses various types of gel as its supporting medium to separate charged molecules based on size and other properties. Historians of science, however, have only recently begun to pay closer attention to this material epistemological dimension of biomolecular science. This paper substantiates the historiographical thread that explores the relationship between modern laboratory (...)
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  • The Laboratory Technology of Discrete Molecular Separation: The Historical Development of Gel Electrophoresis and the Material Epistemology of Biomolecular Science, 1945–1970.Howard Hsueh-Hao Chiang - 2009 - Journal of the History of Biology 42 (3):495-527.
    Preparative and analytical methods developed by separation scientists have played an important role in the history of molecular biology. One such early method is gel electrophoresis, a technique that uses various types of gel as its supporting medium to separate charged molecules based on size and other properties. Historians of science, however, have only recently begun to pay closer attention to this material epistemological dimension of biomolecular science. This paper substantiates the historiographical thread that explores the relationship between modern laboratory (...)
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  • Institutionalizing molecular biology in post-war Europe: a comparative study.Bruno J. Strasser - 2002 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 33 (3):515-546.
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  • Institutionalizing molecular biology in post-war Europe: a comparative study.Bruno J. Strasser - 2002 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 33 (3):515-546.
    The intellectual origins of molecular biology are usually traced back to the 1930s. By contrast, molecular biology acquired a social reality only around 1960. To understand how it came to designate a community of researchers and a professional identity, I examine the creation of the first institutes of molecular biology, which took place around 1960, in four European countries: Germany, the United Kingdom, France, and Switzerland. This paper shows how the creation of these institutes was linked to the results of (...)
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  • In search of the best explanation about the nature of the Gene: Avery on pneumococcal transformation.Eleonora Cresto - 2008 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 39 (1):65-79.
    In this paper I present a model of rational belief change, and I show how to use it to obtain a better insight into the debate about the nature of pneumococcal transformation, genes and DNA that took place in the forties, as a result of Oswald T. Avery’s work. The model offers a particular elaboration of the concept of inference to the best explanation, along decision theoretic lines. Within this framework, I distinguish different senses in which Avery’s team can be (...)
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  • Vintage Physiology: Otto Warburgs „Labor-Kochbücher“ und Apparaturen.Mathias Grote - 2013 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 21 (2):171-185.
    Laboratory manuals, notebooks and instrumentation from Otto Warburg’s Institute of Cell Physiology have been discovered at the Max Planck Institute of Biochemistry. Following Warburg’s death in 1970 one of his technicians was transferred from Berlin-Dahlem to the newly founded biochemical institute at Martinsried near Munich, and brought with him these resources, which epitomize the singular position of Warburg’s work style and institute in the 1950s and 1960s. Since the technician’s skills and apparently outmoded instrumentation like the Warburg apparatus were still (...)
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