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  1. An RNA Phage Lab: MS2 in Walter Fiers’ Laboratory of Molecular Biology in Ghent, from Genetic Code to Gene and Genome, 1963–1976. [REVIEW]Jérôme Pierrel - 2012 - Journal of the History of Biology 45 (1):109 - 138.
    The importance of viruses as model organisms is well-established in molecular biology and Max Delbrück's phage group set standards in the DNA phage field. In this paper, I argue that RNA phages, discovered in the 1960s, were also instrumental in the making of molecular biology. As part of experimental systems, RNA phages stood for messenger RNA (mRNA), genes and genome. RNA was thought to mediate information transfers between DNA and proteins. Furthermore, RNA was more manageable at the bench than DNA (...)
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  • Radium, biophysics, and radiobiology: tracing the history of radiobiology in twentieth-century China.Christine Yi Lai Luk - 2018 - History and Philosophy of the Life Sciences 40 (1):1-23.
    Radiobiology assesses the biological hazards of exposure to radioactive substances and nuclear radiation. This article explores the history of radiobiology in twentieth-century China by examining the overlapping of radium research and biophysics, from roughly the 1920s Nationalist period to the 1960s Communist period; from the foreign purchase of radium by the Rockefeller Foundation’s China Medical Board during the Republican era, to the institutional establishment of radiobiology as a subset of biophysics in the People’s Republic. Western historiography of radiobiology highlights the (...)
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  • The material culture and politics of artifacts in nuclear diplomacy.Maria Rentetzi & Kenji Ito - 2021 - Centaurus 63 (2):233-243.
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  • The scientific object and material diplomacy: The shipment of radioisotopes from the United States to Japan in 1950.Kenji Ito - 2021 - Centaurus 63 (2):296-319.
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  • Science and power: Francoist Spain (1939–1975) as a case study.Antoni Malet - 2019 - Centaurus 61 (1-2):111-132.
    This paper takes Franco's Spain to be a powerful case study for analyzing the ways in which power shapes science and technology and is shaped by them in return. Spain was the last country in Western Europe to establish closer links with any of the international cooperative institutions emerging after WWII. As such, developments internal to Spanish society were quite autonomous and relatively free from foreign influences. The paper focuses first on the brand new, powerful institution that the Francoist regime (...)
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  • Radium, biophysics, and radiobiology: tracing the history of radiobiology in twentieth-century China.Christine Yi Lai Luk - 2017 - History and Philosophy of the Life Sciences 40 (1):2.
    Radiobiology assesses the biological hazards of exposure to radioactive substances and nuclear radiation. This article explores the history of radiobiology in twentieth-century China by examining the overlapping of radium research and biophysics, from roughly the 1920s Nationalist period to the 1960s Communist period; from the foreign purchase of radium by the Rockefeller Foundation’s China Medical Board during the Republican era, to the institutional establishment of radiobiology as a subset of biophysics in the People’s Republic. Western historiography of radiobiology highlights the (...)
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  • Phosphorus-32 in the Phage Group: radioisotopes as historical tracers of molecular biology.Angela N. H. Creager - 2009 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 40 (1):29-42.
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  • An RNA Phage Lab: MS2 in Walter Fiers’ Laboratory of Molecular Biology in Ghent, from Genetic Code to Gene and Genome, 1963–1976. [REVIEW]Jérôme Pierrel - 2012 - Journal of the History of Biology 45 (1):109-138.
    The importance of viruses as model organisms is well-established in molecular biology and Max Delbrück’s phage group set standards in the DNA phage field. In this paper, I argue that RNA phages, discovered in the 1960s, were also instrumental in the making of molecular biology. As part of experimental systems, RNA phages stood for messenger RNA, genes and genome. RNA was thought to mediate information transfers between DNA and proteins. Furthermore, RNA was more manageable at the bench than DNA due (...)
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  • Alexander Hollaender’s Postwar Vision for Biology: Oak Ridge and Beyond.Karen A. Rader - 2006 - Journal of the History of Biology 39 (4):685-706.
    Experimental radiobiology represented a long-standing priority for the U.S. Atomic Energy Commission, but organizational issues initially impeded the laboratory progress of this government-funded work: who would direct such interdisciplinary investigations and how? And should the AEC support basic research or only mission-oriented projects? Alexander Hollaender's vision for biology in the post-war world guided AEC initiatives at Oak Ridge, where he created and presided over the Division of Biology for nearly two decades. Hollaender's scheme, at once entrepreneurial and system-oriented, made good (...)
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  • Shaping Vulnerable Bodies at the Thin Boundary between Environment and Organism: Skin, DNA Repair, and a Genealogy of DNA Care Strategies.Alexander von Schwerin - 2015 - Science in Context 28 (3):427-464.
    ArgumentThis paper brings together the history of risk and the history of DNA repair, a biological phenomenon that emerged as a research field in between molecular biology, genetics, and radiation research in the 1960s. The case of xeroderma pigmentosum (XP), an inherited hypersensitivity to UV light and, hence, a disposition to skin cancer will be the starting point to argue that, in the 1970s and 1980s, DNA repair became entangled in the creation of new models of the human body at (...)
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  • Phosphorus-32 in the Phage Group: radioisotopes as historical tracers of molecular biology.Angela N. H. Creager - 2009 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 40 (1):29-42.
    The recent historiography of molecular biology features key technologies, instruments and materials, which offer a different view of the field and its turning points than preceding intellectual and institutional histories. Radioisotopes, in this vein, became essential tools in postwar life science research, including molecular biology, and are here analyzed through their use in experiments on bacteriophage. Isotopes were especially well suited for studying the dynamics of chemical transformation over time, through metabolic pathways or life cycles. Scientists labeled phage with phosphorus-32 (...)
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