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            Organoide

            Ihre Bedeutung für Forschung, Medizin und Gesellschaft

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            https://www.nomos-elibrary.de/10.5771/9783748908326/organoide
            Author(s)
            Schickl, Hannah
            Alev, Cantas
            Bartfeld, Sina
            Koo, Bon-Kyoung
            Pichl, Anja
            Osterheider, Angela
            Marx-Stölting, Lilian
            Language
            Allemand; German[ger]
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            Abstract
            Zusammenfassung Organoide sind dreidimensionale, aus Stammzellen entwickelte Modellsysteme für unterschiedliche Organe, die großes Potenzial für Forschung und Medizin bergen. Sie werfen wissenschaftliche, aber auch philosophische, ethische und juristische Fragen auf, die bislang in Deutschland wenig diskutiert werden. Der Themenband der interdisziplinären Arbeitsgruppe (IAG) Gentechnologiebericht an der Berlin-Brandenburgischen Akademie der Wissenschaften bietet eine Übersicht über aktuelle wissenschaftliche Entwicklungen, ihre derzeitigen und potenziellen Anwendungsmöglichkeiten sowie wissenschaftstheoretische, ethische und juristische Reflexionen. Hiermit möchte die IAG einen Anstoß zu einer interdisziplinären und gesamtgesellschaftlichen Debatte liefern. Mit Beiträgen von Cantas Alev, Aileen-Diane Bamford, Sina Bartfeld, Andreia S. Batista-Rocha, Ali H. Brivanlou, Thomas Burgold, Cindrilla Chumduri, Stephan Clemens, Emrecan Dilmen, Tobias Erb, Fred Etoc, Melinda B. Fagan, Heiner Fangerau, Boris Fehse, Nina Frey, Tristan Frum, Anne Grapin-Botton, Navin Gupta, Jürgen Hampel, Ferdinand Hucho, Özge Kayisoglu, Rashmiparvathi Keshara, Yung Hae Kim, Bon-Kyoung Koo, Martin Korte, Yaroslav Koshelev, Kai Kretzschmar, Allison Lewis, Lilian Marx-Stölting, Fruzsina Molnár-Gábor, Ryuji Morizane, Stefan Mundlos, Paola Nicolas, Angela Osterheider, In-Hyun Park, Anja Pichl, Sandra Pilat-Carotta, Jens Reich, Marlen Reinschke, Hannah Schickl, Silke Schicktanz, Nicolas Schlegel, Jason R. Spence, Yoshiaki Tanaka, Jochen Taupitz, Isaree Teriyapirom, Margherita Y. Turco, Jörn Walter, Eva Winkler, Martin Zenke. Abstract Organoids are developed from stem cells and serve as three-dimensional model systems for different organs. They have great potential for research and medicine, but also raise philosophical, ethical and legal questions which have rarely been discussed in Germany so far. This thematic study by the interdisciplinary research group (IAG) Gene Technology Report at the Berlin-Brandenburg Academy of Sciences and Humanities offers an overview of current scientific developments, their present and potential application, as well as epistemological, ethical and legal reflections. Hereby, the IAG wants to provide impetus for an interdisciplinary and society-wide debate on this general subject. With contributions by Cantas Alev, Aileen-Diane Bamford, Sina Bartfeld, Andreia S. Batista-Rocha, Ali H. Brivanlou, Thomas Burgold, Cindrilla Chumduri, Stephan Clemens, Emrecan Dilmen, Tobias Erb, Fred Etoc, Melinda B. Fagan, Heiner Fangerau, Boris Fehse, Nina Frey, Tristan Frum, Anne Grapin-Botton, Navin Gupta, Jürgen Hampel, Ferdinand Hucho, Özge Kayisoglu, Rashmiparvathi Keshara, Yung Hae Kim, Bon-Kyoung Koo, Martin Korte, Yaroslav Koshelev, Kai Kretzschmar, Allison Lewis, Lilian Marx-Stölting, Fruzsina Molnár-Gábor, Ryuji Morizane, Stefan Mundlos, Paola Nicolas, Angela Osterheider, In-Hyun Park, Anja Pichl, Sandra Pilat-Carotta, Jens Reich, Marlen Reinschke, Hannah Schickl, Silke Schicktanz, Nicolas Schlegel, Jason R. Spence, Yoshiaki Tanaka, Jochen Taupitz, Isaree Teriyapirom, Margherita Y. Turco, Jörn Walter, Eva Winkler, Martin Zenke.
            URI
            https://directory.doabooks.org/handle/20.500.12854/55411
            DOI
            https://doi.org/10.5771/9783748908326
            ISBN
            9783748908326
            Publisher
            Nomos Verlagsgesellschaft mbH & Co. KG
            Publisher website
            https://www.nomos.de/
            Publication date and place
            2020
            Classification
            Medical equipment and techniques
            Pages
            304
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              This project received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 871069.

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