For: | Ploen D, Hildt E. Hepatitis C virus comes for dinner: How the hepatitis C virus interferes with autophagy. World J Gastroenterol 2015; 21(28): 8492-8507 [PMID: 26229393 DOI: 10.3748/wjg.v21.i28.8492] |
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URL: | https://www.wjgnet.com/1007-9327/full/v21/i28/8492.htm |
Number | Citing Articles |
1 |
Daniela Bender, Mirco Glitscher, Eberhard Hildt. Die Virushepatitiden A bis E: Prävalenz, Erregermerkmale und Pathogenese. Bundesgesundheitsblatt - Gesundheitsforschung - Gesundheitsschutz 2022; 65(2): 139 doi: 10.1007/s00103-021-03472-0
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2 |
Regina Medvedev, Eberhard Hildt, Daniela Ploen. Look who’s talking—the crosstalk between oxidative stress and autophagy supports exosomal-dependent release of HCV particles. Cell Biology and Toxicology 2017; 33(3): 211 doi: 10.1007/s10565-016-9376-3
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3 |
Sergi Guixé-Muntet, Jordi Gracia-Sancho. Autophagy and Cardiometabolic Diseases. 2018; : 201 doi: 10.1016/B978-0-12-805253-2.00017-1
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4 |
Yu-Chen Li, Miao-Qing Zhang, Jing-Pu Zhang. Opposite Effects of Two Human ATG10 Isoforms on Replication of a HCV Sub-genomic Replicon Are Mediated via Regulating Autophagy Flux in Zebrafish. Frontiers in Cellular and Infection Microbiology 2018; 8 doi: 10.3389/fcimb.2018.00109
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5 |
Jiyoung Lee, Jing-hsiung James Ou. Cellular Injury in Liver Diseases. 2017; : 77 doi: 10.1007/978-3-319-53774-0_4
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6 |
Regina Medvedev, Daniela Ploen, Catrina Spengler, Fabian Elgner, Huimei Ren, Sarah Bunten, Eberhard Hildt. HCV-induced oxidative stress by inhibition of Nrf2 triggers autophagy and favors release of viral particles. Free Radical Biology and Medicine 2017; 110: 300 doi: 10.1016/j.freeradbiomed.2017.06.021
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7 |
V. M. Tsyrkunov, V. P. Andreev, R. I. Kravchuk. LYSOSOME-DEPENDENT DEATH OF HEPATOCYTES IN CHRONIC HEPATITIS C. Hepatology and Gastroenterology 2020; 4(1): 34 doi: 10.25298/2616-5546-2020-4-1-34-44
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8 |
Regina Medvedev, Daniela Ploen, Eberhard Hildt, Alexander V. Ivanov. HCV and Oxidative Stress: Implications for HCV Life Cycle and HCV‐Associated Pathogenesis. Oxidative Medicine and Cellular Longevity 2016; 2016(1) doi: 10.1155/2016/9012580
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9 |
Stephanie T. Chan, Jiyoung Lee, Mansi Narula, J.-H. James Ou, M. S. Diamond. Suppression of Host Innate Immune Response by Hepatitis C Virus via Induction of Autophagic Degradation of TRAF6. Journal of Virology 2016; 90(23): 10928 doi: 10.1128/JVI.01365-16
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10 |
Hanna Bley, Anja Schöbel, Eva Herker. Whole Lotta Lipids—From HCV RNA Replication to the Mature Viral Particle. International Journal of Molecular Sciences 2020; 21(8): 2888 doi: 10.3390/ijms21082888
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11 |
Tatjana Döring, Lisa Zeyen, Christina Bartusch, Reinhild Prange, J.-H. James Ou. Hepatitis B Virus Subverts the Autophagy Elongation Complex Atg5-12/16L1 and Does Not Require Atg8/LC3 Lipidation for Viral Maturation. Journal of Virology 2018; 92(7) doi: 10.1128/JVI.01513-17
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12 |
Daniela Bender, Alexandra Koulouri, Xingjian Wen, Mirco Glitscher, Anja Schollmeier, Liliana Fernandes da Costa, Robin Oliver Murra, Gert Paul Carra, Vanessa Haberger, Gerrit J. K. Praefcke, Eberhard Hildt, George A. Belov. Guanylate-binding protein 1 acts as a pro-viral factor for the life cycle of hepatitis C virus. PLOS Pathogens 2024; 20(2): e1011976 doi: 10.1371/journal.ppat.1011976
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13 |
Christina Bartusch, Tatjana Döring, Reinhild Prange. Rab33B Controls Hepatitis B Virus Assembly by Regulating Core Membrane Association and Nucleocapsid Processing. Viruses 2017; 9(6): 157 doi: 10.3390/v9060157
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14 |
Huimei Ren, Fabian Elgner, Bingfu Jiang, Kiyoshi Himmelsbach, Regina Medvedev, Daniela Ploen, Eberhard Hildt, J.-H. J. Ou. The Autophagosomal SNARE Protein Syntaxin 17 Is an Essential Factor for the Hepatitis C Virus Life Cycle. Journal of Virology 2016; 90(13): 5989 doi: 10.1128/JVI.00551-16
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15 |
Qianqian Zheng, Liangwei Duan, Yang Zhang, Jiaoyang Li, Shiyu Zhang, Hui Wang. A dynamically evolving war between autophagy and pathogenic microorganisms. Journal of Zhejiang University-SCIENCE B 2022; 23(1): 19 doi: 10.1631/jzus.B2100285
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16 |
Chloe Tom, Glen Huang, Alexander J. Kovalic, Kyle A. Davis, James E. Peacock. Impact of Chronic Hepatitis C virus co-infection on outcomes of infective endocarditis in people who inject drugs. Diagnostic Microbiology and Infectious Disease 2021; 101(2): 115453 doi: 10.1016/j.diagmicrobio.2021.115453
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17 |
Fabian Elgner, Huimei Ren, Regina Medvedev, Daniela Ploen, Kiyoshi Himmelsbach, Klaus Boller, Eberhard Hildt, J.-H. J. Ou. The Intracellular Cholesterol Transport Inhibitor U18666A Inhibits the Exosome-Dependent Release of Mature Hepatitis C Virus. Journal of Virology 2016; 90(24): 11181 doi: 10.1128/JVI.01053-16
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18 |
Olga Masalova, Ekaterina Lesnova, Pavel Solyev, Natalia Zakirova, Vladimir Prassolov, Sergey Kochetkov, Alexander Ivanov, Alla Kushch. Modulation of Cell Death Pathways by Hepatitis C Virus Proteins in Huh7.5 Hepatoma Cells. International Journal of Molecular Sciences 2017; 18(11): 2346 doi: 10.3390/ijms18112346
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19 |
Zhenzhen Zhang, Liang Rong, Yi-Ping Li. Flaviviridae Viruses and Oxidative Stress: Implications for Viral Pathogenesis. Oxidative Medicine and Cellular Longevity 2019; 2019: 1 doi: 10.1155/2019/1409582
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20 |
Koji Taniguchi, Shinichiro Yamachika, Feng He, Michael Karin. p62/SQSTM1—Dr. Jekyll and Mr. Hyde that prevents oxidative stress but promotes liver cancer. FEBS Letters 2016; 590(15): 2375 doi: 10.1002/1873-3468.12301
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21 |
Andrea C. Becker, Monique Gannagé, Sebastian Giese, Zehan Hu, Shadi Abou-Eid, Carole Roubaty, Petra Paul, Lea Bühler, Christine Gretzmeier, Veronica I. Dumit, Stéphanie Kaeser-Pebernard, Martin Schwemmle, Christian Münz, Jörn Dengjel. Influenza A Virus Induces Autophagosomal Targeting of Ribosomal Proteins. Molecular & Cellular Proteomics 2018; 17(10): 1909 doi: 10.1074/mcp.RA117.000364
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