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258 found
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Müller, Miryam, May, Stephanie, Hall, Holly, Kendall, Timothy J., McGarry, Lynn, Blukacz, Lauriane, Nuciforo, Sandro, Georgakopoulou, Anastasia, Jamieson, Thomas, Phinichkusolchit, Narisa, Dhayade, Sandeep, Suzuki, Toshiyasu, Huguet-Pradell, Júlia, Powley, Ian R., Officer-Jones, Leah, Pennie, Rachel L., Esteban-Fabró, Roger, Gris-Oliver, Albert, Pinyol, Roser, et al. (2025). Human-correlated genetic models identify precision therapy for liver cancer. Nature, 639(8055), 754–764. https://doi.org/10.1038/s41586-025-08585-z
Müller, Miryam, May, Stephanie, Hall, Holly, Kendall, Timothy J., McGarry, Lynn, Blukacz, Lauriane, Nuciforo, Sandro, Georgakopoulou, Anastasia, Jamieson, Thomas, Phinichkusolchit, Narisa, Dhayade, Sandeep, Suzuki, Toshiyasu, Huguet-Pradell, Júlia, Powley, Ian R., Officer-Jones, Leah, Pennie, Rachel L., Esteban-Fabró, Roger, Gris-Oliver, Albert, Pinyol, Roser, et al. (2025). Human-correlated genetic models identify precision therapy for liver cancer. Nature, 639(8055), 754–764. https://doi.org/10.1038/s41586-025-08585-z
Kaldjob-Heinrich, Louise, Nuciforo, Sandro, Lemke, Steffen, Stahl, Aaron, Czemmel, Stefan, Babaei, Sepideh, Blukacz, Lauriane, Meier, Marie-Anne, Zhang, Yizheng, Schürch, Christian M., Gonzalez-Menendez, Irene, Woelffing, Pascal, Malek, Nisar P., Scheble, Veit, Nahnsen, Sven, Claassen, Manfred, Templin, Markus, Bösmüller, Hans, , et al. (2025). Adenosine Receptor 3 in Liver Cancer: Expression Variability, Epigenetic Modulation, and Enhanced Histone Deacetylase Inhibitor Effects. Gastro Hep Advances, 4(3). https://doi.org/10.1016/j.gastha.2024.11.006
Kaldjob-Heinrich, Louise, Nuciforo, Sandro, Lemke, Steffen, Stahl, Aaron, Czemmel, Stefan, Babaei, Sepideh, Blukacz, Lauriane, Meier, Marie-Anne, Zhang, Yizheng, Schürch, Christian M., Gonzalez-Menendez, Irene, Woelffing, Pascal, Malek, Nisar P., Scheble, Veit, Nahnsen, Sven, Claassen, Manfred, Templin, Markus, Bösmüller, Hans, , et al. (2025). Adenosine Receptor 3 in Liver Cancer: Expression Variability, Epigenetic Modulation, and Enhanced Histone Deacetylase Inhibitor Effects. Gastro Hep Advances, 4(3). https://doi.org/10.1016/j.gastha.2024.11.006
Chancellor, Andrew, Constantin, Daniel, Berloffa, Giuliano, Yang, Qinmei, Nosi, Vladimir, Loureiro, José Pedro, Colombo, Rodrigo, Jakob, Roman P., Joss, Daniel, Pfeffer, Michael, De Simone, Giulia, Morabito, Aurelia, Schaefer, Verena, Vacchini, Alessandro, Brunelli, Laura, Montagna, Daniela, , Zippelius, Alfred, Davoli, Enrico, et al. (2024). The carbonyl nucleobase adduct M3Ade is a potent antigen for adaptive polyclonal MR1-restricted T cells [Journal-article]. Immunity, 58(2), 431–447. https://doi.org/10.1016/j.immuni.2024.11.019
Chancellor, Andrew, Constantin, Daniel, Berloffa, Giuliano, Yang, Qinmei, Nosi, Vladimir, Loureiro, José Pedro, Colombo, Rodrigo, Jakob, Roman P., Joss, Daniel, Pfeffer, Michael, De Simone, Giulia, Morabito, Aurelia, Schaefer, Verena, Vacchini, Alessandro, Brunelli, Laura, Montagna, Daniela, , Zippelius, Alfred, Davoli, Enrico, et al. (2024). The carbonyl nucleobase adduct M3Ade is a potent antigen for adaptive polyclonal MR1-restricted T cells [Journal-article]. Immunity, 58(2), 431–447. https://doi.org/10.1016/j.immuni.2024.11.019
Zhang, Xiaonan, Rameika, Natallia, Zhong, Lei, Rendo, Verónica, Veanes, Margus, Kundu, Snehangshu, Nuciforo, Sandro, Dupuis, Jordan, Al Azhar, Muhammad, Tsiara, Ioanna, Seeburger, Pauline, Al Nassralla, Shahed, Ljungström, Viktor, Svensson, Richard, Stoimenov, Ivaylo, Artursson, Per, , Globisch, Daniel, & Sjöblom, Tobias. (2024). Loss of heterozygosity of CYP2D6 enhances the sensitivity of hepatocellular carcinomas to talazoparib. eBioMedicine, 109. https://doi.org/10.1016/j.ebiom.2024.105368
Zhang, Xiaonan, Rameika, Natallia, Zhong, Lei, Rendo, Verónica, Veanes, Margus, Kundu, Snehangshu, Nuciforo, Sandro, Dupuis, Jordan, Al Azhar, Muhammad, Tsiara, Ioanna, Seeburger, Pauline, Al Nassralla, Shahed, Ljungström, Viktor, Svensson, Richard, Stoimenov, Ivaylo, Artursson, Per, , Globisch, Daniel, & Sjöblom, Tobias. (2024). Loss of heterozygosity of CYP2D6 enhances the sensitivity of hepatocellular carcinomas to talazoparib. eBioMedicine, 109. https://doi.org/10.1016/j.ebiom.2024.105368
Radu, Pompilia, Becchetti, Chiara, Schropp, Jonas, Schmid, Patrick, Künzler-Heule, Patrizia, Mertens, Joachim, Moradpour, Darius, Müllaupt, Beat, Semela, David, Negro, Francesco, , Clerc, Olivier, Roelens, Maroussia, Keiser, Olivia, & Berzigotti, Annalisa. (2024). Effect of Direct Acting Antiviral Drugs on the Occurrence and Recurrence of Intra- and Extra-Hepatic Malignancies in Patients with Chronic Hepatitis C Virus Infection. Cancers, 16(14). https://doi.org/10.3390/cancers16142573
Radu, Pompilia, Becchetti, Chiara, Schropp, Jonas, Schmid, Patrick, Künzler-Heule, Patrizia, Mertens, Joachim, Moradpour, Darius, Müllaupt, Beat, Semela, David, Negro, Francesco, , Clerc, Olivier, Roelens, Maroussia, Keiser, Olivia, & Berzigotti, Annalisa. (2024). Effect of Direct Acting Antiviral Drugs on the Occurrence and Recurrence of Intra- and Extra-Hepatic Malignancies in Patients with Chronic Hepatitis C Virus Infection. Cancers, 16(14). https://doi.org/10.3390/cancers16142573
Blukacz, Lauriane, Nuciforo, Sandro, Fucile, Geoffrey, Trulsson, Fredrik, Duthaler, Urs, Wieland, Stefan, & (2024). Inhibition of the transmembrane transporter ABCB1 overcomes resistance to doxorubicin in patient-derived organoid models of HCC. Hepatology Communications, 8(5). https://doi.org/10.1097/HC9.0000000000000437
Blukacz, Lauriane, Nuciforo, Sandro, Fucile, Geoffrey, Trulsson, Fredrik, Duthaler, Urs, Wieland, Stefan, & (2024). Inhibition of the transmembrane transporter ABCB1 overcomes resistance to doxorubicin in patient-derived organoid models of HCC. Hepatology Communications, 8(5). https://doi.org/10.1097/HC9.0000000000000437
Schaeffer, Sofia, Bogdanovic, Andrijana, Hildebrandt, Talitha, Flint, Emilio, Geng, Anne, Pecenko, Sylvia, Lussier, Paul, Strumberger, Michael A., Meyer, Martin, Weber, Jakob, , Cajochen, Christian, & Bernsmeier, Christine. (2024). Significant nocturnal wakefulness after sleep onset in metabolic dysfunction–associated steatotic liver disease. Frontiers in Network Physiology, 4. https://doi.org/10.3389/fnetp.2024.1458665
Schaeffer, Sofia, Bogdanovic, Andrijana, Hildebrandt, Talitha, Flint, Emilio, Geng, Anne, Pecenko, Sylvia, Lussier, Paul, Strumberger, Michael A., Meyer, Martin, Weber, Jakob, , Cajochen, Christian, & Bernsmeier, Christine. (2024). Significant nocturnal wakefulness after sleep onset in metabolic dysfunction–associated steatotic liver disease. Frontiers in Network Physiology, 4. https://doi.org/10.3389/fnetp.2024.1458665
Borisov, Angel N., Kutz, Alexander, Christ, Emanuel R., , & Ebrahimi, Fahim. (2023). Canagliflozin and Metabolic Associated Fatty Liver Disease in Patients With Diabetes Mellitus: New Insights From CANVAS. Journal of Clinical Endocrinology and Metabolism, 108(11), 2940–2949. https://doi.org/10.1210/clinem/dgad249
Borisov, Angel N., Kutz, Alexander, Christ, Emanuel R., , & Ebrahimi, Fahim. (2023). Canagliflozin and Metabolic Associated Fatty Liver Disease in Patients With Diabetes Mellitus: New Insights From CANVAS. Journal of Clinical Endocrinology and Metabolism, 108(11), 2940–2949. https://doi.org/10.1210/clinem/dgad249
Nikolaou, Kostas C., Godbersen, Svenja, Manoharan, Muthiah, Wieland, Stefan, , & Stoffel, Markus. (2023). Inflammation-induced TRIM21 represses hepatic steatosis by promoting the ubiquitination of lipogenic regulators. JCI Insight, 8(21). https://doi.org/10.1172/jci.insight.164694
Nikolaou, Kostas C., Godbersen, Svenja, Manoharan, Muthiah, Wieland, Stefan, , & Stoffel, Markus. (2023). Inflammation-induced TRIM21 represses hepatic steatosis by promoting the ubiquitination of lipogenic regulators. JCI Insight, 8(21). https://doi.org/10.1172/jci.insight.164694
Pu, W., Zhu, H., Zhang, M., Pikiolek, M., Ercan, C., Li, J., Huang, X., Han, X., Zhang, Z., Lv, Z., Li, Y., Liu, K., He, L., Liu, X., Heim, M. H., Terracciano, L. M., Tchorz, J. S., & Zhou, B. (2023). Bipotent transitional liver progenitor cells contribute to liver regeneration. Nature Genetics, 55(4), 651–664. https://doi.org/10.1038/s41588-023-01335-9
Pu, W., Zhu, H., Zhang, M., Pikiolek, M., Ercan, C., Li, J., Huang, X., Han, X., Zhang, Z., Lv, Z., Li, Y., Liu, K., He, L., Liu, X., Heim, M. H., Terracciano, L. M., Tchorz, J. S., & Zhou, B. (2023). Bipotent transitional liver progenitor cells contribute to liver regeneration. Nature Genetics, 55(4), 651–664. https://doi.org/10.1038/s41588-023-01335-9
Pop, Oltin-Tiberiu, Geng, Anne, Flint, Emilio, Singanayagam, Arjuna, Ercan, Caner, Possamai, Lucia, Patel, Vishal C., Kuenzler, Patrizia, Meier, Marie-Anne, Soysal, Savas, Hruz, Petr, Kollmar, Otto, Tatham, Kate C., Ward, Josie K., Müllhaupt, Beat, Weber, Achim, Wendon, Julia, Niess, Jan Hendrik, , et al. (2023). AXL Expression on Homeostatic Resident Liver Macrophages Is Reduced in Cirrhosis Following GAS6 Production by Hepatic Stellate Cells [Journal-article]. Cellular and Molecular Gastroenterology and Hepatology, 16(1), 17–37. https://doi.org/10.1016/j.jcmgh.2023.03.007
Pop, Oltin-Tiberiu, Geng, Anne, Flint, Emilio, Singanayagam, Arjuna, Ercan, Caner, Possamai, Lucia, Patel, Vishal C., Kuenzler, Patrizia, Meier, Marie-Anne, Soysal, Savas, Hruz, Petr, Kollmar, Otto, Tatham, Kate C., Ward, Josie K., Müllhaupt, Beat, Weber, Achim, Wendon, Julia, Niess, Jan Hendrik, , et al. (2023). AXL Expression on Homeostatic Resident Liver Macrophages Is Reduced in Cirrhosis Following GAS6 Production by Hepatic Stellate Cells [Journal-article]. Cellular and Molecular Gastroenterology and Hepatology, 16(1), 17–37. https://doi.org/10.1016/j.jcmgh.2023.03.007
Ercan, Caner, Coto-Llerena, Mairene, Gallon, John, Fourie, Lana, Marinucci, Mattia, Hess, Gabriel F., Vosbeck, Jürg, Taha-Mehlitz, Stephanie, Boldanova, Tuyana, Meier, Marie-Anne, Tzankov, Alexandar, Matter, Matthias S., Hoffmann, Martin H. K., Di Tommaso, Luca, von Flüe, Markus, Ng, Charlotte K. Y., , Soysal, Savas D., Terracciano, Luigi M., et al. (2022). Genomic analysis of focal nodular hyperplasia with associated hepatocellular carcinoma unveils its malignant potential: a case report. Communications Medicine, 2(1). https://doi.org/10.1038/s43856-022-00074-y
Ercan, Caner, Coto-Llerena, Mairene, Gallon, John, Fourie, Lana, Marinucci, Mattia, Hess, Gabriel F., Vosbeck, Jürg, Taha-Mehlitz, Stephanie, Boldanova, Tuyana, Meier, Marie-Anne, Tzankov, Alexandar, Matter, Matthias S., Hoffmann, Martin H. K., Di Tommaso, Luca, von Flüe, Markus, Ng, Charlotte K. Y., , Soysal, Savas D., Terracciano, Luigi M., et al. (2022). Genomic analysis of focal nodular hyperplasia with associated hepatocellular carcinoma unveils its malignant potential: a case report. Communications Medicine, 2(1). https://doi.org/10.1038/s43856-022-00074-y
Meier, Marie-Anne, Nuciforo, Sandro, Coto-Llerena, Mairene, Gallon, John, Matter, Matthias S., Ercan, Caner, Vosbeck, Jürg, Terracciano, Luigi M., Soysal, Savas D., Boll, Daniel, Kollmar, Otto, Delaloye, Raphaël, Piscuoglio, Salvatore, & (2022). Patient-derived tumor organoids for personalized medicine in a patient with rare hepatocellular carcinoma with neuroendocrine differentiation: a case report. Communications Medicine, 2(1). https://doi.org/10.1038/s43856-022-00150-3
Meier, Marie-Anne, Nuciforo, Sandro, Coto-Llerena, Mairene, Gallon, John, Matter, Matthias S., Ercan, Caner, Vosbeck, Jürg, Terracciano, Luigi M., Soysal, Savas D., Boll, Daniel, Kollmar, Otto, Delaloye, Raphaël, Piscuoglio, Salvatore, & (2022). Patient-derived tumor organoids for personalized medicine in a patient with rare hepatocellular carcinoma with neuroendocrine differentiation: a case report. Communications Medicine, 2(1). https://doi.org/10.1038/s43856-022-00150-3
Suslov A, , & Wieland S. (2022). Studying Hepatitis Virus-Host Interactions in Patient Liver Biopsies. Viruses, 14(11). https://doi.org/10.3390/v14112490
Suslov A, , & Wieland S. (2022). Studying Hepatitis Virus-Host Interactions in Patient Liver Biopsies. Viruses, 14(11). https://doi.org/10.3390/v14112490
Ebrahimi F, Semela D, & . (2022). Impact of propofol sedation on the diagnostic accuracy of hepatic venous pressure gradient measurements in patients with cirrhosis. Hepatology International, 16(4), 817–823. https://doi.org/10.1007/s12072-021-10261-z
Ebrahimi F, Semela D, & . (2022). Impact of propofol sedation on the diagnostic accuracy of hepatic venous pressure gradient measurements in patients with cirrhosis. Hepatology International, 16(4), 817–823. https://doi.org/10.1007/s12072-021-10261-z
Donners R, Zaugg C, Gehweiler JE, Boldanova T, , Terracciano LM, & Boll DT. (2022). Computed tomography (CT) and magnetic resonance imaging (MRI) of diffuse liver disease: a multiparametric predictive modelling algorithm can aid categorization of liver parenchyma. Quantitative Imaging in Medicine and Surgery, 12(2), 1186–1197. https://doi.org/10.21037/qims-21-384
Donners R, Zaugg C, Gehweiler JE, Boldanova T, , Terracciano LM, & Boll DT. (2022). Computed tomography (CT) and magnetic resonance imaging (MRI) of diffuse liver disease: a multiparametric predictive modelling algorithm can aid categorization of liver parenchyma. Quantitative Imaging in Medicine and Surgery, 12(2), 1186–1197. https://doi.org/10.21037/qims-21-384
Gallon J, Coto-Llerena M, Ercan C, Bianco G, Paradiso V, Nuciforo S, Taha-Melitz S, Meier MA, Boldanova T, Pérez-Del-Pulgar S, Rodríguez-Tajes S, von Flüe M, Soysal SD, Kollmar O, Llovet JM, Villanueva A, Terracciano LM, , Ng CKY, & Piscuoglio S. (2022). Epigenetic priming in chronic liver disease impacts the transcriptional and genetic landscapes of hepatocellular carcinoma. Molecular Oncology, 16(3), 665–682. https://doi.org/10.1002/1878-0261.13154
Gallon J, Coto-Llerena M, Ercan C, Bianco G, Paradiso V, Nuciforo S, Taha-Melitz S, Meier MA, Boldanova T, Pérez-Del-Pulgar S, Rodríguez-Tajes S, von Flüe M, Soysal SD, Kollmar O, Llovet JM, Villanueva A, Terracciano LM, , Ng CKY, & Piscuoglio S. (2022). Epigenetic priming in chronic liver disease impacts the transcriptional and genetic landscapes of hepatocellular carcinoma. Molecular Oncology, 16(3), 665–682. https://doi.org/10.1002/1878-0261.13154
Lett, Martin J, Mehta, Hema, Keogh, Adrian, Jaeger, Tina, Jacquet, Maxime, Powell, Kate, Meier, Marie-Anne, Fofana, Isabel, Melhem, Hassan, Vosbeck, Jürg, Cathomas, Gieri, Heigl, Andres, , Burri, Emanuel, Mertz, Kirsten D, Niess, Jan Hendrik, Kollmar, Otto, Zech, Christoph J, Ivanek, Robert, et al. (2022). Stimulatory MAIT cell antigens reach the circulation and are efficiently metabolised and presented by human liver cells [Journal-article]. Gut, 71(12), 2526–2538. https://doi.org/10.1136/gutjnl-2021-324478
Lett, Martin J, Mehta, Hema, Keogh, Adrian, Jaeger, Tina, Jacquet, Maxime, Powell, Kate, Meier, Marie-Anne, Fofana, Isabel, Melhem, Hassan, Vosbeck, Jürg, Cathomas, Gieri, Heigl, Andres, , Burri, Emanuel, Mertz, Kirsten D, Niess, Jan Hendrik, Kollmar, Otto, Zech, Christoph J, Ivanek, Robert, et al. (2022). Stimulatory MAIT cell antigens reach the circulation and are efficiently metabolised and presented by human liver cells [Journal-article]. Gut, 71(12), 2526–2538. https://doi.org/10.1136/gutjnl-2021-324478
Lett, Martin J, Mehta, Hema, Keogh, Adrian, Jaeger, Tina, Jacquet, Maxime, Powell, Kate, Meier, Marie-Anne, Fofana, Isabel, Melhem, Hassan, Vosbeck, Jurg, Cathomas, Gieri, Heigl, Andres, , Burri, Emanuel, Mertz, Kirsten D, Niess, Jan Hendrik, Kollmar, Otto, Zech, Christoph J, Ivanek, Robert, et al. (2022). Stimulatory MAIT cell antigens reach the circulation and are efficiently metabolised and presented by human liver cells. Gut, 71(12), 2526–2538. https://doi.org/10.1136/gutjnl-2021-324478
Lett, Martin J, Mehta, Hema, Keogh, Adrian, Jaeger, Tina, Jacquet, Maxime, Powell, Kate, Meier, Marie-Anne, Fofana, Isabel, Melhem, Hassan, Vosbeck, Jurg, Cathomas, Gieri, Heigl, Andres, , Burri, Emanuel, Mertz, Kirsten D, Niess, Jan Hendrik, Kollmar, Otto, Zech, Christoph J, Ivanek, Robert, et al. (2022). Stimulatory MAIT cell antigens reach the circulation and are efficiently metabolised and presented by human liver cells. Gut, 71(12), 2526–2538. https://doi.org/10.1136/gutjnl-2021-324478
Ng, Charlotte K. Y., Dazert, Eva, Boldanova, Tuyana, Coto-Llerena, Mairene, Nuciforo, Sandro, Ercan, Caner, Suslov, Aleksei, Meier, Marie-Anne, Bock, Thomas, Schmidt, Alexander, Ketterer, Sylvia, Wang, Xueya, Wieland, Stefan, Matter, Matthias S., Colombi, Marco, Piscuoglio, Salvatore, Terracciano, Luigi M., Hall, Michael N., & (2022). Integrative proteogenomic characterization of hepatocellular carcinoma across etiologies and stages. Nature Communications, 13(1), 2436. https://doi.org/10.1038/s41467-022-29960-8
Ng, Charlotte K. Y., Dazert, Eva, Boldanova, Tuyana, Coto-Llerena, Mairene, Nuciforo, Sandro, Ercan, Caner, Suslov, Aleksei, Meier, Marie-Anne, Bock, Thomas, Schmidt, Alexander, Ketterer, Sylvia, Wang, Xueya, Wieland, Stefan, Matter, Matthias S., Colombi, Marco, Piscuoglio, Salvatore, Terracciano, Luigi M., Hall, Michael N., & (2022). Integrative proteogenomic characterization of hepatocellular carcinoma across etiologies and stages. Nature Communications, 13(1), 2436. https://doi.org/10.1038/s41467-022-29960-8
Park, Sujin, Mossmann, Dirk, Chen, Qian, Wang, Xueya, Dazert, Eva, Colombi, Marco, Schmidt, Alexander, Ryback, Brendan, Ng, Charlotte K. Y., Terracciano, Luigi M., , & Hall, Michael N. (2022). Transcription factors TEAD2 and E2A globally repress acetyl-CoA synthesis to promote tumorigenesis. Molecular Cell, 82(22), 4246–4261. https://doi.org/10.1016/j.molcel.2022.10.027
Park, Sujin, Mossmann, Dirk, Chen, Qian, Wang, Xueya, Dazert, Eva, Colombi, Marco, Schmidt, Alexander, Ryback, Brendan, Ng, Charlotte K. Y., Terracciano, Luigi M., , & Hall, Michael N. (2022). Transcription factors TEAD2 and E2A globally repress acetyl-CoA synthesis to promote tumorigenesis. Molecular Cell, 82(22), 4246–4261. https://doi.org/10.1016/j.molcel.2022.10.027
Suter, Polina, Dazert, Eva, Kuipers, Jack, Ng, Charlotte K. Y., Boldanova, Tuyana, Hall, Michael N., , & Beerenwinkel, Niko. (2022). Multi-omics subtyping of hepatocellular carcinoma patients using a Bayesian network mixture model. PLoS Computational Biology, 18(9), e1009767. https://doi.org/10.1371/journal.pcbi.1009767
Suter, Polina, Dazert, Eva, Kuipers, Jack, Ng, Charlotte K. Y., Boldanova, Tuyana, Hall, Michael N., , & Beerenwinkel, Niko. (2022). Multi-omics subtyping of hepatocellular carcinoma patients using a Bayesian network mixture model. PLoS Computational Biology, 18(9), e1009767. https://doi.org/10.1371/journal.pcbi.1009767
Chen Q., Coto-Llerena M., Suslov A, Teixeira R.D., Fofana I., Nuciforo S, Hofmann M., Thimme R., Hensel N., Lohmann V., Ng C.K.Y., Rosenberger G., Wieland S, & (2021). Interferon lambda 4 impairs hepatitis C viral antigen presentation and attenuates T cell responses. Nature Communications, 12(1), 4882. https://doi.org/10.1038/s41467-021-25218-x
Chen Q., Coto-Llerena M., Suslov A, Teixeira R.D., Fofana I., Nuciforo S, Hofmann M., Thimme R., Hensel N., Lohmann V., Ng C.K.Y., Rosenberger G., Wieland S, & (2021). Interferon lambda 4 impairs hepatitis C viral antigen presentation and attenuates T cell responses. Nature Communications, 12(1), 4882. https://doi.org/10.1038/s41467-021-25218-x
Ding L, Sun W., Balaz M, He A, Klug M, Wieland S, Caiazzo R, Raverdy V, Pattou F, Lefebvre P, Lodhi IJ, Staels B., , & Wolfrum C. (2021). Peroxisomal β-oxidation acts as a sensor for intracellular fatty acids and regulates lipolysis. Nature Metabolism, 3(12), 1648–1661. https://doi.org/10.1038/s42255-021-00489-2
Ding L, Sun W., Balaz M, He A, Klug M, Wieland S, Caiazzo R, Raverdy V, Pattou F, Lefebvre P, Lodhi IJ, Staels B., , & Wolfrum C. (2021). Peroxisomal β-oxidation acts as a sensor for intracellular fatty acids and regulates lipolysis. Nature Metabolism, 3(12), 1648–1661. https://doi.org/10.1038/s42255-021-00489-2
Boldanova T, Fucile G, Vosshenrich J, Suslov A, Ercan C, Coto-Llerena M, Terracciano LM, Zech CJ, Boll DT, Wieland S, & . (2021). Supervised learning based on tumor imaging and biopsy transcriptomics predicts response of hepatocellular carcinoma to transarterial chemoembolization. Cell Reports Medicine, 2(11), 100444. https://doi.org/10.1016/j.xcrm.2021.100444
Boldanova T, Fucile G, Vosshenrich J, Suslov A, Ercan C, Coto-Llerena M, Terracciano LM, Zech CJ, Boll DT, Wieland S, & . (2021). Supervised learning based on tumor imaging and biopsy transcriptomics predicts response of hepatocellular carcinoma to transarterial chemoembolization. Cell Reports Medicine, 2(11), 100444. https://doi.org/10.1016/j.xcrm.2021.100444
Meier MA, Meier MA, Calabrese D, Suslov A, Terracciano LM, , & Wieland S. (2021). Ubiquitous expression of HBsAg from integrated HBV DNA in patients with low viral load. Journal of Hepatology, 75(4), 840–847. https://doi.org/10.1016/j.jhep.2021.04.051
Meier MA, Meier MA, Calabrese D, Suslov A, Terracciano LM, , & Wieland S. (2021). Ubiquitous expression of HBsAg from integrated HBV DNA in patients with low viral load. Journal of Hepatology, 75(4), 840–847. https://doi.org/10.1016/j.jhep.2021.04.051
Vosshenrich J, Zech CJ, Heye T, Boldanova T, Fucile G, Wieland S, , & Boll DT. (2021). Response prediction of hepatocellular carcinoma undergoing transcatheter arterial chemoembolization: unlocking the potential of CT texture analysis through nested decision tree models. European Radiology, 31(6), 4367–4376. https://doi.org/10.1007/s00330-020-07511-3
Vosshenrich J, Zech CJ, Heye T, Boldanova T, Fucile G, Wieland S, , & Boll DT. (2021). Response prediction of hepatocellular carcinoma undergoing transcatheter arterial chemoembolization: unlocking the potential of CT texture analysis through nested decision tree models. European Radiology, 31(6), 4367–4376. https://doi.org/10.1007/s00330-020-07511-3
Suslov A, Meier MA, Ketterer S, Wang X, Wieland S, & . (2021). Transition to HBeAg-negative chronic hepatitis B virus infection is associated with reduced cccDNA transcriptional activity. Journal of Hepatology, 74(4), 794–800. https://doi.org/10.1016/j.jhep.2020.11.003
Suslov A, Meier MA, Ketterer S, Wang X, Wieland S, & . (2021). Transition to HBeAg-negative chronic hepatitis B virus infection is associated with reduced cccDNA transcriptional activity. Journal of Hepatology, 74(4), 794–800. https://doi.org/10.1016/j.jhep.2020.11.003
Nuciforo S, & . (2021). Organoids to model liver disease. JHEP Reports, 3(1), 100198. https://doi.org/10.1016/j.jhepr.2020.100198
Nuciforo S, & . (2021). Organoids to model liver disease. JHEP Reports, 3(1), 100198. https://doi.org/10.1016/j.jhepr.2020.100198
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