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Einträge von Pilo, Maria G. auf dem Publikationsserver

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Gehe zu: 2022 | 2019 | 2018 | 2017 | 2016
Anzahl der Einträge: 9.

2022

Cigliano, Antonio, Zhang, Shanshan, Ribback, Silvia, Steinmann, Sara, Sini, Marcella, Ament, Cindy E., Utpatel, Kirsten, Song, Xinhua, Wang, Jingxiao , Pilo, Maria G., Berger, Fabian, Wang, Haichuan , Tao, Junyan, Li, Xiaolei, Pes, Giovanni M. , Mancarella, Serena, Giannelli, Gianluigi, Dombrowski, Frank, Evert, Matthias, Calvisi, Diego F., Chen, Xin und Evert, Katja (2022) The Hippo pathway effector TAZ induces intrahepatic cholangiocarcinoma in mice and is ubiquitously activated in the human disease. Journal of Experimental & Clinical Cancer Research 41, art.no.192.

2019

Che, Li, Paliogiannis, Panagiotis, Cigliano, Antonio , Pilo, Maria G., Chen, Xin und Calvisi, Diego F. (2019) Pathogenetic, Prognostic, and Therapeutic Role of Fatty Acid Synthase in Human Hepatocellular Carcinoma. Frontiers in Oncology 9 (1412), S. 1-10.

Che, Li, Chi, Wenna, Qiao, Yu, Zhang, Jie, Song, Xinhua, Liu, Ye, Li, Lei, Jia, Jiaoyuan, Pilo, Maria G., Wang, Jingxiao, Cigliano, Antonio , Ma, Zhilong, Kuang, Wenhua, Tang, Zefang, Zhang, Zemin, Shui, Guanghou, Ribback, Silvia, Dombrowski, Frank, Evert, Matthias, Pascale, Rosa Maria, Cossu, Carla, Pes, Giovanni Mario , Osborne, Timothy F., Calvisi, Diego F., Chen, Xin und Chen, Ligong (2019) Cholesterol biosynthesis supports the growth of hepatocarcinoma lesions depleted of fatty acid synthase in mice and humans. Gut 69 (1), S. 177-186. Volltext nicht vorhanden.

2018

Song, Xinhua, Liu, Xianqiong, Wang, Haichuan , Wang, Jingxiao , Qiao, Yu, Cigliano, Antonio, Utpatel, Kirsten, Ribback, Silvia, Pilo, Maria G., Serra, Marina, Gordan, John D., Che, Li, Zhang, Shanshan, Cossu, Antonio, Porcu, Alberto, Pascale, Rosa M., Dombrowski, Frank, Hu, Hongbo, Calvisi, Diego F., Evert, Matthias und Chen, Xin (2018) Combined CDK4/6 and Pan-mTOR Inhibition Is Synergistic Against Intrahepatic Cholangiocarcinoma. Clinical Cancer Research 25 (1), S. 403-413. Volltext nicht vorhanden.

2017

Cigliano, Antonio , Wang, Chunmei, Pilo, Maria G., Szydlowska, Marta , Brozzetti, Stefania , Latte, Gavinella, Pes, Giovanni M., Pascale, Rosa M., Seddaiu, Maria A., Vidili, Gianpaolo, Ribback, Silvia, Dombrowski, Frank, Evert, Matthias, Chen, Xin und Calvisi, Diego F. (2017) Inhibition of HSF1 suppresses the growth of hepatocarcinoma cell lines <i>in vitro</i> and AKT-driven hepatocarcinogenesis in mice. Oncotarget 8 (33). Volltext nicht vorhanden.

Che, Li, Pilo, Maria G., Cigliano, Antonio , Latte, Gavinella , Simile, Maria M., Ribback, Silvia, Dombrowski, Frank, Evert, Matthias, Chen, Xin und Calvisi, Diego F. (2017) Oncogene dependent requirement of fatty acid synthase in hepatocellular carcinoma. Cell Cycle 16 (6), S. 499-507. Volltext nicht vorhanden.

Zhang, Shanshan, Song, Xinhua, Cao, Dan, Xu, Zhong, Fan, Biao, Che, Li, Hu, Junjie, Chen, Bin, Dong, Mingjie, Pilo, Maria G., Cigliano, Antonio , Evert, Katja, Ribback, Silvia, Dombrowski, Frank, Pascale, Rosa M., Cossu, Antonio, Vidili, Gianpaolo, Porcu, Alberto, Simile, Maria M., Pes, Giovanni M., Giannelli, Gianluigi, Gordan, John, Wei, Lixin, Evert, Matthias, Cong, Wenming, Calvisi, Diego F. und Chen, Xin (2017) Pan-mTOR inhibitor MLN0128 is effective against intrahepatic cholangiocarcinoma in mice. Journal of Hepatology 67 (6), S. 1194-1203. Volltext nicht vorhanden.

2016

Wang, Chunmei, Che, Li, Hu, Junjie, Zhang, Shanshan, Jiang, Lijie, Latte, Gavinella , Demartis, Maria I., Tao, Junyan, Gui, Bing, Pilo, Maria G., Ribback, Silvia, Dombrowski, Frank, Evert, Matthias, Calvisi, Diego F. und Chen, Xin (2016) Activated mutant forms of PIK3CA cooperate with RasV12 or c-Met to induce liver tumour formation in mice via AKT2/mTORC1 cascade. Liver International 36 (8), S. 1176-1186. Volltext nicht vorhanden.

Hu, Junjie, Che, Li, Li, Lei, Pilo, Maria G., Cigliano, Antonio , Ribback, Silvia, Li, Xiaolei, Latte, Gavinella , Mela, Marta, Evert, Matthias, Dombrowski, Frank, Zheng, Guohua, Chen, Xin und Calvisi, Diego F. (2016) Co-activation of AKT and c-Met triggers rapid hepatocellular carcinoma development via the mTORC1/FASN pathway in mice. Scientific Reports 6 (1). Volltext nicht vorhanden.

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