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FGFR genetic alterations predict for sensitivity to NVP-BGJ398, a selective pan-FGFR inhibitor
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FGFR-Mediated Reactivation of MAPK Signaling Attenuates Antitumor Effects of Imatinib in Gastrointestinal Stromal Tumors
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The Cancer Cell Line Encyclopedia enables predictive modelling of anticancer drug sensitivity
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Published in Nature (London) (29.03.2012)
Published in Nature (London) (29.03.2012)
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Published in Science translational medicine (29.09.2010)
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A Drug Resistance Screen Using a Selective MET Inhibitor Reveals a Spectrum of Mutations That Partially Overlap with Activating Mutations Found in Cancer Patients
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Correction: Gene Expression Ratios Lead to Accurate and Translatable Predictors of DR5 Agonism across Multiple Tumor Lineages
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SMOOTHENED ANTAGONISM FOR TREATMENT OF HEDGEHOG PATHWAY-RELATED DISORDERS
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Year of Publication 15.10.2015
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Year of Publication 15.10.2015
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Published in Nature (London) (13.12.2012)
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Addendum: The Cancer Cell Line Encyclopedia enables predictive modelling of anticancer drug sensitivity
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Published in Nature (London) (01.01.2019)
Published in Nature (London) (01.01.2019)
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Abstract 1620: Dovitinib has anti-tumor activity in gastrointestinal stromal tumor (GIST) cell lines
Growney, Joseph D., Li, Fang, Qiu, Shumei, Gorbatcheva, Bella, Battalagine, Linda, Mestan, Juergen, Manley, Paul, Squires, Matthew, Cao, Alex, Monahan, John E.
Published in Cancer research (Chicago, Ill.) (15.04.2013)
Published in Cancer research (Chicago, Ill.) (15.04.2013)
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Gene Expression Ratios Lead to Accurate and Translatable Predictors of DR5 Agonism across Multiple Tumor Lineages: e0138486
Reddy, Anupama, Growney, Joseph D, Wilson, Nick S, Emery, Caroline M, Johnson, Jennifer A, Ward, Rebecca, Monaco, Kelli A, Korn, Joshua, Monahan, John E, Stump, Mark D
Published in PloS one (01.09.2015)
Published in PloS one (01.09.2015)
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The CancerCell Line Encyclopedia enables predictive modelling of anticancer drug sensitivity
Barretina, Jordi, Caponigro, Giordano, Stransky, Nicolas, Venkatesan, Kavitha, Margolin, Adam A, Kim, Sungjoon, Wilson, Christopher J, Lehár, Joseph, Kryukov, Gregory V, Sonkin, Dmitriy, Reddy, Anupama, Liu, Manway, Murray, Lauren, Berger, Michael F, Monahan, John E, Morais, Paula, Meltzer, Jodi, Korejwa, Adam, Jané-Valbuena, Judit, Mapa, Felipa A, Thibault, Joseph, Bric-Furlong, Eva, Raman, Pichai, Shipway, Aaron, Engels, Ingo H, Cheng, Jill, Yu, Guoying K, Yu, Jianjun, Aspesi, Peter, de Silva, Melanie, Jagtap, Kalpana, Jones, Michael D, Wang, Li, Hatton, Charles, Palescandolo, Emanuele, Gupta, Supriya, Mahan, Scott, Sougnez, Carrie, Onofrio, Robert C, Liefeld, Ted, MacConaill, Laura, Winckler, Wendy, Reich, Michael, Li, Nanxin, Mesirov, Jill P, Gabriel, Stacey B, Getz, Gad, Ardlie, Kristin, Chan, Vivien, Myer, Vic E, Weber, Barbara L, Porter, Jeff, Warmuth, Markus, Finan, Peter, Harris, Jennifer L, Meyerson, Matthew, Golub, Todd R, Morrissey, Michael P, Sellers, William R, Schlegel, Robert, Garraway, Levi A
Published in Nature (London) (29.03.2012)
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Published in Nature (London) (29.03.2012)
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NUCLEIC ACID AMPLIFICATION WITH DNA-DEPENDENT RNA POLYMERASE ACTIVITY OF RNA REPLICASES
KAATHERINE M. MILLER, CHRISTOPHER L. FITT, RICHARD A. MARTINELLI, RANDALL L. DIMOND, JOHN E. MONAHAN, JAMES W. SCHUMM, GEOFFREY R. HUDSON, MARK A. MAFFITT, LEOPOLDO G. MENDOZA, EDWARD E. PAHUSKI, STEVEN J. EKENBERG, JAMES R. HARTNENTT
Year of Publication 15.11.1999
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Year of Publication 15.11.1999
Patent