Suchbegriffe: NEUROENDOCRINE TUMORS - GENETICS , . Treffer: 11
Alvarez, MJ; Subramaniam, PS; Tang, LH; Grunn, A; Aburi, M; Rieckhof, G; Komissarova, EV; Hagan, EA; Bodei, L; Clemons, PA; Dela Cruz, FS; Dhall, D; Diolaiti, D; Fraker, DA; Ghavami, A; Kaemmerer, D; Karan, C; Kidd, M; Kim, KM; Kim, HC; Kunju, LP; Langel, U; Li, Z; Lee, J; Li, H; LiVolsi, V; Pfragner, R; Schwach, G; Rainey, AR; Realubit, RB; Remotti, H; Regberg, J; Roses, R; Rustgi, A; Sepulveda, AR; Serra, S; Shi, CJ; Yuan, XP; Barberis, M; Bergamaschi, R; Chinnaiyan, AM; Detre, T; Ezzat, S; Frilling, A; Hommann, M; Jaeger, D; Kim, MK; Knudsen, BS; Kung, AL; Leahy, E; Metz, DC; Milsom, JW; Park, YS; Reidy-Lagunes, D; Schreiber, S; Washington, K; Wiedenmann, B; Modlin, I; Califano, A
A precision oncology approach to the pharmacological targeting of mechanistic dependencies in neuroendocrine tumors.
Nat Genet. 2018; 50(7):979-989
Doi: 10.1038/s41588-018-0138-4
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Nieser, M; Henopp, T; Brix, J; Stoß, L; Sitek, B; Naboulsi, W; Anlauf, M; Schlitter, AM; Klöppel, G; Gress, T; Moll, R; Bartsch, DK; Heverhagen, AE; Knoefel, WT; Kaemmerer, D; Haybaeck, J; Fend, F; Sperveslage, J; Sipos, B
Loss of Chromosome 18 in Neuroendocrine Tumors of the Small Intestine: The Enigma Remains.
Neuroendocrinology. 2017; 104(3):302-312
Doi: 10.1159/000446917
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Pfanzagl, B; Mechtcheriakova, D; Meshcheryakova, A; Aberle, SW; Pfragner, R; Jensen-Jarolim, E
Activation of the ileal neuroendocrine tumor cell line P-STS by acetylcholine is amplified by histamine: role of H3R and H4R.
Sci Rep. 2017; 7(1):1313-1313
Doi: 10.1038/s41598-017-01453-5
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Miller, HC; Frampton, AE; Malczewska, A; Ottaviani, S; Stronach, EA; Flora, R; Kaemmerer, D; Schwach, G; Pfragner, R; Faiz, O; Kos-Kudła, B; Hanna, GB; Stebbing, J; Castellano, L; Frilling, A
MicroRNAs associated with small bowel neuroendocrine tumours and their metastases.
Endocr Relat Cancer. 2016; 23(9):711-726
Doi: 10.1530/ERC-16-0044
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Zanini, S; Giovinazzo, F; Alaimo, D; Lawrence, B; Pfragner, R; Bassi, C; Modlin, I; Kidd, M
GNA15 expression in small intestinal neuroendocrine neoplasia: functional and signalling pathway analyses.
Cell Signal. 2015; 27(5):899-907
Doi: 10.1016/j.cellsig.2015.02.001
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Giovinazzo, F; Schimmack, S; Svejda, B; Alaimo, D; Pfragner, R; Modlin, I; Kidd, M
Chromogranin A and its fragments as regulators of small intestinal neuroendocrine neoplasm proliferation.
PLoS One. 2013; 8(11):e81111-e81111
Doi: 10.1371/journal.pone.0081111
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Rinner, B; Gallè, B; Trajanoski, S; Fischer, C; Hatz, M; Maierhofer, T; Michelitsch, G; Moinfar, F; Stelzer, I; Pfragner, R; Guelly, C
Molecular evidence for the bi-clonal origin of neuroendocrine tumor derived metastases.
BMC Genomics. 2012; 13(6):594-594
Doi: 10.1186/1471-2164-13-594
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Drozdov, I; Svejda, B; Gustafsson, BI; Mane, S; Pfragner, R; Kidd, M; Modlin, IM
Gene network inference and biochemical assessment delineates GPCR pathways and CREB targets in small intestinal neuroendocrine neoplasia.
PLoS One. 2011; 6(8):e22457-e22457
Doi: 10.1371/journal.pone.0022457
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Petzmann, S; Ullmann, R; Halbwedl, I; Popper, HH
Analysis of chromosome-11 aberrations in pulmonary and gastrointestinal carcinoids: an array comparative genomic hybridization-based study.
VIRCHOWS ARCHIV. 2004; 445(2): 151-159.
Doi: 10.1007/s00428-004-1052-y
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D'Adda, T; Candidus, S; Denk, H; Bordi, C; Höfler, H
Gastric neuroendocrine neoplasms: tumour clonality and malignancy-associated large X-chromosomal deletions.
J Pathol. 1999; 189(3):394-401
Doi: 10.1002/(SICI)1096-9896(199911)189:3<394::AID-PATH444>3.0.CO;2-P
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Ullmann, R; Schwendel, A; Klemen, H; Wolf, G; Petersen, I; Popper, HH
Unbalanced chromosomal aberrations in neuroendocrine lung tumors as detected by comparative genomic hybridization.
Hum Pathol. 1998; 29(10):1145-1149
Doi: 10.1016%2FS0046-8177%2898%2990428-2
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