권호기사보기
기사명 | 저자명 | 페이지 | 원문 | 기사목차 |
---|
대표형(전거형, Authority) | 생물정보 | 이형(異形, Variant) | 소속 | 직위 | 직업 | 활동분야 | 주기 | 서지 | |
---|---|---|---|---|---|---|---|---|---|
연구/단체명을 입력해주세요. |
|
|
|
|
|
* 주제를 선택하시면 검색 상세로 이동합니다.
Central neurocytoma (CN) has been known as a benign neuronal tumor. In rare cases, CN undergoes malignant transformation to glioblastomas (GBM). Here we examined its cellular origin by characterizing differentiation potential and gene expression of CN-spheroids. First, we demonstrate that both CN tissue and cultured primary cells recapitulate the hierarchal cellular composition of subventricular zone (SVZ), which is comprised of neural stem cells (NSCs), transit amplifying progenitors (TAPs), and neuroblasts. We then derived spheroids from CN which displayed EGFR+/ MASH+ TAP and BLBP+ radial glial cell (RGC) characteristic, and mitotic neurogenesis and gliogenesis by single spheroids were observed with cycling multipotential cells. CN-spheroids expressed increased levels of pluripotency and tumor stem cell genes such as KLF4 and TPD5L1, when compared to their differentiated cells and human NSCs. Importantly, Gene Set Enrichment Analysis showed that gene sets of GBM-Spheroids, EGFR Signaling, and Packaging of Telomere Ends are enriched in CN-spheroids in comparison with their differentiated cells. We speculate that CN tumor stem cells have TAP and RGC characteristics, and upregulation of EGFR signaling as well as downregulation of eph-ephrin signaling have critical roles in tumorigenesis of CN. And their ephemeral nature of TAPs destined to neuroblasts, might reflect benign nature of CN.
번호 | 참고문헌 | 국회도서관 소장유무 |
---|---|---|
1 | Smith AB, Smirniotopoulos JG, Horkanyne-Szakaly I (2013)From the radiologic pathology archives: intraventricular neoplasms: radiologic-pathologic correlation. Radiographics 33:21-43. | 미소장 |
2 | Chen CL, Shen CC, Wang J, Lu CH, Lee HT (2008) Central neurocytoma: a clinical, radiological and pathological study of nine cases. Clin Neurol Neurosurg 110:129-136. | 미소장 |
3 | Muragaki Y, Chernov M, Tajika Y, Kubo O, Iseki H, Hori T, Takakura K (2009) Coincidence of central neurocytoma and multiple glioblastomas: a rare case report. J Neurooncol 93:431-435. | 미소장 |
4 | Junttila MR, de Sauvage FJ (2013) Influence of tumour microenvironment heterogeneity on therapeutic response. Nature 501:346-354. | 미소장 |
5 | Sim FJ, Keyoung HM, Goldman JE, Kim DK, Jung HW, Roy NS, Goldman SA (2006) Neurocytoma is a tumor of adult neuronal progenitor cells. J Neurosci 26:12544-12555. | 미소장 |
6 | Paek SH, Shin HY, Kim JW, Park SH, Son JH, Kim DG (2010)Primary culture of central neurocytoma: a case report. J Korean Med Sci 25:798-803. | 미소장 |
7 | Hassoun J, Gambarelli D, Grisoli F, Pellet W, Salamon G, Pellissier JF, Toga M (1982) Central neurocytoma. An electronmicroscopic study of two cases. Acta Neuropathol 56:151-156. | 미소장 |
8 | von Deimling A, Kleihues P, Saremaslani P, Yasargil MG, Spoerri O, Südhof TC, Wiestler OD (1991) Histogenesis and differentiation potential of central neurocytomas. Lab Invest 64:585-591. | 미소장 |
9 | Gage FH, Coates PW, Palmer TD, Kuhn HG, Fisher LJ, Suhonen JO, Peterson DA, Suhr ST, Ray J (1995) Survival and differentiation of adult neuronal progenitor cells transplanted to the adult brain. Proc Natl Acad Sci U S A 92:11879-11883. | 미소장 |
10 | Vescovi AL, Galli R, Reynolds BA (2006) Brain tumour stem cells. Nat Rev Cancer 6:425-436. | 미소장 |
11 | Singh SK, Hawkins C, Clarke ID, Squire JA, Bayani J, Hide T, Henkelman RM, Cusimano MD, Dirks PB (2004) Identifica-tion of human brain tumour initiating cells. Nature 432:396-401. | 미소장 |
12 | Hemmati HD, Nakano I, Lazareff JA, Masterman-Smith M, Geschwind DH, Bronner-Fraser M, Kornblum HI (2003)Cancerous stem cells can arise from pediatric brain tumors. Proc Natl Acad Sci U S A 100:15178-15183. | 미소장 |
13 | Taylor MD, Poppleton H, Fuller C, Su X, Liu Y, Jensen P, Magdaleno S, Dalton J, Calabrese C, Board J, Macdonald T, Rutka J, Guha A, Gajjar A, Curran T, Gilbertson RJ (2005) Radial glia cells are candidate stem cells of ependymoma. Cancer Cell 8:323-335. | 미소장 |
14 | Gil-Perotin S, Marin-Husstege M, Li J, Soriano-Navarro M, Zindy F, Roussel MF, Garcia-Verdugo JM, Casaccia-Bonnefil P (2006) Loss of p53 induces changes in the behavior of subventricular zone cells: implication for the genesis of glial tumors. J Neurosci 26:1107-1116. | 미소장 |
15 | Doetsch F, García-Verdugo JM, Alvarez-Buylla A (1997) Cellular composition and three-dimensional organization of the subventricular germinal zone in the adult mammalian brain. J Neurosci 17:5046-5061. | 미소장 |
16 | Doetsch F, Caillé I, Lim DA, García-Verdugo JM, AlvarezBuylla A (1999) Subventricular zone astrocytes are neural stem cells in the adult mammalian brain. Cell 97:703-716. | 미소장 |
17 | Alvarez-Buylla A, García-Verdugo JM, Tramontin AD (2001)A unified hypothesis on the lineage of neural stem cells. Nat Rev Neurosci 2:287-293. | 미소장 |
18 | Middeldorp J, Boer K, Sluijs JA, De Filippis L, Encha-Razavi F, Vescovi AL, Swaab DF, Aronica E, Hol EM (2010) GFAPdelta in radial glia and subventricular zone progenitors in the developing human cortex. Development 137:313-321. | 미소장 |
19 | Hack MA, Saghatelyan A, de Chevigny A, Pfeifer A, AsheryPadan R, Lledo PM, Götz M (2005) Neuronal fate determinants of adult olfactory bulb neurogenesis. Nat Neurosci 865-872. | 미소장 |
20 | Cesetti T, Obernier K, Bengtson CP, Fila T, Mandl C, HölzlWenig G, Wörner K, Eckstein V, Ciccolini F (2009) Analysis of stem cell lineage progression in the neonatal subventricular zone identifies EGFR+/NG2- cells as transit-amplifying precursors. Stem Cells 27:1443-1454. | 미소장 |
21 | Mu Y, Lee SW, Gage FH (2010) Signaling in adult neurogenesis. Curr Opin Neurobiol 20:416-423. | 미소장 |
22 | Doetsch F, Petreanu L, Caille I, Garcia-Verdugo JM, AlvarezBuylla A (2002) EGF converts transit-amplifying neurogenic precursors in the adult brain into multipotent stem cells. Neuron 36:1021-1034. | 미소장 |
23 | van Strien ME, van den Berge SA, Hol EM (2011) Migrating neuroblasts in the adult human brain: a stream reduced to a trickle. Cell Res 21:1523-1525. | 미소장 |
24 | Lim DA, Tramontin AD, Trevejo JM, Herrera DG, GarcíaVerdugo JM, Alvarez-Buylla A (2000) Noggin antagonizes BMP signaling to create a niche for adult neurogenesis. Neuron 28:713-726. | 미소장 |
25 | Shin HY, Hong YH, Jang SS, Chae HG, Paek SL, Moon HE, Kim DG, Kim J, Paek SH, Kim SJ (2010) A role of canonical transient receptor potential 5 channel in neuronal differentiation from A2B5 neural progenitor cells. PLoS One 5:e10359. | 미소장 |
26 | Shin HY, Kim JH, Phi JH, Park CK, Kim JE, Kim JH, Paek SH, Wang KC, Kim DG (2008) Endogenous neurogenesis and neovascularization in the neocortex of the rat after focal cerebral ischemia. J Neurosci Res 86:356-367. | 미소장 |
27 | Jeon YK, Park K, Park CK, Paek SH, Jung HW, Park SH (2007)Chromosome 1p and 19q status and p53 and p16 expression patterns as prognostic indicators of oligodendroglial tumors:a clinicopathological study using fluorescence in situ hybridization. Neuropathology 27:10-20. | 미소장 |
28 | Subramanian A, Tamayo P, Mootha VK, Mukherjee S, Ebert BL, Gillette MA, Paulovich A, Pomeroy SL, Golub TR, Lander ES, Mesirov JP (2005) Gene set enrichment analysis: a knowledge-based approach for interpreting genome-wide expression profiles. Proc Natl Acad Sci U S A 102:15545-15550. | 미소장 |
29 | Liberzon A, Subramanian A, Pinchback R, Thorvaldsdóttir H, Tamayo P, Mesirov JP (2011) Molecular signatures database (MSigDB) 3.0. Bioinformatics 27:1739-1740. | 미소장 |
30 | Costa MR, Ortega F, Brill MS, Beckervordersandforth R, Petrone C, Schroeder T, Götz M, Berninger B (2011) Continuous live imaging of adult neural stem cell division and lineage progression in vitro. Development 138:1057-1068. | 미소장 |
31 | Liu Y, Namba T, Liu J, Suzuki R, Shioda S, Seki T (2010) Glial fibrillary acidic protein-expressing neural progenitors give rise to immature neurons via early intermediate progenitors expressing both glial fibrillary acidic protein and neuronal markers in the adult hippocampus. Neuroscience 166:241-251. | 미소장 |
32 | Ponti G, Obernier K, Guinto C, Jose L, Bonfanti L, AlvarezBuylla A (2013) Cell cycle and lineage progression of neural progenitors in the ventricular-subventricular zones of adult mice. Proc Natl Acad Sci U S A 110:E1045-E1054. | 미소장 |
33 | Günther HS, Schmidt NO, Phillips HS, Kemming D, Kharbanda S, Soriano R, Modrusan Z, Meissner H, Westphal M, Lamszus K (2008) Glioblastoma-derived stem cell-enriched cultures form distinct subgroups according to molecular and phenotypic criteria. Oncogene 27:2897-2909. | 미소장 |
34 | Kobayashi S, Shimamura T, Monti S, Steidl U, Hetherington CJ, Lowell AM, Golub T, Meyerson M, Tenen DG, Shapiro GI, Halmos B (2006) Transcriptional profiling identifies cyclin D1 as a critical downstream effector of mutant epidermal growth factor receptor signaling. Cancer Res 66:11389-11398. | 미소장 |
35 | Lazennec G, Richmond A (2010) Chemokines and chemokine receptors: new insights into cancer-related inflammation. Trends Mol Med 16:133-144. | 미소장 |
36 | Mehrmohamadi M, Liu X, Shestov AA, Locasale JW (2014)Characterization of the usage of the serine metabolic network in human cancer. Cell Rep 9:1507-1519. | 미소장 |
37 | Harris MA, Yang H, Low BE, Mukherjee J, Guha A, Bronson RT, Shultz LD, Israel MA, Yun K (2008) Cancer stem cells are enriched in the side population cells in a mouse model of glioma. Cancer Res 68:10051-10059. | 미소장 |
38 | Wang S, Zhan M, Yin J, Abraham JM, Mori Y, Sato F, Xu Y, Olaru A, Berki AT, Li H, Schulmann K, Kan T, Hamilton JP, Paun B, Yu MM, Jin Z, Cheng Y, Ito T, Mantzur C, Greenwald BD, Meltzer SJ (2006) Transcriptional profiling suggests that Barrett's metaplasia is an early intermediate stage in esophageal adenocarcinogenesis. Oncogene 25:3346-3356. | 미소장 |
39 | Verhaak RG, Hoadley KA, Purdom E, Wang V, Qi Y, Wilkerson MD, Miller CR, Ding L, Golub T, Mesirov JP, Alexe G, Lawrence M, O'Kelly M, Tamayo P, Weir BA, Gabriel S, Winckler W, Gupta S, Jakkula L, Feiler HS, Hodgson JG, James CD, Sarkaria JN, Brennan C, Kahn A, Spellman PT, Wilson RK, Speed TP, Gray JW, Meyerson M, Getz G, Perou CM, Hayes DN; Cancer Genome Atlas Research Network (2010)Integrated genomic analysis identifies clinically relevant subtypes of glioblastoma characterized by abnormalities in PDGFRA, IDH1, EGFR, and NF1. Cancer Cell 17:98-110. | 미소장 |
40 | Karpowicz P, Willaime-Morawek S, Balenci L, DeVeale B, Inoue T, van der Kooy D (2009) E-cadherin regulates neural stem cell self-renewal. J Neurosci 29:3885-3896. | 미소장 |
41 | Anastassiou D, Rumjantseva V, Cheng W, Huang J, Canoll PD, Yamashiro DJ, Kandel JJ (2011) Human cancer cells express slug-based epithelial-mesenchymal transition gene expression signature obtained in vivo. BMC Cancer 11:529. | 미소장 |
42 | Abbud RA, Kelleher R, Melmed S (2004) Cell-specific pituitary gene expression profiles after treatment with leukemia inhibitory factor reveal novel modulators for proopiomelanocortin expression. Endocrinology 145:867-880. | 미소장 |
43 | de Magalhães JP, Curado J, Church GM (2009) Meta-analysis of age-related gene expression profiles identifies common signatures of aging. Bioinformatics 25:875-881. | 미소장 |
44 | do Carmo A, Patrico I, Curz MT, Carvalheiro H, Oliveira CR, Lopes MC (2010) CXCL12/CXCR4 promotes motility and proliferation of glioma cells: Cancer Biology & Therapy 2010;9: 56-65. Ann Neurosci 17:85-86. | 미소장 |
45 | Bockstaele L, Bisteau X, Paternot S, Roger PP (2009) Differential regulation of cyclin-dependent kinase 4 (CDK4) and CDK6, evidence that CDK4 might not be activated by CDK7, and design of a CDK6 activating mutation. Mol Cell Biol 29:4188-4200. | 미소장 |
46 | Buzhor E, Harari-Steinberg O, Omer D, Metsuyanim S, JacobHirsch J, Noiman T, Dotan Z, Goldstein RS, Dekel B (2011)Kidney spheroids recapitulate tubular organoids leading to enhanced tubulogenic potency of human kidney-derived cells. Tissue Eng Part A 17:2305-2319. | 미소장 |
47 | Warth A, Simon P, Capper D, Goeppert B, Tabatabai G, Herzog H, Dietz K, Stubenvoll F, Ajaaj R, Becker R, Weller M, Meyermann R, Wolburg H, Mittelbronn M (2007) Expression pattern of the water channel aquaporin-4 in human gliomas is associated with blood-brain barrier disturbance but not with patient survival. J Neurosci Res 85:1336-1346. | 미소장 |
48 | Boutros R, Byrne JA (2005) D53 (TPD52L1) is a cell cycleregulated protein maximally expressed at the G2-M transition in breast cancer cells. Exp Cell Res 310:152-165. | 미소장 |
49 | Castañon E, Bosch-Barrera J, López I, Collado V, Moreno M, López-Picazo JM, Arbea L, Lozano MD, Calvo A, Gil-Bazo I (2013) Id1 and Id3 co-expression correlates with clinical outcome in stage III-N2 non-small cell lung cancer patients treated with definitive chemoradiotherapy. J Transl Med 11:13. | 미소장 |
50 | Jaggupilli A, Elkord E (2012) Significance of CD44 and CD24as cancer stem cell markers: an enduring ambiguity. Clin Dev Immunol 2012:708036. | 미소장 |
51 | Ernst A, Hofmann S, Ahmadi R, Becker N, Korshunov A, Engel F, Hartmann C, Felsberg J, Sabel M, Peterziel H, Durchdewald M, Hess J, Barbus S, Campos B, Starzinski-Powitz A, Unterberg A, Reifenberger G, Lichter P, Herold-Mende C, Radlwimmer B (2009) Genomic and expression profiling of glioblastoma stem cell-like spheroid cultures identifies novel tumor-relevant genes associated with survival. Clin Cancer Res 15:6541-6550. | 미소장 |
52 | Takahashi K, Yamanaka S (2006) Induction of pluripotent stem cells from mouse embryonic and adult fibroblast cultures by defined factors. Cell 126:663-676. | 미소장 |
53 | Morey L, Pascual G, Cozzuto L, Roma G, Wutz A, Benitah SA, Di Croce L (2012) Nonoverlapping functions of the Polycomb group Cbx family of proteins in embryonic stem cells. Cell Stem Cell 10:47-62. | 미소장 |
54 | Rusiniak ME, Kunnev D, Freeland A, Cady GK, Pruitt SC (2012) Mcm2 deficiency results in short deletions allowing high resolution identification of genes contributing to lymphoblastic lymphoma. Oncogene 31:4034-4044. | 미소장 |
55 | Kandouz M, Haidara K, Zhao J, Brisson ML, Batist G (2010)The EphB2 tumor suppressor induces autophagic cell death via concomitant activation of the ERK1/2 and PI3K pathways. Cell Cycle 9:398-407. | 미소장 |
56 | Schauer MC, Stoecklein NH, Theisen J, Kröpil F, Baldus S, Hoelscher A, Feith M, Bölke E, Matuschek C, Budach W, Knoefel WT (2012) The simultaneous expression of both ephrin B3 receptor and E-cadherin in Barrett's adenocarcinoma is associated with favorable clinical staging. Eur J Med Res 17:10. | 미소장 |
57 | Noren NK, Foos G, Hauser CA, Pasquale EB (2006) The EphB4 receptor suppresses breast cancer cell tumorigenicity through an Abl-Crk pathway. Nat Cell Biol 8:815-825. | 미소장 |
58 | Ahlenius H, Chanda S, Webb AE, Yousif I, Karmazin J, Prusiner SB, Brunet A, Südhof TC, Wernig M (2016) FoxO3regulates neuronal reprogramming of cells from postnatal and aging mice. Proc Natl Acad Sci U S A 113:8514-8519. | 미소장 |
59 | Prajerova I, Honsa P, Chvatal A, Anderova M (2010) Distinct effects of sonic hedgehog and Wnt-7a on differentiation of neonatal neural stem/progenitor cells in vitro. Neuroscience 171:693-711. | 미소장 |
60 | Yagita Y, Sakurai T, Tanaka H, Kitagawa K, Colman DR, Shan W (2009) N-cadherin mediates interaction between precursor cells in the subventricular zone and regulates further differentiation. J Neurosci Res 87:3331-3342. | 미소장 |
61 | Khodosevich K, Seeburg PH, Monyer H (2009) Major signaling pathways in migrating neuroblasts. Front Mol Neurosci 2:7. | 미소장 |
62 | Ferrante RJ, Browne SE, Shinobu LA, Bowling AC, Baik MJ, MacGarvey U, Kowall NW, Brown RH Jr, Beal MF (1997)Evidence of increased oxidative damage in both sporadic and familial amyotrophic lateral sclerosis. J Neurochem 69:2064-2074. | 미소장 |
63 | Gonzalez C, Saunders RD, Casal J, Molina I, Carmena M, Ripoll P, Glover DM (1990) Mutations at the asp locus of Drosophila lead to multiple free centrosomes in syncytial embryos, but restrict centrosome duplication in larval neuroblasts. J Cell Sci 96 (Pt 4):605-616. | 미소장 |
64 | Levavasseur F, Zhu Q, Julien JP (1999) No requirement of alpha-internexin for nervous system development and for radial growth of axons. Brain Res Mol Brain Res 69:104-112. | 미소장 |
65 | Dang L, Yoon K, Wang M, Gaiano N (2006) Notch3 signaling promotes radial glial/progenitor character in the mammalian telencephalon. Dev Neurosci 28:58-69. | 미소장 |
66 | Anthony TE, Mason HA, Gridley T, Fishell G, Heintz N (2005)Brain lipid-binding protein is a direct target of Notch signaling in radial glial cells. Genes Dev 19:1028-1033. | 미소장 |
67 | Hartfuss E, Förster E, Bock HH, Hack MA, Leprince P, Luque JM, Herz J, Frotscher M, Götz M (2003) Reelin signaling directly affects radial glia morphology and biochemical maturation. Development 130:4597-4609. | 미소장 |
68 | Rio C, Rieff HI, Qi P, Khurana TS, Corfas G (1997) Neuregulin and erbB receptors play a critical role in neuronal migration. Neuron 19:39-50. | 미소장 |
69 | Kawaguchi A, Ikawa T, Kasukawa T, Ueda HR, Kurimoto K, Saitou M, Matsuzaki F (2008) Single-cell gene profiling defines differential progenitor subclasses in mammalian neurogenesis. Development 135:3113-3124. | 미소장 |
70 | Gangemi RM, Daga A, Marubbi D, Rosatto N, Capra MC, Corte G (2001) Emx2 in adult neural precursor cells. Mech Dev 109:323-329. | 미소장 |
71 | Tham M, Ramasamy S, Gan HT, Ramachandran A, Poonepalli A, Yu YH, Ahmed S (2010) CSPG is a secreted factor that stimulates neural stem cell survival possibly by enhanced EGFR signaling. PLoS One 5:e15341. | 미소장 |
72 | Preston M, Sherman LS (2011) Neural stem cell niches: roles for the hyaluronan-based extracellular matrix. Front Biosci (Schol Ed) 3:1165-1179. | 미소장 |
73 | Tissir F, Goffinet AM (2010) Planar cell polarity signaling in neural development. Curr Opin Neurobiol 20:572-577. | 미소장 |
74 | Ghashghaei HT, Weber J, Pevny L, Schmid R, Schwab MH, Lloyd KC, Eisenstat DD, Lai C, Anton ES (2006) The role of neuregulin-ErbB4 interactions on the proliferation and organization of cells in the subventricular zone. Proc Natl Acad Sci U S A 103:1930-1935. | 미소장 |
75 | Liu JW, Almaguel FG, Bu L, De Leon DD, De Leon M (2008)Expression of E-FABP in PC12 cells increases neurite extension during differentiation: involvement of n-3 and n-6 fatty acids. J Neurochem 106:2015-2029. | 미소장 |
76 | Wylie CJ, Hendricks TJ, Zhang B, Wang L, Lu P, Leahy P, Fox S, Maeno H, Deneris ES (2010) Distinct transcriptomes define rostral and caudal serotonin neurons. J Neurosci 30:670-684. | 미소장 |
77 | Boutin C, Hardt O, de Chevigny A, CoréN, Goebbels S, Seidenfaden R, Bosio A, Cremer H (2010) NeuroD1 induces terminal neuronal differentiation in olfactory neurogenesis. Proc Natl Acad Sci U S A 107:1201-1206. | 미소장 |
78 | Lukaszewicz A, Savatier P, Cortay V, Kennedy H, Dehay C (2002) Contrasting effects of basic fibroblast growth factor and neurotrophin 3 on cell cycle kinetics of mouse cortical stem cells. J Neurosci 22:6610-6622. | 미소장 |
79 | Li HS, Chen JH, Wu W, Fagaly T, Zhou L, Yuan W, Dupuis S, Jiang ZH, Nash W, Gick C, Ornitz DM, Wu JY, Rao Y (1999)Vertebrate slit, a secreted ligand for the transmembrane protein roundabout, is a repellent for olfactory bulb axons. Cell 96:807-818. | 미소장 |
80 | Pruszak J, Ludwig W, Blak A, Alavian K, Isacson O (2009)CD15, CD24, and CD29 define a surface biomarker code for neural lineage differentiation of stem cells. Stem Cells 27:2928-2940. | 미소장 |
81 | Chan CH, Godinho LN, Thomaidou D, Tan SS, Gulisano M, Parnavelas JG (2001) Emx1 is a marker for pyramidal neurons of the cerebral cortex. Cereb Cortex 11:1191-1198. | 미소장 |
82 | Xu H, Dhanasekaran DN, Lee CM, Reddy EP (2010) Regulation of neurite outgrowth by interactions between the scaffolding protein, JNK-associated leucine zipper protein, and neuronal growth-associated protein superior cervical ganglia clone 10. J Biol Chem 285:3548-3553. | 미소장 |
83 | Pesold C, Impagnatiello F, Pisu MG, Uzunov DP, Costa E, Guidotti A, Caruncho HJ (1998) Reelin is preferentially expressed in neurons synthesizing gamma-aminobutyric acid in cortex and hippocampus of adult rats. Proc Natl Acad Sci U S A 95:3221-3226. | 미소장 |
84 | Gratton MO, Torban E, Jasmin SB, Theriault FM, German MS, Stifani S (2003) Hes6 promotes cortical neurogenesis and inhibits Hes1 transcription repression activity by multiple mechanisms. Mol Cell Biol 23:6922-6935. | 미소장 |
85 | Poplawski GH, Tranziska AK, Leshchyns'ka I, Meier ID, Streichert T, Sytnyk V, Schachner M (2012) L1CAM increases MAP2 expression via the MAPK pathway to promote neurite outgrowth. Mol Cell Neurosci 50:169-178. | 미소장 |
86 | Mohlin S, Hamidian A, Påhlman S (2013) HIF2A and IGF2expression correlates in human neuroblastoma cells and normal immature sympathetic neuroblasts. Neoplasia 15:328-334. | 미소장 |
87 | Zhang H, Verkman AS (2015) Aquaporin-1 water permeability as a novel determinant of axonal regeneration in dorsal root ganglion neurons. Exp Neurol 265:152-159. | 미소장 |
88 | Nomura T, Göritz C, Catchpole T, Henkemeyer M, Frisén J (2010) EphB signaling controls lineage plasticity of adult neural stem cell niche cells. Cell Stem Cell 7:730-743. | 미소장 |
89 | Yang Z, Xie Q, Hu CL, Jiang Q, Shen HF, Schachner M, Zhao WJ (2017) CHL1 is expressed and functions as a malignancy promoter in glioma cells. Front Mol Neurosci 10:324. | 미소장 |
90 | Paulus W, Baur I, Dours-Zimmermann MT, Zimmermann DR (1996) Differential expression of versican isoforms in brain tumors. J Neuropathol Exp Neurol 55:528-533. | 미소장 |
91 | Vessichelli M, Ferravante A, Zotti T, Reale C, Scudiero I, Picariello G, Vito P, Stilo R (2012) Neuroepithelial transforming gene 1 (Net1) binds to caspase activation and recruitment domain (CARD)- and membrane-associated guanylate kinaselike domain-containing (CARMA) proteins and regulates nuclear factor κB activation. J Biol Chem 287:13722-13730. | 미소장 |
92 | Wallace GC 4th, Dixon-Mah YN, Vandergrift WA 3rd, Ray SK, Haar CP, Mittendorf AM, Patel SJ, Banik NL, Giglio P, Das A (2013) Targeting oncogenic ALK and MET: a promising therapeutic strategy for glioblastoma. Metab Brain Dis 28:355-366. | 미소장 |
93 | Taube JM, Young GD, McMiller TL, Chen S, Salas JT, Pritchard TS, Xu H, Meeker AK, Fan J, Cheadle C, Berger AE, Pardoll DM, Topalian SL (2015) Differential expression of immune-regulatory genes associated with PD-L1 display in melanoma: implications for PD-1 pathway blockade. Clin Cancer Res 21:3969-3976. | 미소장 |
94 | Pu P, Zhang Z, Kang C, Jiang R, Jia Z, Wang G, Jiang H (2009)Downregulation of Wnt2 and beta-catenin by siRNA suppresses malignant glioma cell growth. Cancer Gene Ther 16:351-361. | 미소장 |
95 | Yeung G, Mulero JJ, Berntsen RP, Loeb DB, Drmanac R, Ford JE (1999) Cloning of a novel epidermal growth factor repeat containing gene EGFL6: expressed in tumor and fetal tissues. Genomics 62:304-307. | 미소장 |
96 | Ellis CA, Vos MD, Howell H, Vallecorsa T, Fults DW, Clark GJ (2002) Rig is a novel Ras-related protein and potential neural tumor suppressor. Proc Natl Acad Sci U S A 99:9876-9881. | 미소장 |
97 | Kojima T, Shimazui T, Hinotsu S, Joraku A, Oikawa T, Kawai K, Horie R, Suzuki H, Nagashima R, Yoshikawa K, Michiue T, Asashima M, Akaza H, Uchida K (2009) Decreased expression of CXXC4 promotes a malignant phenotype in renal cell carcinoma by activating Wnt signaling. Oncogene 28:297-305. | 미소장 |
98 | Conover JC, Doetsch F, Garcia-Verdugo JM, Gale NW, Yancopoulos GD, Alvarez-Buylla A (2000) Disruption of Eph/ephrin signaling affects migration and proliferation in the adult subventricular zone. Nat Neurosci 3:1091-1097. | 미소장 |
99 | Namba T, Mochizuki H, Suzuki R, Onodera M, Yamaguchi M, Namiki H, Shioda S, Seki T (2011) Time-lapse imaging reveals symmetric neurogenic cell division of GFAP-expressing progenitors for expansion of postnatal dentate granule neurons. PLoS One 6:e25303. | 미소장 |
100 | Sirko S, von Holst A, Weber A, Wizenmann A, Theocharidis U, Götz M, Faissner A (2010) Chondroitin sulfates are required for fibroblast growth factor-2-dependent proliferation and maintenance in neural stem cells and for epidermal growth factor-dependent migration of their progeny. Stem Cells 28:775-787. | 미소장 |
101 | Ricard J, Salinas J, Garcia L, Liebl DJ (2006) EphrinB3 regulates cell proliferation and survival in adult neurogenesis. Mol Cell Neurosci 31:713-722. | 미소장 |
102 | Gilbertson RJ, Bentley L, Hernan R, Junttila TT, Frank AJ, Haapasalo H, Connelly M, Wetmore C, Curran T, Elenius K, Ellison DW (2002) ERBB receptor signaling promotes ependymoma cell proliferation and represents a potential novel therapeutic target for this disease. Clin Cancer Res 8:3054-3064. | 미소장 |
103 | Corcoran RB, Bachar Raveh T, Barakat MT, Lee EY, Scott MP (2008) Insulin-like growth factor 2 is required for progression to advanced medulloblastoma in patched1 heterozygous mice. Cancer Res 68:8788-8795. | 미소장 |
*표시는 필수 입력사항입니다.
*전화번호 | ※ '-' 없이 휴대폰번호를 입력하세요 |
---|
기사명 | 저자명 | 페이지 | 원문 | 기사목차 |
---|
번호 | 발행일자 | 권호명 | 제본정보 | 자료실 | 원문 | 신청 페이지 |
---|
도서위치안내: / 서가번호:
우편복사 목록담기를 완료하였습니다.
*표시는 필수 입력사항입니다.
저장 되었습니다.