How Stemlike Are Sphere Cultures From Long-term Cancer Cell Lines? Lessons From Mouse Glioma Models
暂无分享,去创建一个
G. Reifenberger | M. Weller | H. Binder | K. Frei | K. Stühler | E. Willscher | K. Kaulich | P. Roth | A. Stefanski | Mushfika Ahmad
[1] G. Reifenberger,et al. EANO guideline for the diagnosis and treatment of anaplastic gliomas and glioblastoma. , 2014, The Lancet. Oncology.
[2] H. Binder,et al. Portraying the expression landscapes of cancer subtypes , 2013 .
[3] E. Helseth,et al. A population-based study on the effect of temozolomide in the treatment of glioblastoma multiforme. , 2012, Neuro-oncology.
[4] Z. Naito,et al. CD44 in human glioma correlates with histopathological grade and cell migration , 2012, Pathology international.
[5] Rolf Bjerkvig,et al. In vivo models of primary brain tumors: pitfalls and perspectives , 2012, Neuro-oncology.
[6] Leandro Martínez,et al. Medium Chain Fatty Acids Are Selective Peroxisome Proliferator Activated Receptor (PPAR) γ Activators and Pan-PPAR Partial Agonists , 2012, PloS one.
[7] Hideyuki Okano,et al. RNA-Binding Protein Musashi1 Modulates Glioma Cell Growth through the Post-Transcriptional Regulation of Notch and PI3 Kinase/Akt Signaling Pathways , 2012, PloS one.
[8] Lindy E. Barrett,et al. Self-renewal does not predict tumor growth potential in mouse models of high-grade glioma. , 2012, Cancer cell.
[9] H. Binder,et al. Mining SOM expression portraits: feature selection and integrating concepts of molecular function , 2011, BioData Mining.
[10] Xiaosheng Wang. Computational analysis of expression of human embryonic stem cell-associated signatures in tumors , 2011, BMC Research Notes.
[11] Martin von Bergen,et al. Expression cartography of human tissues using self organizing maps , 2011, BMC Bioinformatics.
[12] Erika Pastrana,et al. Eyes wide open: a critical review of sphere-formation as an assay for stem cells. , 2011, Cell stem cell.
[13] M. Westphal,et al. A distinct subset of glioma cell lines with stem cell‐like properties reflects the transcriptional phenotype of glioblastomas and overexpresses CXCR4 as therapeutic target , 2011, Glia.
[14] J. Baselga,et al. TGF-β Receptor Inhibitors Target the CD44(high)/Id1(high) Glioma-Initiating Cell Population in Human Glioblastoma. , 2010, Cancer cell.
[15] Michael Sabel,et al. Genomic and Expression Profiling of Glioblastoma Stem Cell–Like Spheroid Cultures Identifies Novel Tumor-Relevant Genes Associated with Survival , 2009, Clinical Cancer Research.
[16] Yong Yang,et al. Isolation and characterization of cancer stem like cells in human glioblastoma cell lines. , 2009, Cancer letters.
[17] R. Russell,et al. Glioma stem cell lines expanded in adherent culture have tumor-specific phenotypes and are suitable for chemical and genetic screens. , 2009, Cell stem cell.
[18] Austin G Smith,et al. CD133 (Prominin) Negative Human Neural Stem Cells Are Clonogenic and Tripotent , 2009, PloS one.
[19] Xinyu Wang,et al. Detection of Cancer Stem Cells from the C6 Glioma Cell Line , 2009, The Journal of international medical research.
[20] Stephan Preibisch,et al. "Hook"-calibration of GeneChip-microarrays: Chip characteristics and expression measures , 2008, Algorithms for Molecular Biology.
[21] Dong-Sup Lee,et al. Clinical and biological implications of CD133-positive and CD133-negative cells in glioblastomas , 2008, Laboratory Investigation.
[22] G. Reifenberger,et al. Temozolomide preferentially depletes cancer stem cells in glioblastoma. , 2008, Cancer research.
[23] Xiaofeng Yang,et al. Identification of cancer stem-like cells in the C6 glioma cell line and the limitation of current identification methods , 2008, In Vitro Cellular & Developmental Biology - Animal.
[24] W. Hall,et al. Persistence of CD133+ cells in human and mouse glioma cell lines: detailed characterization of GL261 glioma cells with cancer stem cell-like properties. , 2008, Stem cells and development.
[25] T. Mikkelsen,et al. Genomic Changes and Gene Expression Profiles Reveal That Established Glioma Cell Lines Are Poorly Representative of Primary Human Gliomas , 2008, Molecular Cancer Research.
[26] Mark W. Dewhirst,et al. Glioma stem cells promote radioresistance by preferential activation of the DNA damage response , 2006, Nature.
[27] F. Menghi,et al. Neurospheres enriched in cancer stem-like cells are highly effective in eliciting a dendritic cell-mediated immune response against malignant gliomas. , 2006, Cancer research.
[28] L. Ricci-Vitiani,et al. Chemotherapy resistance of glioblastoma stem cells , 2006, Cell Death and Differentiation.
[29] R. Henkelman,et al. Identification of human brain tumour initiating cells , 2004, Nature.
[30] Ugo Orfanelli,et al. Isolation and Characterization of Tumorigenic, Stem-like Neural Precursors from Human Glioblastoma , 2004, Cancer Research.
[31] Rafael A Irizarry,et al. Exploration, normalization, and summaries of high density oligonucleotide array probe level data. , 2003, Biostatistics.
[32] D. Steindler,et al. Human cortical glial tumors contain neural stem‐like cells expressing astroglial and neuronal markers in vitro , 2002, Glia.
[33] P. Braun,et al. Transcriptional Regulation of 2′,3′‐Cyclic Nucleotide 3′‐Phosphodiesterase Gene Expression by Cyclic AMP in C6 Cells , 2000, Journal of neurochemistry.
[34] Daniel A. Lim,et al. Subventricular Zone Astrocytes Are Neural Stem Cells in the Adult Mammalian Brain , 1999, Cell.
[35] S. Scherer,et al. Differential regulation of the 2′,3′-cyclic nucleotide 3′-phosphodiesterase gene during oligodendrocyte development , 1994, Neuron.
[36] H. Fraser. Astrocytomas in an inbred mouse strain , 1971, The Journal of pathology.
[37] D. Rall,et al. Studies on the chemotherapy of experimental brain tumors: development of an experimental model. , 1970, Cancer research.
[38] H. M. Zimmerman,et al. Experimental Brain Tumors: II. Tumors Produced with Benzpyrene. , 1943, The American journal of pathology.
[39] Tomasz Stokowy,et al. MALDI-typing of infectious algae of the genus Prototheca using SOM portraits. , 2012, Journal of microbiological methods.
[40] C. Tseng,et al. Evaluation of the prognostic value of CD44 in glioblastoma multiforme. , 2010, Anticancer research.
[41] Molecular Cancer BioMed Central , 2004 .
[42] D. Bigner,et al. Tumorigenic cell culture lines from a spontaneous VM/Dk murine astrocytoma (SMA) , 2004, Acta Neuropathologica.