Clinical and biological implications of CD133-positive and CD133-negative cells in glioblastomas

Laboratory Investigation - Tập 88 Số 8 - Trang 808-815 - 2008
Kyeung Min Joo1, Shi Yean Kim1, Xun Jin2, Sang Yong Song3, Doo‐Sik Kong1, Jung-II Lee1, Ji Won Jeon1, Mi Hyan Kim1, Bong Gu Kang4, Yong Jin Jung1, Juyoun Jin1, Seung‐Chyul Hong1, Woong‐Yang Park5, Dong‐Sup Lee6, Hyunggee Kim2, Do‐Hyun Nam4
1Department of Neurosurgery, Samsung Medical Center and Samsung Biomedical Research Institute, Sungkyunkwan University School of Medicine, Seoul, South Korea
2School of Life Sciences and Biotechnology, Korea University, Seoul, South Korea
3Department of Pathology, Samsung Medical Center and Samsung Biomedical Research Institute, Sungkyunkwan University School of Medicine, Seoul, South Korea
4Cancer Stem Cell Research Center, Samsung Medical Center and Samsung Biomedical Research Institute, Sungkyunkwan University School of Medicine, Seoul, South Korea
5Department of Biochemistry and Molecular Biology, Seoul National University College of Medicine, Seoul, South Korea
6Department of Anatomy, Seoul National University College of Medicine, Seoul, South Korea

Tóm tắt

Từ khóa


Tài liệu tham khảo

Reya, 2001, Stem cells, cancer, and cancer stem cells, Nature, 414, 105, 10.1038/35102167

Pardal, 2003, Applying the principles of stem-cell biology to cancer, Nat Rev Cancer, 3, 895, 10.1038/nrc1232

Singh, 2004, Identification of human brain tumour initiating cells, Nature, 432, 396, 10.1038/nature03128

Galli, 2004, Isolation and characterization of tumorigenic, stem-like neural precursors from human glioblastoma, Cancer Res, 64, 7011, 10.1158/0008-5472.CAN-04-1364

Hemmati, 2003, Cancerous stem cells can arise from pediatric brain tumors, Proc Natl Acad Sci USA, 100, 15178, 10.1073/pnas.2036535100

Yuan, 2004, Isolation of cancer stem cells from adult glioblastoma multiforme, Oncogene, 23, 9392, 10.1038/sj.onc.1208311

Beier, 2007, CD133(+) and CD133(−) glioblastoma-derived cancer stem cells show differential growth characteristics and molecular profiles, Cancer Res, 67, 4010, 10.1158/0008-5472.CAN-06-4180

Pfenninger, 2007, CD133 is not present on neurogenic astrocytes in the adult subventricular zone, but on embryonic neural stem cells, ependymal cells, and glioblastoma cells, Cancer Res, 67, 5727, 10.1158/0008-5472.CAN-07-0183

Sakariassen, 2007, Cancer stem cells as mediators of treatment resistance in brain tumors: status and controversies, Neoplasia, 9, 882, 10.1593/neo.07658

Phillips, 2006, Molecular subclasses of high-grade glioma predict prognosis, delineate a pattern of disease progression, and resemble stages in neurogenesis, Cancer Cell, 9, 157, 10.1016/j.ccr.2006.02.019

Kleihues, 2002, The WHO classification of tumors of the nervous system, J Neuropathol Exp Neurol, 61, 215, 10.1093/jnen/61.3.215

Nam, 2004, Intracranial inhibition of glioma cell growth by cyclooxygenase-2 inhibitor celecoxib, Oncol Rep, 11, 263

Lee, 2006, Tumor stem cells derived from glioblastomas cultured in bFGF and EGF more closely mirror the phenotype and genotype of primary tumors than do serum-cultured cell lines, Cancer Cell, 9, 391, 10.1016/j.ccr.2006.03.030

Coons, 1995, Cytogenetic and flow cytometry DNA analysis of regional heterogeneity in a low grade human glioma, Cancer Res, 55, 1569

Wiltshire, 2000, Comparative genetic patterns of glioblastoma multiforme: potential diagnostic tool for tumor classification, Neuro Oncol, 2, 164, 10.1093/neuonc/2.3.164

Ohgaki, 2007, Genetic pathways to primary and secondary glioblastoma, Am J Pathol, 170, 1445, 10.2353/ajpath.2007.070011

Bao, 2006, Glioma stem cells promote radioresistance by preferential activation of the DNA damage response, Nature, 444, 756, 10.1038/nature05236

Liu, 2006, Analysis of gene expression and chemoresistance of CD133+ cancer stem cells in glioblastoma, Mol Cancer, 5, 67, 10.1186/1476-4598-5-67