Abstract
Colon carcinoma is one of the leading causes of death from cancer and is characterized by a heterogenic pool of cells with distinct differentiation patterns. Recently, it was reported that a population of undifferentiated cells from a primary tumor, so-called cancer stem cells (CSC), can reconstitute the original tumor on xenotransplantation. Here, we show that spheroid cultures of these colon CSCs contain expression of CD133, CD166, CD44, CD29, CD24, Lgr5, and nuclear beta-catenin, which have all been suggested to mark the (cancer) stem cell population. More importantly, by using these spheroid cultures or freshly isolated tumor cells from multiple colon carcinomas, we now provide compelling evidence to indicate that the capacity to propagate a tumor with all differentiated progeny resides in a single CSC. Single-cell-cloned CSCs can form an adenocarcinoma on xenotransplantation but do not generate the stroma within these tumors. Moreover, they can self-renew and are capable of multilineage differentiation. Further analysis indicated that the lineage decision is dictated by phosphoinositide 3-kinase (PI3K) signaling in CSCs. These data support the hypothesis that tumor hierarchy can be traced back to a single CSC that contains multilineage differentiation capacity, and provides clues to the regulation of differentiation in colon cancers in vivo.
MeSH Terms
Adenocarcinoma/metabolism,pathology
Biomarkers, Tumor/metabolism
Cell Differentiation/drug effects
Cell Lineage
Cell Separation/methods
Colonic Neoplasms/pathology
Humans
Neoplastic Stem Cells/metabolism,pathology
Phosphatidylinositol 3-Kinases/metabolism
Phosphoinositide-3 Kinase Inhibitors
Protein Kinase Inhibitors/pharmacology
Tissue Culture Techniques
Chemicals
Biomarkers, Tumor
Phosphoinositide-3 Kinase Inhibitors
Protein Kinase Inhibitors
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Vermeulen L
Laboratory for Experimental Oncology and Radiobiology, Center for Experimental Molecular Medicine, Academic Medical Center, Meibergdreef 9 1105 AZ, Amsterdam, The Netherlands.
Todaro M
de Sousa Mello F
Sprick M R
Kemper K
Perez Alea M
Richel D J
Stassi G
Medema J P
References (26)
26 references, click to expand
-
Stem cells and their niches.
Science. 2006 Mar 31;311(5769):1880-5
PMID: 16574858
-
Localization of villin, a cytoskeletal protein specific to microvilli, in human ileum and colon and in colonic neoplasms.
Gastroenterology. 1988 Feb;94(2):343-52
PMID: 3335311
-
Phosphatidylinositol 3-kinase mediates proliferative signals in intestinal epithelial cells.
Gut. 2003 Oct;52(10):1472-8
PMID: 12970141
-
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. 2006 May;9(5):391-403
PMID: 16697959
-
Socializing with the neighbors: stem cells and their niche.
Cell. 2004 Mar 19;116(6):769-78
PMID: 15035980
-
Cancer stem cells: models and concepts.
Annu Rev Med. 2007;58:267-84
PMID: 17002552
-
Identification and expansion of human colon-cancer-initiating cells.
Nature. 2007 Jan 4;445(7123):111-5
PMID: 17122771
-
Generation of neurons and astrocytes from isolated cells of the adult mammalian central nervous system.
Science. 1992 Mar 27;255(5052):1707-10
PMID: 1553558
-
Therapeutic implications of cancer stem cells.
Curr Opin Genet Dev. 2004 Feb;14(1):43-7
PMID: 15108804
-
Expression of MUC2-mucin in colorectal adenomas and carcinomas of different histological types.
Int J Cancer. 1994 Nov 1;59(3):301-6
PMID: 7927933
-
The clonal evolution of tumor cell populations.
Science. 1976 Oct 1;194(4260):23-8
PMID: 959840
-
Notch/gamma-secretase inhibition turns proliferative cells in intestinal crypts and adenomas into goblet cells.
Nature. 2005 Jun 16;435(7044):959-63
PMID: 15959515
-
Phenotypic characterization of human colorectal cancer stem cells.
Proc Natl Acad Sci U S A. 2007 Jun 12;104(24):10158-63
PMID: 17548814
-
Cancer stem cells.
N Engl J Med. 2006 Sep 21;355(12):1253-61
PMID: 16990388
-
Heterogeneous expression of neuroendocrine marker proteins in human undifferentiated carcinoma of the colon and rectum.
Ann N Y Acad Sci. 2004 Apr;1014:270-4
PMID: 15153444
-
Isolation and characterization of multiple cell types from a single human colonic carcinoma: tumourigenicity of these cell types in a xenograft system.
J Pathol. 1993 Aug;170(4):441-50
PMID: 8410493
-
Identification of stem cells in small intestine and colon by marker gene Lgr5.
Nature. 2007 Oct 25;449(7165):1003-7
PMID: 17934449
-
The fuzzy math of solid tumor stem cells: a perspective.
Cancer Res. 2007 Oct 1;67(19):8985-8
PMID: 17908998
-
Cancer stem cells--perspectives on current status and future directions: AACR Workshop on cancer stem cells.
Cancer Res. 2006 Oct 1;66(19):9339-44
PMID: 16990346
-
Cancer stem cells--old concepts, new insights.
Cell Death Differ. 2008 Jun;15(6):947-58
PMID: 18259194
-
Ultrastructural comparison of differentiation of stem cells of murine adenocarcinomas of colon and breast with their normal counterparts.
J Natl Cancer Inst. 1977 May;58(5):1329-45
PMID: 857028
-
Wnt/beta-catenin signaling in cancer stemness and malignant behavior.
Curr Opin Cell Biol. 2007 Apr;19(2):150-8
PMID: 17306971
-
Isolation and in vitro propagation of tumorigenic breast cancer cells with stem/progenitor cell properties.
Cancer Res. 2005 Jul 1;65(13):5506-11
PMID: 15994920
-
A human colon cancer cell capable of initiating tumour growth in immunodeficient mice.
Nature. 2007 Jan 4;445(7123):106-10
PMID: 17122772
-
Normal stem cells and cancer stem cells: the niche matters.
Cancer Res. 2006 May 1;66(9):4553-7
PMID: 16651403
-
Colon cancer stem cells dictate tumor growth and resist cell death by production of interleukin-4.
Cell Stem Cell. 2007 Oct 11;1(4):389-402
PMID: 18371377