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Identification of Pancreatic Cancer Stem Cells

Cancer Research · 2007 · Vol. 67(3) · pp. 1030–1037
Chenwei LiDavid G. HeidtPiero DalerbaCharles BurantLanjing ZhangVolkan AdsayMax S. WichaMichael F. ClarkeDiane M. Simeone

Abstract

Emerging evidence has suggested that the capability of a tumor to grow and propagate is dependent on a small subset of cells within a tumor, termed cancer stem cells. Although data have been provided to support this theory in human blood, brain, and breast cancers, the identity of pancreatic cancer stem cells has not been determined. Using a xenograft model in which primary human pancreatic adenocarcinomas were grown in immunocompromised mice, we identified a highly tumorigenic subpopulation of pancreatic cancer cells expressing the cell surface markers CD44, CD24, and epithelial-specific antigen (ESA). Pancreatic cancer cells with the CD44(+)CD24(+)ESA(+) phenotype (0.2-0.8% of pancreatic cancer cells) had a 100-fold increased tumorigenic potential compared with nontumorigenic cancer cells, with 50% of animals injected with as few as 100 CD44(+)CD24(+)ESA(+) cells forming tumors that were histologically indistinguishable from the human tumors from which they originated. The enhanced ability of CD44(+)CD24(+)ESA(+) pancreatic cancer cells to form tumors was confirmed in an orthotopic pancreatic tail injection model. The CD44(+)CD24(+)ESA(+) pancreatic cancer cells showed the stem cell properties of self-renewal, the ability to produce differentiated progeny, and increased expression of the developmental signaling molecule sonic hedgehog. Identification of pancreatic cancer stem cells and further elucidation of the signaling pathways that regulate their growth and survival may provide novel therapeutic approaches to treat pancreatic cancer, which is notoriously resistant to standard chemotherapy and radiation.

Cancer Cells and MetastasisPancreatic and Hepatic Oncology ResearchHedgehog Signaling Pathway StudiesPancreatic cancerCD44Cancer stem cellCancer researchStem cellCD24CancerBiologyCancer cellCA19-9

MeSH terms

AdenocarcinomaAnimalsAntigens, NeoplasmDisease Models, AnimalHumansMalePancreatic NeoplasmsTransplantation, HeterologousNeoplastic Stem CellsSignal TransductionUp-RegulationMice, SCIDMice, Inbred NODHyaluronan ReceptorsMice

Funding

  • American Diabetes Association
  • Elsa U. Pardee Foundation
  • Barbara Ann Karmanos Cancer Institute
Citations
3,356
FWCI
98.01
field-weighted impact
References
35
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100%
vs. same field & year
Citations per year
References
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Nature · 2001 · 9,682 citations
CD133, a novel marker for human prostatic epithelial stem cells
Journal of Cell Science · 2004 · 763 citations
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