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- W2159291539 abstract "Background & AimsAs in other tumor types, progression of pancreatic cancer may require a functionally unique population of cancer stem cells. Although such cells have been identified in many invasive cancers, it is not clear whether they emerge during early or late stages of tumorigenesis. Using mouse models and human pancreatic cancer cell lines, we investigated whether preinvasive pancreatic neoplasia contains a subpopulation of cells with distinct morphologies and cancer stem cell–like properties.MethodsPancreatic tissue samples were collected from the KCPdx1, KPCPdx1, and KCiMist1 mouse models of pancreatic intraepithelial neoplasia (PanIN) and analyzed by confocal and electron microscopy, lineage tracing, and fluorescence-activated cell sorting. Subpopulations of human pancreatic ductal adenocarcinoma (PDAC) cells were similarly analyzed and also used in complementary DNA microarray analyses.ResultsThe microtubule regulator DCLK1 marked a morphologically distinct and functionally unique population of pancreatic cancer–initiating cells. These cells displayed morphological and molecular features of gastrointestinal tuft cells. Cells that expressed DCLK1 also expressed high levels of ATAT1, HES1, HEY1, IGF1R, and ABL1, and manipulation of these pathways in PDAC cell lines inhibited their clonogenic potential. Pharmacological inhibition of γ-secretase activity reduced the abundance of these cells in murine PanIN in a manner that correlated with inhibition of PanIN progression.ConclusionsHuman PDAC cells and pancreatic neoplasms in mice contain morphologically and functionally distinct subpopulations that have cancer stem cell–like properties. These populations can be identified at the earliest stages of pancreatic tumorigenesis and provide new cellular and molecular targets for pancreatic cancer treatment and/or chemoprevention. As in other tumor types, progression of pancreatic cancer may require a functionally unique population of cancer stem cells. Although such cells have been identified in many invasive cancers, it is not clear whether they emerge during early or late stages of tumorigenesis. Using mouse models and human pancreatic cancer cell lines, we investigated whether preinvasive pancreatic neoplasia contains a subpopulation of cells with distinct morphologies and cancer stem cell–like properties. Pancreatic tissue samples were collected from the KCPdx1, KPCPdx1, and KCiMist1 mouse models of pancreatic intraepithelial neoplasia (PanIN) and analyzed by confocal and electron microscopy, lineage tracing, and fluorescence-activated cell sorting. Subpopulations of human pancreatic ductal adenocarcinoma (PDAC) cells were similarly analyzed and also used in complementary DNA microarray analyses. The microtubule regulator DCLK1 marked a morphologically distinct and functionally unique population of pancreatic cancer–initiating cells. These cells displayed morphological and molecular features of gastrointestinal tuft cells. Cells that expressed DCLK1 also expressed high levels of ATAT1, HES1, HEY1, IGF1R, and ABL1, and manipulation of these pathways in PDAC cell lines inhibited their clonogenic potential. Pharmacological inhibition of γ-secretase activity reduced the abundance of these cells in murine PanIN in a manner that correlated with inhibition of PanIN progression. Human PDAC cells and pancreatic neoplasms in mice contain morphologically and functionally distinct subpopulations that have cancer stem cell–like properties. These populations can be identified at the earliest stages of pancreatic tumorigenesis and provide new cellular and molecular targets for pancreatic cancer treatment and/or chemoprevention." @default.
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- W2159291539 date "2014-01-01" @default.
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- W2159291539 title "DCLK1 Marks a Morphologically Distinct Subpopulation of Cells With Stem Cell Properties in Preinvasive Pancreatic Cancer" @default.
- W2159291539 cites W100164186 @default.
- W2159291539 cites W1943370337 @default.
- W2159291539 cites W1971648238 @default.
- W2159291539 cites W1983549526 @default.
- W2159291539 cites W1984167248 @default.
- W2159291539 cites W2001914873 @default.
- W2159291539 cites W2019214567 @default.
- W2159291539 cites W2019264784 @default.
- W2159291539 cites W2041423972 @default.
- W2159291539 cites W2050306701 @default.
- W2159291539 cites W2056768114 @default.
- W2159291539 cites W2062867276 @default.
- W2159291539 cites W2066135299 @default.
- W2159291539 cites W2066362124 @default.
- W2159291539 cites W2069064270 @default.
- W2159291539 cites W2078510083 @default.
- W2159291539 cites W2083320328 @default.
- W2159291539 cites W2084074138 @default.
- W2159291539 cites W2084239507 @default.
- W2159291539 cites W2090279335 @default.
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- W2159291539 doi "https://doi.org/10.1053/j.gastro.2013.09.050" @default.
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