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Tumor-promoting effects of pancreatic cancer cell exosomes on THP-1-derived macrophages
by
Matters, Gail L.
, Linton, Samuel S.
, Kester, Mark
, Abraham, Thomas
, Butler, Peter J.
, Fox, Todd
, Liao, Jason
, Clawson, Gary A.
in
Acids
/ Adenocarcinoma
/ Arachidonic acid
/ Arachidonic Acid - metabolism
/ Ascites
/ Biochemistry
/ Biology and Life Sciences
/ Biotechnology
/ Breast cancer
/ CD11c antigen
/ Cell Line, Tumor
/ Diagnosis
/ Docking
/ Epithelial cells
/ Exosomes
/ Gelatinase B
/ Gene expression
/ Humans
/ IL-1β
/ Immunosuppression
/ Immunosuppression Therapy
/ Intercellular adhesion molecule 1
/ Interleukin 6
/ Lipid composition
/ Lipids
/ Macrophages
/ Macrophages - metabolism
/ Medical prognosis
/ Medical research
/ Medicine
/ Medicine and Health Sciences
/ Metastasis
/ MicroRNA
/ MicroRNAs
/ Molecular biology
/ Monocyte chemoattractant protein 1
/ Pancreatic cancer
/ Pancreatic Neoplasms
/ Pancreatic Neoplasms - metabolism
/ Phenotypes
/ Phospholipase
/ Phospholipase A2
/ Prostaglandin E2
/ Proteins
/ Sucrose
/ Surface markers
/ Tumor cell lines
/ Tumor cells
/ Tumor necrosis factor-α
/ Tumors
/ Vascular endothelial growth factor
2018
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Tumor-promoting effects of pancreatic cancer cell exosomes on THP-1-derived macrophages
by
Matters, Gail L.
, Linton, Samuel S.
, Kester, Mark
, Abraham, Thomas
, Butler, Peter J.
, Fox, Todd
, Liao, Jason
, Clawson, Gary A.
in
Acids
/ Adenocarcinoma
/ Arachidonic acid
/ Arachidonic Acid - metabolism
/ Ascites
/ Biochemistry
/ Biology and Life Sciences
/ Biotechnology
/ Breast cancer
/ CD11c antigen
/ Cell Line, Tumor
/ Diagnosis
/ Docking
/ Epithelial cells
/ Exosomes
/ Gelatinase B
/ Gene expression
/ Humans
/ IL-1β
/ Immunosuppression
/ Immunosuppression Therapy
/ Intercellular adhesion molecule 1
/ Interleukin 6
/ Lipid composition
/ Lipids
/ Macrophages
/ Macrophages - metabolism
/ Medical prognosis
/ Medical research
/ Medicine
/ Medicine and Health Sciences
/ Metastasis
/ MicroRNA
/ MicroRNAs
/ Molecular biology
/ Monocyte chemoattractant protein 1
/ Pancreatic cancer
/ Pancreatic Neoplasms
/ Pancreatic Neoplasms - metabolism
/ Phenotypes
/ Phospholipase
/ Phospholipase A2
/ Prostaglandin E2
/ Proteins
/ Sucrose
/ Surface markers
/ Tumor cell lines
/ Tumor cells
/ Tumor necrosis factor-α
/ Tumors
/ Vascular endothelial growth factor
2018
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Tumor-promoting effects of pancreatic cancer cell exosomes on THP-1-derived macrophages
by
Matters, Gail L.
, Linton, Samuel S.
, Kester, Mark
, Abraham, Thomas
, Butler, Peter J.
, Fox, Todd
, Liao, Jason
, Clawson, Gary A.
in
Acids
/ Adenocarcinoma
/ Arachidonic acid
/ Arachidonic Acid - metabolism
/ Ascites
/ Biochemistry
/ Biology and Life Sciences
/ Biotechnology
/ Breast cancer
/ CD11c antigen
/ Cell Line, Tumor
/ Diagnosis
/ Docking
/ Epithelial cells
/ Exosomes
/ Gelatinase B
/ Gene expression
/ Humans
/ IL-1β
/ Immunosuppression
/ Immunosuppression Therapy
/ Intercellular adhesion molecule 1
/ Interleukin 6
/ Lipid composition
/ Lipids
/ Macrophages
/ Macrophages - metabolism
/ Medical prognosis
/ Medical research
/ Medicine
/ Medicine and Health Sciences
/ Metastasis
/ MicroRNA
/ MicroRNAs
/ Molecular biology
/ Monocyte chemoattractant protein 1
/ Pancreatic cancer
/ Pancreatic Neoplasms
/ Pancreatic Neoplasms - metabolism
/ Phenotypes
/ Phospholipase
/ Phospholipase A2
/ Prostaglandin E2
/ Proteins
/ Sucrose
/ Surface markers
/ Tumor cell lines
/ Tumor cells
/ Tumor necrosis factor-α
/ Tumors
/ Vascular endothelial growth factor
2018
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Tumor-promoting effects of pancreatic cancer cell exosomes on THP-1-derived macrophages
Journal Article
Tumor-promoting effects of pancreatic cancer cell exosomes on THP-1-derived macrophages
2018
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Overview
Pancreatic ductal adenocarcinoma (PDAC) tumor growth is enhanced by tumor-associated macrophages (TAMs), yet the mechanisms by which tumor cells and TAMs communicate are not fully understood. Here we show that exosomes secreted by PDAC cell lines differed in their surface proteins, lipid composition, and efficiency of fusing with THP-1-derived macrophages in vitro. Exosomes from AsPC-1, an ascites-derived human PDAC cell line, were enriched in ICAM-1, which mediated their docking to macrophages through interactions with surface-exposed CD11c on macrophages. AsPC-1 exosomes also contained much higher levels of arachidonic acid (AA), and they fused at a higher rate with THP-1-derived macrophages than did exosomes from other PDAC cell lines or from an immortalized normal pancreatic ductal epithelial cell line (HPDE) H6c7. Phospholipase A2 enzymatic cleavage of arachidonic acid from AsPC-1 exosomes reduced fusion efficiency. PGE2 secretion was elevated in macrophages treated with AsPC-1 exosomes but not in macrophages treated with exosomes from other cell lines, suggesting a functional role for the AsPC-1 exosome-delivered arachidonic acid in macrophages. Non-polarized (M0) macrophages treated with AsPC-1 exosomes had increased levels of surface markers indicative of polarization to an immunosuppressive M2-like phenotype (CD14hi CD163hi CD206hi). Furthermore, macrophages treated with AsPC-1 exosomes had significantly increased secretion of pro-tumoral, bioactive molecules including VEGF, MCP-1, IL-6, IL-1β, MMP-9, and TNFα. Together, these results demonstrate that compared to exosomes from other primary tumor-derived PDAC cell lines, AsPC-1 exosomes alter THP-1-derived macrophage phenotype and function. AsPC-1 exosomes mediate communication between tumor cells and TAMs that contributes to tumor progression.
Publisher
Public Library of Science,Public Library of Science (PLoS)
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