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Title:
Expression of IGF-I and IGF-II mRNA in breast tissue | Breast Cancer Research and Treatment
Description:
Expression of IGF-I and IGF-II was studied in human breast cancer tissues by in situ hybridization. IGF-I mRNA was detected only in stromal cells adjacent to normal breast epithelial cells. Stromal cells associated with the tumor cells did not contain IGF-I, nor did malignant or benign breast epithelial cells. In contrast, IGF-II mRNA was found in both the malignant epithelial cells and their adjacent stromal cells. These data imply that stromal cells associated with breast epithelium may switch expression from IGF-I to IGF-II during breast cancer evolution. This appearance of IGF-II expression may identify cancer-associated stromal cells that have a fetal phenotype.
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Keywords {π}
breast, cancer, cells, article, expression, igfii, google, scholar, igfi, mrna, stromal, pubmed, paik, human, growth, privacy, cookies, content, research, epithelial, insulinlike, data, publish, search, tumor, access, lippman, rosen, factor, analysis, information, log, journal, treatment, hybridization, malignant, fetal, discover, yee, cullen, res, download, springer, optional, personal, parties, policy, find, track, tissue,
Topics {βοΈ}
month download article/chapter human breast cancer breast cancer evolution malignant epithelial cells privacy choices/manage cookies gene expression human breast fibroblasts cold spring harbor lombardi cancer center growth factor ii full article pdf human rhabdomyosarcoma cells related subjects stromal cells adjacent adjacent stromal cells breast tissue published igf-ii expression igf-ii mrna european economic area normal human fetal breast cancer conditions privacy policy igf-1r transported situ hybridization study accepting optional cookies tumor cells journal finder publish cancer res 51 cancer res 48 growth factor growth factor biology stromal cells breast tissue tumor tissues situ hybridization insulin check access instant access identify cancer breast epithelium treatment aims article paik cullen kj yee article log igf-ii wilms' tumor privacy policy epithelial personal data
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headline:Expression of IGF-I and IGF-II mRNA in breast tissue
description:Expression of IGF-I and IGF-II was studied in human breast cancer tissues by in situ hybridization. IGF-I mRNA was detected only in stromal cells adjacent to normal breast epithelial cells. Stromal cells associated with the tumor cells did not contain IGF-I, nor did malignant or benign breast epithelial cells. In contrast, IGF-II mRNA was found in both the malignant epithelial cells and their adjacent stromal cells. These data imply that stromal cells associated with breast epithelium may switch expression from IGF-I to IGF-II during breast cancer evolution. This appearance of IGF-II expression may identify cancer-associated stromal cells that have a fetal phenotype.
datePublished:
dateModified:
pageStart:31
pageEnd:38
sameAs:https://doi.org/10.1007/BF01833331
keywords:
breast tumor cells
epithelial cells
IGF-I
IGF-II
in-situ hybridization
insulin-like growth factors
messenger RNA
stromal cells
Oncology
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1573-7217
0167-6806
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author:
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headline:Expression of IGF-I and IGF-II mRNA in breast tissue
description:Expression of IGF-I and IGF-II was studied in human breast cancer tissues by in situ hybridization. IGF-I mRNA was detected only in stromal cells adjacent to normal breast epithelial cells. Stromal cells associated with the tumor cells did not contain IGF-I, nor did malignant or benign breast epithelial cells. In contrast, IGF-II mRNA was found in both the malignant epithelial cells and their adjacent stromal cells. These data imply that stromal cells associated with breast epithelium may switch expression from IGF-I to IGF-II during breast cancer evolution. This appearance of IGF-II expression may identify cancer-associated stromal cells that have a fetal phenotype.
datePublished:
dateModified:
pageStart:31
pageEnd:38
sameAs:https://doi.org/10.1007/BF01833331
keywords:
breast tumor cells
epithelial cells
IGF-I
IGF-II
in-situ hybridization
insulin-like growth factors
messenger RNA
stromal cells
Oncology
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