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To characterize the effects of IGF 1 on primary breast fibroblasts, we cultured pre-starved primary breast fibroblasts (normal and carcinoma associated) from three patients with or without 50ng/ml IGF 1 for 24 h. We then profiled gene expression changes using Human Exonic Evidence Based Oligonucleot...
ORGANISM(S): Homo sapiens 
To characterize the effects of IGF 1 on MCF 7 breast cancer cells, we cultured pre-starved MCF 7 cells with or without 50ng/ml IGF 1 for 24 h. We then profiled gene expression changes using Human Exonic Evidence Based Oligonucleotide (HEEBO) microarrays. After stimulation, total RNA was extracted an...
ORGANISM(S): Homo sapiens 
This SuperSeries is composed of the following subset Series: GSE18952: Effects of IGF 1 on primary breast fibroblasts (normal and carcinoma associated) GSE18953: Effects of IGF 1 on MCF-7 breast cancer cells GSE18954: Effects of IGF 1 on CCL-171 fibroblasts Refer to individual Series
ORGANISM(S): Homo sapiens 
To characterize the effects of IGF 1 on CCL171 cells, we cultured pre-starved CCL 171 fibroblasts with or without 50ng/ml IGF 1 for 24 h. We then profiled gene expression changes using Human Exonic Evidence Based Oligonucleotide (HEEBO) microarrays. After stimulation, total RNA was extracted and amp...
ORGANISM(S): Homo sapiens 
Bone is the most common site of breast cancer metastasis, and this type of metastasis is a main cause of morbidity. Because breast cancer is a heterogeneous disease, the interactions between the cancer cells and the skeletal host cells, such as osteoblasts, might be diverse. Thus far, these tumor-os...
ORGANISM(S): Homo sapiens 
As a model for investigating changes in gene expression in response to epithelial-osteoblast interactions in bone metastases of breast carcinomas, cells that represented malignant epithelial cell compartments (MCF7) and cells that represented skeletal compartments (Normal Human (NH) Osteoblasts) wer...
ORGANISM(S): Homo sapiens 
As a model for investigating changes in gene expression in response to epithelial-osteoblast interactions in bone metastases of breast carcinomas, cells that represented malignant epithelial cell compartments (MDA-MB-231) and cells that represented skeletal compartments (Normal Human (NH) Osteoblast...
ORGANISM(S): Homo sapiens 
As a model for investigating changes in gene expression in response to epithelial-osteoblast interactions in bone metastases of breast carcinomas, cells that represented malignant epithelial cell compartments (SKBR3) and cells that represented skeletal compartments (Normal Human (NH) Osteoblasts) we...
ORGANISM(S): Homo sapiens 
As a model for investigating changes in gene expression in response to epithelial-osteoblast interactions in bone metastases of breast carcinomas, cells that represented malignant epithelial cell compartments (T47D) and cells that represented skeletal compartments (Normal Human (NH) Osteoblasts) wer...
ORGANISM(S): Homo sapiens 
As a model for investigating changes in gene expression in response to epithelial-osteoblast interactions in bone metastases of breast carcinomas, cells that represented healthy epithelial cell compartments (HMEC - human mammary epithelial cell) and cells that represented skeletal compartments (Norm...
ORGANISM(S): Homo sapiens 
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