Background: Epithelial-stromal crosstalk plays a critical role in invasive breast cancer pathogenesis; however, little is known on a systems level about how epithelial-stromal interactions evolve during carcinogenesis. Results: We develop a framework for building genome-wide epithelial-stromal co-expression networks composed of pairwise co-expression relationships between mRNA levels of genes expressed in the epithelium and stroma across a population of patients. We apply this method to laser capture micro-dissection expression profiling datasets in the setting of breast carcinogenesis. Our analysis shows that epithelial-stromal co-expression networks undergo extensive rewiring during carcinogenesis, with the emergence of distinct network h...
BackgroundCancers induce gene expression alterations in stroma surrounding tumors that supports canc...
<div><p>Gene co-expression network analysis is an effective method for predicting gene functions and...
Background: The consecutive acquisition of genetic alterations characterizes neoplastic processes. A...
Abstract Background Epithelial-stromal crosstalk play...
Introduction: Gene expression data derived from clinical cancer specimens provide an opportunity to ...
The interactions between breast epithelium and stroma are fundamental to normal tissue homeostasis a...
Breast cancer is a complex phenotype (or better yet, several complex phenotypes) characterized by th...
Transcriptome data provide a valuable resource for the study of cancer molecular mechanisms, but tec...
BACKGROUND:Cancers induce gene expression alterations in stroma surrounding tumors that supports can...
Abstract Gene co-expression networks (GCNs) have been developed as relevant analytical tools for the...
Cross-talk among abnormal pathways widely occurs in human cancer and generally leads to insensitivit...
<div><p>Cross-talk among abnormal pathways widely occurs in human cancer and generally leads to inse...
Summary The breast tumor microenvironment of primary and metastatic sites is a complex milieu of dif...
Abstract Background Tumor microenvironment, in particular the stroma, plays an important role in bre...
Tumor behavior and outcome are believed to be modified by undifferentiated stromal fibroblasts that ...
BackgroundCancers induce gene expression alterations in stroma surrounding tumors that supports canc...
<div><p>Gene co-expression network analysis is an effective method for predicting gene functions and...
Background: The consecutive acquisition of genetic alterations characterizes neoplastic processes. A...
Abstract Background Epithelial-stromal crosstalk play...
Introduction: Gene expression data derived from clinical cancer specimens provide an opportunity to ...
The interactions between breast epithelium and stroma are fundamental to normal tissue homeostasis a...
Breast cancer is a complex phenotype (or better yet, several complex phenotypes) characterized by th...
Transcriptome data provide a valuable resource for the study of cancer molecular mechanisms, but tec...
BACKGROUND:Cancers induce gene expression alterations in stroma surrounding tumors that supports can...
Abstract Gene co-expression networks (GCNs) have been developed as relevant analytical tools for the...
Cross-talk among abnormal pathways widely occurs in human cancer and generally leads to insensitivit...
<div><p>Cross-talk among abnormal pathways widely occurs in human cancer and generally leads to inse...
Summary The breast tumor microenvironment of primary and metastatic sites is a complex milieu of dif...
Abstract Background Tumor microenvironment, in particular the stroma, plays an important role in bre...
Tumor behavior and outcome are believed to be modified by undifferentiated stromal fibroblasts that ...
BackgroundCancers induce gene expression alterations in stroma surrounding tumors that supports canc...
<div><p>Gene co-expression network analysis is an effective method for predicting gene functions and...
Background: The consecutive acquisition of genetic alterations characterizes neoplastic processes. A...