SummaryStromal communication with cancer cells can influence treatment response. We show that stromal and breast cancer (BrCa) cells utilize paracrine and juxtacrine signaling to drive chemotherapy and radiation resistance. Upon heterotypic interaction, exosomes are transferred from stromal to BrCa cells. RNA within exosomes, which are largely noncoding transcripts and transposable elements, stimulates the pattern recognition receptor RIG-I to activate STAT1-dependent antiviral signaling. In parallel, stromal cells also activate NOTCH3 on BrCa cells. The paracrine antiviral and juxtacrine NOTCH3 pathways converge as STAT1 facilitates transcriptional responses to NOTCH3 and expands therapy-resistant tumor-initiating cells. Primary human and/...
Cancer is one of the leading causes of death worldwide, and the factors responsible for its progress...
Reciprocal interactions between tumor cells and their microenvironment drive cancer progression and ...
AbstractExosomes are endosomal-derived nanovesicles released by most cells types, including tumor ce...
Breast cancer is the most common cancer type amongst women in the United States and will account for...
SummaryStromal communication with cancer cells can influence treatment response. We show that stroma...
Breast cancer is the most common cancer type amongst women in the United States and will account for...
Resistance to cancer therapy is common and understanding mechanisms of resistance is critical to dri...
Resistance to cancer therapy is common and understanding mechanisms of resistance is critical to dri...
Transforming growth factor-beta (TGFβ) signaling in cancer is context dependent and acts either as a...
Abstract Therapy resistance can arise within tumor cells because of genetic or phenotypic changes (i...
Notch signaling dysregulation encourages breast cancer progression through different mechanisms such...
Growing evidence points to exosomes as key mediators of cell⁻cell communication, by transferring the...
In different biological model systems, exosomes are considered mediators of cell-cell communication ...
In recent years, a new mechanism for intercellular communication has been put forward which involves...
Stroma–cancer cell crosstalk involves a complex signaling network that contributes to tumor progress...
Cancer is one of the leading causes of death worldwide, and the factors responsible for its progress...
Reciprocal interactions between tumor cells and their microenvironment drive cancer progression and ...
AbstractExosomes are endosomal-derived nanovesicles released by most cells types, including tumor ce...
Breast cancer is the most common cancer type amongst women in the United States and will account for...
SummaryStromal communication with cancer cells can influence treatment response. We show that stroma...
Breast cancer is the most common cancer type amongst women in the United States and will account for...
Resistance to cancer therapy is common and understanding mechanisms of resistance is critical to dri...
Resistance to cancer therapy is common and understanding mechanisms of resistance is critical to dri...
Transforming growth factor-beta (TGFβ) signaling in cancer is context dependent and acts either as a...
Abstract Therapy resistance can arise within tumor cells because of genetic or phenotypic changes (i...
Notch signaling dysregulation encourages breast cancer progression through different mechanisms such...
Growing evidence points to exosomes as key mediators of cell⁻cell communication, by transferring the...
In different biological model systems, exosomes are considered mediators of cell-cell communication ...
In recent years, a new mechanism for intercellular communication has been put forward which involves...
Stroma–cancer cell crosstalk involves a complex signaling network that contributes to tumor progress...
Cancer is one of the leading causes of death worldwide, and the factors responsible for its progress...
Reciprocal interactions between tumor cells and their microenvironment drive cancer progression and ...
AbstractExosomes are endosomal-derived nanovesicles released by most cells types, including tumor ce...