AI Article Synopsis

  • The interaction between tumor cells and their microenvironment is vital for tumor growth, highlighting the need to study this communication for developing new cancer therapies.
  • MicroRNAs (miRNAs), particularly miR-503, play a key role in this communication, as they can be transferred from endothelial cells to tumor cells through exosomes and influence tumor behavior.
  • The research shows that miR-503 levels change during chemotherapy in breast cancer patients, suggesting that endothelial cells contribute to tumor modulation through miRNA secretion.

Article Abstract

The interaction between tumor cells and their microenvironment is an essential aspect of tumor development. Therefore, understanding how this microenvironment communicates with tumor cells is crucial for the development of new anti-cancer therapies. MicroRNAs (miRNAs) are small non-coding RNAs that inhibit gene expression. They are secreted into the extracellular medium in vesicles called exosomes, which allow communication between cells via the transfer of their cargo. Consequently, we hypothesized that circulating endothelial miRNAs could be transferred to tumor cells and modify their phenotype. Using exogenous miRNA, we demonstrated that endothelial cells can transfer miRNA to tumor cells via exosomes. Using miRNA profiling, we identified miR-503, which exhibited downregulated levels in exosomes released from endothelial cells cultured under tumoral conditions. The modulation of miR-503 in breast cancer cells altered their proliferative and invasive capacities. We then identified two targets of miR-503, CCND2 and CCND3. Moreover, we measured increased plasmatic miR-503 in breast cancer patients after neoadjuvant chemotherapy, which could be partly due to increased miRNA secretion by endothelial cells. Taken together, our data are the first to reveal the involvement of the endothelium in the modulation of tumor development via the secretion of circulating miR-503 in response to chemotherapy treatment.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4496353PMC
http://dx.doi.org/10.18632/oncotarget.3520DOI Listing

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