Editorial Team
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Written By: Editorial Team | Published : May 26, 2014 1:12 PM IST

Researchers have found a signaling pathway in cancer cells that controls their ability to invade nearby tissues in a finely orchestrated manner. To migrate from a primary tumor, a cancer cell must first break through surrounding connective tissue known as the extracellular matrix (ECM). The cancer cell does so by forming short-lived invadopodia--foot-like protrusions these cells use to invade. Invadopodia release enzymes that degrade the ECM, while other protrusions pull the cancer cell along, much like a locomotive pulls a train. The invading cancer cell relies on the cycle of invadopodium formation/disappearance to successfully travel from the tumor and enter nearby blood vessels to be carried to distant parts of the body.
Study leader Louis Hodgson, Ph.D., assistant professor of anatomy and structural biology at Einstein, said they've known for some time that invadopodia are driven by protein filaments called actin, adding but exactly what was regulating the actin in invadopodia was not clear. Using this biosensor in highly invasive breast cancer cells taken from rodents and humans, the Einstein team discovered that when an individual invadopodium forms and is actively degrading the ECM, its Rac1 levels are low; on the other hand, elevated Rac1 levels coincide with the invadopodium's disappearance. (Read : How your immune system can fight cancer)
'So high levels of Rac1 induce the disappearance of ECM-degrading invadopodia, while low levels allow them to stay-which is the complete opposite of what Rac1 was thought to be doing in invadopodia,' said Dr. Hodgson. To confirm this observation, the researchers used siRNAs (molecules that silence gene expression) to turn off the RAC1 gene, which synthesizes Rac1 protein. When the gene was silenced, ECM degradation increased. Conversely, when Rac1 activity was enhanced-using light to activate a form of the Rac1 protein-the invadopodia disappeared. The study has been published online in the journal Nature Cell Biology. (Read : Your pet can help your child deal with cancer better)
How cancer spreads from the breast to the brain?
Researchers have uncovered possible genetic origins of breast cancer that spreads to the brain. The compendium of genetic targets uncovered by TGen now can be used to identify potential new methods of diagnosis and new drug therapies for the estimated 45,000 patients in the U.S. each year whose cancer spreads from the breast to the brain. The 3-year study is significant since these patients currently have few treatments options surgery and radiation and they usually are ineligible for clinical drug trials. Their prognosis is poor, with fewer than 2 percent surviving more than two years
Dr. Bodour Salhia, an Assistant Professor in TGen's Integrated Cancer Genomics Division and the study's lead and co-senior author, said that this is really a significant problem and a huge unmet need. We now want to dig deeper and uncover more specific genomic links and study new ways to treat these patients so we can improve outcomes. The TGen team performed deep genomic profiling, integrating gene copy number, gene expression and DNA methylation datasets on a collection of 35 breast-brain metastases samples. (Read more on spread of cancer cells)
With inputs from ANI
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