Tugging Of Extracellular Matrix Creates "Come Hither" Stimulus For Cancer Migration
Main Category: Cancer / OncologyArticle Date: 23 Mar 2011 - 4:00 PDT
'Tugging Of Extracellular Matrix Creates "Come Hither" Stimulus For Cancer Migration'
| Patient / Public: | ![]() |
|
| Healthcare Prof: | ![]() |
4 (1 votes) |
Ninety percent of cancer deaths resulted from metastasis, the spread of cancer to different areas in the body, yet scientific exploration of the possible mechanical factors that promote metastasis has been limited. A Wayne State University researcher, however, is expanding the scientific understanding of what makes malignant tumors spread, and the answer lies within the dense, fibrous matrix that surrounds cancer cells.
Karen A. Beningo, Ph.D., assistant professor of biology in WSU's College of Liberal Arts and Sciences and resident of Plymouth, Mich., has found that the continuous restructuring of the extracellular matrix that upholds the weight of a tumor is one of the reasons highly invasive, malignant tumors are mechanically able to spread to other parts of the body. Beningo's study was recently published in PLoS ONE.
"This study has identified a novel physical parameter and a new conceptual framework in which to assess the process of invasion, not just of cancer cells but other invasive cell types as well," said Beningo.
Beningo simulated the tugging and pulling forces by embedding magnetic microbeads in the collagen matrix of a three-dimensional, cell-based assay. This way, she was able to examine the physical mechanisms "without the complication of secreted biochemical factors," she said.
"Surprisingly, we found that cancer cells were two to four times more likely to invade if the matrix was magnetically stimulated than if the culture was not stimulated," said Beningo.
She also found that less invasive tumors were not as stimulated by the tugging and pulling forces of the extracellular matrix as highly invasive tumors. Moreover, the absence of fibronectin, a component of the extracellular matrix, and cofilin, a cellular protein, removed the tumor's sensitivity to the mechanical "come hither" stimulus.
"We can conclusively state that fibronectin and cofilin are required for this mechanical response," said Beningo.
Beningo is working toward defining the mechanism of mechanically enhanced invasion and hopes to identify therapeutic targets.
"If we can prevent the invasive movement of cancer cells from the primary tumor, a large battle in the war on cancer will have been won," she said.
Financial support for the study was provided by Wayne State University.
Source:
Julie O'Connor
Wayne State University - Office of the Vice President for Research
Visit our cancer / oncology section for the latest news on this subject.
MLA
26 May. 2012. <http://www.medicalnewstoday.com/releases/219929.php>
APA
http://www.medicalnewstoday.com/releases/219929.php.
Please note: If no author information is provided, the source is cited instead.
Add Your Opinion On This Article
'Tugging Of Extracellular Matrix Creates "Come Hither" Stimulus For Cancer Migration'Please note that we publish your name, but we do not publish your email address. It is only used to let you know when your message is published. We do not use it for any other purpose. Please see our privacy policy for more information.
If you write about specific medications or operations, please do not name health care professionals by name.
All opinions are moderated before being included (to stop spam)
Contact Our News Editors
For any corrections of factual information, or to contact the editors please use our feedback form.
![]()
Please send any medical news or health news press releases to:
Note: Any medical information published on this website is not intended as a substitute for informed medical advice and you should not take any action before consulting with a health care professional. For more information, please read our terms and conditions.





