NASA's ENose can sense brain cancer cells

April 30, 2009

(PhysOrg.com) -- An unlikely multidisciplinary scientific collaboration has discovered that an electronic nose developed for air quality monitoring on Space Shuttle Endeavour can also be used to detect odour differences in normal and cancerous brain cells. The results of the pilot study open up new possibilities for neurosurgeons in the fight against brain cancer.

Neurosurgeons from the City of Hope Cancer Center, along with scientists from the Foundation in West Hollywood and the Jet Propulsion Laboratory (JPL) in Pasadena, used NASA's to investigate the role of cellular odours in cellular trafficking, brain cancer metastasis, stem cell migration, and the potential of the device to be used for intraoperative imaging.

The electronic nose, which is to be installed on the International Space Station in order to automatically monitor the station's air, can detect contaminants within a range of one to approximately 10,000 parts per million. In a series of experiments, the Brain Mapping Foundation used NASA's electronic nose to sniff brain cancer cells and cells in other organs. Their data demonstrates that the electronic nose can sense differences in odour from normal versus cancerous cells. These experiments will help pave the way for more sophisticated biochemical analysis and experimentation.

Babak Kateb, lead author of the paper, Chairman and Scientific Director of the Brain Mapping Foundation, said: "This pilot study lays the groundwork for future research that may help us to better understand cellular trafficking, contribute to designing better approaches for the detection and differentiation of , and understand the pathophysiology of intracranial gliomas."

The results of the pilot study are set to be published in an IBMISPS-NeuroImage special issue in July, and presented at the 6th Annual World Congress for Brain Mapping & Image Guided Therapy at Harvard Medical School.

Source: Elsevier

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E_L_Earnhardt
May 01, 2009

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Very interesting! The "NOSE" is sensitive to electronic stimulation. Please TRACK this!
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