Chemistry Times
Recent News |  Archives |  Tags |  About |  Newsletter |  Submit News |  Links |  Subscribe to ChemistryTimes.com RSS Feed Subscribe


More Articles
First step toward electronic DNA sequencing: Translocation through graphene nanoporesFirst step toward electronic DNA sequencing: Translocation through graphene nanopores

Now that's what I call a ratNow that's what I call a rat

For pandas, there is a mountain high enough, there is a valley low enoughFor pandas, there is a mountain high enough, there is a valley low enough

Nanowick at heart of new system to cool 'power electronics'Nanowick at heart of new system to cool 'power electronics'

Super glaciers leave their mark on the Gondwanan supercontinentSuper glaciers leave their mark on the Gondwanan supercontinent

Potentially hazardous asteroid might collide with the Earth in 2182Potentially hazardous asteroid might collide with the Earth in 2182

Once bitten, twice shy -- a temperature switch triggers aversive memoryOnce bitten, twice shy -- a temperature switch triggers aversive memory

Gut movements in caterpillars inspire soft-body robot designGut movements in caterpillars inspire soft-body robot design

What plant genes tell us about crop domesticationWhat plant genes tell us about crop domestication

A warmer future for watersportsA warmer future for watersports

Gene discovery may lead to new varieties of soybean plantsGene discovery may lead to new varieties of soybean plants

Baby swimmers have better balanceBaby swimmers have better balance

Plastic chips monitor body functionsPlastic chips monitor body functions

A lab rat - created in the labA lab rat - created in the lab

Marked for Life: Tattoo Matching Software to Identify SuspectsMarked for Life: Tattoo Matching Software to Identify Suspects

Researchers harness viruses to split waterResearchers harness viruses to split water

Student uses skin as input for mobile devicesStudent uses skin as input for mobile devices

Scientists discover quantum fingerprints of chaosScientists discover quantum fingerprints of chaos

New cell-based sensors sniff out danger like bloodhounds (5/10/2008)

Tags:
sensors, toxins, explosives

Precise manipulation of cells on a chip. Three yeast cells (arrows) are being steered to an accuracy of 1 mm (1/1000th of a millimeter) each by feedback flow control. - Credit: A. James Clark School of Engineering/University of Maryland
Precise manipulation of cells on a chip. Three yeast cells (arrows) are being steered to an accuracy of 1 mm (1/1000th of a millimeter) each by feedback flow control. - Credit: A. James Clark School of Engineering/University of Maryland
A small, unmanned vehicle makes its way down the road ahead of a military convoy. Suddenly it stops and relays a warning to the convoy commander. The presence of a deadly improvised explosive device, or IED, has been detected by sophisticated new sensor technology incorporating living olfactory cells on microchips mounted on the unmanned vehicle. The IED is safely dismantled and lives are saved.

This scenario may become a reality, thanks to the work of three faculty researchers in the University of Maryland's A. James Clark School of Engineering who are collaborating across engineering disciplines to make advanced "cell-based sensors-on-a-chip" technology possible. Pamela Abshire, electrical and computer engineering (ECE) and Institute for Systems Research (ISR); Benjamin Shapiro, aerospace engineering and ISR; and Elisabeth Smela, mechanical engineering and ECE; are working on new sensors that take advantage of the sensory capabilities of biological cells.

These tiny sensors, only a few millimeters in size, could speed up and improve the detection of everything from explosive materials to biological pathogens to spoiled food or impure water.

Today's biochemical detectors are slow and produce an unacceptable number of false readings.

They are easily fooled because they often cannot distinguish subtle differences between deadly pathogens and harmless substances, and cannot fully monitor or interpret the different ways these substances interact with biological systems. To solve this problem, the Clark School researchers are learning how to incorporate real cells into tiny micro-systems to detect chemical and biological pathogens.

Different cells can be grown on these microchips, depending on the task at hand. Like a bloodhound hot on the trail of a scent, a chip containing a collection of olfactory cells plus sensing circuits that can interpret their behavior could detect the presence of explosives.

The researchers plan to use other specialized cells much like a canary in a coal mine. The cells would show stress or die when exposed to certain pathogens, and the sensing circuits monitoring them would trigger a warningâ€"more quickly and accurately than in present systems.

The researchers are tackling the many challenges that must be met for such chips to become a reality. Abshire, for example, is building circuits that can interact with the cells and transmit alerts about their condition. Shapiro and Smela are working on micro-fluidics technology to get the cells where they need to be on the chip, and to keep them alive and healthy once they're in position. Smela is also developing packages that incorporate the kind of wet, life-sustaining environments the biological components need, while keeping the sensitive electronic parts of the sensor dry.

Current research funding for the cell-based sensor technology comes from the National Science Foundation, the Department of Homeland Security and the Defense Intelligence Agency. Potential applications for their use extend well beyond national security, however.

For example, cell-based sensors could detect the presence of harmful bacteria in ground beef or spinach, or detect the local origin of specialty foods like cheeses or wines. In the pharmaceutical industry they could identify the most promising medicines in advance of animal and human trials, increasing cost-effectiveness and speed in developing new drugs. And they could speed up research in basic science. Imagine tiny biology labs, each one on a chip, in an array of thousands of chips that could fit in the palm of your hand.

Such arrays could advance biologists' fundamental understanding about the sense of smell or help doctors better see how the immune system works. They could be placed on fish as they swim in the ocean to monitor water quality, or set on a skyscraper's roof to evaluate air pollution.

"We bring the capability to monitor many different cells in parallel on these chips," explains Abshire. "You could say we're applying Moore's Law of exponentially increasing computer processing capability to cell biology."

Note: This story has been adapted from a news release issued by the University of Maryland

Post Comments:

Search

New Articles
Research seeks to improve sensors that monitor diesel fuel quality

Highest X-ray energy used to probe materials

Quantum entanglement in photosynthesis and evolution

Toward a new generation of superplasticsToward a new generation of superplastics

Replacing hydrogen in fluorescent dyes improves detection ability, stability and shelf lifeReplacing hydrogen in fluorescent dyes improves detection ability, stability and shelf life

By 'putting a ring on it,' microparticles can be capturedBy 'putting a ring on it,' microparticles can be captured

Polymer synthesis could aid future electronics

UT researchers: English ivy may give sunblock a makeover

EPA and other federal agencies collaborate to improve chemical screening

CCNY-led team develops nontoxic oil recovery agent

Researcher looks for new ways to keep a dirty situation clean

Research makes lab work easier

Chemists grow crystals with a twist - and untwistChemists grow crystals with a twist - and untwist

Moving polymers through poresMoving polymers through pores

Students take their professor's advice and start bioenergy companyStudents take their professor's advice and start bioenergy company



Archives
July 2010
June 2010
May 2010
April 2010
March 2010
February 2010
January 2010
December 2009
November 2009
October 2009
September 2009
August 2009
July 2009
June 2009
May 2009
April 2009
March 2009
February 2009
January 2009
December 2008
November 2008
October 2008
September 2008
August 2008
July 2008
June 2008
May 2008
April 2008
March 2008
February 2008
January 2008
December 2007
November 2007
October 2007
September 2007
August 2007


Science Friends
Agricultural Science
Astronomy News
Sports Tech
Biology News
Biomimicry Science
Cognitive Research
Tissue Engineering
Cancer Research
Cybernetics Research
Electonics Research
Forensics Report
Fossil News
Genetic Archaeology
Genetics News
Geology News
Microbiology Research
Nanotech News
Parenting News
Physics News


  Archives |  Submit News |  Advertise With Us |  Contact Us |  Links
Use of this site constitutes acceptance of our Terms of Service and Privacy Policy. All contents © 2000 - 2011 Web Doodle, LLC. All rights reserved.