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News Archive - Liezel Labios

‘Neuron-reading’ Nanowires Could Accelerate Development of Drugs to Treat Neurological Diseases

April 11, 2017

A team led by engineers at the University of California San Diego has developed nanowires that can record the electrical activity of neurons in fine detail. The new nanowire technology could one day serve as a platform to screen drugs for neurological diseases and could enable researchers to better understand how single cells communicate in large neuronal networks.

‘Lab-on-a-glove’ Could Bring Nerve-agent Detection to a Wearer’s Fingertips

March 23, 2017

Researchers have developed a wearable, flexible biosensor glove that can rapidly detect toxic nerve agents with the touch of a finger. The so-called "lab-on-a-glove" could help improve both defense and food security measures. The team, led by nanoengineers at the University of California San Diego, published their work this month in ACS Sensors.

New Blood Test Could Help Detect and Locate Cancer Early On

March 6, 2017

Bioengineers at the University of California San Diego have developed a new blood test that could detect cancer — and locate where in the body the tumor is growing. The study could provide a way to diagnose cancer early on without having to do invasive surgical procedures like biopsies.

Cell ‘Stickiness’ Could Indicate Metastatic Potential

February 28, 2017

How strongly tumor cells adhere to surrounding tissue could indicate how likely cancer will spread to other parts of the body, according to a new study led by bioengineers at the University of California San Diego. Using a spinning disc device, the researchers found that tumor cells that adhere weakly are more likely to migrate and invade other tissues compared with strongly adherent cells.

Decoding the Genome’s Cryptic Language

February 24, 2017

Bioengineers at the University of California San Diego have developed a new tool to identify RNA-DNA interactions. The tool can provide a full account of all the RNA molecules that interact with a segment of DNA, as well as the locations of all these interactions — in just a single experiment. The research is a step toward identifying new functions and instructions encoded in the genome.

‘Lossless’ Metamaterial Could Boost Efficiency of Lasers and Other Light-based Devices

February 16, 2017

Engineers at the University of California San Diego have developed a material that could reduce signal losses in photonic devices. The advance has the potential to boost the efficiency of various light-based technologies including fiber optic communication systems, lasers and photovoltaics.

Thin, Flexible, Light-absorbent Material for Energy and Stealth Applications

February 2, 2017

Transparent window coatings that keep buildings and cars cool on sunny days. Devices that could more than triple solar cell efficiencies. Thin, lightweight shields that block thermal detection. These are potential applications for a thin, flexible, light-absorbing material developed by engineers at the University of California San Diego.

Strength of Hair Inspires New Materials for Body Armor

January 17, 2017

In a new study, researchers at the University of California San Diego investigate why hair is incredibly strong and resistant to breaking. The findings could lead to the development of new materials for body armor and help cosmetic manufacturers create better hair care products.

New Laser Based on Unusual Physics Phenomenon Could Improve Telecommunications, Computing and More

January 11, 2017

Researchers at the University of California San Diego have demonstrated the world’s first laser based on an unconventional wave physics phenomenon called bound states in the continuum. The technology could revolutionize the development of surface lasers for communications and computing applications, and high-power lasers for industrial and defense applications.

New Technique to Study How Proteins and Ligands Interact

December 6, 2016

small molecules that bind to them, known as ligands, interact. The method, called Transient Induced Molecular Electronic Spectroscopy (TIMES), could be used as a tool to better understand protein chemistry and to accelerate drug discovery and development.
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