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Science News Archive June 2017 - Page 22


Page 22 of 40

Printed sensors monitor tire wear in real time

Researchers have developed an inexpensive printed sensor that can track millimeter-scale changes in tire tread depth with high accuracy. The technology has the potential to increase safety, improve vehicle performance, and reduce fuel consumption by detecting sub-millimeter resolution of tire wear.

SourceDuke University·JournalIEEE Sensors Journal·DateJun 14, 2017

Food or fraud?

Italian scientists introduce NanoTracer, a simplified assay combining DNA barcoding with nanotechnology to authenticate food with the naked eye. The test detects substitutes and adulterants in products like European perch and saffron powder.

SourceWiley·JournalAngewandte Chemie International Edition·DateJun 14, 2017

Solar paint offers endless energy from water vapor

Researchers at RMIT University have developed a solar paint that can split water atoms to generate hydrogen fuel, the cleanest source of energy. The innovative material, synthetic molybdenum-sulphide, catalyses the reaction and acts as a semi-conductor, making it efficient in producing hydrogen from solar energy and moist air.

SourceRMIT University·JournalACS Nano·DateJun 14, 2017

Promising peas' potential in big sky country

Studying pea genetics and environmental factors, researchers found that pea yield is affected by both genetics and environment, but environment has a larger impact. The study also identified pea varieties with higher protein and resistant starch content, which can benefit human health and the environment.

SourceAmerican Society of Agronomy·JournalAgronomy Journal·DateJun 14, 2017

First CRISPR crop could debut in 2020

The first commercial CRISPR product is expected to debut in 2020: a waxy corn used for paper glue and food thickeners. Researchers can use CRISPR to identify genes in crops that may be good candidates for editing, potentially leading to improved cotton quality, non-browning mushrooms, drought-resistant corn, and grocery store tomatoes.

SourceAmerican Chemical Society·JournalChemical & Engineering News·DateJun 14, 2017

Anti-malaria drugs: Potential new target identified

A newly described protein, PfAP2-I, regulates a number of genes involved with the parasite's invasion of red blood cells, making it an effective target for new antimalarial drugs. Preventing PfAP2-I from binding to DNA and initiating the expression of invasion genes could stop an infection before it reaches the red blood cell stage.

SourcePenn State·JournalCell Host & Microbe·DateJun 14, 2017

Solar material for producing clean hydrogen fuel

Osaka University researchers have developed a novel solar material that can efficiently split water to produce clean hydrogen fuel, outperforming traditional semiconductors. The three-part composite material maximizes light absorption and electron conduction, resulting in 60 times higher activity than pure lanthanum titanium oxide.

SourceOsaka University·JournalAngewandte Chemie International Edition·DateJun 14, 2017

Physicists and medics discover new ability of immune cells

Researchers have discovered a way to quickly calm activated neutrophils, which can get stuck in the lungs' tiny capillaries, leading to life-threatening problems. The breakthrough, developed by a Creighton University physics professor, could lead to new treatments for acute respiratory distress syndrome (ARDS) and acute lung injury (ALI).

SourceCreighton University·JournalScience Advances·DateJun 14, 2017

A new test to detect reliably an autoimmune disease

Researchers at Université de Genève have developed a new test to detect anti-phospholipid antibody syndrome (APS), an autoimmune disease affecting around 0.5% of the population. The test targets the specific antibody that binds to cells, producing pro-inflammatory and pro-thrombotic factors, offering improved accuracy and standardization.

SourceUniversité de Genève·JournalHaematologica·DateJun 14, 2017

Beetles spark development of color-changing nanoparticles for commercial use

Scientists have developed a new, inexpensive technique to create color-shifting nanoparticles inspired by beetle shells. The method produces tiny particles that can be easily controlled, enabling adjustable colors within materials or fabrics. This breakthrough could lead to the production of easier-to-read sensors and anti-tampering tags.

SourceAmerican Chemical Society·JournalACS Applied Materials & Interfaces·DateJun 14, 2017

Universal stabilization

Researchers at ETH Zurich have created a new type of silica particle that can stabilize both oil-in-water and water-in-oil emulsions using a single type of emulsifier. The particles' rough surface reduces their mobility, allowing them to form a stabilizing armour around droplets.

SourceETH Zurich·JournalNature Communications·DateJun 14, 2017