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Griffith University


Griffith University reveals world-first 3-D image of a protein involved in cancer spread

Researchers at Griffith University's Institute for Glycomics have determined the first three-dimensional image of a protein involved in cancer spread using X-ray crystallography. The study reveals the enzyme heparanase, which degrades a sugar molecule and is associated with angiogenesis, inflammation, and increased metastatic potential.

SourceGriffith University·JournalNature Chemical Biology·DateNov 2, 2015

New sports technology provides a GPS alternative

SABEL Sense technology offers an alternative to GPS for tracking running speeds and distances, presenting a viable solution for improved athlete assessment techniques. The technology has been found to be highly accurate for running speeds, with potential benefits in monitoring training and game workloads.

SourceGriffith University·JournalSensors·DateSep 22, 2015

Out of the fire, into the light

A groundbreaking Australian pilot project, led by Martina McGrath, will provide a unique, non-clinical approach to care for suicidal persons. The Suicide Attempt Survivors Support Group will inject hope, connectedness, inclusion, and purpose into the lives of those struggling with suicidal thoughts.

Elderberry benefits air travelers

A clinical trial conducted by Griffith University found that an elderberry supplement can provide some protection from cold and flu-like symptoms following long-haul flights. The study involved 312 economy class passengers who completed a daily diary and surveys before, during, and after travel.

Picture this: Graphene brings 3-D holograms clearer and closer

Researchers at Griffith University and their international consortium have made significant progress in creating wide-angle and full-color 3D images using graphene. The sub-wavelength feature size allows for static holographic 3D images with a wide viewing angle, revolutionizing capabilities across various optical and electronic devices.

SourceGriffith University·JournalNature Communications·DateApr 23, 2015

Making our highways safer and more efficient

A new study suggests using a Long Distance Commuter lane (LDC) on the M1 Motorway in Australia could accommodate up to 3000 vehicles per hour while minimizing bottlenecks. The LDC concept has potential for commuter travel between other cities in Australia and worldwide.

SourceGriffith University·JournalComputer-Aided Civil and Infrastructure Engineering·DateMar 5, 2015

Griffith research unlocks more about cancer

Researchers at Griffith University have discovered that mitochondria can transfer genetic material between healthy and cancerous cells, leading to rapid proliferation of tumour cells. This finding has implications for our understanding of human biology and may shed light on other diseases with defective mitochondrial DNA.

SourceGriffith University·JournalCell Metabolism·DateFeb 9, 2015

Researchers ferret out a flu clue

Researchers have discovered a mutation in ferrets that shares similarities with humans, potentially leading to improved therapies for influenza and other diseases. This finding opens up a novel approach to tackling human diseases.

SourceGriffith University·JournalNature Communications·DateDec 18, 2014

Toxin targets discovered

Research identifies specific glycans on cell surfaces as key targets for bacterial toxins, offering new avenues for blocking toxin action and developing novel treatments. The discovery has major implications for the treatment of diseases caused by bacterial pathogens such as Streptococcus pneumoniae and group A streptococci.

SourceGriffith University·JournalProceedings of the National Academy of Sciences·DateNov 24, 2014

Winning the war against Human parainfluenza virus

New anti-viral drugs and vaccines are urgently needed to combat Human parainfluenza virus, a leading cause of respiratory tract disease in young children. Researchers have identified potent inhibitors that block both cell entry and virion release, offering hope for treatment and prevention.

SourceGriffith University·JournalNature Communications·DateOct 20, 2014

Breakthrough points to new drugs from nature

Researchers at Griffith University's Eskitis Institute have developed a new technique for discovering natural compounds with therapeutic potential. The new screening process involves nuclear magnetic resonance (NMR) spectroscopy and has identified a potential lead in the fight against Parkinson's disease.

SourceGriffith University·JournalAngewandte Chemie International Edition·DateApr 15, 2014

Unmasking the secrets of the extinct moa

A study published in PLOS ONE has clarified the number of moa species that existed, with researchers using a DNA barcoding technique to determine species status for the extinct Euryapteryx moa genus. The findings suggest that two species likely existed and possibly some subspecies, revealing complex species status.

SourceGriffith University·JournalPLOS ONE·DateMar 3, 2014

Irukandji threat to southern waters

A Griffith University-led study has found that ocean acidification may inhibit the development of juvenile Irukandji jellyfish, potentially providing some protection for South East Queenslanders. The research also highlights the risk of Irukandji expansion into new areas due to climate change.

SourceGriffith University·JournalGlobal Change Biology·DateOct 28, 2013

Genetic secrets of the world's toughest little bird

A recent study published in Nature Communications has shed light on the genetic adaptations of the ground tit, a small bird thriving in one of the most hostile environments on earth. The research reveals key modifications in its genome that enable it to cope with extreme living conditions and survival strategies.

SourceGriffith University·JournalNature Communications·DateJul 15, 2013