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DNA origami illuminates invisible molecular movements

Researchers at Salk Institute develop novel 'dye-cycling' strategy to measure RNA polymerase movement along DNA with unprecedented lengths of time. This breakthrough provides critical mechanical insights into how genes are transcribed in cells, shedding light on the fundamental processes of life.

SourceSalk Institute·JournalCell Reports Methods·DateAug 13, 2026

Distinguished cancer researcher Stuart S. Martin, PhD, named Chair of the Department of Pharmacology & Physiology at UM School of Medicine

Stuart S. Martin, PhD, has been appointed Chair of the Department of Pharmacology & Physiology at UMSOM, bringing over 20 years of success in advancing basic science research efforts and developing new drug therapies. His groundbreaking discovery of microtentacles on cancer cells promises to lead to new life-extending therapies.

Controlling bacteria with light: from tackling antibiotic resistance to “bacterial robots”

Researchers at Politecnico di Milano have developed a system that allows bacteria to sense light and convert it into electrical signals without genetic modification. This method has the potential to develop next-generation antimicrobial platforms and biocompatible 'bacterial robots' for targeted drug delivery.

SourcePolitecnico di Milano·JournalThe European Physical Journal Plus·TypeExperimental study·DateJun 3, 2025

Keep the cool feeling: A lipid enzyme for maintaining cool temperature sensation and avoidance

Researchers have identified a monoacylglycerol acyltransferase (MGAT)-coding gene named bishu-1 that maintains the expression level of thermal receptors and modulates cool temperature sensation and avoidance behavior. The discovery could promote the development of lipid-mediated treatments for maintaining thermosensation in humans.

SourceNational Institutes of Natural Sciences·JournalCommunications Biology·TypeExperimental study·DateMay 29, 2025

Less bitter, just as satiating

A recent study by the Leibniz Institute for Food Systems Biology at the Technical University of Munich shows that less bitter-tasting pea protein hydrolysates can form bioactive peptides during digestion, which induce satiety signals via bitter taste receptors. The study reveals molecular mechanisms that can be used to optimize the tas...

SourceLeibniz-Institut für Lebensmittel-Systembiologie an der TU München·JournalFood Chemistry·TypeExperimental study·DateMay 27, 2025

Recent study in mice provides key insights on the impact of excessive sucrose consumption in specific organs

A recent study using mice found that chronic sucrose consumption disrupts physiological processes, leading to diseases such as diabetes and obesity. The small intestine plays a key role in this process, causing an imbalance in glucose uptake and nutrient absorption.

SourceTata Institute of Fundamental Research·JournalThe Journal of Nutritional Biochemistry·TypeExperimental study·DateMar 21, 2025

Using alternative protein sources: Improving the mouthfeel of plant-based foods with fava beans

Researchers at the Leibniz Institute for Food Systems Biology found that fava bean protein nanofibrils alter the activity of receptor genes and interact with cell membranes, influencing texture perception. The study aims to develop sensorially appealing plant-based foods with improved texture.

In rats, intrauterine exposure to cannabinoid affected cardiorespiratory function and sleep quality in adulthood

Researchers found that prenatal exposure to synthetic cannabinoid led to cardiovascular problems in female rats and increased respiratory sensitivity to carbon dioxide in male rats. Sleep quality also deteriorated in both sexes, with males experiencing sleep fragmentation due to frequent wakefulness episodes.

Vape residue may harm unborn babies

New research suggests that exposure to vape and e-cigarette residue on surfaces during pregnancy can cause immune system damage in unborn babies. The study found that maternal third-hand exposure to e-vapour results in significant, long-lasting effects on lung and bone marrow immune cell responses.

SourceUniversity of Technology Sydney·TypeExperimental study·DateSep 26, 2024

Clinical ageing clocks: NUS and SGH develop algorithm-powered tests to indicate mortality risk

Researchers developed two clinical ageing clocks, PCAge and LinAge, that use blood tests, a urine test, and a health questionnaire to estimate future mortality risk. These clocks show significant predictive efficacy in characterising individual future ageing trajectories.

SourceNational University of Singapore, Yong Loo Lin School of Medicine·JournalNature Aging·TypeData/statistical analysis·DateJun 19, 2024

Copy number variation implements pregnancy as an aging model

Researchers found that pregnant mice experiencing copy number variation (CNV) showed similarities to aging, with biomarkers and genetic effects appearing during pregnancy and reversing after delivery. This study aims to revolutionize aging treatment by investigating the mechanisms behind post-labor rejuvenation.

SourceImpact Journals LLC·JournalAging-US·TypeExperimental study·DateSep 6, 2023

Journal of Pharmaceutical Analysis studies make advances in spatiotemporal pharmacometabolomics, plasma proteome profiling, and hepatocellular carcinoma therapeutics

Researchers developed new methods for detecting drug-induced hepatotoxicity using 3D cell cultures and mass spectrometry imaging, identifying biomarkers and effective interventions. A zeolite-based protein corona method was also used to characterize plasma proteins, enabling the identification of low-abundance proteins and their potent...

SourceCactus Communications·JournalJournal of Pharmaceutical Analysis·TypeExperimental study·DateJul 26, 2023

This eight-armed octopus-like pore detects taste

Researchers have captured never-before-seen images of the CALHM1 pore, which assembles into a circular channel with flexible arms resembling octopus tentacles. The discovery reveals how fatty molecules stabilize and regulate the channel, offering potential insights into its role in taste perception and Alzheimer's disease.

SourceCold Spring Harbor Laboratory·JournalNature Communications·DateJul 14, 2023

Innovative 3D drug screening system

A team led by Professor Timo Betz has developed a 3D cell culture chamber to grow muscle and other tissue using high-resolution microscopy. The new system will enable scientists to mimic the mechanical situations that confront various living tissues in serious conditions, reducing animal testing and costs.

Many genes are involved in “resurrection”

Researchers have discovered a complex network of genes in the resurrection plant Craterostigma plantagineum that enables it to tolerate extreme drought conditions. The study found that this ability is not due to a single 'miracle gene' but rather the result of a whole genome, with many genes present in higher copy numbers than in more ...

SourceUniversity of Bonn·JournalThe Plant Journal·TypeExperimental study·DateMar 23, 2023

Richard McIndoe, PhD, will direct Coordinating Unit for new, national research initiative in diabetes, obesity

Richard McIndoe is leading a national research initiative to advance understanding of diabetes and obesity through the National Centers for Metabolic Phenotyping in Live Models of Obesity and Diabetes (MPMOD). The MPMOD initiative provides access to advanced testing services, including bariatric surgery on mice, to enable new insights ...

Illinois Tech professors’ paper challenging classical view of muscle contraction could lead to new cardiac treatments

Researchers discovered that myosin motor proteins must be activated before muscles can contract, potentially leading to breakthroughs in treating inherited cardiac conditions. This new understanding could lead to medical remedies for diseases like dilated cardiomyopathy and hypertrophic cardiomyopathy.

SourceIllinois Institute of Technology·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateFeb 1, 2023

Zinc enhances albumin’s protective role against Parkinson's disease

Researchers have discovered that zinc ions tune the ability of human serum albumin to prevent α-synuclein aggregation, a process linked to Parkinson's disease. Zinc binding alters HSA's chaperone function, blunting fibril formation and slowing down protein deposition that can lead to neurodegeneration.

SourceKing Abdullah University of Science & Technology (KAUST)·JournalInternational Journal of Biological Macromolecules·DateOct 16, 2022