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All wound up: A reversible molecular whirligig

Over the last few decades, researchers have built minuscule molecular machines that rotate or shuttle other molecules. However, it's difficult to determine the mechanical work and forces that these tiny contraptions produce, which is important when u.....»»

Category: topSource:  marketingvoxJun 6th, 2022

Researchers discover new function of oncoproteins

Researchers at the University of Würzburg have discovered a new function of the oncoprotein MYCN: It not only helps cancer cells to grow stronger, but also makes them more resistant to drugs. The study is published in Molecular Cell......»»

Category: topSource:  physorgRelated NewsMay 8th, 2024

Researchers develop nanotechnology for creating wafer-scale nanoparticle monolayers in seconds

Nanoscale materials present us with astonishing chemical and physical properties that help materialize applications such as single molecular sensing and minimally invasive photothermal therapy—which were once just theories—into reality......»»

Category: topSource:  physorgRelated NewsMay 7th, 2024

Study reveals flaw in long-accepted approximation used in water simulations

Computational scientists at the Department of Energy's Oak Ridge National Laboratory have published a study in the Journal of Chemical Theory and Computation that questions a long-accepted factor in simulating the molecular dynamics of water: the 2-f.....»»

Category: topSource:  physorgRelated NewsMay 7th, 2024

Researchers reveal how molecular roadblocks slow the breakdown of cellulose for biofuels

Cellulose, which helps give plant cell walls their rigid structure, holds promise as a renewable raw material for biofuels—if researchers can accelerate the production process. Compared to the breakdown of other biofuel materials like corn, breakin.....»»

Category: topSource:  physorgRelated NewsMay 7th, 2024

Rich molecular language guides tiny liquid droplet formation in cells

Peering into a biological cell reveals a bustling microscopic world. The workhorses within this realm are specialized structures called organelles that perform vital cellular functions. Curiously, some organelles defy accepted convention: Instead of.....»»

Category: topSource:  physorgRelated NewsMay 7th, 2024

Self-adaptive system for temperature control: A dynamically controllable strategy for healing wound tissue

Skin functions as a sophisticated sensorial system in the human body, capable not only of detecting environmental stimuli—such as temperature, pressure, strain, and vibration—but also of actively responding to these changes. Among these, the temp.....»»

Category: topSource:  physorgRelated NewsMay 6th, 2024

Attosecond core-level spectroscopy reveals real-time molecular dynamics

Chemical reactions are complex mechanisms. Many different dynamic processes are involved, affecting both the electrons and the nucleus of the present atoms. Very often, the strongly coupled electron and nuclear dynamics induce radiation-less relaxati.....»»

Category: topSource:  physorgRelated NewsMay 6th, 2024

First steps toward a whole-body map of molecular responses to exercise

Research definitively confirms that muscle-moving, calorie-burning activity slows the advance of disease, improves cognitive function, boosts the immune system, and reduces rates of mortality from all causes......»»

Category: topSource:  physorgRelated NewsMay 5th, 2024

Research team develop porous sponge material for enhancing kidney hemostasis and repair

A POSTECH research team have crafted a material aimed at swiftly staunching kidney bleeding and facilitating wound recovery. Their research featured in the online edition of Biomaterials......»»

Category: topSource:  physorgRelated NewsMay 2nd, 2024

First report of wound treatment by a wild animal using a pain-relieving plant

Even though there is evidence of certain self-medication behaviors in animals, so far it has never been known that animals treat their wounds with healing plants......»»

Category: topSource:  physorgRelated NewsMay 2nd, 2024

Researchers detect toxic chemicals in aquatic organisms with new AI method

Swedish researchers at Chalmers University of Technology and the University of Gothenburg have developed an AI method that improves the identification of toxic chemicals—based solely on knowledge of the molecular structure......»»

Category: topSource:  physorgRelated NewsMay 2nd, 2024

Tracking the dynamics of biomolecules with optofluidic antennas

In order to better understand fundamental processes in life science at the molecular level, the precise observation of single molecule dynamics is of utmost interest. However, current techniques based on fluorescence measurements in aqueous solutions.....»»

Category: topSource:  pcmagRelated NewsApr 30th, 2024

More efficient molecular motor widens potential applications

Light-driven molecular motors were first developed nearly 25 years ago at the University of Groningen, the Netherlands. This resulted in a shared Nobel Prize for Chemistry for Professor Ben Feringa in 2016. However, making these motors do actual work.....»»

Category: topSource:  informationweekRelated NewsApr 26th, 2024

Molecular mechanism of CmoDREB2A and CmoNAC1 in pumpkin regulating the salt tolerance of grafted cucumber revealed

In February 2024, a research article titled "Pumpkin CmoDREB2A enhances salt tolerance of grafted cucumber through interaction with CmoNAC1 to regulate H2O2 and ABA signaling and K+/Na+ homeostasis" was published by Professor Zhilong Bie's team from.....»»

Category: topSource:  physorgRelated NewsApr 25th, 2024

A molecular fingerprint beyond the Nyquist frequency

Ultrashort pulses play a significant role in spectroscopic applications. Their broad spectral bandwidth enables simultaneous characterization of the sample at various frequencies, eliminating the need for repeated measurements or laser tuning. Moreov.....»»

Category: topSource:  physorgRelated NewsApr 24th, 2024

Engineers muffle invading pathogens with a "molecular mask"

Vaccines remain the gold standard of protection against dangerous pathogens, but take considerable time and vast resources to develop. Rapidly mutating viruses such as SARS-CoV-2 can blunt their effectiveness and even render them obsolete......»»

Category: topSource:  physorgRelated NewsApr 24th, 2024

Research combines DNA origami and photolithography to move one step closer to molecular computers

Molecular computer components could represent a new IT revolution and help us create cheaper, faster, smaller, and more powerful computers. Yet researchers struggle to find ways to assemble them more reliably and efficiently......»»

Category: topSource:  physorgRelated NewsApr 24th, 2024

A universal framework for spatial biology

Biological processes are framed by the context they take place in. A new tool developed by the Stegle Group from EMBL Heidelberg and the German Cancer Research Center (DKFZ) helps put molecular biology research findings in a better context of cellula.....»»

Category: topSource:  physorgRelated NewsApr 23rd, 2024

New toolkit makes molecular dynamics simulations more accessible

Molecular dynamics (MD) simulations have become a powerful tool in the ever-growing fields of molecular biology and drug development. While many MD simulation techniques exist, parallel cascade selection MD (PaCS-MD) is a particularly useful one when.....»»

Category: topSource:  physorgRelated NewsApr 23rd, 2024

Uncovering key players in gene silencing: Insights into plant growth and human diseases

Monash University biologists have shed light on the intricate molecular mechanisms that are responsible for gene silencing induced by expanded repeats in an international study published today in Nature Plants......»»

Category: topSource:  physorgRelated NewsApr 19th, 2024