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Breakthrough: Natural bacteria compound offers safe skin lightening

Researchers at Tokyo University of Science discovered a natural tyrosinase inhibitor from Corynebacterium tuberculostearicum that inhibits melanin synthesis and provides an alternative to toxic hydroquinone-based products. The compound, cyclo(L-Pro-L-Tyr), exhibits low toxicity and potential benefits for hyperpigmentation treatment.

SourceTokyo University of Science·JournalInternational Journal of Molecular Sciences·TypeExperimental study·DateAug 5, 2024

This desert moss has the potential to grow on Mars

A new study reveals that a type of desert moss called Syntrichia caninervis has the potential to grow on Mars due to its ability to tolerate extreme temperatures, radiation, and dehydration. The researchers tested the moss's resilience in various conditions and found it to be one of the most radiation-tolerant organisms known.

SourceCell Press·JournalThe Innovation·TypeExperimental study·DateJun 30, 2024

The nanotechnological revolution requires standardized ‘screws’ – here is a way to measure them

Scientists at the University of Bath discovered a new nonlinear optical property that measures the twist in tiny particles, similar to viruses and bacteria. This finding enables real-time particle size analysis and has significant implications for various fields like display technology, chemical catalysis, and medicine.

SourceUniversity of Bath·JournalACS Nano·TypeExperimental study·DateJun 14, 2024

Cover paper: Senescent characteristics of human corneal endothelial cells upon UV-A exposure

Researchers investigate senescence phenotypes of human corneal endothelial cells upon treatment with ultraviolet (UV)-A. Cells exhibit enlarged morphology, increased β-galactosidase activity and decreased proliferation. UV-A-induced senescent cells show similar gene expression profiles to ionizing radiation (IR)-induced cells.

SourceImpact Journals LLC·JournalAging-US·TypeObservational study·DateApr 30, 2024

New ultraviolet light air disinfection technology could help protect against healthcare infections and even the next pandemic

A new ultraviolet light technology called far-UVC has been shown to be effective in killing viruses and bacteria without the safety concerns of conventional UV light. This technology could help reduce the risk of healthcare infections and even the next pandemic by continuously decontaminating occupied spaces.

Backyard insect inspires invisibility devices, next gen tech

Researchers have precisely replicated the complex geometry of leafhopper particles, called brochosomes, which absorb visible and ultraviolet light. The unique design serves a dual purpose, reducing visibility to predators and scattering visible light for potential threats.

SourcePenn State·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateMar 18, 2024

Breakthrough in ultraviolet spectroscopy

Researchers at the Max Planck Institute of Quantum Optics have successfully developed a new technique for deciphering the properties of light and matter, enabling precise spectroscopy under low-light conditions. This breakthrough opens up possibilities for novel applications in photon-level diagnostics, precision spectroscopy, and biom...

SourceMax-Planck-Gesellschaft·JournalNature·DateMar 15, 2024

Optical frequency combs make ultraviolet spectroscopy more sensitive and more precise

Researchers at Max Born Institute have successfully implemented high-resolution linear-absorption dual-comb spectroscopy in the ultraviolet spectral range. This breakthrough enables experiments under low-light conditions, paving the way for novel applications in precision spectroscopy and biomedical sensing.

Flexible artificial intelligence optoelectronic sensors towards health monitoring

Researchers from Tokyo University of Science developed a flexible paper-based sensor that operates like the human brain, enabling low-power and efficient health monitoring. The device can distinguish 4-bit input optical pulses and generate currents in response to time-series optical input, with rapid response times.

SourceTokyo University of Science·JournalAdvanced Electronic Materials·TypeExperimental study·DateMar 11, 2024

Radiation from massive stars shapes planetary systems

A study of the Orion Nebula reveals that massive stars play a crucial role in shaping planetary systems. The intense ultraviolet radiation from these stars can either facilitate or hinder planet formation, depending on the mass of the star at the system's center.

SourceCNRS·JournalScience·DateFeb 29, 2024

New study unveils scalable and efficient photoelectrode modules for green hydrogen production

Researchers at UNIST have developed a scalable and efficient photoelectrode module for green hydrogen production, overcoming challenges of efficiency, stability, and scalability. The team's innovative approach achieved unprecedented efficiency, durability, and scalability in producing green hydrogen using solar energy.

Dry-cleaning fluid becomes a synthetic chemist's treasure

A new method has been developed to convert the widely used dry-cleaning solvent perc into carbonate esters and chloroform, valuable building blocks for further organic synthesis. This clean process uses on-demand UV activation, eliminating the need for toxic source materials.

SourceKobe University·JournalThe Journal of Organic Chemistry·TypeExperimental study·DateJan 10, 2024

Coevolution helps Santa's reindeer feast after flight

Researchers discovered that reindeer's vision evolved to spot Cladonia rangiferina, a type of lichen, during winter. This adaptation allows them to conserve energy by finding food from a distance, making it easier to survive in cold environments. The study provides new insights into the extraordinary visual system of reindeer.

SourceDartmouth College·Journali-Perception·TypeExperimental study·DateDec 15, 2023

Achieving large and uniform particle sizes

A French team of researchers has developed a method to produce stable polystyrene dispersions with unprecedentedly large and uniform particle sizes. The team used light-driven processes, overcoming the previous 300-nanometer ceiling limit of UV and blue-light-based photopolymerization systems.

SourceWiley·JournalAngewandte Chemie International Edition·TypeExperimental study·DateOct 25, 2023

Germicidal UV lights could be producing indoor air pollutants, study finds

New research from MIT found that germicidal UV lights can produce potentially harmful compounds in indoor spaces. The study suggests that the lights should be used with appropriate ventilation to minimize health risks. Researchers emphasize that the new UV lights are not a replacement for ventilation but rather a complement to it.

SourceMassachusetts Institute of Technology·JournalEnvironmental Science & Technology·DateOct 18, 2023

Diamond materials as solar-powered electrodes - spectroscopy shows what's important

Researchers have found that diamond materials can release electrons in water and trigger chemical reactions when excited by light. The team used X-ray spectroscopy to precisely track the processes taking place on the surface of diamond materials, revealing that they are well-suited for use in aqueous solutions.

SourceHelmholtz-Zentrum Berlin für Materialien und Energie·JournalSmall Methods·TypeExperimental study·DateSep 21, 2023

Fanning the flames

Researchers at Washington University in St. Louis discovered that wildfires emit dark brown carbon, a potent climate-warming particle that absorbs solar radiation. This finding has broad implications for climate models and highlights the need to revise existing approaches to account for the unexpected effects of brown carbon.

SourceWashington University in St. Louis·JournalNature Geoscience·TypeExperimental study·DateAug 7, 2023

An escape signal for the nematode: Artificial intelligence helps elucidate structure of a novel light sensor

A team of scientists has successfully elucidated the structure and function of LITE-1, a biomolecule used by Caenorhabditis elegans to detect danger. The researchers used artificial intelligence to predict the structure of LITE-1, which is a channel protein that forms a pore in the cell membrane allowing charged particles to pass through.

SourceGoethe University Frankfurt·JournalCurrent Biology·TypeExperimental study·DateAug 2, 2023