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Science News Archive 2021 - Page 404


Page 404 of 510

Study provides insights into architecture of abnormal protein deposits in brain disorders

Researchers at Case Western Reserve University have determined the structure of protein fibrils linked to Lou Gehrig's disease and other neurodegenerative disorders. The findings provide clues on how toxic proteins clump and spread between nerve cells in the brain, potentially leading to the development of new treatments.

SourceCase Western Reserve University·JournalNature Communications·DateMar 12, 2021

Yeast epigenome map reveals details of gene regulation

A high-resolution protein architecture of the budding yeast genome was mapped using ChIP-exo, revealing two distinct gene regulatory architectures. The study identifies a surprisingly small number of unique protein assemblages used repeatedly across the yeast genome, expanding the traditional model of gene regulation.

SourceCornell University·JournalNature·DateMar 12, 2021

A computational guide to lead cells down desired differentiation paths

A computational guide to lead cells down desired differentiation paths uses a novel computer-guided design tool to predict effective combinations of transcription factors. The approach significantly increases the efficiency of cell conversions, generating higher numbers of immune cells and skin cells than other methods.

A joint effort to improve shoulder surgery

A joint effort by Pitt bioengineer and orthopaedic surgeon aims to improve surgical outcomes for capsular injuries, potentially leading to a more effective treatment. The study uses quantitative techniques to measure injury magnitude and location, with the goal of reducing failure rates and improving patient recovery.

New proteins 'out of nothing'

A team of researchers has reconstructed the formation of a newly emerged protein in flies, essential for male fertility. The study reveals that species form new proteins de novo without related precursor proteins, with beneficial functions emerging after millions of years.

SourceUniversity of Münster·JournalNature Communications·DateMar 12, 2021

Immuno-PET can give physicians early insight into tumor response to targeted therapy

Researchers have developed Immuno-PET, a technique that visualizes changes in different cancer receptors within tumors during targeted therapies, enabling early evaluation of treatment effectiveness and prediction of response. This can help physicians select the most effective treatment for patients with cancer.

SourceSociety of Nuclear Medicine and Molecular Imaging·JournalJournal of Nuclear Medicine·DateMar 12, 2021

SARS-CoV-2 jumped from bats to humans without much change

The study found that SARS-CoV-2 underwent little significant genetic change in the first year of the pandemic, suggesting a 'generalist' nature and rapid transmission. This is attributed to human population immunity and lack of containment, allowing the virus to spread quickly.

SourcePLOS·JournalPLOS Biology·DateMar 12, 2021

CT colonography most effective noninvasive colorectal cancer screening test

A new study published in the American Journal of Roentgenology found that CT colonography with a 10 mm threshold is the most effective and efficient non-invasive screening test for colorectal cancer prevention and detection. This method targets advanced neoplasia while reducing unnecessary colonoscopies compared to other tests.

SourceAmerican Roentgen Ray Society·JournalAmerican Journal of Roentgenology·DateMar 12, 2021

Use of perovskite will be a key feature of the next generation of electronic appliances

A new class of nanomaterials made from perovskite have improved the efficiency of quantum dots, allowing for brighter displays and more efficient electronics. By analyzing the interactions between bright and dark states, researchers were able to verify energy alignment and make discoveries regarding electron behavior.

Oil in the ocean photooxides within hours to days, new study finds

A new study published in Frontiers in Marine Science demonstrates that oil in the ocean can undergo photooxidation, a process that breaks down crude oil into persistent compounds. This process occurs within hours to days and reduces the effectiveness of chemical dispersants used to clean up spills.

School closures 'sideline' working mothers

New research from Washington University in St. Louis reveals that school closures disproportionately affect mothers' labor force participation, with a 23 percentage point gap in some states. Mothers' work attachment fell more significantly than fathers', and the gender gap is expected to have long-lasting effects on lifetime earnings.

SourceWashington University in St. Louis·JournalGender & Society·DateMar 12, 2021

Chinese solar telescope reveals acceleration of magnetic reconnection

Researchers using the New Vacuum Solar Telescope observed a significant acceleration of magnetic reconnection due to propagating disturbances caused by filament eruptions. The study, published in The Astrophysical Journal, found that these disturbances led to shorter and brighter current sheets with increased reconnection rates.

SourceChinese Academy of Sciences Headquarters·JournalThe Astrophysical Journal·DateMar 12, 2021

Remote control for quantum emitters

Scientists at the University of Innsbruck have created a method to individually address quantum emitters using chirped light pulses, enabling precise control over individual superconducting quantum bits and atoms in various electromagnetic structures. This approach has far-reaching implications for quantum computing and simulation.

SourceUniversity of Innsbruck·JournalPhysical Review Letters·DateMar 12, 2021

Structural adhesives inspired by mussels

A University of Delaware professor is developing new, resilient adhesives for concrete structures by mimicking mussel adhesion. The goal is to improve the durability of concrete in harsh environments and support sustainable growth, enabling prefabricated construction and additive manufacturing.

Shedding light on perovskite films

Scientists from KIT's Institute of Microstructure Technology and Light Technology Institute have developed a new model to calculate photoluminescence quantum efficiency of perovskite films. The results reveal that the actual efficiency is significantly lower than previously estimated, with an estimated 78% compared to predicted 90%. Th...

Shutting the nano-gate

Scientists at Osaka University fabricated nanopores in silicon dioxide that can prevent particles from entering by applying a voltage. The technology may enable the development of single-particle sensors and next-generation DNA sequencing technology.

SourceOsaka University·JournalCommunications Materials·DateMar 12, 2021