Biochemistry
“Revolutionizing Catalysis: Scientists Witness Live Atomic-Level Reactions in Real Time”
A team of scientists has directly observed catalysis in-action at the atomic level. In mesmerizing new videos, single atoms move and shake during a chemical reaction that removes hydrogen atoms from an alcohol molecule. By viewing the process in real time, the researchers discovered several short-lived intermediate molecules involved in the reaction as well as a previously hidden reaction pathway.

Biochemistry
“Tailoring Gene Editing with Machine Learning: A Breakthrough in CRISPR-Cas9 Enzyme Engineering”
Genome editing has advanced at a rapid pace with promising results for treating genetic conditions — but there is always room for improvement. A new paper showcases the power of scalable protein engineering combined with machine learning to boost progress in the field of gene and cell therapy. In their study, authors developed a machine learning algorithm — known as PAMmla — that can predict the properties of about 64 million genome editing enzymes. The work could help reduce off-target effects and improve editing safety, enhance editing efficiency, and enable researchers to predict customized enzymes for new therapeutic targets.
Biochemistry
Unlocking Cellular Secrets: New Technique Expands Tissues for Mass Spectrometry Imaging
A new tissue expansion method enables scientists to use mass spectrometry imaging to simultaneously detect hundreds of molecules at the single cell level in their native locations.
Alternative Fuels
A Breakthrough in Green Hydrogen Production: Cage Structured Material Transforms into High-Performance Catalyst
Clathrates are characterized by a complex cage structure that provides space for guest ions too. Now a team has investigated the suitability of clathrates as catalysts for electrolytic hydrogen production with impressive results: the clathrate sample was even more efficient and robust than currently used nickel-based catalysts. They also found a reason for this enhanced performance. Measurements at BESSY II showed that the clathrates undergo structural changes during the catalytic reaction: the three-dimensional cage structure decays into ultra-thin nanosheets that allow maximum contact with active catalytic centers.
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Detectors1 week ago
A New Horizon for Vision: How Gold Nanoparticles May Restore People’s Sight
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Earth & Climate1 month ago
Retiring Abroad Can Be Lonely Business
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Cancer1 month ago
Revolutionizing Quantum Communication: Direct Connections Between Multiple Processors
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Agriculture and Food1 month ago
“A Sustainable Solution: Researchers Create Hybrid Cheese with 25% Pea Protein”
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Diseases and Conditions1 month ago
Reducing Falls Among Elderly Women with Polypharmacy through Exercise Intervention
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Albert Einstein1 month ago
Harnessing Water Waves: A Breakthrough in Controlling Floating Objects
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Child Development1 month ago
“Fishy Business: Study Reveals Link Between Seafood Intake and Kindness in Children”
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Alternative Fuels1 month ago
Unlocking the Secrets of Supercritical Water: A New Understanding of Its Structure