DUBLIN, Ireland--(BUSINESS WIRE)--Research and Markets (http://www.researchandmarkets.com/reports/c66035) has announced the addition of “Novel Enzyme Technology For ...
January 6, 2003— For the first time, high concentrations of an active enzyme have been successfully immobilized in a mesoporous, functionalized silica structure. Researchers at the U.S. Department of ...
A growing body of research suggests that combining enzymes with biochar, a carbon-rich material made from agricultural and organic waste, could transform how scientists clean polluted water and soil.
Dextranase enzymes, a subset of glycoside hydrolases, catalyse the hydrolysis of dextran polymers into smaller oligosaccharides, thus playing a pivotal role in numerous industrial and biomedical ...
Living cells are sustained by countless chemical reactions that must be carefully regulated to maintain internal order and ...
Researchers developed C28, an engineered polymerase that efficiently synthesizes RNA at near-natural speeds with high accuracy. Created through directed evolution, the enzyme also performs reverse ...
Scientists have chemically modified the enzyme levansucrase using a new method. The enzyme can now produce sugar polymers that are exciting for applications in the food industry and medicine. Enzymes ...
The dynamic plant-based dairy alternatives market, valued at $3.7 billion in 2024 for non-dairy milk alone 1 and projected to reach $66.91 billion by 2030 2, is expanding beyond beverages to include ...
Enzymes are biological catalysts that speed up chemical reactions in living organisms. They are essential for life, as they play a crucial role in various biological processes, such as digestion, ...
A few years ago, the advent of technology known as CRISPR was a major breakthrough in the scientific world. Developed from a derivative of the immune system of bacteria, CRISPR enables double strands ...
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Enzyme technology clears first human test toward universal donor organs for transplantation
The first successful human transplant of a kidney converted from blood type A to universal type O used special enzymes developed at the University of British Columbia to help prevent a mismatch and ...
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