Results 61 to 70 of about 29,422 (235)
New oxidative enzimes for industrial application [PDF]
Fungal laccases are remarkable green catalysts that have a broad substrate specificity and many potential applications in bioremediation, lignocellulose processing, organic synthesis, and more.
Miele, Annalisa
core +1 more source
Pectin, a versatile natural polymer, is extracted through conventional and emerging green extraction methods, offering multifunctional bioactive properties useful in food, pharmaceutical, and environmental applications. ABSTRACT Pectin, a molecular tapestry woven from diverse polysaccharides, holds a pivotal role across food, pharmaceutical, and ...
Afra Anika Rafique +3 more
wiley +1 more source
Chemical Modification of Laccase from Aspergillus oryzae and its Application in OCC Pulp
Laccase activity and stability were improved and modified through the interaction between laccase amino acid residues (e.g., amino groups (-NH2) and carboxyl groups (-COOH)) and the chemical reagents thiourea dioxide (TDO) and L-phenylalanine methyl ...
Yangmei Chen +3 more
doaj +1 more source
Laccase: Properties and applications
Laccases (benzenediol:oxygen oxidoreductase, EC 1.10.3.2) are multi-copper oxidases that are widely distributed among plants, insects, and fungi. They have been described in different genera of ascomycetes, some deuteromycetes, and mainly in basidiomycetes.
Vernekar Madhavi, S. S. Lele
openaire +2 more sources
This review elucidates the formation pathways and detection technologies for ethyl carbamate, biogenic amines, and higher alcohols in Huangjiu. It concludes that integrated control frameworks are essential to decouple safety risks from the metabolic processes responsible for flavor development.
Lulu Liu +5 more
wiley +1 more source
Lignin-Enhanced Laccase Production from Trametes versicolor
Laccase production requires a cost effective boost from host organisms to meet the needs for its numerous applications. Addition of 1.2 g L-1 lignin to media culture of Trametes versicolor improved laccase production up to 1213.93 U L-1, which was 3.69-
Guo, Chen +2 more
core +1 more source
High redox potential laccases from white-rot fungi are recalcitrant to engineering. Maté et al. (2010) employed directed evolution to improve the activity and expression level of the fungal laccase from basidiomycete PM1, followed by rational design to restore thermostability lost during evolution, resulting in a highly active and stable enzyme.
Sayut, Daniel J., Sun, Lianhong
openaire +2 more sources
Biosensors enable rapid, sensitive, and portable detection of pathogens, contaminants, allergens, and food adulteration. Integration with smart packaging, smartphones, IoT, and machine learning supports real‐time monitoring and intelligent decision‐making, whereas microfluidics, biodegradable materials, explainable AI, and blockchain offer pathways ...
Mohima Akther Any +7 more
wiley +1 more source
Production of plant cell wall-degrading enzymes in Lentinula edodes and the important role of laccase in early stages of solid-state cultivation [PDF]
We studied the production of plant cell wall-degrading enzymes in Lentinula edodes grown on sawdust medium. A mycelial mat was spotted onto the center of a medium plate, which was then incubated at 23℃ for 31 days.
SATO, Toshitsugu, NAGAI, Masaru
core
Laccase, an Emerging Tool to Fabricate Green Composites: A Review [PDF]
In the last two decades, laccases have received much attention from researchers because of their specific ability to oxidize lignin. This function of laccase is very useful for applications in several biotechnological processes, including delignification
Othman, Sulaiman +5 more
core +1 more source

