Explore how protein engineering and Structure-Activity Relationships (SAR) are revolutionizing enzyme design for industrial and medical applications.
How genetic engineering is revolutionizing citrus disease resistance against threats like HLB and citrus canker
Discover how silk-gelatin hybrid hydrogels with affinity-based systems revolutionize growth factor delivery for tissue regeneration.
Discover how FT-MIR ATR spectroscopy and multivariate analysis revolutionize enzyme engineering by enabling high-throughput screening of fungal β-fructofuranosidase mutants.
Research on genetically modifying adipose-derived stem cells with pleiotrophin gene to enhance their regenerative potential for tissue repair.
Discover how engineering yeast SNARE genes enhances cellulase secretion for biofuel production, overcoming key bottlenecks in sustainable energy.
Exploring how extracellular matrix properties guide H9c2 cardiomyoblast differentiation through stiffness, chemistry, and texture for cardiac tissue engineering.
Exploring how bioactivity grafting in cyclic peptides like cyclotides and SFTI-1 is revolutionizing peptide-based therapeutics.
Discover how Richard Perham's groundbreaking work on multienzyme complexes revolutionized our understanding of cellular machinery and metabolic efficiency.
Explore the remarkable capabilities of Cytochrome P450 enzymes in biosynthesis, drug metabolism, and sustainable chemical synthesis.