Replacing conventional structurants with wood-derived microfibrillated cellulose prevents enzyme degradation and phase separation in complex formulations.
Polyester fiber wipes stabilize detergent enzymes without glycols, preventing greasy marks on medical surfaces while maintaining cleaning efficacy.
Specific amino acid substitutions in subtilase variants resolve storage stability and wash performance contradictions.
Reducing carboxymethyl cellulose particle size below 100 nm prevents clouding and maintains transparency while ensuring graying inhibition.
Incorporating acylhydrazones into liquid detergents enhances dirt removal performance through chemical interaction with surfactants and enzymes.
Poly alpha-1,6-glucan ester compounds provide anti-deposition benefits while maintaining biodegradability for fabric care applications.
Bacterial cellulose networks provide yield stress and shear thinning in liquid detergents, maintaining bead suspension without excessive viscosity or opacity.
Recombinant Bacillus gibsonii-clade subtilisin variants use targeted amino acid substitutions to enhance proteolytic activity.