A PHA-polyester blend with embedded enzymes improves water resistance in single-layer biodegradable packaging without blocking polymer breakdown.
A staged camel mucosa extraction route improves heparin purity and potency while reducing dependence on porcine supply.
Targeted dsRNA silences PLG expression to curb excessive fibrinolysis and reduce bleeding in HMB and HHT with fewer limits than standard care.
Specific siRNA sequences target hepatic PCSK9 mRNA to improve silencing stability while supporting LDL-C metabolism and safety.
Cholesterol-modified siRNA knocks down USP-10 expression, reducing fibrotic marker production and accelerating wound closure.
Disposable hydrophobic columns separate single-chain and double-chain tPA forms via controlled solvent elution, reducing purification costs.
Targeted dsRNA agents reduce CPB2 protein levels by up to 95 percent, treating thrombosis without excessive bleeding risks.
Engineered polypeptide with specific amino acid substitutions enables precise control over enzymatic activity levels during processing.
A myeloid-specific c-fms-rtTA bitransgenic mouse model enables precise MMP12 induction to study immune suppression and tumorigenesis.
Modified sense and antisense strands reduce PCSK9 mRNA via RNA interference, addressing insufficient LDL-cholesterol reduction in current treatments.
A three-component enzyme system hydrolyzes insoluble proteins in distillers grains into a soluble broth, addressing low digestibility and malnutrition risks.
Bacillus-derived recombinant serine proteases sustain hydrolysis of proteinaceous stains under alkaline conditions where standard enzymes lose function.
Disulfide bonds between termini enhance thermal stability and membrane permeability of truncated Serratiopeptidase variants.
Protease treatment degrades gluten in wheat starch slurry, enabling reliable production of purified starch below 20 ppm for labeling compliance.
Engineered trypsin variants enable orthogonal dual-modification of polypeptides by enhancing aminolysis affinity while suppressing hydrolysis activity.