A taurolidine-based hydrogel uses biofilm-penetrating agents to disrupt mature biofilms on medical devices and eliminate embedded microorganisms.
Targeted oxytetracycline trunk injection reaches active vasculature to suppress citrus greening while limiting environmental leakage and fruit loss.
A TBZ/PYM water-based mixture gives wallboards broad-spectrum fungal protection under moisture exposure through synergistic inhibition.
A synergistic preservative composition controls bacteria, fungi, and viruses while reducing reliance on irritating or toxic antimicrobial agents.
A Bacillus velezensis strain boosts germination, growth, pathogen resistance, and drought tolerance while reducing crop water demand.
Oxo and hydroxy fatty acids improve agrochemical uptake into plant tissues while lowering surfactant persistence and environmental load.
Modified SbDef1 peptides retain antifungal activity under elevated cation levels while broadening plant resistance to fungi and oomycetes.
A surfactant blend keeps bacteria planktonic in process water, limiting biofilm growth while reducing reliance on toxic biocides.
Fluorine-positioned pesticidal molecules improve control of resistant arthropod, mollusk, and nematode pests while reducing crop losses.
Modified pyrokinin peptides raise pest mortality and cut crop infestations while limiting harm to pollinators and the environment.
Fused insecticidal proteins broaden pest control in transgenic crops, helping overcome narrow activity and resistance to existing insecticides.
Alpha-cyclodextrin stabilizes antimicrobial glycolipids in water-based formulations, preventing turbidity and emulsion disturbance.
An alkaline aqueous extract from Gelidiaceae red algae controls phytopathogenic nematodes while reducing environmental and health side effects.
Selected Beauveria bassiana strains control crop and non-crop insect pests with chemical-like efficacy while avoiding health and environmental risks.
Moss culture media yields biostimulant-rich aqueous solutions, avoiding complex phytohormone production while improving plant growth and stress tolerance.
Pre-sowing dichloroisothiazole seed treatment controls cereal diseases and suppresses lodging while reducing field spraying, labor, and cost.
Vegetable oil and ethoxylated fatty alcohol stabilize cyclobutrifluram suspensions to prevent sedimentation, dust-off, and storage failure.
A formaldehyde-free alcohol, isothiazolinone, and amine blend penetrates biofilms, detaches them from surfaces, and helps prevent reformation.
New substituted pyridines and N-oxides improve fungicidal activity at low application rates while broadening spectrum and environmental safety.
Controlled reactor mixing converts chlorites and chlorates into chlorine dioxide, yielding a stable hypochlorous acid biocide with fewer impurities.
BHA and TBHQ co-crystals protect pinoxaden and sulfonylureas from oil-dispersion degradation, extending herbicide shelf life.
Haloalkyl sulfonanilide compositions improve selective weed control while reducing toxicity and environmental harm in crops and noncrop areas.
Combining a quick disinfectant with a surface-bonding silane quaternary compound delivers rapid kill and lasting antimicrobial protection.
Targeting resistant crop pests and animal parasites, this imidazopyridazine composition improves selectivity and environmental breakdown.
Novel pesticidal proteins and stacked genes help transgenic plants control Bt-resistant pests and maintain insecticidal activity.
Tailocin-containing Pseudomonas lysates kill resistant E. coli by membrane puncture, enabling treatment and contamination prevention.
A low-pH peroxodisulfate solution sterilizes resistant bacterial spores below 100°C at atmospheric pressure without autoclaves or ethylene oxide.
A propolis and herbal extract preservative fixes tissue for histology while avoiding formaldehyde toxicity and preserving structure.
Novel pesticidal molecules use targeted structural variation to control resistant arthropod, mollusk, and nematode pests and limit crop loss.
Volatile benzoxaborole formulations and delivery systems extend oxaborole antimicrobial use to pre- and post-harvest pathogen control.
Beneficial microbes embedded in a mat maintain cleanliness while preserving microbial diversity and suppressing pathogens in indoor fitness spaces.
A quaternary ammonium polymer film maintains surface biocidal activity for up to 24 hours while avoiding non-ionic surfactant interference.
Purified seed-origin endophytes colonize cereal seeds and seedlings to boost drought and heat tolerance, growth, and yield without GM crops.
Combining group (I) insecticides with selected fungicides broadens pest control and improves crop compatibility through synergistic action.
A metabisulphite-benzoate-cellulose formulation suppresses crop pathogens while keeping residues low and preserving beneficial microorganisms.
Modified antimicrobial peptides retain antifungal activity at high cation levels while broadening crop resistance to fungi and oomycetes.
Specific thiophene carboxamide substitutions improve crop pathogen control at lower application rates while supporting selectivity and resistance management.
Combining choline phosphonate with selected fungicides at defined ratios boosts fungal control while lowering application rates and chemical input.
Sulfur-linked arylcarboxamides improve weed suppression while maintaining crop compatibility across monocot, dicot, and transgenic crops.
Broad-spectrum essential oil emulsions inhibit viral infection mechanisms while avoiding persistent bioaccumulation and host toxicity.
Stable bacteriophage formulations target Staphylococcus aureus in bovine mastitis while avoiding antibiotic residues and milk coagulation.
Combining L-glufosinate with selected herbicides improves Brachiaria control, extends residual action, and helps protect crop health.
A triazinane compound, its N-oxide, or salt improves weed control by structural substitution and application in herbicidal compositions.
Specific Methylobacterium strains and cell-free supernatants suppress root lesion nematodes in soil, reducing plant damage and yield loss.
Hydrophilic dispersants and mineral fillers help microbial powders wet and disperse quickly while preserving shelf-life for sprays and seed coatings.
Copper carried on organic pigments delivers antibacterial and antiviral activity while limiting hue change and avoiding silver nanoparticle hazards.
Potent ACO inhibitor compounds suppress post-germination ethylene at low concentrations, extending cut flower life and improving crop stress resilience.
Reactive species in plasma-activated water disinfect wine corks and barrels, cutting Brettanomyces and TCA without heat damage or toxic chemicals.
A controlled plant chamber uses isotopic gas delivery and tissue sampling to quantify nitrogen fixation and identify effective nitrogen-fixing microbes.
Selected adjuvants lower drift and surface tension while keeping this liquid fungicide composition stable during storage and application.