This case uses iterative microbial screening and enrichment to identify organisms that improve plant growth, health, and survival.
This case uses secondary fungal metabolites to control diverse weeds with novel modes of action and low resistance risk.
Chromatography, mass spectrometry, and isotopomer distributions expose metabolic pathway changes without prior target knowledge.
Tubercidin derivatives target host RNA methyltransferase MTr1 to inhibit influenza replication and reduce drug-resistance risk.
This case balances slow cationic polymerization with emulsion compatibility using catalysts, pH control, and colloidal silica.
Modified sulfonamide structures improve control of harmful arthropods.
Specific phage strains target Aeromonas and Pseudomonas while immersion delivery supports fish immunity and avoids antibiotic resistance.
This case uses systematic sulfonamide structure variation to improve harmful-arthropod control in pest-management formulations.
Bicyclic pyrimidone compounds with sulfoximine residues provide broad-spectrum control of difficult insects, arachnids, and nematodes.
Combining MTU with nitrogen-assimilation enhancers improves nitrogen uptake and supports plant growth, stress resistance, and yield.
Polyether viscosifiers stabilize semiochemical release across temperature and humidity changes.
This case shows how modular sulfonamide substituents and N-oxides support direct application and seed treatment against harmful arthropods.
This case uses orthogonal protecting groups and coupling agents to improve yield and separation in cyclic depsipeptide synthesis.
This case shows how systematic benzamide substitutions support pesticidal control across arthropods, molluscs, and nematodes.
Soil temperature sensing and heat-sum modeling time Paecilomyces lilacinus application for effective, lower-impact nematode control.
Captan, folpet, or captafol combined with targeted fungicides improves Zymoseptoria control while managing resistance and use.
This case uses segmented Ra1, Ra2, and Ra3 crystal forms with distinct X-ray fingerprints to improve plant disease control.
A multilayer belt combines residual antimicrobial coating, routine protectant cleaning, and QR advertising without belt replacement.
This case uses tailored beta-lactam substituents to combine low-rate herbicidal efficacy, crop selectivity, and reduced toxicity.
A composition of 6,8-dihydroxy-3-methylisocoumarin and orthosporin improves nematicidal effectiveness against pinewood nematodes.
This case combines Bt toxin domains in recombinant polypeptides to broaden plant resistance against Lepidoptera and Coleoptera.
Microencapsulated acetanilide and PPO inhibitors form a stable aqueous concentrate that reduces tank-mixing errors and storage volume.
A single composition combines PTI and systemic resistance inductors for synergistic, broad-spectrum protection against pathogens.
Remodeled bacteria colonize cereal roots to fix nitrogen in place, reducing synthetic fertilizer use, runoff, and yield variability.
This case shows how nifL deletion and rnf1 promoter control drive ammonia excretion for biofertilizers serving non-leguminous crops.
This case uses sulfonyl and nitrogen-containing heterocyclic groups to improve pest control, penetration, and translocation.
Seed coating with FO-R20 helps rice roots colonize, improving seedling quality, stress resistance, and yields for mechanical transplanting.
Interfacial polymerization uses protein and polyisocyanate to form stable, biodegradable walls for controlled fragrance release.
This case combines pH below 3.5 with surfactants for rapid poliovirus and norovirus inactivation on hard surfaces.
Crosslinked plant-protein microcapsules protect actives in high-shear liquids.
Combining dimpropyridaz with fungicides or insecticides creates synergistic mixtures for broad control at reduced dosage rates.
This formulation excludes phosphoric and beta hydroxy acids, combining hydrogen peroxide with auxiliaries for stable antimicrobial activity.
This case uses a polyamide-imide inner coating to prevent metal-catalysed peroxide decomposition and preserve concentration during storage.
Applying ACC primes plant responses to heat stress, helping preserve grain yield through reproductive and filling stages.
Inducible nif clusters help rhizobia fix nitrogen aerobically, easing cereal fertilizer burdens while controlling fixation.
PAM coating stabilizes peroxide foam in pressurized containers.
Optical imaging and modeled sentinel-plant signals predict field stress, enabling timely, targeted crop interventions.
Natural-like pyrokinin analogues target insect pests across multiple orders, reducing infestation while protecting beneficial species.
This formulation combines fluxametamide, diamides, and additives for broad pest control while addressing resistance and phytotoxicity risks.
This case combines lytic phages to control plant phytopathogens, reduce resistance risk, and sustain treatment efficacy.
This case combines a halogen-containing copolymer with a water-dispersible resin to form films that retain antimicrobial activity.
This case balances slow action and insecticidal activity so dicloromezotiaz can spread through trophallaxis and grooming.
This case uses GNA-linked recombinant toxin fusions to cross insect gut epithelium and enhance oral and contact pesticidal activity.
Controlled-size wax-matrix particles help keep poorly soluble insecticides amorphous, improving contact efficacy and resistance breaking.
Elastic polymer rods hold pheromone preparations on branches for sustained release.
This case combines herbal extracts, hydrosols, chelated ions, and composite agents to address unstable antibacterial performance.
This case uses tetramic acid derivatives in soil droplets to target aphids, mites, insects, and nematodes with plant tolerance.
This case shows how an internal PAM barrier limits metal-catalysed peroxide decomposition, supporting stable storage under pressure.
Explore modular isoxazoline chemistry that broadens pest activity while preserving strong efficacy against difficult-to-control insects.
This case replaces chemical inputs with Streptomyces compositions that support nutrient uptake, nitrogen fixation, and pathogen suppression.
Merges anthranilamides with macrolides to overcome unsatisfactory single-compound pest control.
Merging triazolinone and sulfonylurea herbicides delivers synergistic weed control, reducing application frequency while maintaining turf quality.
Biodegradable carboxylic acid and anionic surfactant formulation prevents hydrolysis in solvent-dissolvable containers during storage.
Peumo essential oil reduces Nosema ceranae spore loads without honey residues.
An electrolytic cell converts brine into hypochlorous acid, eliminating single-use plastic waste from pre-mixed sanitizers.
Extruded antimicrobial nanofilms extend food shelf life by decreasing Vibrio parahaemolyticus colony counts through synergistic nano-particle composites.
Immediate wax powder application prevents seed sticking, resolving processing bottlenecks caused by conventional drying agents.
Chitosan-modified polyurea shells resolve hair dryer drying contradictions, ensuring reliable benefit agent retention.
Applying a silicone surfactant with flazasulfuron reduces herbicide adherence on shoes and tools, preventing damage to adjacent cool-season turfgrass.
Novel toxin genes encode pesticidal proteins that restore efficacy against resistant insect populations.
PPAR agonists reverse cognitive impairment by inhibiting oxidative stress and DNA damage in the brain.
Peptides activate the Anaphase Promoting Complex to reduce Mad2 substrate levels, sensitizing cancer cells to chemotherapy.
2,6-Diisopropyl phenol analogs penetrate the blood-brain barrier to reduce neuronal damage from ischemic stroke.
A composite slurry blends natural extracts into a spinning dope to form regenerated cellulose fibers with enhanced anti-bacterial and anti-mite properties.
Fine particulate kaolin adsorbs pathogens in water, avoiding antibiotic resistance and drug-related environmental harm.
Crystallization inhibitors stabilize drug particles in polymeric films, preventing reagglomeration and maintaining solubility.
Alkalizing agents alter methadone salt pH-dependent solubility, limiting aqueous extraction abuse potential without compromising therapeutic release efficiency.
Composite coatings prevent antibiotic resistance by engaging multiple pathways while maintaining surface adherence and optical properties.
A botanical disinfection composition blends five essential oils with azelaic acid and surfactants to form a stable emulsible system.
Aryldihydrofurane carboxylates deliver strong herbicidal activity at low application rates through tailored substituent groups on the core ring structure.
Combines pyridine carboxylic acid with cellulose biosynthesis inhibitors to enhance herbicidal activity.
Pyrimidinyloxy benzene derivatives deliver selective weed control while reducing toxicity and environmental harm in agricultural crops.
A non-toxic oil blend with surfactants suffocates lice and eggs by lowering surface tension, avoiding chemical resistance and skin irritation.
A cocoa beverage process adjusts aqueous phase pH to 6.5-7.5 and applies thermal treatment above 85°C for at least 5 seconds.
Diketo fused azolopiperidine derivatives bind to the HIV surface glycoprotein gp120 to block viral attachment and suppress replication.
Polymerized catecholamine and bacitracin coatings resolve peri-implant infection risks while maintaining biocompatibility.
Applying a gibberellin and cytokinin combination to corn seeds overcomes low temperature inhibition, enabling earlier spring planting.
Oxidized maltodextrins react with iron salts to form stable complexes that withstand sterilization temperatures without anaphylactic shock.
Aqueous disinfectant formulation combines natural phenolic compounds with surfactants to create stable solutions.
Pyrazine compounds synthesized via palladium catalysis deliver broad-spectrum control against difficult-to-control insects.
Chimeric Sindbis virus backbone expresses Western equine encephalitis antigens, reducing encephalitis risk while maintaining single-dose protection.
Substituted pyrimidines inhibit HIF prolyl hydroxylases, stabilizing HIF-alpha and stimulating endogenous erythropoietin production for anemia treatment.
Neutralizing ether alcohols with hydroxycarboxylic acids removes off-odors while maintaining hard water stability for cosmetic applications.
Monosodium titanate sorbents bind therapeutic metals to reduce systemic toxicity and metal ion accumulation at physiological pH levels.
DNA-shuffled defensin variants replace hazardous agrochemicals, reducing environmental impact while sustaining pathogen control.
Composite adjuvants improve benzoylpyrazole penetration to reduce dosage and environmental load.
Aqueous glyphosate compositions combine fatty acids with ammonium salts to induce rapid phytotoxic symptoms.
A nano-film of organosilicone di-quaternary ammonium salt applies static electricity to rupture bacterial cell membranes.
Solid-phase peptide synthesis with pseudoproline positioning and in situ disulfide bond formation for gram-positive class II bacteriocins.
A medical composition combining olive leaf, yarrow, and rosemary extracts to stimulate stem cell generation and enhance immune response.
Radiolabeled therapeutic agents enable personalized dosing by measuring patient-specific biodistribution via SPECT or PET imaging to optimize efficacy.
A biocidal composition combines DBDCB and ZPT in synergistic ratios to enhance antimicrobial efficacy.
Substituted quinolones with specific structural modifications demonstrate targeted antiviral activity against cytomegaloviruses.
Suspended solid carriers in a liquid medium reduce off-site drift by accumulating at the sediment-water interface, solving rapid dilution issues in flowing waters.
Encapsulated colorants release dye to signal disinfection completion, solving the uncertainty of waiting times for safe drinking water.