4-methylumbelliferyl butyrate has been researched along with hymecromone in 8 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 1 (12.50) | 18.7374 |
1990's | 1 (12.50) | 18.2507 |
2000's | 1 (12.50) | 29.6817 |
2010's | 3 (37.50) | 24.3611 |
2020's | 2 (25.00) | 2.80 |
Authors | Studies |
---|---|
Claeys, G; Flamen, P; Vaneechoutte, M; Verschraegen, G | 1 |
Fossépré, JM; Gordts, B; Speeleveld, E; Van Landuyt, HW | 1 |
Baratti, JC; de O Pedrosa, F; de Souza, EM; Krieger, N; Mitchell, DA; Müller-Santos, M | 1 |
Kurtovic, I; Marshall, SN; Simpson, BK; Zhao, X | 1 |
Adams, SS; Boucau, J; Ibrahim, DA; Lajiness, DH; Ronning, DR; Sucheck, SJ; Trabbic, KR; Veleti, SK | 1 |
Geng, L; Huang, X; Huang, Y; Li, M; Liu, X; Mann, S; Wang, L; Wen, P; Zhou, Y | 1 |
Cao, Y; Cedergreen, N; Herrero-Nogareda, L | 1 |
Sezerman, OU; Shehata, M; Timucin, E; Venturini, A | 1 |
8 other study(ies) available for 4-methylumbelliferyl butyrate and hymecromone
Article | Year |
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Rapid identification of Branhamella catarrhalis with 4-methylumbelliferyl butyrate.
Topics: Carboxylic Ester Hydrolases; Hymecromone; Moraxella catarrhalis; Neisseria; Umbelliferones | 1988 |
Comparison of three rapid methods, tributyrine, 4-methylumbelliferyl butyrate, and indoxyl acetate, for rapid identification of Moraxella catarrhalis.
Topics: Acetylesterase; Acinetobacter; Bacterial Typing Techniques; Carboxylic Ester Hydrolases; Evaluation Studies as Topic; Humans; Hymecromone; Indoles; Moraxella; Moraxella catarrhalis; Neisseria; Species Specificity; Substrate Specificity; Triglycerides | 1994 |
Determination of lipase activity using image analysis.
Topics: Bacteria; Hymecromone; Lipase; Luminescent Measurements | 2006 |
Purification and properties of digestive lipases from Chinook salmon (Oncorhynchus tshawytscha) and New Zealand hoki (Macruronus novaezelandiae).
Topics: Amino Acid Sequence; Animals; Calcium; Catalysis; Chromatography, Affinity; Chromatography, Gel; Chromatography, High Pressure Liquid; Digestive System; Fractional Precipitation; Gadiformes; Hydrogen-Ion Concentration; Hymecromone; Kinetics; Lipase; Molecular Sequence Data; Paraoxon; Salmon; Sequence Analysis, Protein; Sodium Cholate; Temperature | 2010 |
Design, synthesis, and X-ray analysis of a glycoconjugate bound to Mycobacterium tuberculosis antigen 85C.
Topics: Acyltransferases; Antigens, Bacterial; Antitubercular Agents; Catalytic Domain; Crystallography, X-Ray; Drug Design; Galactans; Glycoconjugates; Hymecromone; Kinetics; Molecular Docking Simulation; Mycobacterium tuberculosis; Spectrometry, Fluorescence; Structure-Activity Relationship; Substrate Specificity | 2012 |
Single-step fabrication of multi-compartmentalized biphasic proteinosomes.
Topics: Acrylic Resins; Alginates; Animals; Artificial Cells; Cattle; Dextrans; Glucose; Glucose Oxidase; Hexanols; Hydrogels; Hymecromone; Lipase; Nanoconjugates; Serum Albumin, Bovine; Water | 2017 |
A comparative study of acetylcholinesterase and general-esterase activity assays using different substrates, in vitro and in vivo exposures and model organisms.
Topics: Acetylcholinesterase; Acetylthiocholine; Animals; Benzenaminium, 4,4'-(3-oxo-1,5-pentanediyl)bis(N,N-dimethyl-N-2-propenyl-), Dibromide; Chironomidae; Cholinesterase Inhibitors; Daphnia; Enzyme Assays; Esterases; Hymecromone; Kinetics; Naphthols; Xenobiotics | 2020 |
Understanding thermal and organic solvent stability of thermoalkalophilic lipases: insights from computational predictions and experiments.
Topics: 2-Propanol; Acetone; Bacterial Proteins; Catalytic Domain; Cyclohexanes; Enzyme Stability; Ethanol; Geobacillus; Hymecromone; Lipase; Methanol; Molecular Dynamics Simulation; Protein Conformation; Solvents; Temperature; Toluene | 2020 |