12 Results for "

Laccase inhibitor

" in MedChemExpress (MCE) Product Catalog:
Products (12)

12 Results for "Laccase inhibitor" in MCE Product Catalog:

Cat. No.: HY-W002116
CAS No.: 884-35-5
Methyl syringate is a selective TRPA1 agonist. Methyl syringate regulates food intake and gastric emptying through a TRPA1-mediated pathway. Methyl syringate is an efficient phenolic mediator for bacterial and fungal laccases. Methyl syringate is a chemical marker of Asphodel monofloral honey. Methyl syringate contributes to the antibacterial activity of honey. Methyl syringate inhibits aflatoxin production. Methyl syringate can contribute to weight suppression. Methyl syringate can be studies for cancer prevention (e.g. lung cancer), suppression of hypoxia-induced inflammatory response and tumorigenesis .
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Cat. No.: HY-Y1359
CAS No.: 693-98-1
Synonyms: 2-Methyl-1H-imidazole
Target:  

Drug Intermediate MOFs

Research Areas:  

Others

2-Methylimidazole (2-Methyl-1H-imidazole) is a nitrogen-containing MOF ligand that serves as a laccase-mimicking activity enhancer and a morphology regulator for copper-based metal-organic frameworks. 2-Methylimidazole promotes the formation of natural laccase-like nanoenzyme structures, accelerates electron transfer and enhances catalytic activity. During hydrothermal synthesis, 2-Methylimidazole inhibits the vertical growth of crystals, thus enabling the preparation of two-dimensional nanosheet morphology .
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Cat. No.: HY-Y1359S
CAS No.: 1173022-19-9
Synonyms: 2-Methyl-1H-imidazole-d6
2-Methylimidazole-d6 is the deuterium labeled 2-Methylimidazole. 2-Methylimidazole (2-Methyl-1H-imidazole) is a nitrogen-containing MOF ligand that serves as a laccase-mimicking activity enhancer and a morphology regulator for copper-based metal-organic frameworks. 2-Methylimidazole promotes the formation of natural laccase-like nanoenzyme structures, accelerates electron transfer and enhances catalytic activity. During hydrothermal synthesis, 2-Methylimidazole inhibits the vertical growth of crystals, thus enabling the preparation of two-dimensional nanosheet morphology .
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Cat. No.: HY-W002116S
CAS No.: 1182838-09-0
Methyl syringate-d6 is the deuterium labeled Methyl syringate. Methyl syringate is a selective TRPA1 agonist. Methyl syringate regulates food intake and gastric emptying through a TRPA1-mediated pathway. Methyl syringate is an efficient phenolic mediator for bacterial and fungal laccases. Methyl syringate is a chemical marker of Asphodel monofloral honey. Methyl syringate contributes to the antibacterial activity of honey. Methyl syringate inhibits aflatoxin production. Methyl syringate can contribute to weight suppression. Methyl syringate can be studies for cancer prevention (e.g. lung cancer), suppression of hypoxia-induced inflammatory response and tumorigenesis .
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Cat. No.: HY-155096
CAS No.: 2956480-40-1
Target:  

Bacterial

Research Areas:  

Infection

Antibacterial agent 149 (Compd 3j) is a laccase inhibitor with high fungicidal activity and can be used in the study of rice sheath blight .
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Cat. No.: HY-Y1359R
CAS No.: 693-98-1
Synonyms: 2-Methyl-1H-imidazole (Standard)
Research Areas:  

Others

2-Methylimidazole (Standard) is the analytical standard of 2-Methylimidazole. This product is intended for research and analytical applications. 2-Methylimidazole (2-Methyl-1H-imidazole) is a nitrogen-containing MOF ligand that serves as a laccase-mimicking activity enhancer and a morphology regulator for copper-based metal-organic frameworks. 2-Methylimidazole promotes the formation of natural laccase-like nanoenzyme structures, accelerates electron transfer and enhances catalytic activity. During hydrothermal synthesis, 2-Methylimidazole inhibits the vertical growth of crystals, thus enabling the preparation of two-dimensional nanosheet morphology .
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Cat. No.: HY-156338
CAS No.: 3063979-74-5
Target:  

Fungal

Research Areas:  

Infection

Laccase-IN-2 is an inhibitor of laccase. Laccase-IN-2 has excellent antifungal activity against Magnaporthe oryzae in vitro and in vivo .
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Cat. No.: HY-162488
Target:  

Fungal

Research Areas:  

Infection

Laccase-IN-3 (Compound 2b) is a laccase inhibitor (IC50 = 1.02= μM) with significant antifungal activity. Laccase-IN-3 shows superior inhibitory effect on Botryosphaeria dothidea (EC50 = 0.17 mg/L). Laccase-IN-3 effectively blocks the catalytic function of laccase by binding to its active center. Laccase-IN-3 also disrupts pathogen cell membrane integrity and increases ROS .
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Cat. No.: HY-178189
CAS No.: 23750-08-5
Target:  

Fungal

Research Areas:  

Infection

Laccase-IN-6 is a laccase inhibitor with an IC50 of 0.097 nM. Laccase-IN-6 exhibits broad-spectrum anti-fungal effect and can destroy the normal morphology of the fungi. Laccase-IN-6 can be used for the research of infection .
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Cat. No.: HY-149614
CAS No.: 2991094-41-6
Laccase-IN-1 (compound 4b) is an orally active inhibitor of laccase, with the IC50 of 11.3 μM. Laccase-IN-1 displays protective and curative effects on apple fruits infected by B. dothidea. Laccase-IN-1 enhances the cell membrane permeability, destroys the mycelial surface morphology and the cell ultrastructure, and reduces the ergosterol and exopolysaccharide contents of B. dothidea .
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Cat. No.: HY-W002116R
CAS No.: 884-35-5
Methyl syringate is a selective TRPA1 agonist. Methyl syringate regulates food intake and gastric emptying through a TRPA1-mediated pathway. Methyl syringate is an efficient phenolic mediator for bacterial and fungal laccases. Methyl syringate is a chemical marker of Asphodel monofloral honey. Methyl syringate contributes to the antibacterial activity of honey. Methyl syringate inhibits aflatoxin production. Methyl syringate can contribute to weight suppression. Methyl syringate can be studies for cancer prevention (e.g. lung cancer), suppression of hypoxia-induced inflammatory response and tumorigenesis .
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Cat. No.: HY-170378
Target:  

Fungal

Research Areas:  

Infection

Laccase-IN-5 (Compound 2b) is the inhibitor for Laccase with an IC50 of 0.82 μM. Laccase-IN-5 increases the cell membrane permeability, limits the growth of hyphae, destorys the cell wall, and induces oxidative stress responses. Laccase-IN-5 exhibits antifungal activity against various plant pathogenic fungi and oomycetes, inhibits B. dothidea with an EC50 of 0.96 mg/L .
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