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Objective: Aminomethylphenol molecules have wider applications in pharmaceuticals, agrochemicals, plant protection and promising functional materials. The development of an efficient and practical method to prepare this class of compound is highly desirable from both environmental and economical points of view.
Materials And Methods: In order to establish an effective synthetic method for preparing aminomethylphenol derivatives, the Petasis borono-Mannich reaction of salicylaldehyde, phenylboronic acid and 1,2,3,4- tetrahydroisoquinoline was selected as a model reaction. A variety of reaction conditions are investigated, including solvent and temperature. The generality and limitation of the established method were also evaluated.
Results And Discussion: It was found that model reaction can be carried out in cyclopentyl methyl ether at 80 oC under catalyst-free conditions. This protocol, with broad substrate applicability, the reaction of various arylboronic acid, secondary amine and salicylaldehyde proceeded smoothly under optimal reaction conditions to afford various aminomethylphenol derivatives in high yields. A practical, scalable, and high-yielding synthesis of aminomethylphenol derivatives was successfully accomplished.
Conclusion: A catalyst-free practical method for the synthesis of minomethylphenol derivatives based on Petasis borono-Mannich (PBM) reaction of various arylboronic acid, secondary amine and salicylaldehyde in cyclopentyl methyl ether has been developed. The salient features of this protocol are avoidance of any additive/catalyst and toxic organic solvents, use of cyclopentyl methyl ether as the reaction medium, clean reaction profiles, easy operation, and high to excellent yield.
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http://dx.doi.org/10.2174/1570179417666201216161143 | DOI Listing |
Curr Org Synth
August 2021
Hebei Key Laboratory of Organic Functional Molecules, National Demonstration Center for Experimental Chemistry Education, College of Chemistry and Material Science, Hebei Normal University, Shijiazhuang 050024, China.
Objective: Aminomethylphenol molecules have wider applications in pharmaceuticals, agrochemicals, plant protection and promising functional materials. The development of an efficient and practical method to prepare this class of compound is highly desirable from both environmental and economical points of view.
Materials And Methods: In order to establish an effective synthetic method for preparing aminomethylphenol derivatives, the Petasis borono-Mannich reaction of salicylaldehyde, phenylboronic acid and 1,2,3,4- tetrahydroisoquinoline was selected as a model reaction.
Mol Cell Proteomics
February 2020
Monash Institute of Pharmaceutical Sciences, Monash University, Parkville, Australia.
The increasing incidence of antimalarial drug resistance to the first-line artemisinin combination therapies underpins an urgent need for new antimalarial drugs, ideally with a novel mode of action. The recently developed 2-aminomethylphenol, JPC-3210, (MMV 892646) is an erythrocytic schizonticide with potent antimalarial activity against multidrug-resistant lines, low cytotoxicity, potent efficacy against murine malaria, and favorable preclinical pharmacokinetics including a lengthy plasma elimination half-life. To investigate the impact of JPC-3210 on biochemical pathways within infected red blood cells, we have applied a "multi-omics" workflow based on high resolution orbitrap mass spectrometry combined with biochemical approaches.
View Article and Find Full Text PDFEur J Med Chem
November 2008
Department of Pharmacy - Centre of Drug Research, Ludwig-Maximilians-Universität München, Butenandtstrasse 5-13, 81377 Munich, Germany.
A series of N-substituted aminomethylphenol derivatives was synthesized by reductive amination. To study the inhibitory potency of the target compounds at the murine GABA transporters (mGAT1-mGAT4), a [(3)H]GABA uptake test system in a 96-well format based on HEK cells stably expressing mGAT1-mGAT4 was established and validated. Inhibitory potencies at mGAT1-mGAT4 in the micromolar range and a slight subtype selectivity for mGAT3 were observed for the synthesized aminomethylphenol derivatives.
View Article and Find Full Text PDFMethods Find Exp Clin Pharmacol
December 1993
Department of Pharmacology and Chemistry, ICI Americas Inc., Wilmington, DE.
ICI 206,970, an aminomethylphenol pyrazine derivative, produced diuretic and saluretic effects, but caused only minimal alterations in kaliuresis in dogs and rats after oral and parenteral administration. ICI 206,970, unlike HCTZ, increased diuretic activity in a more clearly defined dose-related manner, and did not reach the plateau level even up to a dose of 100 mg/kg p.o.
View Article and Find Full Text PDFJ Pharmacol Exp Ther
February 1993
Department of Pharmacology, ICI Pharmaceuticals Group, A Business Unit of ICI Americans Inc., Wilmington, Delaware.
The site of action of ICI 206,970, an aminomethylphenol pyrazine derivative, with effects on Na+ and water excretion similar to hydrochlorothazide, was determined using free-flow micropuncture and in vivo microperfusion techniques. Furosemide and ICI 206,970 were perfused into the loop of Henle, at a concentration of 10(-4) M. Furosemide reduced water, Na+ and K+ reabsorption by the loop, but ICI 206,970 had little effect.
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