Literature DB >> 15609958

Synthesis and reactivity of some 6-substituted-2,4-dimethyl-3-pyridinols, a novel class of chain-breaking antioxidants.

Maikel Wijtmans1, Derek A Pratt, Johan Brinkhorst, Remigiusz Serwa, Luca Valgimigli, Gian Franco Pedulli, Ned A Porter.   

Abstract

The synthesis and study of a series of 6-substituted-2,4-dimethyl-3-pyridinols having interesting antioxidant properties is reported. The general synthetic strategy leading to the compounds involved a low-temperature aryl bromide-to-alcohol conversion as the last step. 2,4-dimethyl-3-pyridinol (1a), 2,4,6-trimethyl-3-pyridinol (1b), and 2,4-dimethyl-6-(dimethylamino)-3-pyridinol (1d) were thus prepared from the corresponding 3-bromopyridine precursor. The methoxy derivative 2,4-dimethyl-6-(methoxy)-3-pyridinol (1c) was also prepared by an alternate route via a Baeyer-Villiger reaction on the substituted benzaldehyde precursor. Novel bicyclic pyridinols 2 and 3 required prior construction of the ring structure. Thus, 2 was prepared by the use of a 6-step intramolecular Friedel-Crafts strategy, and 3 required an 11-step sequence with a thermolytic intramolecular inverse-demand Diels-Alder reaction between a pyrimidine ring and an alkyne as the key step. Basicities of the pyridinols approached physiological pH with increasing electron density in the ring. Pyridinols 1a-d were found to be indefinitely stable to air oxidation while 2 and 3 decomposed upon extended exposure to the atmosphere. The reactivities of the pyridinols toward chain-carrying peroxyl radicals in homogeneous organic solution were examined by studying the kinetics of radical-initiated styrene autoxidations under controlled conditions. These experiments revealed that some of the newly synthesized pyridinols are the most effective phenolic chain-breaking antioxidants reported to date.

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Year:  2004        PMID: 15609958     DOI: 10.1021/jo048842u

Source DB:  PubMed          Journal:  J Org Chem        ISSN: 0022-3263            Impact factor:   4.354


  6 in total

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2.  A Strategy for Suppressing Redox Stress within Mitochondria.

Authors:  Pablo M Arce; Omar M Khdour; Ruth Goldschmidt; Jeffrey S Armstrong; Sidney M Hecht
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3.  Why Have Clinical Trials of Antioxidants to Prevent Neurodegeneration Failed? - A Cellular Investigation of Novel Phenothiazine-Type Antioxidants Reveals Competing Objectives for Pharmaceutical Neuroprotection.

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4.  Pyridine and pyrimidine analogs of acetaminophen as inhibitors of lipid peroxidation and cyclooxygenase and lipoxygenase catalysis.

Authors:  Tae-Gyu Nam; Susheel J Nara; Irène Zagol-Ikapitte; Thomas Cooper; Luca Valgimigli; John A Oates; Ned A Porter; Olivier Boutaud; Derek A Pratt
Journal:  Org Biomol Chem       Date:  2009-10-20       Impact factor: 3.876

5.  An oxysterol biomarker for 7-dehydrocholesterol oxidation in cell/mouse models for Smith-Lemli-Opitz syndrome.

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6.  3-Pyridinols and 5-pyrimidinols: Tailor-made for use in synergistic radical-trapping co-antioxidant systems.

Authors:  Luca Valgimigli; Daniele Bartolomei; Riccardo Amorati; Evan Haidasz; Jason J Hanthorn; Susheel J Nara; Johan Brinkhorst; Derek A Pratt
Journal:  Beilstein J Org Chem       Date:  2013-12-04       Impact factor: 2.883

  6 in total

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