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Journal ArticleDOI

New synthesis of 2-nitroimidazoles

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TLDR
In this article, 1-triphenylmethylimidazoles are treated with n-butyllithium in tetrahydrofuran at 0° to form the 2-lithio derivatives.
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This article is published in Journal of Heterocyclic Chemistry.The article was published on 1982-03-01. It has received 37 citations till now. The article focuses on the topics: Hydroxymethyl & Yield (chemistry).

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Nonpeptide Angiotensin II Receptor Antagonists: Synthesis, Biological Activities, and Structure−Activity Relationships of Imidazole-5-carboxylic Acids Bearing Alkyl, Alkenyl, and Hydroxyalkyl Substituents at the 4-Position and Their Related Compounds

TL;DR: A series of imidazole-5-carboxylic acids bearing alkyl, alkenyl, and hydroxyalkyl substituents at the 4-position and their related compounds were prepared and evaluated for their antagonistic activities to the angiotensin II (AII) receptor.
Journal ArticleDOI

A Convenient Synthesis of Perfluoroalkylated and Fluorinated-Aryl Nitrogen Bases by Electrochemically Induced SRN1 Substitution

TL;DR: Aromatic nucleophilic substitution of some fluorinated aryl halides was also investigated and it was found that 1-iodo-2-(trifluoromethyl)benzene could react successfully under redox-catalyzed conditions with imidazole, 2-(4‘-methoxyphenyl)imidazoles anion, and uracil anion to give the corresponding 5-(fluorinated-aryl) nitrogen bases.
Journal Article

Effect of inhibitor depletion on inhibitory potency: tight binding inhibition of CYP3A by clotrimazole.

TL;DR: It is concluded that microsomal inhibitory potency can be affected by incubation conditions that deplete the unbound concentration of inhibitor available to the enzyme.
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Sulphydryls, ascorbate and oxygen as modifiers of the toxicity and metabolism of misonidazole in vitro.

Y C Taylor, +1 more
TL;DR: Both toxicity and drug metabolism could be immediately halted by introducing O2 during hypoxic exposure to MISO and the roles which sulphydryls and O2 may play are discussed in terms of a possible model for the metabolism-mediated toxicity of MISO.
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