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Chlorination-induced enhancement of biological activities in imidazole antimycotics. A possible explanation to the molecular mechanism for their antimycotic activities.

K. Kawai, Hiroyuki Shiojiri, Ryozo Watanabe, Y Nozawa

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Abstract

The effect of imidazole antimycotics (clotrimazole, econazole, and miconazole) on mitochondrial functions were compared by the experiment with isolated rat liver mitochondria and it was found that their potencies in the uncoupling effect on oxidative phosphorylation, in the stimulation of latent ATPase activity, and in the induction of swelling in mitochondria were enhanced by the increased chlorination of the molecule, i.e. miconazole greater than econazole greater than clotrimazole.

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What this paper is about

The effect of imidazole antimycotics (clotrimazole, econazole, and miconazole) on mitochondrial functions were compared by the experiment with isolated rat liver mitochondria and it was found that their potencies in the uncoupling effect on oxidative phosphorylation, in the stimulation of latent ATPase activity, and in the induction of swelling in mitochondria were enhanced by the increased chlorination of the molecule, i.e. miconazole greater than econazole greater than clotrimazole.

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OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The effect of imidazole antimycotics (clotrimazole, econazole, and miconazole) on mitochondrial functions were compared by the experiment with isolated rat liver mitochondria and it was found that their potencies in the uncoupling effect on oxidative phosphorylation, in the stimulation of latent ATPase activity, and in the induction of swelling in mitochondria were enhanced by the increased chlorination of the molecule, i.e. miconazole greater than econazole greater than clotrimazole.

Key concepts: Econazole, Clotrimazole, Miconazole, Imidazole, Chemistry, Mitochondrion, Pharmacology, Oxidative phosphorylation

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Chlorination-induced enhancement of biological activities in imidazole antimycotics. A possible explanation to the molecular mechanism for their antimycotic activities. — Research Paper | ScholarLens