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A novel dihydropyridine with 3-aryl meta-hydroxyl substitution blocks L-type calcium channels in rat cardiomyocytes
Authors:David Galvis-Pareja,Gerald Zapata-Torres,Jorge Hidalgo,Pedro Ayala,Zully Pedrozo,Cristiá  n Ibarra,Guillermo Diaz-Araya,Andrew R. Hall,Jose Miguel Vicencio,Luis Nuñ  ez-Vergara,Sergio Lavandero
Affiliation:1. Advanced Center for Chronic Diseases (ACCDiS), Facultad de Ciencias Químicas y Farmacéuticas & Facultad Medicina, Universidad de Chile, Santiago, Chile;2. Centro Estudios Moleculares de la Célula (CEMC), Facultad de Ciencias Químicas y Farmacéuticas & Facultad Medicina, Universidad de Chile, Santiago, Chile;3. Departamento de Química Inorgánica y Analítica, Facultad de Ciencias Químicas y Farmacéuticas, Universidad de Chile, Santiago, Chile;4. Instituto de Ciencias Biomédicas, Facultad de Medicina, Universidad de Chile, Santiago, Chile;5. Department of Medical Biochemistry and Biophysics, Karolinska Institutet, 17177 Stockholm, Sweden;6. Cardiovascular and Metabolic Diseases iMed, AstraZeneca R&D, 43183 Mölndal, Sweden;g The Hatter Cardiovascular Institute, University College London, London, UK;h Departamento de Química Farmacológica y Toxicológica, Facultad de Ciencias Químicas y Farmacéuticas, Universidad de Chile, Santiago, Chile;i Department of Internal Medicine/Cardiology Division, University of Texas Southwestern Medical Center, Dallas, TX, USA
Abstract:

Rationale

Dihydropyridines are widely used for the treatment of several cardiac diseases due to their blocking activity on L-type Ca2 + channels and their renowned antioxidant properties.

Methods

We synthesized six novel dihydropyridine molecules and performed docking studies on the binding site of the L-type Ca2 + channel. We used biochemical techniques on isolated adult rat cardiomyocytes to assess the efficacy of these molecules on their Ca2 + channel-blocking activity and antioxidant properties. The Ca2 + channel-blocking activity was evaluated by confocal microscopy on fluo-3AM loaded cardiomyocytes, as well as using patch clamp experiments. Antioxidant properties were evaluated by flow cytometry using the ROS sensitive dye 1,2,3 DHR.

Results

Our docking studies show that a novel compound with 3-OH substitution inserts into the active binding site of the L-type Ca2 + channel previously described for nitrendipine. In biochemical assays, the novel meta-OH group in the aryl in C4 showed a high blocking effect on L-type Ca2 + channel as opposed to para-substituted compounds. In the tests we performed, none of the molecules showed antioxidant properties.

Conclusions

Only substitutions in C2, C3 and C5 of the aryl ring render dihydropyridine compounds with the capacity of blocking LTCC. Based on our docking studies, we postulate that the antioxidant activity requires a larger group than the meta-OH substitution in C2, C3 or C5 of the dihydropyridine ring.
Keywords:Calcium   Dihydropyridine   Heart   Cardiomyocytes   L-type calcium channels
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