Literature DB >> 26185330

Ranolazine inhibits voltage-gated mechanosensitive sodium channels in human colon circular smooth muscle cells.

Leila Neshatian1, Peter R Strege1, Poong-Lyul Rhee2, Robert E Kraichely1, Amelia Mazzone1, Cheryl E Bernard1, Robert R Cima3, David W Larson3, Eric J Dozois3, Crystal F Kline4, Peter J Mohler4, Arthur Beyder1, Gianrico Farrugia5.   

Abstract

Human jejunum smooth muscle cells (SMCs) and interstitial cells of Cajal (ICCs) express the SCN5A-encoded voltage-gated, mechanosensitive sodium channel NaV1.5. NaV1.5 contributes to small bowel excitability, and NaV1.5 inhibitor ranolazine produces constipation by an unknown mechanism. We aimed to determine the presence and molecular identity of Na(+) current in the human colon smooth muscle and to examine the effects of ranolazine on Na(+) current, mechanosensitivity, and smooth muscle contractility. Inward currents were recorded by whole cell voltage clamp from freshly dissociated human colon SMCs at rest and with shear stress. SCN5A mRNA and NaV1.5 protein were examined by RT-PCR and Western blots, respectively. Ascending human colon strip contractility was examined in a muscle bath preparation. SCN5A mRNA and NaV1.5 protein were identified in human colon circular muscle. Freshly dissociated human colon SMCs had Na(+) currents (-1.36 ± 0.36 pA/pF), shear stress increased Na(+) peaks by 17.8 ± 1.8% and accelerated the time to peak activation by 0.7 ± 0.3 ms. Ranolazine (50 μM) blocked peak Na(+) current by 43.2 ± 9.3% and inhibited shear sensitivity by 25.2 ± 3.2%. In human ascending colon strips, ranolazine decreased resting tension (31%), reduced the frequency of spontaneous events (68%), and decreased the response to smooth muscle electrical field stimulation (61%). In conclusion, SCN5A-encoded NaV1.5 is found in human colonic circular smooth muscle. Ranolazine blocks both peak amplitude and mechanosensitivity of Na(+) current in human colon SMCs and decreases contractility of human colon muscle strips. Our data provide a likely mechanistic explanation for constipation induced by ranolazine.
Copyright © 2015 the American Physiological Society.

Entities:  

Keywords:  SCN5A; colon; ranolazine; smooth muscle; sodium channel

Mesh:

Substances:

Year:  2015        PMID: 26185330      PMCID: PMC4572410          DOI: 10.1152/ajpgi.00051.2015

Source DB:  PubMed          Journal:  Am J Physiol Gastrointest Liver Physiol        ISSN: 0193-1857            Impact factor:   4.052


  25 in total

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Authors:  R E Kraichely; G Farrugia
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Journal:  Am J Physiol Gastrointest Liver Physiol       Date:  2011-03-10       Impact factor: 4.052

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9.  Ranolazine decreases mechanosensitivity of the voltage-gated sodium ion channel Na(v)1.5: a novel mechanism of drug action.

Authors:  Arthur Beyder; Peter R Strege; Santiago Reyes; Cheryl E Bernard; Andre Terzic; Jonathan Makielski; Michael J Ackerman; Gianrico Farrugia
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Authors:  Arthur Beyder; Peter R Strege; Cheryl Bernard; Gianrico Farrugia
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Authors:  A Beyder; S J Gibbons; A Mazzone; P R Strege; S A Saravanaperumal; L Sha; S Higgins; S T Eisenman; C E Bernard; A Geurts; C F Kline; P J Mohler; G Farrugia
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8.  Irritable bowel syndrome patients have SCN5A channelopathies that lead to decreased NaV1.5 current and mechanosensitivity.

Authors:  Peter R Strege; Amelia Mazzone; Cheryl E Bernard; Leila Neshatian; Simon J Gibbons; Yuri A Saito; David J Tester; Melissa L Calvert; Emeran A Mayer; Lin Chang; Michael J Ackerman; Arthur Beyder; Gianrico Farrugia
Journal:  Am J Physiol Gastrointest Liver Physiol       Date:  2017-11-22       Impact factor: 4.052

Review 9.  Mechanotransduction in gastrointestinal smooth muscle cells: role of mechanosensitive ion channels.

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