Literature DB >> 28459744

Electrical Stimulation of Artificial Heart Muscle: A Look Into the Electrophysiologic and Genetic Implications.

Mohamed A Mohamed1, Jose F Islas, Robert J Schwartz, Ravi K Birla.   

Abstract

Development of tissue-engineered hearts for treatment of myocardial infarction or biologic pacemakers has been hindered by the production of mostly arrhythmic or in-synergistic constructs. Electrical stimulation (ES) of these constructs has been shown to produce tissues with greater twitch force and better adrenergic response. To further our understanding of the mechanisms underlying the effect of ES, we fabricated a bioreactor capable of delivering continuous or intermittent waveforms of various types to multiple constructs simultaneously. In this study, we examined the effect of an intermittent biphasic square wave on our artificial heart muscle (AHM) composed of neonatal rat cardiac cells and fibrin gel. Twitch forces, spontaneous contraction rates, biopotentials, gene expression profiles, and histologic observations were examined for the ES protocol over a 12 day culture period. We demonstrate improved consistency between samples for twitch force and contraction rate, and higher normalized twitch force amplitudes for electrically stimulated AHMs. Improvements in electrophysiology within the AHM were noted by higher conduction velocities and lower latency in electrical response for electrically stimulated AHMs. Genes expressing key electrophysiologic and structural markers peaked at days 6 and 8 of culture, only a few days after the initiation of ES. These results may be used for optimization strategies to establish protocols for producing AHMs capable of replacing damaged heart tissue in either a contractile or electrophysiologic capacity. Optimized AHMs can lead to alternative treatments to heart failure and alleviate the limited donor supply crisis.

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Year:  2017        PMID: 28459744      PMCID: PMC5469367          DOI: 10.1097/MAT.0000000000000486

Source DB:  PubMed          Journal:  ASAIO J        ISSN: 1058-2916            Impact factor:   2.872


  20 in total

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6.  Optimizing a spontaneously contracting heart tissue patch with rat neonatal cardiac cells on fibrin gel.

Authors:  Ze-Wei Tao; Mohamed Mohamed; Matthew Hogan; Laura Gutierrez; Ravi K Birla
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9.  Functional improvement and maturation of rat and human engineered heart tissue by chronic electrical stimulation.

Authors:  Marc N Hirt; Jasper Boeddinghaus; Alice Mitchell; Sebastian Schaaf; Christian Börnchen; Christian Müller; Herbert Schulz; Norbert Hubner; Justus Stenzig; Andrea Stoehr; Christiane Neuber; Alexandra Eder; Pradeep K Luther; Arne Hansen; Thomas Eschenhagen
Journal:  J Mol Cell Cardiol       Date:  2014-05-19       Impact factor: 5.000

10.  Acute effects of nonexcitatory electrical stimulation during systole in isolated cardiac myocytes and perfused heart.

Authors:  Ksenia Blinova; Jayna Stohlman; Victor Krauthamer; Alan Knapton; Eric Bloomquist; Richard A Gray
Journal:  Physiol Rep       Date:  2014-08-05
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3.  Gate Mechanism and Parameter Analysis of Anodal-First Waveforms for Improving Selectivity of C-Fiber Nerves.

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  3 in total

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