Literature DB >> 28087519

Sympathetic modulation of electrical activation in normal and infarcted myocardium: implications for arrhythmogenesis.

Olujimi A Ajijola1,2, Robert L Lux3, Anadjeet Khahera4, OhJin Kwon4, Eric Aliotta5, Daniel B Ennis5, Michael C Fishbein6, Jeffrey L Ardell4,2, Kalyanam Shivkumar4,2.   

Abstract

The influence of cardiac sympathetic innervation on electrical activation in normal and chronically infarcted ventricular myocardium is not understood. Yorkshire pigs with normal hearts (NL, n = 12) or anterior myocardial infarction (MI, n = 9) underwent high-resolution mapping of the anteroapical left ventricle at baseline and during left and right stellate ganglion stimulation (LSGS and RSGS, respectively). Conduction velocity (CV), activation times (ATs), and directionality of propagation were measured. Myocardial fiber orientation was determined using diffusion tensor imaging and histology. Longitudinal CV (CVL) was increased by RSGS (0.98 ± 0.11 vs. 1.2 ± 0.14m/s, P < 0.001) but not transverse CV (CVT). This increase was abrogated by β-adrenergic receptor and gap junction (GJ) blockade. Neither CVL nor CVT was increased by LSGS. In the peri-infarct region, both RSGS and LSGS shortened ARIs in sinus rhythm (423 ± 37 vs. 322 ± 30 ms, P < 0.001, and 423 ± 36 vs. 398 ± 36 ms, P = 0.035, respectively) and altered activation patterns in all animals. CV, as estimated by mean ATs, increased in a directionally dependent manner by RSGS (14.6 ± 1.2 vs. 17.3 ± 1.6 ms, P = 0.015), associated with GJ lateralization. RSGS and LSGS inhomogeneously modulated AT and induced relative or absolute functional activation delay in parts of the mapped regions in 75 and 67%, respectively, in MI animals, and in 0 and 15%, respectively, in control animals (P < 0.001 for both). In conclusion, sympathoexcitation increases CV in normal myocardium and modulates activation propagation in peri-infarcted ventricular myocardium. These data demonstrate functional control of arrhythmogenic peri-infarct substrates by sympathetic nerves and in part explain the temporal nature of arrhythmogenesis.NEW & NOTEWORTHY This study demonstrates regional control of conduction velocity in normal hearts by sympathetic nerves. In infarcted hearts, however, not only is modulation of propagation heterogeneous, some regions showed paradoxical conduction slowing. Sympathoexcitation altered propagation in all infarcted hearts studied, and we describe the temporal arrhythmogenic potential of these findings.Listen to this article's corresponding podcast at http://ajpheart.podbean.com/e/sympathetic-nerves-and-cardiac-propagation/.
Copyright © 2017 the American Physiological Society.

Entities:  

Keywords:  autonomic nervous system; conduction velocity; electrical propagation; sympathetic nerves; ventricular arrhythmias

Mesh:

Substances:

Year:  2017        PMID: 28087519      PMCID: PMC5402014          DOI: 10.1152/ajpheart.00575.2016

Source DB:  PubMed          Journal:  Am J Physiol Heart Circ Physiol        ISSN: 0363-6135            Impact factor:   4.733


  62 in total

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Review 4.  Three-dimensional impulse propagation in myocardium: arrhythmogenic mechanisms at the tissue level.

Authors:  Bruce H Smaill; Jichao Zhao; Mark L Trew
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Review 5.  Clinical neurocardiology defining the value of neuroscience-based cardiovascular therapeutics.

Authors:  Kalyanam Shivkumar; Olujimi A Ajijola; Inder Anand; J Andrew Armour; Peng-Sheng Chen; Murray Esler; Gaetano M De Ferrari; Michael C Fishbein; Jeffrey J Goldberger; Ronald M Harper; Michael J Joyner; Sahib S Khalsa; Rajesh Kumar; Richard Lane; Aman Mahajan; Sunny Po; Peter J Schwartz; Virend K Somers; Miguel Valderrabano; Marmar Vaseghi; Douglas P Zipes
Journal:  J Physiol       Date:  2016-06-14       Impact factor: 5.182

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Journal:  Hum Pathol       Date:  1991-02       Impact factor: 3.466

7.  Electrical constants of trabecular muscle from mammalian heart.

Authors:  S Weidmann
Journal:  J Physiol       Date:  1970-11       Impact factor: 5.182

8.  Cardiac sympathetic denervation in patients with refractory ventricular arrhythmias or electrical storm: intermediate and long-term follow-up.

Authors:  Marmar Vaseghi; Jean Gima; Christopher Kanaan; Olujimi A Ajijola; Alexander Marmureanu; Aman Mahajan; Kalyanam Shivkumar
Journal:  Heart Rhythm       Date:  2013-11-28       Impact factor: 6.343

9.  Differential response to right and left ansae subclaviae stimulation of early afterdepolarizations and ventricular tachycardia induced by cesium in dogs.

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Journal:  Circulation       Date:  1988-11       Impact factor: 29.690

10.  Focal myocardial infarction induces global remodeling of cardiac sympathetic innervation: neural remodeling in a spatial context.

Authors:  Olujimi A Ajijola; Daigo Yagishita; Krishan J Patel; Marmar Vaseghi; Wei Zhou; Kentaro Yamakawa; Eileen So; Robert L Lux; Aman Mahajan; Kalyanam Shivkumar
Journal:  Am J Physiol Heart Circ Physiol       Date:  2013-07-26       Impact factor: 4.733

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  24 in total

1.  Recurrent ventricular tachycardia after cardiac sympathetic denervation: Prolonged cycle length with improved hemodynamic tolerance and ablation outcomes.

Authors:  Justin Hayase; Veronica Dusi; Duc Do; Olujimi A Ajijola; Marmar Vaseghi; Jay M Lee; Jane Yanagawa; Nir Hoftman; Sha'Shonda Revels; Eric F Buch; Houman Khakpour; Osamu Fujimura; Yuliya Krokhaleva; Carlos Macias; Julie Sorg; Jean Gima; Geraldine Pavez; Noel G Boyle; Kalyanam Shivkumar; Jason S Bradfield
Journal:  J Cardiovasc Electrophysiol       Date:  2020-06-30

2.  Conduction in the right and left ventricle is differentially regulated by protein kinases and phosphatases: implications for arrhythmogenesis.

Authors:  Alexey V Zaitsev; Natalia S Torres; Keiko M Cawley; Amira D Sabry; Junco S Warren; Mark Warren
Journal:  Am J Physiol Heart Circ Physiol       Date:  2019-03-15       Impact factor: 4.733

3.  Statistical considerations in reporting cardiovascular research.

Authors:  Merry L Lindsey; Gillian A Gray; Susan K Wood; Douglas Curran-Everett
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Review 4.  Neuromodulation Approaches for Cardiac Arrhythmias: Recent Advances.

Authors:  Veronica Dusi; Ching Zhu; Olujimi A Ajijola
Journal:  Curr Cardiol Rep       Date:  2019-03-18       Impact factor: 2.931

Review 5.  Cardiac neuroanatomy - Imaging nerves to define functional control.

Authors:  Peter Hanna; Pradeep S Rajendran; Olujimi A Ajijola; Marmar Vaseghi; J Andrew Armour; Jefrrey L Ardell; Kalyanam Shivkumar
Journal:  Auton Neurosci       Date:  2017-07-29       Impact factor: 3.145

6.  Autonomic modulation of the electrical substrate in mice haploinsufficient for cardiac sodium channels: a model of the Brugada syndrome.

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Journal:  Am J Physiol Cell Physiol       Date:  2019-07-10       Impact factor: 4.249

7.  Efficacy of Stellate Ganglion Blockade in Managing Electrical Storm: A Systematic Review.

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8.  Cardiac TRPV1 afferent signaling promotes arrhythmogenic ventricular remodeling after myocardial infarction.

Authors:  Koji Yoshie; Pradeep S Rajendran; Louis Massoud; Janki Mistry; M Amer Swid; Xiaohui Wu; Tamer Sallam; Rui Zhang; Joshua I Goldhaber; Siamak Salavatian; Olujimi A Ajijola
Journal:  JCI Insight       Date:  2020-02-13

9.  Cardiac vanilloid receptor-1 afferent depletion enhances stellate ganglion neuronal activity and efferent sympathetic response to cardiac stress.

Authors:  Koji Yoshie; Pradeep S Rajendran; Louis Massoud; OhJin Kwon; Vasudev Tadimeti; Siamak Salavatian; Jeffrey L Ardell; Kalyanam Shivkumar; Olujimi A Ajijola
Journal:  Am J Physiol Heart Circ Physiol       Date:  2018-01-16       Impact factor: 4.733

10.  The autonomic nervous system and ventricular arrhythmias in myocardial infarction and heart failure.

Authors:  Perry Wu; Marmar Vaseghi
Journal:  Pacing Clin Electrophysiol       Date:  2020-02-05       Impact factor: 1.976

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