Literature DB >> 35137624

Targeted ablation of gastric pacemaker sites to modulate patterns of bioelectrical slow wave activation and propagation in an anesthetized pig model.

Zahra Aghababaie1, Leo K Cheng1,2, Niranchan Paskaranandavadivel1, Recep Avci1, Chih-Hsiang Alexander Chan1, Ashton Matthee1, Satya Amirapu3, Samuel J Asirvatham4, Gianrico Farrugia5, Arthur Beyder5, Gregory O'Grady1,6, Timothy R Angeli-Gordon1,6.   

Abstract

Gastric motility is coordinated by underlying bioelectrical slow waves. Gastric dysrhythmias occur in gastrointestinal (GI) motility disorders, but there are no validated methods for eliminating dysrhythmias. We hypothesized that targeted ablation could eliminate pacemaker sites in the stomach, including dysrhythmic ectopic pacemaker sites. In vivo high-resolution serosal electrical mapping (16 × 16 electrodes; 6 × 6 cm) was applied to localize normal and ectopic gastric pacemaker sites in 13 anesthetized pigs. Radiofrequency ablation was performed in a square formation surrounding the pacemaker site. Postablation high-resolution mapping revealed that ablation successfully induced localized conduction blocks after 18 min (SD 5). Normal gastric pacemaker sites were eliminated by ablation (n = 6), resulting in the emergence of a new pacemaker site immediately distal to the original site in all cases. Ectopic pacemaker sites were similarly eliminated by ablation in all cases (n = 7), and the surrounding mapped area was then entrained by normal antegrade activity in five of those cases. Histological analysis showed that ablation lesions extended through the entire depth of the muscle layer. Immunohistochemical staining confirmed localized interruption of the interstitial cell of Cajal (ICC) network through the ablation lesions. This study demonstrates that targeted gastric ablation can effectively modulate gastric electrical activation, including eliminating ectopic sites of slow wave activation underlying gastric dysrhythmias, without disrupting surrounding conduction capability or tissue structure. Gastric ablation presents a powerful new research tool for modulating gastric electrical activation and may likely hold therapeutic potential for disorders of gastric function.NEW & NOTEWORTHY This study presents gastric ablation as a novel tool for modulating gastric bioelectrical activation, including eliminating the normal gastric pacemaker site as well as abnormal ectopic pacemaker sites underlying gastric dysrhythmias. Targeted application of radiofrequency ablation was able to eliminate these pacemaker sites without disrupting surrounding conduction capability or tissue structure. Gastric ablation presents a powerful new research tool for modulating gastric electrical activation and may likely hold therapeutic potential for disorders of gastric function.

Entities:  

Keywords:  dysrhythmia; electrophysiology; entrainment; interstitial cells of Cajal; therapy

Mesh:

Year:  2022        PMID: 35137624      PMCID: PMC8917929          DOI: 10.1152/ajpgi.00332.2021

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


  50 in total

1.  Abnormal initiation and conduction of slow-wave activity in gastroparesis, defined by high-resolution electrical mapping.

Authors:  Gregory O'Grady; Timothy R Angeli; Peng Du; Chris Lahr; Wim J E P Lammers; John A Windsor; Thomas L Abell; Gianrico Farrugia; Andrew J Pullan; Leo K Cheng
Journal:  Gastroenterology       Date:  2012-05-27       Impact factor: 22.682

2.  Effects of pacing parameters on entrainment of gastric slow waves in patients with gastroparesis.

Authors:  Z Y Lin; R W McCallum; B D Schirmer; J D Chen
Journal:  Am J Physiol       Date:  1998-01

3.  Origin and propagation of human gastric slow-wave activity defined by high-resolution mapping.

Authors:  Gregory O'Grady; Peng Du; Leo K Cheng; John U Egbuji; Wim J E P Lammers; John A Windsor; Andrew J Pullan
Journal:  Am J Physiol Gastrointest Liver Physiol       Date:  2010-07-01       Impact factor: 4.052

4.  On and Off of Gastric Electrical Stimulation for Refractory Vomiting.

Authors:  Jan Tack; Jolien Schol; Karen Van den Houte; Florencia Carbone
Journal:  Gastroenterology       Date:  2019-12-27       Impact factor: 22.682

Review 5.  Methods for High-Resolution Electrical Mapping in the Gastrointestinal Tract.

Authors:  Gregory O'Grady; Timothy R Angeli; Niranchan Paskaranandavadivel; Jonathan C Erickson; Cameron I Wells; Armen A Gharibans; Leo K Cheng; Peng Du
Journal:  IEEE Rev Biomed Eng       Date:  2018-08-29

6.  Gastric pacing improves emptying and symptoms in patients with gastroparesis.

Authors:  R W McCallum; J D Chen; Z Lin; B D Schirmer; R D Williams; R A Ross
Journal:  Gastroenterology       Date:  1998-03       Impact factor: 22.682

7.  High-resolution electrical mapping of porcine gastric slow-wave propagation from the mucosal surface.

Authors:  T R Angeli; P Du; N Paskaranandavadivel; S Sathar; A Hall; S J Asirvatham; G Farrugia; J A Windsor; L K Cheng; G O'Grady
Journal:  Neurogastroenterol Motil       Date:  2016-12-29       Impact factor: 3.598

Review 8.  Abnormalities on Electrogastrography in Nausea and Vomiting Syndromes: A Systematic Review, Meta-Analysis, and Comparison to Other Gastric Disorders.

Authors:  Daniel A Carson; Sameer Bhat; Tommy C L Hayes; Armen A Gharibans; Christopher N Andrews; Gregory O'Grady; Chris Varghese
Journal:  Dig Dis Sci       Date:  2021-05-06       Impact factor: 3.199

9.  The gastrointestinal electrical mapping suite (GEMS): software for analyzing and visualizing high-resolution (multi-electrode) recordings in spatiotemporal detail.

Authors:  Rita Yassi; Gregory O'Grady; Nira Paskaranandavadivel; Peng Du; Timothy R Angeli; Andrew J Pullan; Leo K Cheng; Jonathan C Erickson
Journal:  BMC Gastroenterol       Date:  2012-06-06       Impact factor: 3.067

10.  Gastric ablation as a novel technique for modulating electrical conduction in the in vivo stomach.

Authors:  Zahra Aghababaie; Niranchan Paskaranandavadivel; Satya Amirapu; Chih-Hsiang Alexander Chan; Peng Du; Samuel J Asirvatham; Gianrico Farrugia; Arthur Beyder; Gregory O'Grady; Leo K Cheng; Timothy R Angeli-Gordon
Journal:  Am J Physiol Gastrointest Liver Physiol       Date:  2021-01-20       Impact factor: 4.052

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