Potential Application of Pulsed Field Ablation in Ventricular Arrhythmias
Abstract
:1. Introduction
2. Effect of PFA on Ventricular Myocardium
3. Two Sides of PFA: Pro- and Anti- Arrhythmic Effects
4. Parameters of PFA Procedure during Ventricular Ablation
5. PFA and Purkinje-Related Ventricular Arrhythmias
6. PFA and Scar-Related Ventricular Arrhythmias
7. PFA and Ventricular Arrhythmias from the Coronary Venous System
8. PFA and Ventricular Arrhythmias from the Interventricular Septum
9. Conclusions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Bradley, C.J.; Haines, D.E. Pulsed field ablation for pulmonary vein isolation in the treatment of atrial fibrillation. J. Cardiovasc. Electrophysiol. 2020, 31, 2136–2147. [Google Scholar] [CrossRef] [PubMed]
- Maor, E.; Sugrue, A.; Witt, C.; Vaidya, V.R.; DeSimone, C.V.; Asirvatham, S.J.; Kapa, S. Pulsed electric fields for cardiac ablation and beyond: A state-of-the-art review. Heart Rhythm. 2019, 16, 1112–1120. [Google Scholar] [CrossRef] [PubMed]
- Schmidt, B.; Chen, S.; Tohoku, S.; Bordignon, S.; Bologna, F.; Chun, K.R.J. Single shot electroporation of premature ventricular contractions from the right ventricular outflow tract. Europace 2022, 24, 597. [Google Scholar] [CrossRef]
- Wittkampf, F.H.; van Driel, V.J.; van Wessel, H.; Neven, K.G.; Gründeman, P.F.; Vink, A.; Loh, P.; Doevendans, P.A. Myocardial lesion depth with circular electroporation ablation. Circ. Arrhythmia Electrophysiol. 2012, 5, 581–586. [Google Scholar] [CrossRef] [Green Version]
- Neven, K.; van Driel, V.; van Wessel, H.; van Es, R.; Doevendans, P.A.; Wittkampf, F. Myocardial lesion size after epicardial electroporation catheter ablation after subxiphoid puncture. Circ. Arrhythmia Electrophysiol. 2014, 7, 728–733. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Koruth, J.S.; Kuroki, K.; Iwasawa, J.; Viswanathan, R.; Brose, R.; Buck, E.D.; Donskoy, E.; Dukkipati, S.R.; Reddy, V.Y. Endocardial ventricular pulsed field ablation: A proof-of-concept preclinical evaluation. Europace 2020, 22, 434–439. [Google Scholar] [CrossRef]
- Kawamura, I.; Reddy, V.Y.; Wang, B.J.; Dukkipati, S.R.; Chaudhry, H.W.; Santos-Gallego, C.G.; Koruth, J.S. Pulsed Field Ablation of the Porcine Ventricle Using a Focal Lattice-Tip Catheter. Circ. Arrhythmia Electrophysiol. 2022, 15, e11120. [Google Scholar] [CrossRef]
- Caluori, G.; Odehnalova, E.; Jadczyk, T.; Pesl, M.; Pavlova, I.; Valikova, L.; Holzinger, S.; Novotna, V.; Rotrekl, V.; Hampl, A.; et al. AC Pulsed Field Ablation Is Feasible and Safe in Atrial and Ventricular Settings: A Proof-of-Concept Chronic Animal Study. Front. Bioeng. Biotechnol. 2020, 8, 552357. [Google Scholar] [CrossRef]
- Yavin, H.D.; Higuchi, K.; Sroubek, J.; Younis, A.; Zilberman, I.; Anter, E. Pulsed-Field Ablation in Ventricular Myocardium Using a Focal Catheter: The Impact of Application Repetition on Lesion Dimensions. Circ. Arrhythmia Electrophysiol. 2021, 14, e10375. [Google Scholar] [CrossRef]
- Al-Khadra, A.; Nikolski, V.; Efimov, I.R. The role of electroporation in defibrillation. Circ. Res. 2000, 87, 797–804. [Google Scholar] [CrossRef] [Green Version]
- Mali, B.; Jarm, T.; Corovic, S.; Paulin-Kosir, M.S.; Cemazar, M.; Sersa, G.; Miklavcic, D. The effect of electroporation pulses on functioning of the heart. Med. Biol. Eng. Comput. 2008, 46, 745–757. [Google Scholar] [CrossRef] [Green Version]
- Yabe, S.; Smith, W.M.; Daubert, J.P.; Wolf, P.D.; Rollins, D.L.; Ideker, R.E. Conduction disturbances caused by high current density electric fields. Circ. Res. 1990, 66, 1190–1203. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Nikolski, V.P.; Efimov, I.R. Electroporation of the heart. Europace 2005, 7 (Suppl. 2), 146–154. [Google Scholar] [CrossRef] [PubMed]
- Deodhar, A.; Dickfeld, T.; Single, G.W.; Hamilton, W.C., Jr.; Thornton, R.H.; Sofocleous, C.T.; Maybody, M.; Gónen, M.; Rubinsky, B.; Solomon, S.B. Irreversible electroporation near the heart: Ventricular arrhythmias can be prevented with ECG synchronization. AJR Am. J. Roentgenol. 2011, 196, W330–W335. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Thomson, K.R.; Cheung, W.; Ellis, S.J.; Federman, D.; Kavnoudias, H.; Loader-Oliver, D.; Roberts, S.; Evans, P.; Ball, C.; Haydon, A. Investigation of the safety of irreversible electroporation in humans. J. Vasc. Interv. Radiol. 2011, 22, 611–621. [Google Scholar] [CrossRef]
- van Es, R.; Groen, M.H.A.; Stehouwer, M.; Doevendans, P.A.; Wittkampf, F.H.M.; Neven, K. In vitro analysis of the origin and characteristics of gaseous microemboli during catheter electroporation ablation. J. Cardiovasc. Electrophysiol. 2019, 30, 2071–2079. [Google Scholar]
- Verma, A.; Asivatham, S.J.; Deneke, T.; Castellvi, Q.; Neal, R.E., 2nd. Primer on Pulsed Electrical Field Ablation: Understanding the Benefits and Limitations. Circ. Arrhythm. Electrophysiol. 2021, 14, e10086. [Google Scholar] [CrossRef]
- Nogami, A. Purkinje-related arrhythmias part II: Polymorphic ventricular tachycardia and ventricular fibrillation. Pacing Clin. Electrophysiol. 2011, 34, 1034–1049. [Google Scholar] [CrossRef]
- Haissaguerre, M.; Vigmond, E.; Stuyvers, B.; Hocini, M.; Bernus, O. Ventricular arrhythmias and the His-Purkinje system. Nat. Rev. Cardiol. 2016, 13, 155–166. [Google Scholar] [CrossRef]
- Lopera, G.; Stevenson, W.G.; Soejima, K.; Maisel, W.H.; Koplan, B.; Sapp, J.L.; Satti, S.D.; Epstein, L.M. Identification and ablation of three types of ventricular tachycardia involving the his-purkinje system in patients with heart disease. J. Cardiovasc. Electrophysiol. 2004, 15, 52–58. [Google Scholar] [CrossRef]
- Knecht, S.; Sacher, F.; Wright, M.; Hocini, M.; Nogami, A.; Arentz, T.; Petit, B.; Franck, R.; De Chillou, C.; Lamaison, D.; et al. Long-term follow-up of idiopathic ventricular fibrillation ablation: A multicenter study. J. Am. Coll. Cardiol. 2009, 54, 522–528. [Google Scholar] [CrossRef]
- Livia, C.; Sugrue, A.; Witt, T.; Polkinghorne, M.D.; Maor, E.; Kapa, S.; Lehmann, H.I.; DeSimone, C.V.; Behfar, A.; Asirvatham, S.J.; et al. Elimination of Purkinje Fibers by Electroporation Reduces Ventricular Fibrillation Vulnerability. J. Am. Heart Assoc. 2018, 7, e9070. [Google Scholar] [CrossRef] [Green Version]
- Sugrue, A.; Vaidya, V.R.; Livia, C.; Padmanabhan, D.; Abudan, A.; Isath, A.; Witt, T.; DeSimone, C.V.; Stalboerger, P.; Kapa, S.; et al. Feasibility of selective cardiac ventricular electroporation. PLoS ONE 2020, 15, e229214. [Google Scholar] [CrossRef] [PubMed]
- Raymond, J.M.; Sacher, F.; Winslow, R.; Tedrow, U.; Stevenson, W.G. Catheter ablation for scar-related ventricular tachycardias. Curr. Probl. Cardiol. 2009, 34, 225–270. [Google Scholar] [CrossRef] [PubMed]
- Tung, R.; Vaseghi, M.; Frankel, D.S.; Vergara, P.; Di Biase, L.; Nagashima, K.; Yu, R.; Vangala, S.; Tseng, C.H.; Choi, E.K.; et al. Freedom from recurrent ventricular tachycardia after catheter ablation is associated with improved survival in patients with structural heart disease: An International VT Ablation Center Collaborative Group study. Heart Rhythm 2015, 12, 1997–2007. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Di Biase, L.; Romero, J.; Du, X.; Mohanty, S.; Trivedi, C.; Della Rocca, D.G.; Patel, K.; Sanchez, J.; Yang, R.; Alviz, I.; et al. Catheter ablation of ventricular tachycardia in ischemic cardiomyopathy: Impact of concomitant amiodarone therapy on short- and long-term clinical outcomes. Heart Rhythm 2021, 18, 885–893. [Google Scholar] [CrossRef]
- Reddy, V.Y.; Reynolds, M.R.; Neuzil, P.; Richardson, A.W.; Taborsky, M.; Jongnarangsin, K.; Kralovec, S.; Sediva, L.; Ruskin, J.N.; Josephson, M.E. Prophylactic catheter ablation for the prevention of defibrillator therapy. N. Engl. J. Med. 2007, 357, 2657–2665. [Google Scholar] [CrossRef] [Green Version]
- Kuck, K.H.; Schaumann, A.; Eckardt, L.; Willems, S.; Ventura, R.; Delacrétaz, E.; Pitschner, H.F.; Kautzner, J.; Schumacher, B.; Hansen, P.S.; et al. Catheter ablation of stable ventricular tachycardia before defibrillator implantation in patients with coronary heart disease (VTACH): A multicentre randomised controlled trial. Lancet 2010, 375, 31–40. [Google Scholar] [CrossRef] [PubMed]
- Kirchhof, P. Catheter ablation of scar-related ventricular tachycardia: Another piece of the puzzle. Heart Rhythm 2008, 5, 375–377. [Google Scholar] [CrossRef]
- Rutherford, S.L.; Trew, M.L.; Sands, G.B.; LeGrice, I.J.; Smaill, B.H. High-resolution 3-dimensional reconstruction of the infarct border zone: Impact of structural remodeling on electrical activation. Circ. Res. 2012, 111, 301–311. [Google Scholar] [CrossRef] [Green Version]
- Barkagan, M.; Leshem, E.; Shapira-Daniels, A.; Sroubek, J.; Buxton, A.E.; Saffitz, J.E.; Anter, E. Histopathological Characterization of Radiofrequency Ablation in Ventricular Scar Tissue. JACC Clin. Electrophysiol. 2019, 5, 920–931. [Google Scholar] [CrossRef]
- Im, S.I.; Higuchi, S.; Lee, A.; Stillson, C.; Buck, E.; Morrow, B.; Schenider, K.; Speltz, M.; Gerstenfeld, E.P. Pulsed Field Ablation of Left Ventricular Myocardium in a Swine Infarct Model. JACC Clin. Electrophysiol. 2022, 8, 722–731. [Google Scholar] [CrossRef]
- Latif, S.; Dixit, S.; Callans, D.J. Ventricular arrhythmias in normal hearts. Clin. Cardiol. 2008, 26, 367–380. [Google Scholar] [CrossRef]
- Mountantonakis, S.E.; Frankel, D.S.; Tschabrunn, C.M.; Hutchinson, M.D.; Riley, M.P.; Lin, D.; Bala, R.; Garcia, F.C.; Dixit, S.; Callans, D.J.; et al. Ventricular arrhythmias from the coronary venous system: Prevalence, mapping, and ablation. Heart Rhythm 2015, 12, 1145–1153. [Google Scholar] [CrossRef]
- Chen, Y.H.; Lin, J.F. Catheter Ablation of Idiopathic Epicardial Ventricular Arrhythmias Originating from the Vicinity of the Coronary Sinus System. J. Cardiovasc. Electrophysiol. 2015, 26, 1160–1167. [Google Scholar] [CrossRef] [PubMed]
- Steven, D.; Pott, C.; Bittner, A.; Sultan, A.; Wasmer, K.; Hoffmann, B.A.; Köbe, J.; Drewitz, I.; Milberg, P.; Lueker, J.; et al. Idiopathic ventricular outflow tract arrhythmias from the great cardiac vein: Challenges and risks of catheter ablation. Int. J. Cardiol. 2013, 169, 366–370. [Google Scholar] [CrossRef] [PubMed]
- Wittkampf, F.H.; van Driel, V.J.; van Wessel, H.; Vink, A.; Hof, I.E.; Gründeman, P.F.; Hauer, R.N.; Loh, P. Feasibility of electroporation for the creation of pulmonary vein ostial lesions. J. Cardiovasc. Electrophysiol. 2011, 22, 302–309. [Google Scholar] [CrossRef] [PubMed]
- Neven, K.; van Driel, V.; van Wessel, H.; van Es, R.; Doevendans, P.A.; Wittkampf, F. Epicardial linear electroporation ablation and lesion size. Heart Rhythm 2014, 11, 1465–1470. [Google Scholar] [CrossRef]
- du Pré, B.C.; van Driel, V.J.; van Wessel, H.; Loh, P.; Doevendans, P.A.; Goldschmeding, R.; Wittkampf, F.H.; Vink, A. Minimal coronary artery damage by myocardial electroporation ablation. Europace 2013, 15, 144–149. [Google Scholar] [CrossRef]
- Neven, K.; van Es, R.; van Driel, V.; van Wessel, H.; Fidder, H.; Vink, A.; Doevendans, P.; Wittkampf, F. Acute and Long-Term Effects of Full-Power Electroporation Ablation Directly on the Porcine Esophagus. Circ. Arrhythmia Electrophysiol. 2017, 10, e004672. [Google Scholar] [CrossRef] [PubMed]
- Buist, T.J.; Groen, M.H.A.; Wittkampf, F.H.M.; Loh, P.; Doevendans, P.A.F.M.; van Es, R.; Elvan, A. Feasibility of Linear Irreversible Electroporation Ablation in the Coronary Sinus. Cardiovasc. Eng. Technol. 2023, 14, 60–66. [Google Scholar] [CrossRef] [PubMed]
- Oloriz, T.; Silberbauer, J.; Maccabelli, G.; Mizuno, H.; Baratto, F.; Kirubakaran, S.; Vergara, P.; Bisceglia, C.; Santagostino, G.; Marzi, A.; et al. Catheter ablation of ventricular arrhythmia in nonischemic cardiomyopathy: Anteroseptal versus inferolateral scar sub-types. Circ. Arrhythmia Electrophysiol. 2014, 7, 414–423. [Google Scholar] [CrossRef] [PubMed]
- Nguyen, D.T.; Zheng, L.; Zipse, M.M.; Borne, R.T.; Tzou, W.S.; Fleeman, B.; Sauer, W.H. Bipolar radiofrequency ablation creates different lesion characteristics compared to simultaneous unipolar ablation. J. Cardiovasc. Electrophysiol. 2019, 30, 2960–2967. [Google Scholar] [CrossRef] [PubMed]
- van Zyl, M.; Ladas, T.P.; Tri, J.A.; Yasin, O.Z.; Ladejobi, A.O.; Tan, N.Y.; Christopoulos, G.; Schneider, N.; Danitz, D.J.; Uecker, D.; et al. Bipolar Electroporation Across the Interventricular Septum: Electrophysiological, Imaging, and Histopathological Characteristics. JACC Clin. Electrophysiol. 2022, 8, 1106–1118. [Google Scholar] [CrossRef] [PubMed]
- Krause, U.; Bergau, L.; Zabel, M.; Müller, M.J.; Paul, T. Flowerpower: Pulsed field ablation of ventricular tachycardia in a patient with Ebstein’s anomaly. Eur. Heart J. Case Rep. 2023, 7, ytad093. [Google Scholar] [CrossRef]
- Ouss, A.; van Stratum, L.; van der Voort, P.; Dekker, L. First in human pulsed field ablation to treat scar-related ventricular tachycardia in ischemic heart disease: A case report. J. Interv. Card. Electrophysiol. 2023, 66, 509–510. [Google Scholar] [CrossRef]
Case Report (Author, Year) | Sample Size | Gender | Age | Indications | Comorbid Conditions | Catheter Type | PFA Parameters | Complication |
---|---|---|---|---|---|---|---|---|
Schmidt B, 2022 [3] | 1 | Female | 48 | PVC from originate from RVOT | None | Farawave, Farapulse, Boston Scientific, USA | Pulses of 2.5 s duration with a voltage of 1.8 kV | None |
Krause U, 2023 [45] | 1 | Male | 33 | Monomorphic VT | Ebstein’s anomaly | Farawave, Farapulse, Boston Scientific, USA | NA | None |
Ouss A, 2023 [46] | 1 | Male | 69 | Postinfarction VT | Anterior myocardial infarction | Farawave, Farapulse, Boston Scientific, USA | 2 kV performed with the biphasic waveform | None |
Disclaimer/Publisher’s Note: The statements, opinions and data contained in all publications are solely those of the individual author(s) and contributor(s) and not of MDPI and/or the editor(s). MDPI and/or the editor(s) disclaim responsibility for any injury to people or property resulting from any ideas, methods, instructions or products referred to in the content. |
© 2023 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Qiu, J.; Dai, M.; Bai, Y.; Chen, G. Potential Application of Pulsed Field Ablation in Ventricular Arrhythmias. Medicina 2023, 59, 723. https://doi.org/10.3390/medicina59040723
Qiu J, Dai M, Bai Y, Chen G. Potential Application of Pulsed Field Ablation in Ventricular Arrhythmias. Medicina. 2023; 59(4):723. https://doi.org/10.3390/medicina59040723
Chicago/Turabian StyleQiu, Jie, Meiyan Dai, Yang Bai, and Guangzhi Chen. 2023. "Potential Application of Pulsed Field Ablation in Ventricular Arrhythmias" Medicina 59, no. 4: 723. https://doi.org/10.3390/medicina59040723
APA StyleQiu, J., Dai, M., Bai, Y., & Chen, G. (2023). Potential Application of Pulsed Field Ablation in Ventricular Arrhythmias. Medicina, 59(4), 723. https://doi.org/10.3390/medicina59040723