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Early Impact of Proton Beam Therapy on Electrophysiological Characteristics in a Porcine Model.
Imamura, Kimitake; Deisher, Amanda J; Dickow, Jannis; Rettmann, Maryam E; Yasin, Omar Z; Pepin, Mark D; Hohmann, Stephan; Konishi, Hiroki; Suzuki, Atsushi; Newman, Laura K; Sun, Xiaojing; Kruse, Jon J; Merrell, Kenneth W; Herman, Michael G; Foote, Robert L; Packer, Douglas L.
Afiliação
  • Imamura K; Translational Interventional Electrophysiology Laboratory, Mayo Clinic/St. Mary's Campus (K.I., J.D., M.E.R., O.Z.Y., S.H., H.K., A.S., L.K.N., D.L.P.).
  • Deisher AJ; Department of Radiation Oncology (A.J.D., M.D.P., J.J.K., K.W.M., M.G.H., R.L.F.), Mayo Clinic, Rochester, MN.
  • Dickow J; Translational Interventional Electrophysiology Laboratory, Mayo Clinic/St. Mary's Campus (K.I., J.D., M.E.R., O.Z.Y., S.H., H.K., A.S., L.K.N., D.L.P.).
  • Rettmann ME; Translational Interventional Electrophysiology Laboratory, Mayo Clinic/St. Mary's Campus (K.I., J.D., M.E.R., O.Z.Y., S.H., H.K., A.S., L.K.N., D.L.P.).
  • Yasin OZ; Translational Interventional Electrophysiology Laboratory, Mayo Clinic/St. Mary's Campus (K.I., J.D., M.E.R., O.Z.Y., S.H., H.K., A.S., L.K.N., D.L.P.).
  • Pepin MD; Department of Radiation Oncology (A.J.D., M.D.P., J.J.K., K.W.M., M.G.H., R.L.F.), Mayo Clinic, Rochester, MN.
  • Hohmann S; Translational Interventional Electrophysiology Laboratory, Mayo Clinic/St. Mary's Campus (K.I., J.D., M.E.R., O.Z.Y., S.H., H.K., A.S., L.K.N., D.L.P.).
  • Konishi H; Translational Interventional Electrophysiology Laboratory, Mayo Clinic/St. Mary's Campus (K.I., J.D., M.E.R., O.Z.Y., S.H., H.K., A.S., L.K.N., D.L.P.).
  • Suzuki A; Translational Interventional Electrophysiology Laboratory, Mayo Clinic/St. Mary's Campus (K.I., J.D., M.E.R., O.Z.Y., S.H., H.K., A.S., L.K.N., D.L.P.).
  • Newman LK; Translational Interventional Electrophysiology Laboratory, Mayo Clinic/St. Mary's Campus (K.I., J.D., M.E.R., O.Z.Y., S.H., H.K., A.S., L.K.N., D.L.P.).
  • Sun X; Department of Cardiovascular Medicine (X.S.), Mayo Clinic, Rochester, MN.
  • Kruse JJ; Department of Radiation Oncology (A.J.D., M.D.P., J.J.K., K.W.M., M.G.H., R.L.F.), Mayo Clinic, Rochester, MN.
  • Merrell KW; Department of Radiation Oncology (A.J.D., M.D.P., J.J.K., K.W.M., M.G.H., R.L.F.), Mayo Clinic, Rochester, MN.
  • Herman MG; Department of Radiation Oncology (A.J.D., M.D.P., J.J.K., K.W.M., M.G.H., R.L.F.), Mayo Clinic, Rochester, MN.
  • Foote RL; Department of Radiation Oncology (A.J.D., M.D.P., J.J.K., K.W.M., M.G.H., R.L.F.), Mayo Clinic, Rochester, MN.
  • Packer DL; Translational Interventional Electrophysiology Laboratory, Mayo Clinic/St. Mary's Campus (K.I., J.D., M.E.R., O.Z.Y., S.H., H.K., A.S., L.K.N., D.L.P.).
Circ Arrhythm Electrophysiol ; 16(6): e011179, 2023 06.
Article em En | MEDLINE | ID: mdl-37183678
ABSTRACT

BACKGROUND:

Particle therapy is a noninvasive, catheter-free modality for cardiac ablation. We previously demonstrated the efficacy for creating ablation lesions in the porcine heart. Despite several earlier studies, the exact mechanism of early biophysical effects of proton and photon beam delivery on the myocardium remain incompletely resolved.

METHODS:

Ten normal and 9 infarcted in situ porcine hearts received proton beam irradiation (40 Gy) delivered to the left ventricular myocardium with follow-up for 8 weeks. High-resolution electroanatomical mapping of the left ventricular was performed at baseline and follow-up. Bipolar voltage amplitude, conduction velocity, and connexin-43 were determined within the irradiated and nonirradiated areas.

RESULTS:

The irradiated area in normal hearts showed a significant reduction of bipolar voltage amplitude (10.1±4.9 mV versus 5.7±3.2, P<0.0001) and conduction velocity (85±26 versus 55±13 cm/s, P=0.03) beginning at 4 weeks after irradiation. In infarcted myocardium after irradiation, bipolar voltage amplitude of the infarct scar (2.0±2.9 versus 0.8±0.7 mV, P=0.008) was significantly reduced as well as the conduction velocity in the infarcted heart (43.7±15.7 versus 26.3±11.4 cm/s, P=0.02). There were no significant changes in bipolar voltage amplitude and conduction velocity in nonirradiated myocardium. Myocytolysis, capillary hyperplasia, and dilation were seen in the irradiated myocardium 8 weeks after irradiation. Active caspase-3 and reduction of connexin-43 expression began in irradiated myocardium 1 week after irradiation and decreased over 8 weeks.

CONCLUSIONS:

Irradiation of the myocardium with proton beams reduce connexin-43 expression, conduction velocity, and bipolar conducted electrogram amplitude in a large porcine model. The changes in biomarkers preceded electrophysiological changes after proton beam therapy.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Taquicardia Ventricular / Ablação por Cateter / Terapia com Prótons Tipo de estudo: Prognostic_studies Limite: Animals Idioma: En Revista: Circ Arrhythm Electrophysiol Assunto da revista: ANGIOLOGIA / CARDIOLOGIA Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Taquicardia Ventricular / Ablação por Cateter / Terapia com Prótons Tipo de estudo: Prognostic_studies Limite: Animals Idioma: En Revista: Circ Arrhythm Electrophysiol Assunto da revista: ANGIOLOGIA / CARDIOLOGIA Ano de publicação: 2023 Tipo de documento: Article