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1.
Arch. cardiol. Méx ; 92(3): 358-361, jul.-sep. 2022. graf
Article in Spanish | LILACS-Express | LILACS | ID: biblio-1393831

ABSTRACT

Resumen La ablación con catéter de taquicardia ventricular ha demostrado mejorar la supervivencia y algunas veces es el único tratamiento efectivo, sobre todo en tormenta arrítmica; sin embargo la presencia de inestabilidad hemodinámica dificulta el procedimiento. El soporte con oxigenación por membrana extracorpórea (ECMO) es una alternativa para lograr el mapeo y ablación de taquicardia ventricular durante largos periodos de tiempo. Se presenta el caso de un paciente con cardiopatía isquémica y taquicardia ventricular con inestabilidad hemodinámica, en quien se realiza la ablación exitosa del sustrato mediante soporte con ECMO veno-arterial, sin episodios de taquicardia ventricular durante dos años de seguimiento.


Abstract Catheter ablation is useful for reducing drug refractory ventricular tachycardia (VT) episodes and can be life-saving when VT is incessant or arrhythmic storm. Left ventricular hemodynamic support may be required in patients with VT and hemodynamic instability. Extracorporeal membrane oxygenation (ECMO) support is an alternative to achieve ventricular tachycardia mapping and ablation over long periods of time. We present a case of successful catheter ablation of substrate in a patient with ischemic heart disease and ventricular tachycardia with hemodynamic instability performed using venous- arterial ECMO support. There were not episodes of ventricular tachycardia after 2 years of follow-up.

2.
Rev. invest. clín ; 72(2): 103-109, Mar.-Apr. 2020. tab, graf
Article in English | LILACS | ID: biblio-1251841

ABSTRACT

ABSTRACT Background: The left atrial appendage (LAAp) resection is an effective treatment approach to reduce the risk of thromboembolism in patients with atrial fibrillation. Objective: To study was to study the impact of removing atrial appendages in the production of natriuretic peptides (NPs) in conditions of volume overload and to develop an experimental model of LAAp resection. Materials and Methods: In a swine model of ischemic heart failure (HF), serum NP levels were measured before (Basal-1A) and after (Basal-1B) a fluid overload. Animals were grouped as follows: (0) preserved appendages, (1) resected LAAp, and (2) both atrial appendages resected. Levels of NP were measured before (2A) and after a fluid overload (2B). Results: Furin levels were higher in Group 0-2A than in Group 2-2A, and a significant increase was found in Group 0-2B compared to Groups 1-2B and 2-2B. Corin levels increased in Basal-1B versus Basal-1A. Atrial NP (ANP) decreased in Basal-1B compared to Basal-1A. After HF induction, ANP increased in Groups 2-2A and 2-2B. Conclusions: Resection of atrial appendages drastically modifies the natriuretic mechanisms of cardiac homeostasis, especially after a fluid overload challenge. Herein, we describe the face and predictive validation of an animal model of atrial appendage resection useful to investigations in translational medicine.


Subject(s)
Animals , Male , Atrial Appendage/surgery , Atrial Appendage/metabolism , Disease Models, Animal , Heart Failure/surgery , Heart Failure/metabolism , Homeostasis , Swine , Natriuretic Peptides/biosynthesis , Natriuretic Peptides/physiology , Academic Medical Centers
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