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"Brugada, Josep"
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A Leadless Intracardiac Transcatheter Pacing System
2016
A series of 725 patients underwent attempted implantation of a leadless transcatheter pacemaker. At 6 months, 96.0% of patients had no major device-related complications, and 98.3% had a low and stable pacing capture threshold.
For more than half a century, permanent cardiac pacing for symptomatic bradycardia has been achieved with systems that consist of a surgically implanted subcutaneous electrical generator connected to one or more transvenous leads that deliver the pacing therapy to the heart. Although these devices are effective, approximately one in eight patients has an early complication, frequently related to the lead or leads or to the subcutaneous “pocket.”
1
Complications include problems with the subcutaneous pocket, such as hematomas and infections; lead-insertion problems, such as pneumothoraxes and hemothoraxes; lead dislodgements and integrity problems; infections, including septicemia and endocarditis; vascular obstructions; and reduced . . .
Journal Article
Cryoballoon or Radiofrequency Ablation for Paroxysmal Atrial Fibrillation
2016
Over 700 patients with drug-refractory paroxysmal atrial fibrillation were randomly assigned to cryoballoon or radiofrequency ablation. Cryoballoon ablation was noninferior to radiofrequency for the composite of recurrent atrial arrhythmia, use of antiarrhythmic drugs, or repeat ablation.
According to a 2012 expert consensus statement, catheter ablation of drug-refractory paroxysmal atrial fibrillation is a class I level A indication,
1
and pulmonary-vein isolation is the standard approach.
1
–
3
The two most frequently used ablation technologies for pulmonary-vein isolation differ in the energy source and mode of application. The most common method is the use of radiofrequency current applied in a point-by-point mode, which leads to cellular necrosis by tissue heating; the other method is the use of cryogenic energy applied with a balloon in a single-step mode, which leads to necrosis by freezing (Figure 1). Radiofrequency ablation for atrial . . .
Journal Article
Cardiac-Resynchronization Therapy in Heart Failure with a Narrow QRS Complex
by
Bax, Jeroen J
,
Ruschitzka, Frank
,
Singh, Jagmeet P
in
Aged
,
Biological and medical sciences
,
Cardiac Resynchronization Therapy - methods
2013
In a randomized trial, patients with heart failure and a QRS duration of less than 130 msec were assigned to cardiac-resynchronization therapy (CRT) or no CRT. There were no significant differences in rates of death from any cause or hospitalization for heart failure.
Despite recent advances, heart failure remains a common cause of death and morbidity. According to current guidelines, cardiac-resynchronization therapy (CRT) is indicated for patients receiving stable medical therapy recommended by current guidelines who have moderate-to-severe heart failure, a left ventricular ejection fraction of 35% or less, and a QRS duration of 120 msec or more as assessed electrocardiographically.
1
However, many patients with heart failure have a QRS duration of less than 120 msec,
2
and it is currently not recommended that they receive CRT. Up to 50% of these patients show echocardiographic evidence of ventricular dyssynchrony
3
,
4
and hence might benefit . . .
Journal Article
Cardiac Channelopathies and Sudden Death: Recent Clinical and Genetic Advances
by
Sarquella-Brugada, Georgia
,
Brugada, Josep
,
Fernández-Falgueras, Anna
in
Arrhythmia
,
Cardiomyopathy
,
Death
2017
Sudden cardiac death poses a unique challenge to clinicians because it may be the only symptom of an inherited heart condition. Indeed, inherited heart diseases can cause sudden cardiac death in older and younger individuals. Two groups of familial diseases are responsible for sudden cardiac death: cardiomyopathies (mainly hypertrophic cardiomyopathy, dilated cardiomyopathy, and arrhythmogenic cardiomyopathy) and channelopathies (mainly long QT syndrome, Brugada syndrome, short QT syndrome, and catecholaminergic polymorphic ventricular tachycardia). This review focuses on cardiac channelopathies, which are characterized by lethal arrhythmias in the structurally normal heart, incomplete penetrance, and variable expressivity. Arrhythmias in these diseases result from pathogenic variants in genes encoding cardiac ion channels or associated proteins. Due to a lack of gross structural changes in the heart, channelopathies are often considered as potential causes of death in otherwise unexplained forensic autopsies. The asymptomatic nature of channelopathies is cause for concern in family members who may be carrying genetic risk factors, making the identification of these genetic factors of significant clinical importance.
Journal Article
Natural and Undetermined Sudden Death: Value of Post-Mortem Genetic Investigation
2016
Sudden unexplained death may be the first manifestation of an unknown inherited cardiac disease. Current genetic technologies may enable the unraveling of an etiology and the identification of relatives at risk. The aim of our study was to define the etiology of natural deaths, younger than 50 years of age, and to investigate whether genetic defects associated with cardiac diseases could provide a potential etiology for the unexplained cases.
Our cohort included a total of 789 consecutive cases (77.19% males) <50 years old (average 38.6±12.2 years old) who died suddenly from non-violent causes. A comprehensive autopsy was performed according to current forensic guidelines. During autopsy a cause of death was identified in most cases (81.1%), mainly due to cardiac alterations (56.87%). In unexplained cases, genetic analysis of the main genes associated with sudden cardiac death was performed using Next Generation Sequencing technology. Genetic analysis was performed in suspected inherited diseases (cardiomyopathy) and in unexplained death, with identification of potentially pathogenic variants in nearly 50% and 40% of samples, respectively.
Cardiac disease is the most important cause of sudden death, especially after the age of 40. Close to 10% of cases may remain unexplained after a complete autopsy investigation. Molecular autopsy may provide an explanation for a significant part of these unexplained cases. Identification of genetic variations enables genetic counseling and undertaking of preventive measures in relatives at risk.
Journal Article
Recent Advances in Short QT Syndrome
by
Sarquella-Brugada, Georgia
,
Brugada, Josep
,
Campuzano, Oscar
in
arrhythmias
,
Asymptomatic
,
Cardiac arrest
2018
Short QT syndrome is a highly malignant inherited cardiac disease characterized by ventricular tachyarrhythmias leading to syncope and sudden cardiac death. It is responsible of lethal episodes in young people, mainly infants. International guidelines establish diagnostic criteria with the presence of a QTc ≤ 340 ms in the electrocardiogram despite clinical diagnostic values remain controversial. In last years, clinical diagnosis, risk stratification as well as preventive therapies have been improved due to identification of pathophysiological mechanisms. The only effective option is implantation of a defibrillator despite Quinidine may be at times an effective option. Currently, a limited number of rare variants have been identified in seven genes, which account for nearly 20-30% of families. However, some of these variants are associated with phenotypes showing a shorter QT interval but no conclusive diagnosis of Short QT syndrome. Therefore, an exhaustive interpretation of each variant and a close genotype-phenotype correlation is necessary before clinical translation. Here, we review the main clinical and genetic hallmarks of this rare entity.
Journal Article
Impact of body mass index on the outcome of catheter ablation of atrial fibrillation
by
Laroche, Cécile
,
Dagres, Nikolaos
,
Calvo, Naiara
in
atrial fibrillation
,
Body mass index
,
Cardiac arrhythmia
2019
ObjectivesThe association between obesity and atrial fibrillation (AF) is well-established. We aimed to evaluate the impact of index body mass index (BMI) on AF recurrence at 12 months following catheter ablation using propensity-weighted analysis. In addition, periprocedural complications and fluoroscopy details were examined to assess overall safety in relationship to increasing BMI ranges.MethodsBaseline, periprocedural and follow-up data were collected on consecutive patients scheduled for AF ablation. There were no specific exclusion criteria. Patients were categorised according to baseline BMI in order to assess the outcomes for each category.ResultsAmong 3333 patients, 728 (21.8%) were classified as normal (BMI <25.0 kg/m2), 1537 (46.1%) as overweight (BMI 25.5–29.0 kg/m2) and 1068 (32.0%) as obese (BMI ≥30.0 kg/m2). Procedural duration and radiation dose were higher for overweight and obese patients compared with those with a normal BMI (p=0.002 and p<0.001, respectively). An index BMI ≥30 kg/m2 led to a 1.2-fold increased likelihood of experiencing recurrent AF at 12-months follow-up as compared with overweight patients (HR 1.223; 95% CI 1.047 to 1.429; p=0.011), while no significant correlation was found between overweight and normal BMI groups (HR 0.954; 95% CI 0.798 to 1.140; p=0.605) and obese versus normal BMI (HR 1.16; 95% CI 0.965 to 1.412; p=0.112).ConclusionsPatients with a baseline BMI ≥30 kg/m2 have a higher recurrence rate of AF following catheter ablation and therefore lifestyle modification to target obesity preprocedure should be considered in these patients.
Journal Article
Genetic and Molecular Mechanisms in Brugada Syndrome
2023
Brugada syndrome is a rare hereditary arrhythmia disorder characterized by a distinctive electrocardiogram pattern and an elevated risk of ventricular arrhythmias and sudden cardiac death in young adults. Despite recent advances, it remains a complex condition, encompassing mechanisms, genetics, diagnosis, arrhythmia risk stratification, and management. The underlying electrophysiological mechanism of Brugada syndrome requires further investigation, with current theories focusing on abnormalities in repolarization, depolarization, and current-load match. The genetic basis of the syndrome is strong, with mutations found in genes encoding subunits of cardiac sodium, potassium, and calcium channels, as well as genes involved in channel trafficking and regulation. While the initial discovery of mutations in the SCN5A gene provided valuable insights, Brugada syndrome is now recognized as a multifactorial disease influenced by several loci and environmental factors, challenging the traditional autosomal dominant inheritance model. This comprehensive review aims to provide a current understanding of Brugada syndrome, focusing on its pathophysiology, genetic mechanisms, and novel models of risk stratification. Advancements in these areas hold the potential to facilitate earlier diagnosis, improve risk assessments, and enable more targeted therapeutic interventions.
Journal Article
Genetic Analysis of Arrhythmogenic Diseases in the Era of NGS: The Complexity of Clinical Decision-Making in Brugada Syndrome
by
Mates, Jesus
,
Brion, Maria
,
Iglesias, Anna
in
A Kinase Anchor Proteins - genetics
,
Adult
,
Ankyrins - genetics
2015
The use of next-generation sequencing enables a rapid analysis of many genes associated with sudden cardiac death in diseases like Brugada Syndrome. Genetic variation is identified and associated with 30-35% of cases of Brugada Syndrome, with nearly 20-25% attributable to variants in SCN5A, meaning many cases remain undiagnosed genetically. To evaluate the role of genetic variants in arrhythmogenic diseases and the utility of next-generation sequencing, we applied this technology to resequence 28 main genes associated with arrhythmogenic disorders.
A cohort of 45 clinically diagnosed Brugada Syndrome patients classified as SCN5A-negative was analyzed using next generation sequencing. Twenty-eight genes were resequenced: AKAP9, ANK2, CACNA1C, CACNB2, CASQ2, CAV3, DSC2, DSG2, DSP, GPD1L, HCN4, JUP, KCNE1, KCNE2, KCNE3, KCNH2, KCNJ2, KCNJ5, KCNQ1, NOS1AP, PKP2, RYR2, SCN1B, SCN3B, SCN4B, SCN5A, SNTA1, and TMEM43. A total of 85 clinically evaluated relatives were also genetically analyzed to ascertain familial segregation.
Twenty-two patients carried 30 rare genetic variants in 12 genes, only 4 of which were previously associated with Brugada Syndrome. Neither insertion/deletion nor copy number variation were detected. We identified genetic variants in novel candidate genes potentially associated to Brugada Syndrome. These include: 4 genetic variations in AKAP9 including a de novo genetic variation in 3 positive cases; 5 genetic variations in ANK2 detected in 4 cases; variations in KCNJ2 together with CASQ2 in 1 case; genetic variations in RYR2, including a de novo genetic variation and desmosomal proteins encoding genes including DSG2, DSP and JUP, detected in 3 of the cases. Larger gene panels or whole exome sequencing should be considered to identify novel genes associated to Brugada Syndrome. However, application of approaches such as whole exome sequencing would difficult the interpretation for clinical purposes due to the large amount of data generated. The identification of these genetic variants opens new perspectives on the implications of genetic background in the arrhythmogenic substrate for research purposes.
As a paradigm for other arrhythmogenic diseases and for unexplained sudden death, our data show that clinical genetic diagnosis is justified in a family perspective for confirmation of genetic causality. In the era of personalized medicine using high-throughput tools, clinical decision-making is increasingly complex.
Journal Article
Clinical Spectrum of Arrhythmogenic Entities in Spanish Children Carrying Deleterious SCN5A Variants
by
Chipa, Fredy
,
Martínez-Barrios, Estefanía
,
Cerralbo, Patricia
in
Ablation
,
Adolescent
,
Arrhythmias, Cardiac - epidemiology
2026
Deleterious variants in SCN5A lead to a wide clinical spectrum that includes pathologies characterized by life-threatening cardiac events (CEs). In the pediatric population, early identification, management, and risk stratification of these pathologies are the main current challenges. This study analyzed a Spanish pediatric cohort (≤18 years) carrying rare SCN5A variants to explore genotype–phenotype correlations. A retrospective descriptive cohort study, including clinical, demographic, and genetic data of probands and their relatives, was conducted. Out of 100 children studied, 69 had definitively deleterious SCN5A variants (26 females, 38%; median age: 3 years, IQR 1–12). The main diagnoses were isolated Brugada syndrome (BrS) (31; 45%); isolated long QT syndrome type 3 (LQT3) (5; 7%); isolated progressive cardiac conduction disease (PCCD) (1; 2%); isolated familial atrial fibrillation (1; 2%); overlapping phenotypes (7; 10%) including: BrS-PCCD (2; 2.8%); BrS-LQT3 (1; 1.4%); premature ventricular contraction-dilated cardiomyopathy (1; 1.4%); BrS-LQT3-PCCD (1; 1.4%); BrS-PCCD-sick sinus syndrome (SSS) (1; 1.4%) and BrS-PCCD-SSS-familial atrial fibrillation (1; 1.4%). Of them, 13 (19%) patients presented with CEs (cardiogenic syncope, ventricular tachycardia/fibrillation, sudden cardiac arrest/death, and appropriate implantable cardio defibrillator shock). These findings underscore the utility of genetic testing for early diagnosis, risk stratification, and personalized management, enhancing preventive strategies for CE prevention in pediatrics.
Journal Article