scholarly journals An Inherited Arrhythmia Syndrome with Long QT, Sudden Death and Depolarization Disorder Due to an In-Frame Deletion in Exon 16 of the CACNA1C Gene

Author(s):  
Muhammad Arshad Rafiq ◽  
Tamara T Koopmann ◽  
Laura A Zahavich ◽  
Meena Fatah ◽  
Robert M Hamilton
2020 ◽  
Vol 30 (12) ◽  
pp. 1880-1881
Author(s):  
Mehmet Taşar ◽  
Nur Dikmen Yaman ◽  
Huseyin Dursin ◽  
Murat Şimşek ◽  
Senem Özgür

AbstractCongenital Long QT Syndrome (LQTS) is a dangerous arrhythmic disorder that can be diagnosed in children with bradycardia. It is characterised by a prolonged QT interval and torsades de pointes that may cause sudden death. Long QT syndrome is an ion channelopathy with complex molecular and physiological infrastructure. Unlike the acquired type, congenital LQTS has a genetic inheritance and it may be diagnosed by syncope, stress in activity, cardiac dysfunction, sudden death or sometimes incidentally. Permanent pacemaker implantation is required for LQTS with resistant bradycardia even in children to resolve symptoms and avoid sudden death.


Heart Rhythm ◽  
2005 ◽  
Vol 2 (5) ◽  
pp. S265
Author(s):  
Li Zhang ◽  
Tiehua Chen ◽  
Michael Sheets ◽  
Robert L. Lux ◽  
Michael S. Schaffer ◽  
...  

Heart Rhythm ◽  
2011 ◽  
Vol 8 (3) ◽  
pp. 412-419 ◽  
Author(s):  
Jonathan R. Skinner ◽  
Jackie Crawford ◽  
Warren Smith ◽  
Andrew Aitken ◽  
David Heaven ◽  
...  

Circulation ◽  
2007 ◽  
Vol 116 (suppl_16) ◽  
Author(s):  
Marco Stramba-Badiale ◽  
Lia Crotti ◽  
Karine Goulene ◽  
Matteo Pedrazzini ◽  
Savina Mannarino ◽  
...  

Background. The long QT syndrome (LQTS), a leading cause of sudden death under 20 years of age, is due to mutations in genes which encode ion channels involved in the control of ventricular repolarization. In a prospective study on 34,000 neonates we found that a prolonged QT interval was associated with a 41 times greater risk for sudden infant death syndrome (SIDS) and, recently, in a case-control study on 201 cases of SIDS we found disease-causing LQTS mutations in 9.5% of the victims. Based on these results the Italian Ministry of Health is considering the possibility of introducing in the National Health Service an electrocardiographic (ECG) screening program in the first month of life to identify infants affected by LQTS. A realistic assessment of the prevalence of infants with LQTS becomes necessary. Methods. An ECG was recorded in the first month of life in 44,596 neonates. The QT interval was measured and corrected for heart rate according to the Bazett’s formula (QTc). In the neonates with a markedly prolonged QT (QTc ≥ 470 msec) molecular screening of the LQTS genes was performed. Results. A QTc between 440 and 470 msec was observed in 611 neonates (1.4%). A QTc ≥ 470 ms was found in 31 neonates (0.07%). Genetic analysis was performed in 28/31 (90%) neonates and LQTS mutations were identified in 14 of them (50%): 8 were LQT1, 4 LQT2 and 2 LQT3. Besides one de novo mutation, all other cases were familial and genetic analysis identified additional family members (37/72, 51%) affected by LQTS who had not been previously diagnosed. Within these 28 infants QTc was longer in the positively genotyped neonates (493±22 vs 479±6 ms, p=0.037) and a LQTS mutation was identified in all the neonates (n=5) with a QTc > 496 ms. Conclusions. An ECG performed in the first month of life, with genetic analysis in selected cases, allows early diagnosis of infants with sporadic and familial forms of LQTS, thus leading to institution of effective therapies aimed at preventing sudden death either in infancy or later on in life, not only in the neonates but also in their affected family members. This study also provides a first data-based estimate of LQTS prevalence, likely to be between 1/3,000 and 1/2,500 live births.


ESC CardioMed ◽  
2018 ◽  
pp. 382-389
Author(s):  
Wojciech Zareba ◽  
Pyotr Platonov

Electrocardiogram (ECG) patterns recognized in patients with sudden death without structural abnormalities in the heart have guided cardiology over the last few decades towards a better understanding of the role of cardiac ion channels in physiology and in arrhythmogenicity in rare electrical diseases. The long QT syndrome became the paradigm for evaluating the association between specific ion channel abnormalities caused by mutations in genes encoding predominantly potassium and sodium channels and phenotypic ECG expression. Specific ECG patterns observed in long QT syndrome help in diagnosis and improve prognosis in patients affected by this disorder. Short QT syndrome also is characterized by specific patterns in repolarization morphology that relate to affected potassium current or calcium handling genes. Brugada syndrome and early repolarization syndrome are considered as J-wave syndromes, having some similarities in ECG features but with distinctive patterns associated with classical forms of these disorders. Spontaneous appearance of cove-type Brugada pattern is associated with a worse prognosis. Early repolarization patterns may also indicate prognosis in subjects with a prior history of cardiac arrest or ventricular arrhythmias or a family history of cardiac arrests. Catecholaminergic polymorphic ventricular tachycardia is another channelopathy without characteristic features in standard resting ECG but with characteristic polymorphic ventricular arrhythmias during catecholaminergic challenge (exercise test, stressing situations). Pre-excitation syndromes associated with sudden cardiac death are well recognized and current understanding of these disorders leads to a better therapy.


2018 ◽  
Vol 14 (3) ◽  
pp. 367-371
Author(s):  
Jon M. Tuveng ◽  
Britt-Marie Berling ◽  
Gabor Bunford ◽  
Carlos G. Vanoye ◽  
Richard C. Welch ◽  
...  

Heart Rhythm ◽  
2007 ◽  
Vol 4 (10) ◽  
pp. 1366-1367 ◽  
Author(s):  
Tom Rossenbacker ◽  
Dieter Nuyens ◽  
Wim Van Paesschen ◽  
Hein Heidbüchel

1998 ◽  
Vol 4 (3) ◽  
pp. 26
Author(s):  
Minoru Horie ◽  
Hidetada Yoshida ◽  
Tomohiko Ai ◽  
Toshihisa Nishimoto ◽  
Tetsuya Haruna ◽  
...  

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