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1.
Eur Heart J ; 40(10): 831-838, 2019 03 07.
Article in English | MEDLINE | ID: mdl-30380018

ABSTRACT

AIMS: Unexplained sudden cardiac death (SCD) may be attributable to cardiogenetic disease. Presence or absence of autopsy anomalies detected following premature sudden death direct appropriate clinical evaluation of at-risk relatives towards inherited cardiomyopathies or primary arrhythmia syndromes, respectively. We investigated the relevance of non-diagnostic pathological abnormalities of indeterminate causality (uncertain) such as myocardial hypertrophy, fibrosis, or inflammatory infiltrates to SCD. METHODS AND RESULTS: At-risk relatives of unexplained SCD cases aged 1-64 years without prior cardiac disease (n = 98) with either normal and negative (40%, true sudden arrhythmic death syndrome; SADS) or isolated non-diagnostic (60%, uncertain sudden unexplained death; SUD) cardiac histological autopsy findings at a central forensic pathology unit were referred to the regional unexplained SCD clinic for clinical cardiac phenotyping. Uncertain SUD were older than true SADS cases (31.8 years vs. 21.1 years, P < 0.001). A cardiogenetic diagnosis was established in 24 families (24.5%) following investigation of 346 referred relatives. The proportions of uncertain SUD and true SADS explained by familial cardiogenetic diagnoses were similar (20% vs. 31%, P = 0.34, respectively), with primary arrhythmia syndromes predominating. Unexplained SCD cases were more likely than matched non-cardiac premature death controls to demonstrate at least one uncertain autopsy finding (P < 0.001). CONCLUSION: Primary arrhythmia syndromes predominate as familial cardiogenetic diagnoses amongst both uncertain SUD and true SADS cases. Non-diagnostic or uncertain histological findings associate with SUD, though cannot be attributed a causative status. At-risk relatives of uncertain SUD cases should be evaluated for phenotypic evidence of both ion channel disorders and cardiomyopathies.


Subject(s)
Death, Sudden, Cardiac , Adolescent , Adult , Arrhythmias, Cardiac , Autopsy , Child , Child, Preschool , Cohort Studies , Death, Sudden, Cardiac/epidemiology , Death, Sudden, Cardiac/etiology , Death, Sudden, Cardiac/pathology , Female , Genetic Predisposition to Disease , Humans , Infant , Male , Middle Aged , Risk Factors , Victoria , Young Adult
2.
Med J Aust ; 203(6): 261.e1-6, 2015 Sep 21.
Article in English | MEDLINE | ID: mdl-26377294

ABSTRACT

OBJECTIVES: To describe patient characteristics, standard operating procedure, and uptake of genetic testing at the multidisciplinary Cardiac Genetics Clinic (CGC) at the Royal Melbourne Hospital during its first 6 years. DESIGN: Database exploration of referral diagnoses, sex, number of clinic visits and incidence of genetic testing in a population of individuals attending the CGC. SETTING: Tertiary referral hospital (Royal Melbourne Hospital) providing cardiac genetics services to the state of Victoria. PARTICIPANTS: All individuals initially attending the clinic between July 2007 and July 2013, either as the proband or as an at-risk family member. MAIN OUTCOME MEASURES: Classification of patients into diagnostic categories, number of probands and at-risk relatives assessed, incidence and outcomes of genetic testing. RESULTS: 1170 individuals were seen for the first time over the 6-year period; 57.5% made only one visit. The median age was 39 years. Most were encompassed within four broad diagnostic categories: cardiomyopathy (315 patients), aortopathy (303 patients), arrhythmia disorders (203 patients) and resuscitated cardiac arrest and/or family history of sudden cardiac death (341 patients); eight patients had "other" diagnoses. Genetic testing (mutation detection or predictive testing) was undertaken in 381 individuals (32.6%), and a pathogenic mutation was identified in 47.6% of tests, representing 15.3% of the total population. CONCLUSION: The CGC fulfils an important role in assisting clinicians and patients by reviewing genetic cardiac diagnoses. Clinical practice during the study period moved from a selected candidate gene approach to broader gene panel-based testing. This move to next-generation sequencing may increase the detection of mutations and variants of unknown significance. A major contribution by the clinic to the care of these individuals and their families is the provision (or negating) of a diagnosis, and of a plan for managing risks of predictable cardiac disease.


Subject(s)
Cardiovascular Diseases/genetics , Genetic Testing , Adolescent , Adult , Aged , Aged, 80 and over , Cardiovascular Diseases/diagnosis , Female , Humans , Male , Middle Aged , Models, Organizational , Mutation , Patient Care Team , Victoria
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