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Biomedical subjects

Perry Elliott

Publications and source records attributed to Perry Elliott.

9 recordsLinked to original sources

RBM20 Truncating Variants and Human Cardiomyopathy.

IMPORTANCE: Genetic diagnosis has become increasingly important to guide clinical decision-making for patients with dilated cardiomyopathy (DCM). Pathogenic or likely pathogenic (P/LP) missense variants in the gene RBM20 cause a highly penetrant arrhythmogenic DCM, but the role of RBM20 truncating variants (RBM20tvs) is unclear. OBJECTIVE: To assess the contribution of RBM20 variants to arrhythmogenic DCM. DESIGN, SETTING, AND PARTICIPANTS: In this cohort study, participants in the genome-first UK Biobank (UKB) and All of Us populations were evaluated to assess the etiologic fraction, natural history and penetrance of RBM20 variants. Retrospective data were collected from an international cohort of patients with DCM and RBM20 variants identified at centers of excellence for genetic heart disease and compared based on time to event. Study dates are not disclosed because the institutional review board did not authorize the sharing of this information. EXPOSURES: RBM20 variants were compared to known P/LP variants and variants of uncertain significance in RBM20 as well as titin truncating variants (TTNtvs). MAIN OUTCOMES AND MEASURES: Major ventricular arrhythmias, end-stage heart failure, and heart failure hospitalization as measured by medical record review (retrospective cohort) and diagnostic codes (UKB). RESULTS: Two main cohorts were studied for this project. In UK Biobank, a cohort of participants with RBM20tvs, RBM20 synonymous variants, and TTNtvs was studied. Of these 4249 participants, 1869 (44%) were male. The mean (SD) age at enrollment was 56 (8.2) years. In the RBM20 registry, of 179 patients, 105 (58.6%) were male, and the mean (SD) age at enrollment was 43.8 (19.1) years. A validation cohort from the All of Us biobank was also used. This consisted of 7002 participants, 4342 of whom (62.0%) were male, and the mean (SD) age was 52.7 (16.7) years. The etiologic fraction of RBM20 variants in arrhythmogenic DCM was 0.53 (95% CI, 0.32-0.67; P&#x2009;<&#x2009;.001). In genome-first biobanks, lifetime incidence of cardiomyopathy, heart failure, or major ventricular arrhythmia diagnosis was lower in participants with RBM20 variants than in those with TTNtvs (hazard ratio, 0.55; 95% CI, 0.36-0.84; P&#x2009;<&#x2009;.001). Patients with RBM20tvs and DCM presented to referral centers later in life than those with P/LP RBM20 and DCM (mean [SD], 53 [10] vs 34 [18] years; P&#x2009;<&#x2009;.001) and were less likely to have a family history of sudden cardiac arrest (2 of 10 [20%] vs 11 of 17 [65%]; P&#x2009;=&#x2009;.046) or cardiomyopathy (2 of 10 [20%] vs 14 of 18 [78%]; P&#x2009;<&#x2009;.001). There was no significant difference in age- and sex-adjusted incident major heart failure or arrhythmia events between patients with RBM20tv and DCM or those with P/LP RBM20 and DCM, though sex-adjusted lifetime hazard was reduced in those with RBM20tv and DCM (hazard ratio, 0.13; 95% CI, 0.03-0.56; P&#x2009;=&#x2009;.01). CONCLUSIONS AND RELEVANCE: This study found that RBM20 variants contributed to arrhythmogenic DCM phenotypes but conferred reduced lifetime disease penetrance compared to TTNtvs and milder disease severity alone than P/LP RBM20 variants. Their potential for additive interactions with other damaging variants should be considered in patients with DCM and their families.

Humans↗

Pathogenesis of cardiotoxicity induced by anthracyclines.

Anthracyclines are potent anti-neoplastic drugs used in the treatment of solid and hematologic cancers. However, their use is limited by cumulative dose-related cardiotoxic adverse effects, which are progressive and irreversible from the first dose. Clinical trial data have shown that anthracycline cardiotoxicity is associated with slowly progressive deterioration of cardiac function, which continues for years after treatment cessation. Cardiac damage has been shown at cumulative doses as low as 200 mg/m2, well below levels currently assumed to induce injury. The widespread use of anthracyclines in childhood leukemia has resulted in an improved long-term prognosis; however, these patients are subsequently at high risk of developing long-term cardiac damage, with studies suggesting as many as 65% of survivors of childhood leukemia will develop cardiac abnormalities. Middle aged and elderly patients who are prone to cardiac disease may be more vulnerable to the cardiotoxic effects of anthracyclines. Therapies or strategies to prevent anthracycline-induced cardiotoxicity are essential; ideally, these should be initiated at the beginning of anthracycline therapy to reduce the possibility of cardiac damage and to ensure the optimal use of chemotherapy.

Anthracyclines↗

Hypertrophic cardiomyopathy.

Hypertrophic cardiomyopathy is a common genetically transmitted disease, defined clinically by the presence of unexplained left ventricular hypertrophy. The disease has a varied clinical course and outcome; many patients have little or no discernible cardiovascular symptoms, whereas others have profound exercise limitation and recurrent arrhythmias. The overall risk of disease-related complications such as sudden death, endstage heart failure, and fatal stroke is roughly 1-2% per year, but the absolute risk in individuals varies as a function of underlying genetic abnormality, age, myocardial pathology, and other pathophysiological abnormalities such as impaired peripheral vascular responses. Genetic counselling and clinical risk stratification are relevant to all patients, but many therapeutic interventions, including septal alcohol ablation, septal myectomy, and implantable cardioverter defibrillators, are appropriate only in particular patient subsets. We review the management of patients with unexplained myocardial hypertrophy, considering the influence of underlying genetic and pathophysiological substrates on clinical decision-making.

Cardiomyopathy, Hypertrophic↗

Mutations in Cypher/ZASP in patients with dilated cardiomyopathy and left ventricular non-compaction.

OBJECTIVES: We evaluated the role of Cypher/ZASP in the pathogenesis of dilated cardiomyopathy (DCM) with or without isolated non-compaction of the left ventricular myocardium (INLVM). BACKGROUND: Dilated cardiomyopathy, characterized by left ventricular dilation and systolic dysfunction with signs of heart failure, is genetically transmitted in 30% to 40% of cases. Genetic heterogeneity has been identified with mutations in multiple cytoskeletal and sarcomeric genes causing the phenotype. In addition, INLVM with a hypertrophic dilated left ventricle, ventricular dysfunction, and deep trabeculations, is also inherited, and the genes identified to date differ from those causing DCM. Cypher/ZASP is a newly identified gene encoding a protein that is a component of the Z-line in both skeletal and cardiac muscle. METHODS: Diagnosis of DCM was performed by echocardiogram, electrocardiogram, and physical examination. In addition, levels of the muscular isoform of creatine kinase were measured to evaluate for skeletal muscle involvement. Cypher/ZASP was screened by denaturing high performance liquid chromatography (DHPLC) and direct deoxyribonucleic acid sequencing. RESULTS: We identified and screened 100 probands with left ventricular dysfunction. Five mutations in six probands (6% of cases) were identified in patients with familial or sporadic DCM or INLVM. In vitro studies showed cytoskeleton disarray in cells transfected with mutated Cypher/ZASP. CONCLUSIONS: These data suggest that mutated Cypher/ZASP can cause DCM and INLVM and identify a mechanistic basis.

Adaptor Proteins, Signal Transducing↗

Idiopathic restrictive cardiomyopathy is part of the clinical expression of cardiac troponin I mutations.

Restrictive cardiomyopathy (RCM) is an uncommon heart muscle disorder characterized by impaired filling of the ventricles with reduced volume in the presence of normal or near normal wall thickness and systolic function. The disease may be associated with systemic disease but is most often idiopathic. We recognized a large family in which individuals were affected by either idiopathic RCM or hypertrophic cardiomyopathy (HCM). Linkage analysis to selected sarcomeric contractile protein genes identified cardiac troponin I (TNNI3) as the likely disease gene. Subsequent mutation analysis revealed a novel missense mutation, which cosegregated with the disease in the family (lod score: 4.8). To determine if idiopathic RCM is part of the clinical expression of TNNI3 mutations, genetic investigations of the gene were performed in an additional nine unrelated RCM patients with restrictive filling patterns, bi-atrial dilatation, normal systolic function, and normal wall thickness. TNNI3 mutations were identified in six of these nine RCM patients. Two of the mutations identified in young individuals were de novo mutations. All mutations appeared in conserved and functionally important domains of the gene. This article was published online in advance of the print edition. The date of publication is available from the JCI website, http://www.jci.org.

Adolescent↗

Role of invasive EP testing in the evaluation and management of hypertrophic cardiomyopathy.

Hypertrophic cardiomyopathy (HCM) is an inheritable condition that may cause sudden death in the absence of significant symptoms or adverse morphological features. Therefore, there is a need for identification of those patients at sufficiently high risk to warrant prophylactic treatment. Risk stratification for primary prevention of sudden death has relied upon non-invasively derived markers of risk: syncope; a family history of premature sudden death; nonsustained ventricular tachycardia on Holter; abnormal blood pressure response to exercise; and severe left ventricular hypertrophy. The presence of two or more risk factors is associated with a 6-year sudden death survival rate of 72% (56-88%), justifying the consideration of prophylactic therapy. The 6-year sudden death survival rate in patients with one or no risk factors is 94% (91-98%). In these individuals the context and severity of the risk factor may guide the decision for prophylaxis; for example, a highly malignant family history carries greater justification than a large pedigree with only one sudden death. There is a need, however, for determining risk more accurately in those individuals with only one conventional risk factor. Programmed stimulation has been studied for its predictive value in primary prevention. 'Aggressive' protocols have been used and the most commonly induced arrhythmia is polymorphic ventricular tachycardia. These findings, however, are non-specific and of limited prognostic value. In addition the patients studied have been from selected high-risk populations without a low-risk cohort for comparison. Thus invasive EP studies appear to carry little advantage over non-invasive risk stratification. This is not surprising given that the mechanisms of cardiac arrest in HCM can be varied and may be modified by abnormal vascular responses and ischaemia. The relevance of invasively induced arrhythmias may therefore be limited. Other uses for electrophysiological study include the investigation and treatment of individuals with conduction disease and/or Wolff-Parkinson-White syndrome, atrial flutter and fibrillation and monomorphic ventricular tachycardia. Appropriate management may then involve radiofrequency ablation. A permanent pacemaker will be required if the atrio-ventricular node is ablated.

Cardiomyopathy, Hypertrophic↗