Evaluation of A Clinical Diagnostic Test for CRDS
Start Date
2/2/2023
Completion Date
3/1/2028
Summary
Calcium Release Deficiency Syndrome (CRDS) is a novel inherited arrhythmia syndrome secondary to RyR2 loss-of-function that confers a risk of sudden cardiac death. Diagnosis of CRDS presently requires cellular-based in vitro confirmation that an RyR2 variant causes loss-of-function. We hypothesize that CRDS can be diagnosed clinically through evaluation of the repolarization response to brief tachycardia, mediated by cardiac pacing, and a subsequent pause.
Detailed Description
RyR2 loss-of-function variants have recently been established as causative for a new disease termed calcium release deficiency syndrome (CRDS) that confers a risk of malignant ventricular arrhythmias and sudden cardiac death. RyR2 encodes the cardiac ryanodine receptor, the calcium release channel on the sarcoplasmic reticulum that mediates excitation-contraction coupling through calcium-induced calcium-release. In contrast to CRDS, pathogenic RyR2 gain-of-function variants result in an autosomal dominant form of catecholaminergic polymorphic ventricular tachycardia (CPVT). The adrenergic-mediated ventricular arrhythmias characteristic of CPVT can be readily reproduced on exercise stress testing (EST), making EST the standard clinical diagnostic tool for CPVT. In contrast to CPVT, the CRDS clinical phenotype is concealed with standard cardiac testing tools and its diagnosis presently requires cellular-based in vitro confirmation that an RyR2 variant causes loss-of-function. Beyond the significant time delay associated with in vitro functional analysis, this testing requires specialized expertise that is not widely available and remains research-based, making it impractical for routine use in clinical care. In this overall context, it is likely that the vast majority of global CRDS cases have yet to be diagnosed. A prior report of an "atypical CPVT" family carrying an RyR2-p.M4109R variant observed marked and transient repolarization changes following pacing mediated tachycardia and a subsequent pause. Since publication of this report, in vitro characterization of the RyR2-p.M4109R variant has confirmed its being loss-of-function and the familial diagnosis has been revised to CRDS. Driven by these observations and promising preliminary findings, the DIAGNOSE CRDS study seeks to further investigate this apparent electrocardiographic signature of CRDS following brief tachycardia and subsequent pause as a potential method to clinically diagnose the condition.
Eligibility Criteria
Age Range: No minimum to No maximum
Interventions
Pacing
Conditions
Locations
University of California
San Francisco, California 94143
United States
Boston Children's Hospital
Boston, Massachusetts 02115
United States
Mayo Clinic
Rochester, Minnesota 55905
United States
University of Washington
Seattle, Washington 98195
United States
Antwerp University Hospital
Edegem, Antwerp 2650
Belgium
Universitair Ziekenhuis Brussel
Brussels, 1090
Belgium
University of Calgary
Calgary, Alberta T2N 1N4
Canada
Alberta Health Services
Edmonton, Alberta T6G 2C8
Canada
Children's & Women's Health Centre of British Columbia
Vancouver, British Columbia V6H 3N1
Canada
The University of British Columbia
Vancouver, British Columbia V6T 1Z3
Canada
Hamilton General Hospital
Hamilton, Ontario L8L 2X2
Canada
London Health Sciences Centre - University Hospital
London, Ontario N6A 5A5
Canada
Ottawa Heart Institute
Ottawa, Ontario K1Y 4W7
Canada
Toronto General Hospital
Toronto, Ontario M5G 2C4
Canada
Montréal Heart Institute
Montreal, Quebec H1T 1C8
Canada
Institut Universitaire de Cardiologie et de Pneumologie de Québec-Université Laval
Québec, Quebec G1V 4G5
Canada
Aarhus University Hospital
Aarhus, DK-8200 N
Denmark
CHU de Bordeaux
Bordeaux, New Aquitaine 33404
France
Shaare Zedek Medical Center
Jerusalem, 9103102
Israel
Oxford University Hospitals
Oxford, Oxfordshire OX3 9DU
United Kingdom