Intervention for critical aortic stenosis in Hutchinson-Gilford progeria syndrome

Leslie B Gordon1,2,3, Sammy Basso3,4,5,6, Justine Maestranzi3

  • 1Division of Genetics, Department of Pediatrics, Hasbro Children's Hospital and Warren Alpert Medical School of Brown University, Providence, RI, United States.

Insights

Hutchinson-Gilford Progeria Syndrome (HGPS) patients face new cardiac risks. Expert interventions like TAVR and AAC show promise for improving lifespan and quality of life in this rare aging disease.

Area of Science:

  • Cardiovascular Medicine
  • Genetics
  • Rare Diseases

Background:

  • Hutchinson-Gilford Progeria Syndrome (HGPS) is a rare genetic disorder causing rapid premature aging and early death, primarily from atherosclerosis.
  • Lonafarnib treatment extends lifespan but reveals calcific aortic stenosis (AS) as a critical emerging risk for cardiac death.
  • HGPS patients present unique challenges for cardiac interventions due to disease-specific comorbidities.

Purpose of the Study:

  • To identify and evaluate strategies for successful treatment of critical aortic stenosis in HGPS patients.
  • To assess the feasibility and outcomes of novel cardiac interventions in this ultra-rare population.
  • To inform future clinical management and improve healthspan and lifespan for HGPS individuals.

Main Methods:

  • Convened an international expert group to discuss HGPS clinical pathology and treatment strategies.
  • Evaluated candidate procedures through in-depth analysis of four representative HGPS cases.
  • Assessed modified transcatheter aortic valve replacement (TAVR) and Apico-Aortic Conduit (AAC) placement as potential interventions.

Main Results:

  • Modified TAVR and AAC placement were identified as high-risk but viable options for critical AS in HGPS.
  • Three out of four patients undergoing these interventions experienced successful outcomes.
  • One patient died perioperatively, underscoring the critical importance of intervention timing and risk stratification.

Conclusions:

  • Breakthrough cardiac interventions for AS in HGPS patients offer potential to significantly improve quality of life and extend lifespan.
  • Expanding global expertise and information sharing is crucial for optimizing treatment success in this ultra-rare disease.
  • These interventions may fundamentally alter the clinical perspective on the late-stage course of HGPS.

Related Concept Videos

Treatment for Pulmonary Arterial Hypertension: Prostacyclin Receptor Agonists01:23

Treatment for Pulmonary Arterial Hypertension: Prostacyclin Receptor Agonists

Prostacyclin receptor agonists are a class of therapeutic agents integral to managing pulmonary arterial hypertension (PAH). These drugs operate by mimicking the action of prostaglandin I2, or PGI2, a naturally occurring compound in the body.
These agonists bind to the IPR receptor situated on the plasma membrane of the pulmonary artery smooth muscle cells. This binding triggers a cascade of reactions known as the GS-AC-cAMP-PKA pathway. This pathway results in the relaxation of smooth muscle...
Mitral Stenosis III: Medical Management01:26

Mitral Stenosis III: Medical Management

Mitral stenosis, a condition marked by the narrowing of the mitral valve, necessitates an integrated approach for effective management. This approach includes preventative measures, medical therapy, and surgical interventions to reduce symptoms and prevent complications.PreventionPrevention of mitral stenosis primarily focuses on reducing the incidence of bacterial infections, particularly streptococcal infections, which can lead to rheumatic fever and subsequent valvular damage. Timely...
Cardiomyopathy II: Dilated Cardiomyopathy01:30

Cardiomyopathy II: Dilated Cardiomyopathy

Dilated cardiomyopathy, or DCM, is a progressive myocardial disorder characterized by ventricular chamber dilation and contractile dysfunction.EtiologyVarious factors can cause DCM, including hypertension and heavy alcohol intake, which contribute to the weakening and enlargement of the heart muscle. Viral infections, such as Coxsackievirus B, adenoviruses, and influenza, can lead to DCM by causing inflammation and damage to heart tissue. Certain chemotherapeutic agents, including daunorubicin,...
Cardiomyopathy III: Hypertrophic Cardiomyopathy01:29

Cardiomyopathy III: Hypertrophic Cardiomyopathy

Hypertrophic cardiomyopathy, or HCM, is an autosomal dominant genetic disorder characterized by asymmetric left ventricular hypertrophy without ventricular dilation. It is more common in men and is typically diagnosed in young, athletic adults.EtiologyHCM is primarily genetic and is caused by mutations in genes encoding sarcomeric proteins. Researchers have identified over 1400 mutations across at least 11 different genes. Among these, the most frequently occurring mutations are found in the...
Cardiomyopathy V: Interprofessional Care01:29

Cardiomyopathy V: Interprofessional Care

Managing cardiomyopathy involves addressing underlying or precipitating causes, treating heart failure with medications, and implementing dietary changes and a balanced exercise and rest regimen.Lifestyle ModificationsCardiomyopathy patients should adopt a low-sodium diet to reduce fluid retention and manage heart failure. A personalized exercise and rest plan helps maintain physical fitness without overstraining the heart. Avoiding alcohol and tobacco is essential to prevent further damage to...
Huntington Disease l: Introduction01:21

Huntington Disease l: Introduction

Huntington disease or HD is a progressive, fatal neurodegenerative disorder inherited in an autosomal dominant pattern.PathophysiologyIt is caused by expansion of the CAG trinucleotide repeat in the HTT gene on chromosome 4 (4p16.3), producing an abnormal huntingtin protein with an expanded polyglutamine tract. This misfolded protein disrupts cellular function, leading to neuronal death. Normal alleles have ≤26 repeats, 27–35 are intermediate (risk of expansion), 36–39 show reduced penetrance,...