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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.
Abstract:
Hutchinson-Gilford Progeria Syndrome (HGPS) is an ultra-rare genetic premature aging disease that is historically fatal in teenage years, secondary to severe accelerated atherosclerosis. The only approved treatment is the farnesyltransferase inhibitor lonafarnib, which improves vascular structure and function, extending average untreated lifespan of 14.5 years by 4.3 years (30%). With this longer lifespan, calcific aortic stenosis (AS) was identified as an emerging critical risk factor for cardiac death in older patients. Intervention to relieve critical AS has the potential for immediate improvement in healthspan and lifespan. However, HGPS patient-device size mismatch, pervasive peripheral arterial disease, skin and bone abnormalities, and lifelong failure to thrive present unique challenges to intervention. An international group of experts in HGPS, pediatric and adult cardiology, cardiac surgery, and pediatric critical care convened to identify strategies for successful treatment. Candidate procedures were evaluated by in-depth examination of 4 cases that typify HGPS clinical pathology. Modified transcatheter aortic valve replacement (TAVR) and left ventricular Apico-Aortic Conduit (AAC) placement were deemed high risk but viable options. Two cases received TAVR and 2 received AAC post-summit. Three were successful and 1 patient died perioperatively due to cardiovascular disease severity, highlighting the importance of intervention timing and comparative risk stratification. These breakthrough interventions for treating critical aortic stenosis in HGPS patients could rewrite the current clinical perspective on disease course by greatly improving late-stage quality of life and increasing lifespan. Expanding worldwide medical and surgical competency for this ultra-rare disease through expert information-sharing could have high impact on treatment success.
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