Abstract 4365531: Acoramidis Effect on All-Cause Mortality in Patients with p.V142I (V122I) Variant ATTR-CM: Findings From the ATTRibute-CM Study
Abstract
Introduction: Transthyretin (TTR) amyloid cardiomyopathy (ATTR-CM) arises from amyloidogenic aggregates of destabilized TTR protein in variant (ATTRv-CM) or acquired wild-type TTR (ATTRwt-CM). The p.V142I (V122I) variant is the most common pathogenic TTR allele in the USA and has higher mortality vs wild type. Acoramidis, an oral TTR stabilizer achieving ≥90% stabilization, is approved in USA, UK, Europe, and Japan for treating ATTR-CM in adults. In ATTRibute-CM (NCT03860935), acoramidis showed a reduction in all-cause mortality (ACM) or first cardiovascular-related hospitalization (CVH) vs placebo (PBO), with consistent benefit in ATTRwt-CM and ATTRv-CM (all variants). We report clinical outcomes in participants with p.V142I ATTRv-CM. Research Question: What was the efficacy of acoramidis for clinical outcomes (ACM, CVH) in participants with p.V142I ATTRv-CM in ATTRibute-CM? Methods: In ATTRibute-CM, 632 participants were randomized 2:1 to receive acoramidis HCl 800 mg or PBO twice daily for 30 months. All participants enrolled in open-label extension (OLE) received acoramidis only. Exploratory post hoc analyses were done in the p.V142I ATTRv-CM subgroup. Time-to-event analyses used a stratified Cox proportional hazards model using treatment group as an explanatory factor and baseline 6MWD as a covariate, stratified by randomization factors: serum NT-proBNP and eGFR. ACM was analyzed at Month 42 (ATTRibute-CM 30 months + 12 months OLE). Results: Of the 59 patients with ATTRv-CM reported at randomization, 35 (59.3%) had p.V142I (23 acoramidis, 12 PBO) with comparable baseline characteristics; 4 were homozygous for p.V142I (1 acoramidis, 3 PBO). Through Month 30, ACM/first CVH occurred in 43.5% (10/23) of acoramidis vs 83.3% (10/12) in PBO (HR 0.311; 95% CI 0.120–0.805; Figure 1 ). Through Month 42, ACM occurred in 26.1% (6/23) of continuous acoramidis vs 66.7% (8/12) in PBO to acoramidis (HR 0.307; 95% CI 0.097–0.973; Figure 2 ). Conclusions: In participants with p.V142I ATTRv-CM, acoramidis use was associated with 69% risk reduction in ACM/first CVH through Month 30 and ACM through Month 42 vs PBO. This is the first report of clinical benefit of this magnitude observed in this high-risk population. These findings have biologic plausibility and may reflect the near-complete stabilization observed experimentally with acoramidis in p.V142I ATTR fibrils. These observations require confirmation in larger cohort studies.
Article Details
Authors (21)
Kevin Alexander
Division of Cardiovascular Medicine, Department of Medicine, Stanford Center for Clinical Research, Stanford University School of Medicine, Palo Alto, California, United States
Nitasha Sarswat
Biological Sciences Division, University of Chicago Medicine, IL (N.S.).
Margot Davis
University of British Columbia, Vancouver, British Columbia, Canada
Sarah Cuddy
Brigham and Women's Hospital, Boston, Massachusetts, United States
Michelle Kittleson
Keyur Shah
Pauley Heart Center, Virginia Commonwealth University, Richmond, Virginia, United States
Jan Griffin
Division of Cardiology, Department of Medicine, Medical University of South Carolina, Charleston, South Carolina, United States
Frederick Ruberg
Boston University, Boston, Massachusetts, United States
Michel Khouri
Duke University School of Medicine, Durham, North Carolina, United States
Kunal Bhatt
Emory Healthcare, Atlanta, Georgia, United States
Daniel Judge
Medical University of South Carolina, Charleston, South Carolina, United States
Justin Grodin
University of Texas Southwestern Medical Center, Dallas, Texas, United States
Olakunle Akinboboye
Queens Heart Institute, New York, New York, United States
Chris Chen
Jean-Francois Tamby
BridgeBio Pharma, Inc., San Francisco, California, United States
Adam Castano
BridgeBio Pharma, Inc., San Francisco, California, United States
Jonathan Fox
BridgeBio Pharma, Inc., San Francisco, California, United States
Marianna Fontana
National Amyloidosis Centre, University College London, Royal Free Hospital, London, United Kingdom.
Julian Gillmore
National Amyloidosis Centre, Division of Medicine, University College London, Royal Free Hospital, London, United Kingdom
Martha Grogan
Department of Cardiovascular Medicine (M.G., O.F.A.E., M.C.B., J.J.M.), Mayo Clinic, Rochester, MN.
Scott Solomon
Brigham and Women's Hospital, Boston, Massachusetts, United States