Sapien 3 Transcatheter Aortic Valve Replacement in Young Aortic Valve Stenosis Patients From China
For patients and families
In plain language
An automatic summary of structured registry data. It is an orientation aid, not a substitute for the official protocol or a physician assessment.
- What is being studied
- The protocol lists: Transcatheter Aortic Valve Replacement (TAVR).
- Who it may be relevant to
- Registry conditions: AORTIC VALVE DISEASES, Bicuspid Aortic Valve (BAV). Basic parameters: 50 years — 70 years · All.
- What needs checking
- Age, condition and sex are only basic indicators. Prior treatment, laboratory values and other mandatory requirements appear in the eligibility criteria below.
- Where it takes place
- China
- Next step
- Save the trial, show it to the treating physician, and confirm current recruitment with the study center. Costs, documents and travel →
Unsure about the terms? Read our patient guide →
Official title
Safety, Effectiveness and Durability of Sapien 3 Transcatheter Aortic Valve Replacement in Young Aortic Valve Stenosis Patients From China
Overview
Safety, effectiveness and durability of Sapien 3 transcatheter aortic valve replacement in young aortic valve stenosis patients from China:A multi-center, retrospective and prospective, single arm, observational study
Detailed description
Transcatheter aortic valve replacement (TAVR) has revolutionized the treatment of patients with severe aortic stenosis (AS). Currently TAVR indication has expanded to intermediate and low-risk patients from inoperable or high-risk patients, through a rigorous series of clinical trials comparing TAVR with surgical aortic valve replacement (SAVR).
Despite 2020 American College of Cardiology (ACC)/American Heart Association (AHA) guidelines recommended SAVR for patients with symptomatic severe AS aged \<65 years, the previous data from United States nationwide Vizient Clinical Data Base and Northern New England Cardiovascular Disease Group Consortium (NNECDSG) registry demonstrated dramatic growth in TAVR utilization in younger patients aged \<65 years from 2015 to 2021/2022, which is possibly driven by increased TAVR utilization in low surgical risk patients.
However, TAVR has never been systematically tested in young (\<65 years old), low-risk patients, with many unanswered questions, especially the safety and effectiveness of TAVR in patients with bicuspid aortic valves and the durability of transcatheter heart valves. Furthermore, we noticed that the patients between 65 years old and 70 years old accounted for 23.3% of all the TAVR patients and this patient subgroup were underrepresented in the previous study, which makes it necessary to also explore the interested endpoints in this subgroup.
The aim of this study is to establish the safety and efficacy of Sapien 3 TAVR in young (50\~70 years old) Chinese patients with severe symptomatic AS, including Type-1 bicuspid population and to explore the durability performance of Sapien 3 in this cohort.
Interventions
- Procedure Transcatheter Aortic Valve Replacement (TAVR)
TAVR procedure was performed according to standard clinical practice. Successful vascular access, delivery and deployment of the device and successful retrieval of the delivery system will be attempted. Vascular access site will be through transfemoral on the basis of pre-procedural evaluation of access site vessel. The procedure will be performed under local or general anesthesia and per clinical practice standard.
Primary outcome measures
- All-cause mortality [Time frame: At 5 years]
Secondary outcome measures (12)
- The composite of all-cause mortality, stroke and rehospitalization [Time frame: At 30 days, 1, 3, 5 years]
- The composite of device success [Time frame: At 30 days]
- The durability performance of Sapien 3 [Time frame: At 1, 3, 5 years]
- Annular rupture [Time frame: At 1 day of discharge]
- Paravalvular leakage [Time frame: At 1 day of discharge, 30 days, 1, 3, 5 years]
- Technical success [Time frame: At exit from procedure room]
- Procedural success [Time frame: At 30 days]
- Mortality (all cause & cardiovascular) [Time frame: At 30 days, 1, 3, 5 years]
- Stroke (disabling and nondisabling) [Time frame: At 30 days, 1, 3, 5 years]
- Rehospitalization (procedure, valve and heart failure related) [Time frame: At 30 days, 1, 3, 5 years]
- Major vascular complication [Time frame: At 30 days, 1, 3, 5 years]
- Major or life-threatening bleeding [Time frame: At 30 days, 1, 3, 5 years]
Eligibility criteria
Inclusion criteria
Subjects must meet ALL of the following inclusion criteria to be eligible for participation:
- 50 years of age or older but ≤70 years old at time of consent.
- Severe AS, defined as follows:
a) For symptomatic patients: i) Aortic valve area ≤1.0 cm2 (or aortic valve area index of ≤0.6 cm2/m2), OR mean gradient ≥40 mm Hg, OR Maximal aortic valve velocity ≥4.0 m/sec by transthoracic echocardiography at rest b) For asymptomatic patients: i) Very severe AS with an aortic valve area of ≤1.0 cm2 (or aortic valve area index of ≤0.6 cm2/m2), AND maximal aortic velocity ≥5.0 m/sec, or mean gradient ≥60 mm Hg by transthoracic echocardiography at rest, OR ii) Aortic valve area of ≤1.0 cm2 (or aortic valve area index of ≤0.6 cm2/m2), AND a mean gradient ≥40 mm Hg or maximal aortic valve velocity ≥4.0 m/sec by transthoracic echocardiography at rest, AND an exercise tolerance test that demonstrates a limited exercise capacity, abnormal BP response, or arrhythmia OR iii) Aortic valve area of ≤1.0 cm2 (or aortic valve area index of ≤0.6 cm2/m2), AND mean gradient ≥40 mmHg, or maximal aortic valve velocity ≥4.0 m/sec by transthoracic echocardiography at rest, AND a left ventricular ejection fraction <50%.
- Tricuspid aortic valve stenosis and type-1 bicuspid aortic valve anatomy confirmed by MDCT.
- The subject and the treating physician agree that the subject will return for all required post-procedure follow-up visits.
- Adequate iliofemoral access and acceptable level of vessel calcification and tortuosity for safe device implant.
- The study patient has been informed of the nature of the study, agrees to its provisions and has provided written informed consent as approved by the Institutional Review Board (IRB) of the respective clinical site.
Exclusion criteria
Subjects are NOT eligible for participation if they meet ANY of the following exclusion criteria:
- Any of the following: a. no calcification; b. challenging calcification based on physician's experience and discretion (Case Review Board would decide whether to exclude challenging calcification cases).
- Aortic valve is a congenital unicuspid valve, congenital Type-0 or Type-2 bicuspid valve, or quadricuspid valve.
- Severe femoral, iliac or aortic atherosclerosis, calcification, coarctation, aneurysm or tortuosity, which prevents transfemoral TAVR.
- Evidence of an acute myocardial infarction ≤ 1 month (30 days), with evidence of myocardial necrosis in a clinical setting consistent with acute myocardial ischemia.
- Need for open heart surgery (including severe aortic regurgitation, mitral regurgitation or stenosis, or tricuspid regurgitation, congenital heart disease, AF, complex coronary artery disease).
- Aortic disease: a. bicuspid aortic valve with an ascending aorta diameter ≥ 45mm b. tricuspid aortic valve with an ascending aorta diameter ≥ 50mm.
- Pre-existing mechanical or bioprosthetic valve in any position.
- Hemodynamic or respiratory instability requiring inotropic support, mechanical ventilation or mechanical heart assistance within 30 days of the screening visit.
- Emergency interventional/surgical procedures within 30 days of the valve implant procedure.
- Hypertrophic cardiomyopathy with or without obstruction.
- Ventricular dysfunction with LVEF < 30%.
- Cardiac imaging (echo, CT, and/or MRI) evidence of ventricular mass, thrombus or vegetation.
- Inability (including allergy) to heparin, iodine contrast agent, warfarin or NOAC, aspirin or clopidogrel.
- Stroke or transient ischemic attack (TIA) within 180 days of the valve implant procedure.
- Renal replacement therapy at the time of screening.
- Severe lung disease (FEV1 < 50% predicted) or currently on home oxygen.
- Estimated life expectancy < 24 months.
- Currently participating in an investigational drug or another device study. Note: Trials requiring extended follow-up for products that were investigational, but have since become commercially available, are not considered investigational trials. Observational studies are not considered exclusionary.
Criteria are shown verbatim from the registry (in English). Final eligibility is always assessed by the study center.
Healthy volunteers: No
Study design
- Observational model
- Cohort
Study locations
China · 4 centers
- Department of Cardiovascular Surgery of Xijing Hospital, Air Force Military Medical Univer — Xi'an
- West China Hospital, Sichuan University — Chengdu
- Fuwai Hospital, Chinese Academy of Medical Sciences — Beijing
- Shanghai Zhongshan Hospital, Fudan University — Shanghai
Publications
- Ten Berg J, Sibbing D, Rocca B, Van Belle E, Chevalier B, Collet JP, Dudek D, Gilard M, Gorog DA, Grapsa J, Grove EL, Lancellotti P, Petronio AS, Rubboli A, Torracca L, Vilahur G, Witkowski A, Mehilli J. Management of antithrombotic therapy in patients undergoing transcatheter aortic valve implantation: a consensus document of the ESC Working Group on Thrombosis and the European Association of Per PMID 33822924
- Gupta T, DeVries JT, Gilani F, Hassan A, Ross CS, Dauerman HL. Temporal Trends in Transcatheter Aortic Valve Replacement for Isolated Severe Aortic Stenosis. J Soc Cardiovasc Angiogr Interv. 2024 Apr 5;3(7):101861. doi: 10.1016/j.jscai.2024.101861. eCollection 2024 Jul. No abstract available. PMID 39132009
- Sharma T, Krishnan AM, Lahoud R, Polomsky M, Dauerman HL. National Trends in TAVR and SAVR for Patients With Severe Isolated Aortic Stenosis. J Am Coll Cardiol. 2022 Nov 22;80(21):2054-2056. doi: 10.1016/j.jacc.2022.08.787. Epub 2022 Sep 16. No abstract available. PMID 36122626
- Popma JJ, Deeb GM, Yakubov SJ, Mumtaz M, Gada H, O'Hair D, Bajwa T, Heiser JC, Merhi W, Kleiman NS, Askew J, Sorajja P, Rovin J, Chetcuti SJ, Adams DH, Teirstein PS, Zorn GL 3rd, Forrest JK, Tchetche D, Resar J, Walton A, Piazza N, Ramlawi B, Robinson N, Petrossian G, Gleason TG, Oh JK, Boulware MJ, Qiao H, Mugglin AS, Reardon MJ; Evolut Low Risk Trial Investigators. Transcatheter Aortic-Valve Rep PMID 30883053
- Mack MJ, Leon MB, Thourani VH, Makkar R, Kodali SK, Russo M, Kapadia SR, Malaisrie SC, Cohen DJ, Pibarot P, Leipsic J, Hahn RT, Blanke P, Williams MR, McCabe JM, Brown DL, Babaliaros V, Goldman S, Szeto WY, Genereux P, Pershad A, Pocock SJ, Alu MC, Webb JG, Smith CR; PARTNER 3 Investigators. Transcatheter Aortic-Valve Replacement with a Balloon-Expandable Valve in Low-Risk Patients. N Engl J Med. PMID 30883058
- Reardon MJ, Van Mieghem NM, Popma JJ, Kleiman NS, Sondergaard L, Mumtaz M, Adams DH, Deeb GM, Maini B, Gada H, Chetcuti S, Gleason T, Heiser J, Lange R, Merhi W, Oh JK, Olsen PS, Piazza N, Williams M, Windecker S, Yakubov SJ, Grube E, Makkar R, Lee JS, Conte J, Vang E, Nguyen H, Chang Y, Mugglin AS, Serruys PW, Kappetein AP; SURTAVI Investigators. Surgical or Transcatheter Aortic-Valve Replacement PMID 28304219
- Leon MB, Smith CR, Mack MJ, Makkar RR, Svensson LG, Kodali SK, Thourani VH, Tuzcu EM, Miller DC, Herrmann HC, Doshi D, Cohen DJ, Pichard AD, Kapadia S, Dewey T, Babaliaros V, Szeto WY, Williams MR, Kereiakes D, Zajarias A, Greason KL, Whisenant BK, Hodson RW, Moses JW, Trento A, Brown DL, Fearon WF, Pibarot P, Hahn RT, Jaber WA, Anderson WN, Alu MC, Webb JG; PARTNER 2 Investigators. Transcatheter PMID 27040324
- Smith CR, Leon MB, Mack MJ, Miller DC, Moses JW, Svensson LG, Tuzcu EM, Webb JG, Fontana GP, Makkar RR, Williams M, Dewey T, Kapadia S, Babaliaros V, Thourani VH, Corso P, Pichard AD, Bavaria JE, Herrmann HC, Akin JJ, Anderson WN, Wang D, Pocock SJ; PARTNER Trial Investigators. Transcatheter versus surgical aortic-valve replacement in high-risk patients. N Engl J Med. 2011 Jun 9;364(23):2187-98. d PMID 21639811
Identifiers
NCT: NCT06830499 · China Young TAVR Study