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NCT Number: NCT06737757

Clinical Trial Evaluating the Safety and Efficacy of Artificial Polymer Heart Valve for the Treatment of Aortic Valve Disease

The purpose of this study is to conduct the clinical investigation of the HeartHill Medical's polymer aortic valve, namely PoliaVavle,to collect evidence on the device's safety and performance. This prospective, multicenter, randomized controlled, non inferiority clinical trial is expected to enroll 198 subjects and conduct a 1:1 random grouping. The experimental group will use polymer material surgical aortic valves(PoliaVavle, HeartHill Medical, Suzhou China) for aortic valve replacement, while the control group will use bovine pericardial biological valves for aortic valve replacement.

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Key information

Age range

18 year and older

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • The subjects are aged ≥18 years old;
  • The subjects understand the nature and purpose of the study, voluntarily participate, and sign the informed consent form. They agree to comply with the trial requirements, cooperate with surgical treatment and follow-up, and consent to relevant follow-up inquiries and examinations;
  • The subjects have been confirmed to have severe aortic valve stenosis and/or regurgitation (also known as insufficiency) through echocardiography;
  • According to the 2020 ACC/AHA guidelines for the management of patients with valvular heart disease, the subjects meet the indications for surgical aortic valve replacement and preoperative assessment recommends surgical aortic valve replacement.

Exclusion criteria

  • Other valve diseases with surgical indications, such as severe mitral regurgitation, severe tricuspid regurgitation, moderate or greater mitral stenosis, or a history of previous aortic or other valve replacement surgery;
  • Other severe cardiovascular conditions with surgical indications, such as Stanford A-type aortic dissection, aortic sinus aneurysm (sinus diameter > 5.0cm), hypertrophic obstructive cardiomyopathy, diffuse three-vessel coronary artery disease, or placement of a left ventricular assist device in end-stage heart failure;
  • End-stage heart failure that is not reversible even with aortic valve surgery, such as severe left ventricular dysfunction (LVEF < 25%), or severe heart failure that cannot be corrected, or severe pulmonary hypertension assessed by right heart catheterization, with planned postoperative Impella, IABP, or left ventricular assist;
  • Preoperative decompensated heart failure, cardiogenic shock, malignant arrhythmias, etc., requiring mechanical circulatory support, mechanical ventilation, or emergency surgery;
  • Active endocarditis within the past 3 months or the presence of cardiac vegetations;
  • Severe acute myocardial infarction or history of cerebrovascular accidents within the past 3 months (excluding lacunar infarcts);
  • Severe renal insufficiency (glomerular filtration rate < 30mL/min) or end-stage renal disease requiring long-term dialysis;
  • Liver dysfunction or gastrointestinal malnutrition-related diseases;
  • Active bleeding, bleeding tendencies, or patients unable to receive anticoagulant therapy;
  • Severe respiratory or ventilatory dysfunction requiring continuous oxygen therapy;
  • Poor compliance or cognitive impairment (such as coma, Parkinson's disease, dementia, substance abuse), inability to follow study requirements or refusal to participate in follow-up visits;
  • Other conditions with an expected lifespan of less than 1 year, such as malignancies and immunodeficiency diseases;
  • Other situations not suitable for artificial aortic valve replacement or participation in this trial.

Treatment and study plan

Artificial polymer heart valves

Device

The experimental group will use polymer material surgical aortic valves(PoliaValve, Hearthill Medical) for aortic valve replacement

Bovine pericardial aortic valve

Device

The control group will undergo aortic valve replacement using bovine pericardial aortic valve

Primary outcomes

  1. Survival rate without prosthetic valve events at 12 months post-surgery

    Time frame: 12 months following patient enrollment completion

    Event-free survival of the prosthetic valve at 12 months postoperatively. The 12-month postoperative survival rate without artificial valve events. The event-free survival rate refers to patients who have not experienced any reasons for heart-related or non-heart-related deaths, moderate or severe artificial valve degeneration, or the need for re-intervention on the artificial valve within 12 months after surgery.

Secondary outcomes

  1. Surgical success rate

    Time frame: 1 month following patient enrollment completion

    Surgical success rate: Surgical success is defined as the prosthetic valve function within 1 month after surgery, the prosthetic valve has a transvalvular pressure difference of <20mmHg or a peak flow rate of < 3m/s, no moderate or above intravalvular regurgitation or paravalvular leakage), and the patient survives without re-intervention.

  2. Evaluation of postoperative artificial valve function(effective valve orifice area)

    Time frame: baseline and 12months following patient enrollment completion

    Use echocardiography to evaluate the effective valve orifice area to assess the hemodynamic Performance.

  3. Evaluation of postoperative artificial valve function(mean transvalvular pressure gradient)

    Time frame: baseline and 12months following patient enrollment completion

    Use echocardiography to evaluate the mean transvalvular pressure gradient.

  4. Evaluation of postoperative artificial valve function(peak flow velocity)

    Time frame: baseline and 12months following patient enrollment completion

    Use echocardiography to measure the peak flow velocity.

  5. Evaluation of postoperative artificial valve function(regurgitation)

    Time frame: baseline and 12months following patient enrollment completion

    Evaluate the presence or absence of intravalvular or paravalvular regurgitation during the follow-up period by echocardiography.

  6. New York Heart Association Assessment (NYHA)

    Time frame: baseline and 12months following patient enrollment completion

    Evaluate the New York Heart Association (NYHA) assessment to determine the improvement in cardiac function.The NYHA classification of heart function consists of four levels, ranging from Class I to Class IV, with heart function progressively deteriorating.

  7. Left ventricular ejection fraction(LVEF) change from baseline in postoperative echocardiographic

    Time frame: baseline and 12 months post-surgery

    LVEF(%) change from baseline in postoperative echocardiography.

  8. Left ventricular end-systolic diameter(LVESD) change from baseline in postoperative echocardiographic

    Time frame: baseline and 12 months post-surgery

    LVESD(mm) change from baseline in postoperative echocardiography.

  9. Left ventricular end-diastolic diameter(LVEDD) change from baseline in postoperative echocardiographic

    Time frame: baseline and 12 months post-surgery

    LVEDD(mm) change from baseline in postoperative echocardiography.

  10. BNP or NT-proBNP

    Time frame: baseline and 12 months following patient enrollment completion

    Measure BNP or NT-proBNP to get the changes in postoperative cardiac function from baseline.

Other outcomes

  1. The incidence of device-related adverse events

    Time frame: 12months following patient enrollment completion

    The incidence of device-related adverse events: Valve-related complications include moderate or greater structural valve degeneration, valve thrombosis, valve-related thromboembolism, severe bleeding (due to anticoagulant use), severe paravalvular leak, and prosthetic valve endocarditis.

  2. Surgical adverse event rate

    Time frame: 12months following patient enrollment completion

    Surgical adverse event rate: Surgical complications include severe lung infections, mediastinal or incision infections, postoperative severe hypotension, perioperative stroke, new-onset atrial fibrillation, new-onset complete atrioventricular block, acute kidney injury or worsening renal function requiring renal replacement therapy, severe bleeding, and cardiac tamponade.

  3. Incidence of structural valve degeneration

    Time frame: 12months following patient enrollment completion

    Incidence of structural valve degeneration: Structural valve degeneration refers to valve stenosis and/or regurgitation due to structural abnormalities of the valve itself (such as tearing, shedding, calcification, fibrosis, deformation of the valve frame, and rupture of the connecting parts between the valve components) as determined by reoperation or clinical examination (e.g., echocardiography, etc.).

Study contacts

Contact information is provided by the study sponsor or research team.

Fanglin Lu, MD

CONTACT

[email protected]

86-021-63240090

Xiaoshen Yan

CONTACT

[email protected]

86-0512-87662295

Sponsors and collaborators

Lead sponsor

Suzhou Hearthill Medical Technology Co.,LTD

Industry

Registry information

Official study title

Prospective, Multicenter, Randomized Controlled, Non-Inferiority Clinical Trial Evaluating the Safety and Efficacy of Artificial Polymer Heart Valve for the Treatment of Aortic Valve Disease

Important dates

Study start
2024
Primary completion
2026
Study completion
2029
First posted
Dec 17, 2024
Registry last updated
Dec 30, 2024

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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