Artificial polymer heart valves
DeviceThe experimental group will use polymer material surgical aortic valves(PoliaValve, Hearthill Medical) for aortic valve replacement
NCT Number: NCT06737757
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.
Trial opening soon.
Get Notified18 year and older
All sexes
Interventional
Not applicable
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
The experimental group will use polymer material surgical aortic valves(PoliaValve, Hearthill Medical) for aortic valve replacement
The control group will undergo aortic valve replacement using bovine pericardial aortic valve
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.
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.
Time frame: baseline and 12months following patient enrollment completion
Use echocardiography to evaluate the effective valve orifice area to assess the hemodynamic Performance.
Time frame: baseline and 12months following patient enrollment completion
Use echocardiography to evaluate the mean transvalvular pressure gradient.
Time frame: baseline and 12months following patient enrollment completion
Use echocardiography to measure the peak flow velocity.
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.
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.
Time frame: baseline and 12 months post-surgery
LVEF(%) change from baseline in postoperative echocardiography.
Time frame: baseline and 12 months post-surgery
LVESD(mm) change from baseline in postoperative echocardiography.
Time frame: baseline and 12 months post-surgery
LVEDD(mm) change from baseline in postoperative echocardiography.
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.
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.
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.
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.).
Contact information is provided by the study sponsor or research team.
Fanglin Lu, MD
CONTACT
Xiaoshen Yan
CONTACT
Suzhou Hearthill Medical Technology Co.,LTD
Industry
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
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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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