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Transapical Beating-heart Septal Myectomy in Patient With Hypertrophic Obstructive Cardiomyopathy

Minimally Invasive Transapical Septal Myectomy in the Beating Hearts for the Treatment of Hypertrophic Obstructive Cardiomyopathy: Safety and Efficacy Results of a Phase I First-in-man Clinical Trial

Status
Recruiting
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05332691
Enrollment
1000
Registered
2022-04-18
Start date
2022-04-15
Completion date
2025-12-30
Last updated
2024-11-07

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Hypertrophic Obstructive Cardiomyopathy

Keywords

Hypertrophic Obstructive Cardiomyopathy, Septal Myectomy, Systolic Anterior Motion, Left Ventricle Outflow Tract Obstruction, Mitral Regurgitation, Transapical, Off-pump, Minimally invasive

Brief summary

The primary purpose of this study is to evaluate the feasibility, the safety and the efficacy of the transapical beating-heart septal myectomy for the treatment of hypertrophic obstructive cardiomyopathy. This is a prospective, single-arm, single-center, first-in-man study.

Detailed description

Surgical septal myectomy remains the gold standard for the treatment of hypertrophic obstructive cardiomyopathy. However, conventional septal myectomy is hindered by the demanding expertise that is needed to sufficient relieve the obstruction of the left ventricle outflow tract while guarantee safety. To increase the visualization and minimize the surgical injury of conventional septal myectomy, we have invented a novel beating-heart myectomy device. Through a mini-thoractomy, septal myectomy could be accomplished via a transapical access in the beating heart using the beating-heart myectomy device. The whole process of resection is monitored, navigated, and evaluated by real-time transesophageal and transthoracic echocardiography. Left ventricle outflow tract gradient and the grade of mitral regurgitation are evaluated each time after resection. Multiple resections are performed to tailor sufficient relief of left ventricle outflow tract obstruction and mitral regurgitation, while preventing iatrogenic injuries. After transapical beating-heart septal myectomy, patients is scheduled to be seen for follow-up visits at discharge (about 7 days post operation) and 3 months.

Interventions

We have invented a beating-heart myectomy device.Through a minimally invasive intercostal incision, septal myectomy could be accomplished via a transapical access in the beating heart using the device. The whole process of resection is monitored, navigated, and evaluated by real-time transesophageal and transthoracic echocardiography. Left ventricle outlet tract gradient and the grade of mitral regurgitation are evaluated each time after resection. Multiple resections are performed to tailor the muscular resection for sufficient relief of left ventricle outlet tract obstruction and mitral regurgitation, while preventing iatrogenic injuries.

Sponsors

Xiang Wei
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
TREATMENT
Masking
NONE

Intervention model description

Beating-heart myectomy device

Eligibility

Sex/Gender
ALL
Age
8 Years to No maximum
Healthy volunteers
No

Inclusion criteria

1. Patients whose resting or provoked left ventricular outflow tract gradient \> 50 mmHg, and maximal ventricular septal wall thickness ≥ 15 mm. 2. Patients with heart function of New York Heart Association ≥ class II. 3. Patients with drug-refractory symptoms or intolerable to pharmaceutical therapies. 4. Patients who was informed the nature of the clinical trial, consented to participate in all of the activities of the clinical trial, and signed the informed consent form.

Exclusion criteria

1. Patients who were pregnant. 2. Patients who had concomitant diseases such as intrinsic valvular disease or coronary artery disease that needed open-heart surgery. 3. Patients who had severe heart failure with left ventricle ejection fraction \< 40%. 4. Patients whose estimated life expectancy \< 12 m. 5. Patient who were non-compliant. 6. Patients under circumstances which were considered not suitable or prohibitive for participating the clinical trial at the discretion of the attending medical team and the researchers.

Design outcomes

Primary

MeasureTime frameDescription
All-cause mortality3 monthsDeath from any cause during the observation period.
Procedural success3 monthsResting left ventricle outflow tract gradients \< 30 mmHg, provoked left ventricle outflow tract gradients \< 50 mmHg, and mitral regurgitation (MR) ≤ grade 1+.

Secondary

MeasureTime frameDescription
Left ventricle mass3 monthsLeft ventricle mass index (the ratio of left ventricle mass to body weight) as measured by cardiac magnetic resonance.
Left ventricle volume7 days and 3 monthsLeft ventricle end-diastolic volume as measured by echocardiography.
Cardiac diastolic function7 days and 3 monthsThe ratio between early mitral inflow velocity and mitral annular early diastolic velocity ( E/e') as measured by echocardiography.
Left atria volume7 days and 3 monthsThe left atria volume as measured by echocardiography.
Major adverse cardiovascular and cerebral events3 monthsIn-hospital mortality, atrioventricular block that need permanent pacemaker implantation, sternotomy conversion, iatrogenic ventricular septal perforation, iatrogenic valvular injury, imaging examination-validated cerebral complications.
Device success1 daySuccessful accession, delivery, and retrieval of the resection device, successful resection of the septal myocardium, resting left ventricle outflow tract gradient less than 50 mmHg and mitral regurgitation (MR) ≤ grade 2+ during operation after resection, and free from conversion to midline thoracotomy during operation.
6-minute walking test3 months6-minute walking test. A longer distance means better heart function.
Heart function-associated quality of life7 days and 3 monthsScore of the Kansas City Cardiomyopathy Questionnaire. A higher score means better heart function.
Left ventricular outflow tract gradient7 days and 3 monthsLeft ventricular outflow tract gradient as measured by echocardiography.
Evaluation of the mitral valve7 days and 3 monthsGrade of mitral regurgitation and systolic anterior motion as measured by echocardiography.
Left ventricular outflow tract diameter7 days and 3 monthsLeft ventricular outflow tract diameter as measured by echocardiography.
New York Heart Association class7 days and 3 monthsNew York Heart Association class, including grade I, grade II, grade III, grade IV. A higher grade means worse heart function.
Septal thickness7 days and 3 monthsBasal and mid septal thickness as measured by echocardiography.

Countries

China

Contacts

Primary ContactXiang Wei, M.D.
xiangwei@tjh.tjmu.edu.cn+8613995525956
Backup ContactJing Fang, M.D.
jingfang@hust.edu.cn+8613296640596

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 10, 2026