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How to Improve the Outcomes of LVAD Implantation?
Grzegorz Wasilewski1, Anna Kędziora1, Izabela Górkiewicz-Kot1
1Department of Cardiovascular Surgery and Transplantology, Jagiellonian University, Medical College, John Paul II Hospital, Cracow, Poland.
Insights
Left ventricular assist device (LVAD) implantation is crucial for end-stage heart failure patients awaiting transplantation. Proper patient selection and procedure timing significantly improve outcomes for destination therapy.
Area of Science:
- Cardiology
- Cardiac Surgery
- Mechanical Circulatory Support
Background:
- Heart transplantation is the gold standard for end-stage heart failure.
- Donor organ shortages drive interest in mechanical circulatory support.
- Left ventricular assist devices (LVADs) serve as bridge-to-transplant and destination therapy.
Purpose of the Study:
- Analyze indications, comorbidities, and operative techniques for LVAD implantation.
- Evaluate complications and follow-up outcomes in LVAD patients.
- Determine optimal timing for LVAD procedures.
Main Methods:
- Retrospective analysis of 78 LVAD implantations between 2015-2020.
- Inclusion of patient demographics, clinical characteristics, and pre-operative data.
- Assessment of post-operative outcomes, complications, and follow-up duration.
Main Results:
- 78 patients (92% male, median age 57) received LVADs.
- Common etiologies included dilated (60%) and ischemic (39%) cardiomyopathy.
- 82% were NYHA class IV, with median LVEF of 14.5%; 65% had pulmonary hypertension.
- In-hospital mortality was 15%; median follow-up was 19.5 months.
Conclusions:
- Careful patient selection is vital for LVAD destination therapy.
- Optimal timing of LVAD implantation is critical for successful outcomes.
- LVADs offer a viable treatment option for end-stage heart failure.
Background:
Heart transplantation is the treatment of choice for selected patients with end-stage heart failure. Persistent donor organ shortage has resulted in a growing interest in mechanical circulatory support not only as a bridge to transplantation but also as a destination therapy.
Methods:
The aim of the study was to analyze the indications, comorbidities, operative technique, complications, and follow-up of all patients undergoing left ventricular assist device implantation in one of the most experienced clinics in Poland between 2015 and 2020 and state the best timing of the procedure.
Results:
This study included 78 individuals (72 males, 92%; 6 females, 8%) with a median age of 57 years (range, 50-62 years). The median body mass index was 27.12 (range, 25.2-29.5). The etiology of cardiomyopathy was ischemic (n = 31, 39%), dilated cardiomyopathy (n = 47, 60%), and others. Sixty-four patients presented with New York Heart Association class IV (82%). Leading heart rhythm was sinus (n = 31, 40%) and pacemaker rhythm (n = 47, 60%). Sixty-four patients had implantable cardioverter defibrillator implantation (82%). Preoperative echocardiography revealed a median left ventricle ejection fraction of 14.5% (range, 10%-15%) and LV dimension 7.55 cm (range, 6.9-8.275 cm). In 51 patients (65%), imaging confirmed pulmonary hypertension. The intensive care unit stay was 6 days (range, 4.25-11.75 days). Median time to extubation was 25 hours (range, 23.75-70 hours). The median time to discharge was 31.5 days (range, 25-31.85 days). In-hospital mortality was 12 patients (15%). Median follow-up time was 19.5 months (range, 11.25-31 months) months, with the longest follow-up of about 53 months.
Conclusions:
Appropriate selection of candidates and timing of left ventricular assist device implantation are critical for improved outcomes of destination therapy.
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