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Updated: Feb 28, 2026

In Vitro Thrombosis Test for Ventricular Assist Devices
Published on: March 21, 2025
Thrombolytics in VAD management - A single-center experience
N Nair1, A A Schmitt1, E M Rau1
1Providence Spokane Heart Institute, Providence Sacred Heart Medical Center, Spokane, WA 99204, United States.
Insights
Tissue plasminogen activator (TPA) effectively treats left ventricular assist device (LVAD) thrombus, showing a 70% success rate with good survival and no increased stroke risk. This approach offers a promising solution for managing device-related complications.
Area of Science:
- Cardiology
- Biomedical Engineering
- Pharmacology
Background:
- Mechanical circulatory support devices, such as left ventricular assist devices (LVADs), are increasingly used.
- Device thrombus remains a significant challenge in patients with LVADs.
- Assessing the safety and efficacy of thrombolytic therapy in LVAD patients is crucial.
Purpose of the Study:
- To evaluate the safety and efficacy of tissue plasminogen activator (TPA) for treating thrombus in durable mechanical assist devices.
- To analyze outcomes in patients receiving TPA for LVAD-related thrombus.
Main Methods:
- Retrospective analysis of 154 LVAD patients (2005-2014).
- Diagnosis of LVAD thrombus based on elevated lactate dehydrogenase, clinical signs, echocardiography, and pump power surges.
- TPA protocol involved an initial bolus and infusion, with potential for extended treatment.
Main Results:
- A 70% success rate was observed with TPA, defined by resolution of hemolysis and clinical symptoms without LVAD exchange at 30 days.
- Survival at 30 days was 95% in the TPA group.
- Hemorrhagic stroke rates were similar between the TPA and control groups (OR = 0.92).
Conclusions:
- The described TPA protocol demonstrated consistent success in managing LVAD thrombus.
- The study highlights the need for larger, prospective studies to compare mechanical assist devices and optimize thrombolytic use.
- This research provides a foundation for future investigations into tailored thrombolytic strategies for LVAD patients.
Background:
With continued increase in the use of mechanical circulatory support, the incidence of device thrombus remains a challenge. This study is a retrospective analysis of data at a single center to assess the safety and efficacy of thrombolytic use in durable mechanical assist devices.
Methods:
Data was analyzed retrospectively from 154 patients who underwent left ventricular assist device (LVAD) implantation from 1/1/2005 to 6/30/2014. The HMII device was implanted in 131 patients while 23 received the HVAD. LVAD thrombus was diagnosed when lactate dehydrogenase levels exceeded 1000 units/l accompanied by clinical signs of hemolysis and heart failure, echocardiographic data and surges in pump power. TPA (tissue plasminogen activator) protocol consisted of a 5 mg intravenous bolus followed by 3 mg/h infusion in normal saline for 10 h. If symptoms persisted another cycle of TPA at 1 mg/h was continued up to 48 h.
Results:
The TPA group had a 70% success rate. Success was defined as complete resolution of hemolysis and clinical symptoms with no requirement for LVAD exchange at 30 days. 95% survival was noted at 30 days and 90% were free of a hemorrhagic stroke in the TPA group. The rates of hemorrhagic strokes in the TPA group and the control group were not different (OR = 0.92).
Conclusion:
The TPA protocol described here was successful consistently. Though this study is limited by its size and retrospective nature it leads the way for larger studies to generate more robust comparisons between different types of mechanical assist devices as well as the tailored use of thrombolytics in this patient population.
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