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Use of a Percutaneous Ventricular Assist Device/Left Atrium to Femoral Artery Bypass System for Cardiogenic Shock
Published on: August 16, 2021
A case of a giant cell myocarditis that developed massive left ventricular thrombus during percutaneous
Yusuke Takei1, Yutaka Ejima2, Hiroaki Toyama1
1Department of Anesthesiology, Tohoku University Hospital, 1-1 Seiryomachi, Aoba-ku, Sendai, 980-8574 Japan.
Insights
Giant cell myocarditis is a rare, aggressive heart condition. This case highlights the risk of left ventricular thrombosis during mechanical circulatory support (percutaneous cardiopulmonary support) in these patients.
Area of Science:
- Cardiology
- Cardiovascular Surgery
- Intensive Care Medicine
Background:
- Giant cell myocarditis is a rare cardiac condition characterized by multinucleated giant cells in the myocardium.
- It often leads to rapid progression to fulminant heart failure and carries a poor prognosis.
- Severe cases presenting with cardiogenic shock may necessitate mechanical circulatory support, such as percutaneous cardiopulmonary support (PCPS), which carries potential complications.
Purpose of the Study:
- To report a case of giant cell myocarditis with left ventricular thrombus formation during PCPS.
- To discuss the potential mechanisms and implications of this complication in the context of mechanical circulatory support.
Main Methods:
- A 60-year-old male patient with cardiogenic shock was treated with inotropic agents and intra-aortic balloon pumping, followed by PCPS.
- Endomyocardial biopsy confirmed giant cell myocarditis.
- Anticoagulant therapy was initiated and intensified due to thrombus formation, complicated by intracranial hemorrhage.
Main Results:
- The patient developed complete atrioventricular block and subsequent left ventricular thrombus formation despite anticoagulant therapy.
- Intensified anticoagulation led to intracranial hemorrhage.
- The patient did not recover from heart failure and died 16 days after admission.
Conclusions:
- Giant cell myocarditis with PCPS can lead to significant left ventricular thrombosis, exacerbated by factors like reduced myocardial contractility, increased afterload, and atrioventricular block.
- Mechanical circulatory support, potentially a ventricular assist device, may be crucial for improving outcomes in giant cell myocarditis.
- Rapid establishment of appropriate mechanical circulatory support is vital for managing these critically ill patients and preventing complications.
Background:
Giant cell myocarditis, characterized by infiltration of multinucleated giant cells in the myocardium, is a rare type of myocarditis. It often progresses rapidly into fulminant heart failure and indicates a poor prognosis. When a patient with giant cell myocarditis develops into severe myocarditis presenting with a cardiogenic shock, we should use a percutaneous cardiopulmonary support (PCPS), which could occur complications. We experienced a patient with giant cell myocarditis, who developed left ventricular thrombus formations during the circulation support therapy with PCPS for cardiogenic shock.
Case Presentation:
A 60-year-old man who developed a cardiogenic shock was transferred to our hospital. After the admission, inotropic agents were increased and an intra-aortic balloon pumping was started. But these therapies did not improve his hemodynamic status. He was placed PCPS. Then, he underwent endomyocardial biopsy and was diagnosed with giant cell myocarditis. On the next morning, he developed complete atrioventricular block, and subsequently, thrombus formations occurred in his left ventricular outlet tract and Valsalva sinus despite an anticoagulant therapy. Thereafter, we intensified the anticoagulant therapy to prevent further thrombus formation, but he developed an intracranial hemorrhage. He did not recover from heart failure and died 16 days after the admission.
Conclusions:
We present a patient with giant cell myocarditis who developed widespread thrombosis in the left ventricle during the circulatory support with PCPS, despite anticoagulant therapy. In this case, decreased left myocardial contractility caused by giant cell myocarditis and increased left ventricular afterload by the retrograde perfusion from the PCPS induced the thrombotic tendency and congestion in the left ventricle. In addition, he developed complete atrioventricular block, which reduced the left ventricular ejection and enhanced the thrombus formation. Because patients with giant cell myocarditis have a low probability of spontaneous recovery, heart transplantation or ventricular assist device implantation may be required for circulatory support. We should establish mechanical circulatory support rapidly to improve the prognosis of patients with giant cell myocarditis. Moreover, a ventricular assist device, which can prevent both ventricular congestion and retrograde blood flow, might be suitable to prevent complications as this case.
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