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Utilizing Percutaneous Ventricular Assist Devices in Acute Myocardial Infarction Complicated by Cardiogenic Shock
Published on: June 12, 2021
Impella CP use in patients with non-ischaemic cardiogenic shock
Octavian Maniuc1, Tim Salinger1, Fabian Anders1
1Department of Internal Medicine I, University Hospital Würzburg, Würzburg, Germany.
Insights
The Impella CP heart pump shows promise for treating non-ischaemic cardiogenic shock, offering a potential bridge to recovery. This study found similar outcomes compared to its use in ischaemic shock, suggesting broader clinical utility.
Area of Science:
- Cardiology
- Mechanical Circulatory Support
Background:
- The Impella CP is primarily used for acute ischaemic cardiogenic shock.
- Its utility in non-ischaemic cardiogenic shock requires further investigation.
Purpose of the Study:
- To compare the clinical effectiveness of the Impella CP in patients with non-ischaemic versus ischaemic cardiogenic shock.
- To evaluate the Impella CP as a bridge to recovery in non-ischaemic heart failure.
Main Methods:
- Retrospective analysis of patients receiving Impella CP between 2013-2017.
- Age-matched comparison of 25 non-ischaemic shock patients with 50 ischaemic shock patients.
- Inclusion criteria: refractory haemodynamic instability, severe LV dysfunction, lactate >2.0 mmol/L.
Main Results:
- Non-ischaemic group had lower troponin T and LDH levels at baseline.
- Comparable age, GFR, CRP, catecholamine index, and lactate levels between groups.
- Similar rates of haemodialysis and ECMO transition.
- No significant difference in 30-day survival (48% vs 30%) or in-hospital mortality (66.7% vs 74%), with a trend towards better survival in the non-ischaemic group.
Conclusions:
- The Impella CP device may be a valuable therapeutic option for non-ischaemic cardiogenic shock.
- It can serve as a bridge to recovery in both ischaemic and non-ischaemic aetiologies.
- Further research is warranted to confirm these findings.
Aims:
From the various mechanical cardiac assist devices and indications available, the use of the percutaneous intraventricular Impella CP pump is usually restricted to acute ischaemic shock or prophylactic indications in high-risk interventions. In the present study, we investigated clinical usefulness of the Impella CP device in patients with non-ischaemic cardiogenic shock as compared with acute ischaemia.
Methods And Results:
In this retrospective single-centre analysis, patients who received an Impella CP at the University Hospital Würzburg between 2013 and 2017 due to non-ischaemic cardiogenic shock were age-matched 2:1 with patients receiving the device due to ischaemic cardiogenic shock. Inclusion criteria were therapy refractory haemodynamic instability with severe left ventricular systolic dysfunction and serum lactate >2.0 mmol/L at implantation. Basic clinical data, indications for mechanical ventricular support, and outcome were obtained in all patients with non-ischaemic as well as ischaemic shock and compared between both groups. Continuous variables are expressed as mean ± standard deviation or median (quartiles). Categorical variables are presented as count and per cent. Twenty-five patients had cardiogenic shock due to non-ischaemic reasons and were compared with 50 patients with cardiogenic shock due to acute myocardial infarction. Resuscitation rates before implantation of Impella CP were high (32 vs. 42%; P = 0.402). At implantation, patients with non-ischaemic cardiogenic shock had lower levels of high-sensitive troponin T (110.65 [57.87-322.1] vs. 1610 [450.8-3861.5] pg/mL; P = 0.001) and lactate dehydrogenase (377 [279-608] vs. 616 [371.3-1109] U/L; P = 0.007), while age (59 ± 16 vs. 61.7 ± 11; P = 0.401), glomerular filtration rate (43.5 [33.2-59.7] vs. 48 [35.75-69] mL/min; P = 0.290), C-reactive protein (5.17 [3.27-10.26] vs. 10.97 [3.23-17.2] mg/dL; P = 0.195), catecholamine index (30.6 [10.6-116.9] vs. 47.6 [11.7-90] μg/kg/min; P = 0.663), and serum lactate (2.6 [2.2-5.8] vs. 2.9 [1.3-6.6] mmol/L; P = 0.424) were comparable between both groups. There was a trend for longer duration of Impella support in the non-ischaemic groups (5 [2-7.5] vs. 3 [2-5.25] days, P = 0.211). Rates of haemodialysis (52 vs. 47%; P = 0.680) and transition to extracorporeal membrane oxygenation (13.6 vs. 22.2%; P = 0.521) were comparable. No significant difference was found regarding both 30 day survival (48 vs. 30%; P = 0.126) and in-hospital mortality (66.7 vs. 74%; P = 0.512), although there was a trend for better survival in the non-ischaemic group.
Conclusions:
These data suggest that temporary use of the Impella CP device might be a useful therapeutic option for bridge to recovery not only in ischaemic but also in non-ischaemic cardiogenic shock.
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