Why the study?
Effective treatment for HFpEF remains an unmet need, and translating left atrial decompression into clinical practice has been limited by patient heterogeneity and lack of tailored devices.
Does left atrial decompression with the HeartMate 3 device demonstrate anatomic compatibility and hemodynamic efficacy in an in silico and in vitro model of HFpEF?
Does left atrial decompression with the HeartMate 3 device demonstrate anatomic compatibility and hemodynamic efficacy in an in silico and in vitro model of HFpEF?
Left atrial decompression using the HeartMate 3 device appears anatomically feasible and hemodynamically effective in an in silico and in vitro model of HFpEF.
Feasibility of virtual HM3 implantation for LA decompression in HFpEF is high; leaves open clinical efficacy and requires prospective trials.
Effective treatment of heart failure with preserved ejection fraction (HFpEF) remains an unmet medical need. Although left atrial decompression using mechanical circulatory support devices was previously suggested, the heterogeneous HFpEF population and the lack of tailored devices have prevented the translation into clinical practice. This study aimed to evaluate the feasibility of left atrial decompression in HFpEF patients with a HeartMate 3 (HM3, Abbott Inc, Chicago, USA) in silico and in vitro . Anatomic compatibility of the HM3 pump was assessed by virtual device implantation into the left atrium through the left atrial appendage (LAA) and left atrial posterior wall (LAPW) of 10 HFpEF patients. Further, the efficacy of left atrial decompression was investigated experimentally in a hybrid mock loop, replicating the hemodynamics of an HFpEF phenotype at rest and exercise conditions. Virtual implantation without substantial intersection with surrounding tissues was accomplished through the LAA in 90% and 100% through the LAPW. Hemodynamic analysis in resting conditions demonstrated normalization of left atrial pressures without backflow at a pump speed of around 5400 rpm, whereas a range of 6400-7400 rpm was required during exercise. Therefore, left atrial decompression with the HM3 may be feasible in terms of anatomic compatibility and hemodynamic efficacy.
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He et al. (2023) studied this question.
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