Montpellier university hospital
Montpellier, 34295, France
Location status: Recruiting
Location contact
Aurore UGHETTO, MD
CONTACT
Clément DELMAS, MD, PhD
CONTACT
NCT Number: NCT06644963
Myocardial infarction complicated by cardiogenic shock (AMICS) is associated with high morbidity and mortality, and devices like Impella® CP and Impella 5.0-5.5 are often used for hemodynamic support, either alone or combined with veno-arterial ECMO (ECMELLA). While recent studies suggest improved survival with Impella® in cardiogenic shock, complications remain common, particularly due to deep arterial access and the need for anticoagulation. Hemocompatibility-related adverse events (HRAEs) such as ischemia, bleeding (44%), hemolysis (32%), and stroke (13%) frequently occur. Achieving hemocompatibility between the patient's blood and the device is challenging, as pump flow, anticoagulation, and patient factors contribute to both thrombotic and hemorrhagic complications. Despite advances, further research is required to better understand and reduce these risks in clinical practice.
Interested in participating?
Request Info18 year and older
All sexes
Observational
Montpellier, 34295, France
Location status: Recruiting
Aurore UGHETTO, MD
CONTACT
Clément DELMAS, MD, PhD
CONTACT
Myocardial infarction complicated by cardiogenic shock (AMICS) is associated with high rates of morbidity and mortality. To provide hemodynamic support in these cases, intravascular microaxial left ventricular assist devices, such as Impella® CP and Impella 5.0-5.5, are frequently used, either alone in cardiogenic shock (CS) or in combination with veno-arterial ECMO (known as ECMELLA) for left ventricular unloading. Recent observational studies and randomized controlled trials have suggested improved survival rates with the use of Impella® in cardiogenic shock patients.
Despite the growing use of these devices, complications in clinical practice remain frequent. Due to the need for deep arterial access (14F for Impella CP and 21F for Impella 5.0) via femoral or axillary routes, as well as the necessity of anticoagulation, hemocompatibility-related adverse events (HRAEs) such as ischemic complications and bleeding are common, occurring in 18% and 44% of patients, respectively. Hemolysis has been reported in up to 32% of cases, while stroke affects up to 13%. Other less frequent complications include device deployment issues, pump thrombosis, implant site infections, and sepsis, all contributing to increased healthcare costs.
Achieving hemocompatibility between the patient's blood and the device remains a significant challenge despite advances in Impella technology. Balancing prothrombotic and prohemorrhagic forces at the blood/device interface is complex. This interface activates the coagulation cascade, generating a prothrombotic state, damaging von Willebrand multimers, and leading to hemolysis. The interplay of pump flow, pump speed, patient risk factors, and clinical management (anticoagulation) further complicates hemocompatibility, often resulting in thrombotic or bleeding events such as hemorrhagic stroke, circuit clots, or ischemic stroke.
Although the occurrence of HRAEs is well documented, particularly in the case of severe events like stroke, there is still an incomplete understanding of the factors driving these complications in modern clinical practice. Further research is needed to better delineate the risk factors and improve outcomes for patients receiving Impella support.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Impella (5, 5.5 or CP) as an isolated circulatory support or combined with others Temporary Mechanical Circulatory Support
Time frame: From start of hospitalization until hospital discharge, assessed up to 3 month
Incidence of HRAEs with Impella (CP and/or 5 - 5.5) : Bleeding events (BARC >3b) and Thrombosis events ( ischemic stroke + pump thrombosis)
Time frame: From start of hospitalization until hospital discharge, assessed up to 3 month
In-hospital all-cause mortality
Time frame: From start of hospitalization until hospital discharge assessed up to 3 month
Hemolysis; Bacteremia; Infection of the device insertion site or the device itself
Time frame: From start of hospitalization until hospital discharge, assessed up to 3 month
Total duration of invasive mechanical ventilation
Time frame: From start of hospitalization until hospital discharge, assessed up to 3 month
Total and in intensive care unit lenght of stay
Time frame: From start of hospitalization until hospital discharge assessed up to 3 month
Rate and % of patients with myocardial recovery, ventricular assist device or/and heart transplantation
Contact information is provided by the study sponsor or research team.
Aurore UGHETTO, MD
CONTACT
Clément DELMAS, MD, PhD
CONTACT
University Hospital, Montpellier
Other
Acronym: IMPACT
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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