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NCT Number: NCT05487612

MiECC Versus Conventional Cardiopulmonary Bypass in Cardiac Surgery (MiECS)

MiECS is one of the largest multicentre randomised controlled trials on extracorporeal circulation conducted under the auspices of Minimal Invasive Extracorporeal Technologies International Society (MiECTiS). It is designed to ultimately address the emerging effectiveness of MiECC systems in the light of modern perfusion practice worldwide. The primary hypothesis is that MiECC, as compared to conventional CPB (cCPB), reduces the proportion of patients experiencing serious perfusion-related postoperative morbidity after cardiac surgery. The study will be led by the Clinical Research Unit of the Special Unit for Biomedical Research and Education (SUBRE), Aristotle University of Thessaloniki School of Medicine in Greece (AUSoM) with Chief Investigator Professor Kyriakos Anastasiadis, who is a key-opinion-leader in the field of MiECC, founder and Executive Board of MiECTiS.

Recruiting

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Key information

Age range

18 year–85 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Perfusion Services University Health Network, Toronto General Hospital, Toronto, Canada

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About this study

Despite a fall in mortality rates over the past decade, patients having cardiac surgery continue to experience serious postoperative complications. The risk of serious and relatively common surgical complications is often a consequence of stopping the heart during the operation, using the heart and lung machine (conventional cardiopulmonary bypass; cCPB), and restarting and reperfusing the heart at the end of the operation. Although several strategies have been developed to reduce such complications, they still occur and can be life threatening; they also increase the length of time a patient spends in the hospital.

Miniaturised heart lung machines (minimally invasive extracorporeal circulation; MiECC) have been developed with the aim of reducing the number of postoperative complications arising from using cCPB. Because of the variety of miniaturised systems that have been evaluated, the different types of patients and outcomes investigated, and the poor quality of previous studies, the effectiveness of MiECC in reducing postoperative complications has not been established and most hospitals continue to use cCPB.

Our primary hypothesis is that, compared to cCPB, using a MiECC system during cardiac surgery reduces the proportion of patients having one of several serious postoperative complications (death, myocardial infarction, stroke, acute kidney injury, reintubation, tracheostomy, mechanical ventilation for more than 48 hours, or reoperation) up to 30 days after surgery. In addition, the investigators hypothesise that MiECC reduces the amount of blood products transfused, time to discharge from the cardiac intensive care unit and hospital and the health care resources used during the hospital stay.

Study investigators propose to carry out a large, multicentre randomised controlled trial in 10 to 15 cardiac surgery centres worldwide. Patients will be eligible if they are having coronary artery bypass surgery, aortic valve replace or both using a heart lung machine without circulatory arrest. Centres may recruit patients having all, or a subset of, operation types.

It is expected that 20 % to 23% of patients will experience one or more of the serious complications (the primary outcome). In order to be able confidently to detect a 30% relative reduction in the risk of this outcome, the investigators plan to recruit 1,300 participants across all sites.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • All patients undergoing any elective or urgent coronary artery bypass grafting (CABG), aortic valve replacement (AVR) or CABG+AVR surgery using extracorporeal circulation without circulatory arrest.

Exclusion criteria

  • Requirement for emergency or salvage operation.
  • Requirement for major aortic surgery (e.g. aortic root replacement).
  • Contraindication or objection (e.g. Jehovah's Witnesses) to transfusion of blood products.
  • Congenital or acquired platelet, red cell or clotting disorders (patients with iron deficient anaemia will not be excluded).
  • Inability to give informed consent for the study (e.g. learning or language difficulties).

Treatment and study plan

Minimal Invasive Extracorporeal Circulation

Device

Cardiac surgery with Minimal Invasive Extracorporeal Circulation (MiECC).

Conventional cardiopulmonary bypass

Device

Cardiac surgery with conventional cardiopulmonary bypass (cCPB).

Primary outcomes

  1. Composite outcome of postoperative serious adverse events

    Time frame: 30 days after randomization following the index admission

    Incidence of: death, postoperative myocardial infarction according to Fourth Universal Definition of myocardial infarction, stroke, all stage acute kidney injury, as defined with AKI Network criteria, Re-intubation, need for mechanical ventilation for > 48 hours, including multiple episodes when separated by more than 12 hours, reoperation and septicaemia confirmed by positive blood culture.

Secondary outcomes

  1. All-cause mortality

    Time frame: 30 days after randomization following the index admission

    All-cause mortality

  2. New-onset postoperative atrial fibrillation

    Time frame: Through initial hospital admission from surgery to initial discharge from hospital, an average of 1 week.

    Incidence of new-onset postoperative atrial fibrillation

  3. Rate of red blood cells transfusion

    Time frame: 30 days after randomization following the index admission

    Units of red blood cells transfused

  4. Rate of platelet transfusion

    Time frame: 30 days after randomization following the index admission

    Units of platelets transfused

  5. Rate of fresh frozen plasma transfusion

    Time frame: 30 days after randomization following the index admission

    Units of fresh frozen plasma transfused

  6. Rate of cryoprecipitate transfusion

    Time frame: 30 days after randomization following the index admission

    Units of cryoprecipitate transfused

  7. Activated Factor VII administration

    Time frame: 30 days after randomization following the index admission

    Incidence of activated factor VII administration

  8. Fibrinogen administration

    Time frame: 30 days after randomization following the index admission

    Incidence of fibrinogen administration

  9. Prothrombin complex concentrate administration

    Time frame: 30 days after randomization following the index admission

    Incidence of prothrombin complex concentrate administration

  10. Time to discharge from cardiac ICU

    Time frame: Through initial hospital admission from surgery to initial discharge from hospital, an average of 1 week.

    Time to discharge from cardiac ICU

  11. Time to discharge from hospital

    Time frame: Through initial hospital admission from surgery to initial discharge from hospital, an average of 1 week.

    Time to discharge from hospital

  12. Delirium

    Time frame: Up to 5 days postoperatively

    Incidence of postoperative delirium

  13. Health-Related Quality of Life (HRQoL)

    Time frame: 90 days after randomization

    HRQoL assessed with EQ-5D questionnaire

Study contacts

Contact information is provided by the study sponsor or research team.

Georgios Papazisis, Assoc. Prof.

CONTACT

[email protected]

+30 2310999323

Sponsors and collaborators

Lead sponsor

Aristotle University Of Thessaloniki

Other

Collaborators

  • Minimal Invasive Extracorporeal Technologies International Society (MiECTiS)

Registry information

Official study title

Minimally Invasive Extracorporeal Circulation Versus Conventional Cardiopulmonary Bypass in Patients Undergoing Cardiac Surgery (MiECS): a Randomised Controlled Trial

Acronym: MiECS

Important dates

Study start
2022
Primary completion
2028
Study completion
2029
First posted
Aug 4, 2022
Registry last updated
Mar 30, 2026

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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