Endothelial Dysfunction, Fluid Overload, Hemolysis
Conditions
Keywords
Microcirculation, Cardiopulmonary bypass, Colloid oncotic pressure, Hemodilution, Hemolysis
Brief summary
Acute microcirculatory perfusion disturbances is common in critical illness and associated with increased morbidity and mortality. Recent findings by our group showed that microcirculatory perfusion is disturbed during cardiac surgery with cardiopulmonary bypass (CPB) and remain disturbed up to 72 (seventy two) hours after surgery. A cardiopulmonary bypass is a machine which takes over heart and lung function, during the procedure. The disturbed microcirculation is associated with organ dysfunction induced by cardiac surgery using CPB, which is frequently seen (up to forty two percent, 42%) and results in a six-fold increase in mortality rate. The underlying cause of disturbed microcirculation is a higher endothelial permeability and vascular leakage and are a consequence of systemic inflammation, hemodilution (dilution of blood), hypothermia and hemolysis (breakdown of red blood cells). To gain the knowledge regarding disturbed microcirculation the investigators previously showed that hemodilution attributes to this disturbed perfusion. Hemodilution lowers colloid oncotic pressure (COP). Also, COP is affected by free hemoglobin, which increases with hemolysis and attributes to a disturbed microcirculation following CPB. This is interesting, as to the best of our knowledge, the effect of minimizing hemodilution and hemolysis during cardiac surgery on the microcirculatory perfusion has never been investigated, but could be the key factor in reducing organ dysfunction.
Detailed description
In this project the investigators focus on reducing microcirculatory perfusion disturbances by exploring therapeutic approaches with different prime fluid strategies, by acting on COP (part I) and free hemoglobin scavenging with human albumin (part II). In part I, patients undergoing elective coronary artery bypass graft (CABG) surgery with cardiopulmonary bypass will be randomized in three groups receiving different prime fluid strategies. The study endpoint is the reduction in functional capillary density during the perioperative period. Sublingual microcirculatory measurements and blood sampling will take place after induction of anesthesia, during and after surgery to determine microcirculatory perfusion and parameters for hemodilution, hemolysis, COP, markers for endothelial damage and glycocalyx shedding. Measurements start on the day of surgery and end one day after surgery. For part I see trial registration: PRIME, part I. In part II, participants will be randomized in two groups receiving the first dose directly after aortic cross clamping and blood cardioplegia administration, and the second dose after the third blood cardioplegia administration (± 30 min after the first dose).The most optimal prime fluid in order to preserve microcirculatory perfusion from study one, will be used as prime fluid in the second study. Microcirculatory perfusion parameters will be measured at time points comparable with study one. Blood samples are taken to determine markers for hemodilution, hemolysis, COP and endothelial damage and glycocalyx shedding.
Interventions
Treatment group (T): administration of 100 mL Human Albumin (20%), first dose directly after aortic cross clamping and blood cardioplegia administration, second dose after the third blood cardioplegia administration (± 30 min after the first dose).
Control group (C): administration of 100 mL of Ringer's solution, first dose directly after aortic cross clamping and blood cardioplegia administration, second dose after the third blood cardioplegia administration (± 30 min after the first dose).
Sponsors
Study design
Masking description
Single blind, masked to observer
Intervention model description
In two consecutive randomized controlled trials, we study the effect of prime fluid strategies on perfused vessel density (part I) and the effect of additional albumin during cardiopulmonary bypass compared with ringers on perfused vessel density (part II). In this study part (II), the effect of additional albumin during cardiopulmonary bypass compared with ringers on perfused vessel density.
Eligibility
Inclusion criteria
* Adult subjects * Informed consent * Elective coronary artery bypass surgery with cardiopulmonary bypass
Exclusion criteria
* Emergency operations * Re-operation * Elective thoracic aortic surgery * Elective valve surgery * Combined procedure CABG and valve surgery * Known allergy for human albumin or gelofusine
Design outcomes
Primary
| Measure | Time frame | Description |
|---|---|---|
| Perfused vessel density (PVD, mm mm-²) | Timepoint 1: 5-10 min after induction of anesthesia | reflecting microcirculatory diffusion capacity |
Secondary
| Measure | Time frame | Description |
|---|---|---|
| albumin (g L-¹) | T1, 5-10 min after induction of anesthesia; T2, 5-10 min after aortic cross clamping; T3, 5-10 min after weaning from cardiopulmonary bypass; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | concentration of albumin in plasma |
| hemolysis index (H-index) | T1, 5-10 min after induction of anesthesia; T2, 5-10 min after aortic cross clamping; T3, 5-10 min after weaning from cardiopulmonary bypass; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | the grade of hemolysis in plasma |
| haptoglobin (g L-¹) | T1, 5-10 min after induction of anesthesia; T2, 5-10 min after aortic cross clamping; T3, 5-10 min after weaning from cardiopulmonary bypass; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | concentration of haptoglobin in plasma |
| NO consumption (μmol L-¹) | T1, 5-10 min after induction of anesthesia; T2, 5-10 min after aortic cross clamping; T3, 5-10 min after weaning from cardiopulmonary bypass; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | consumption of nitric oxide in plasma |
| syndecan-1 (ng/ml) | T1, 5-10 min after induction of anesthesia; T2, 5-10 min after aortic cross clamping; T3, 5-10 min after weaning from cardiopulmonary bypass; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | Concentration of syndecan-1 in plasma |
| heparan sulphate (ng/ml) | T1, 5-10 min after induction of anesthesia; T2, 5-10 min after aortic cross clamping; T3, 5-10 min after weaning from cardiopulmonary bypass; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | concentration of heparan sulphate in plasma |
| hemoglobin (Hb, mmol L-¹) | T1, 5-10 min after induction of anesthesia; T2, 5-10 min after aortic cross clamping; T3, 5-10 min after weaning from cardiopulmonary bypass; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | concentration of hemoglobin in serum |
| Colloid oncotic pressure (COP, mmHg) | T1, 5-10 min after induction of anesthesia; T2, 5-10 min after aortic cross clamping; T3, 5-10 min after weaning from cardiopulmonary bypass; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | colloid oncotic pressure in plasma |
| perioperative use of packed red blood cells (PRBCs, mL) | intraoperative and postoperative up to 24 hours postoperative | amount of packed red blood cells |
| fluid balance (mL) | intraoperative and postoperative up to 24 hours postoperative | fluid balance |
| fluid requirements (mL) | intraoperative and postoperative up to 24 hours postoperative | Amount of fluids required |
| Total vessel density (TVD, mm mm-²) | T1, 5-10 min after induction of anesthesia; T2, 5-10 min after aortic cross clamping; T3, 5-10 min after weaning from cardiopulmonary bypass; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | density of capillaries reflecting the functional state of the microcirculatory diffusion capacity |
| Proportion of perfused vessels (PPV, %) | T1, 5-10 min after induction of anesthesia; T2, 5-10 min after aortic cross clamping; T3, 5-10 min after weaning from cardiopulmonary bypass; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | reflecting the aspect of heterogeneity of microcirculatory perfusion |
| Heterogeneity index | T1, 5-10 min after induction of anesthesia; T2, 5-10 min after aortic cross clamping; T3, 5-10 min after weaning from cardiopulmonary bypass; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | reflecting the aspect of heterogeneity of microcirculatory perfusion |
| hematocrit (Ht, L L-¹) | T1, 5-10 min after induction of anesthesia; T2, 5-10 min after aortic cross clamping; T3, 5-10 min after weaning from cardiopulmonary bypass; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | hematocrit in serum |
Other
| Measure | Time frame | Description |
|---|---|---|
| Acute kidney injury (AKI) | Postoperative until 30 days postoperative | Acute kidney injury (yes/no) |
| Urine production (ml) | T1, 5-10 min after induction of anesthesia; T2, 5-10 min after aortic cross clamping; T3, 5-10 min after weaning from cardiopulmonary bypass; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | Urine production |
| Blood pressure (mmHg) | T1, 5-10 min after induction of anesthesia; T2, 5-10 min after aortic cross clamping; T3, 5-10 min after weaning from cardiopulmonary bypass; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | Blood pressure (mmHg) |
| Noradrenaline | T1, 5-10 min after induction of anesthesia; T2, 5-10 min after aortic cross clamping; T3, 5-10 min after weaning from cardiopulmonary bypass; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | Noradrenaline (mcg/kg/min) |
| Phenylephrine | T1, 5-10 min after induction of anesthesia; T2, 5-10 min after aortic cross clamping; T3, 5-10 min after weaning from cardiopulmonary bypass; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | Phenylephrine (mcg) |
| Vasopressin (IU/min) | T1, 5-10 min after induction of anesthesia; T2, 5-10 min after aortic cross clamping; T3, 5-10 min after weaning from cardiopulmonary bypass; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | Vasopressin (IU/min) |
| Methylene Blue | T1, 5-10 min after induction of anesthesia; T2, 5-10 min after aortic cross clamping; T3, 5-10 min after weaning from cardiopulmonary bypass; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | Methylene Blue (mg) |
| Lactate (mmol/L) | T1, 5-10 min after induction of anesthesia; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | Serum lactate |
| Creatinin levels (umol/L) | T1, 5-10 min after induction of anesthesia; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | serum creatinin level |
| estimated glomerular filtration rate (eGFR)(ml/min/1,73 m2) | T1, 5-10 min after induction of anesthesia; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | estimated glomerular filtration rate |
| Blood product use | Intraoperative and postoperative up to 24 hours postoperative | Blood product use (ml) |
| Blood loss (ml) | Intraoperative and postoperative up to 24 hours postoperative | Blood loss |
| Duration of mechanical ventilation (hours) | Postoperative until 30 days postoperative | Duration of mechanical ventilation (hours) |
| ICU stay (hours) | Postoperative until 30 days postoperative | ICU stay (hours) |
| Hospital stay (days) | Postoperative until 30 days postoperative | Days until hospital discharge (days) |
| Respiratory failure | Postoperative until 30 days postoperative | Respiratory failure (yes/no) |
| re-do surgery | Postoperative until 30 days postoperative | re-do surgery (yes/no) |
| Extra corporeal membrane oxygenation (ECMO) | Postoperative until 30 days postoperative | Extra corporeal membrane oxygenation (yes/no) |
| Mortality | Postoperative until 30 days postoperative | in-hospital mortality (yes/no) |
| non-preexisting atrial fibrillation | Postoperative until 30 days postoperative | non-preexisting atrial fibrillation (yes/no) |
| Pneumonia | Postoperative until 30 days postoperative | pneumonia (yes/no) |
| Age | Preoperative | Age in years |
| Gender | Preoperative | Gender (male/female) |
| Body Surface area (BSA) | Preoperative | BSA in m2 |
| Smoking | Preoperative | Medical history of smoking (yes/no) |
| Diabetes on medication | Preoperative | Medical history of diabetes on medication (yes/no) |
| Comorbidities | Preoperative | Other comorbidities in medical history (yes/no) |
| EuroSCORE II | preoperative | The European System for Cardiac Operative Risk Evaluation (EuroSCORE) II predicts risk of in-hospital mortality after cardiac surgery. |
| CPB time (min) | Intraoperative | Cardiopulmonary bypass time in minutes |
| Aortic cross clamping time (AoX time, min) | Intraoperative | Aortic cross clamping time in minutes |
| heparin (IU) | Intraoperative | Dosing of heparin in international units |
| protamin (mg) | Intraoperative | Dosing of protamin |
| Activated clotting time (ACT, min) | Intraoperative | Activated clotting time in minutes |
| Temperature (celsius) | T1, 5-10 min after induction of anesthesia; T2, 5-10 min after aortic cross clamping; T3, 5-10 min after weaning from cardiopulmonary bypass; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | Temperature in Celsius |
| Oxygen saturation (Sat, %) | T1, 5-10 min after induction of anesthesia; T2, 5-10 min after aortic cross clamping; T3, 5-10 min after weaning from cardiopulmonary bypass; T4, 15-30 min after arrival on the intensive care unit; T5, 24 hours after arrival on the intensive care unit. | Oxygen saturation in % |
Countries
Netherlands