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Oxygen Consumption, Hypoperfusion and Organ Injury After Cardio-pulmonary Bypass

Oxygen Consumption, Early Postoperative Hypoperfusion and Organ Injury After Cardio-pulmonary Bypass: a Prospective Observational Study

Status
Recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT06930443
Acronym
VO2-EPOC
Enrollment
65
Registered
2025-04-16
Start date
2025-05-05
Completion date
2026-02-28
Last updated
2025-05-11

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Cardiac Surgery Requiring Cardiopulmonary Bypass

Keywords

cardiac surgery, cardiopulmonary bypass, postoperative care

Brief summary

The goal of this observational study is to understand how oxygen consumption after heart surgery relates to blood flow problems and organ injury. The study focuses on patients over 18 years old who are having planned heart surgery with a heart-lung machine (cardiopulmonary bypass). The main questions the study aims to answer are: 1. How does oxygen consumption in the early hours after surgery relate to lactate levels (a sign of low oxygen supply to the tissues)? 2. How is oxygen consumption linked to signs of poor blood flow and organ injury (such as heart, kidney, liver, brain, and gut damage)? Researchers will measure oxygen consumption after surgery using a technique called indirect calorimetry. They will also track blood flow and oxygen use during surgery and check for signs of organ injury the day after the procedure. The study will include 65 participants. People with certain health conditions, like severe anemia, high lactate levels before surgery, or needing intensive care or extra oxygen supply before surgery, will not be included. By understanding how oxygen consumption relates to blood flow and organ injury, this research may help to better manage patients after heart surgery and reduce complications.

Interventions

OTHEROxygen consumption measurement

After arrival to the ICU, prior to cessation of iv anaesthetics and extubation, indirect calorimetry will be performed by connecting a metabolic monitor to the ventilator during a minimum of 20 minutes.

Sponsors

Uppsala University Hospital
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Elective cardiac surgery requiring cardiopulmonary bypass

Exclusion criteria

* Combined, redo or annuloplasty procedures * Surgical procedures involving other vascular cannulation than standard direct, such as bicaval or femoral cannulation * Preoperative hyperlactatemia (\>2mmol/L) or anaemia (Hb \<90 g/dL) * Preoperative need for supplementary oxygen or ICU care * Consent not obtainable.

Design outcomes

Primary

MeasureTime frameDescription
Difference in oxygen consumption in early postoperative hypoperfusion0-4 hours after surgeryDifference in oxygen consumption (VO2I via indirect calorimetry) in ml min-1 m-2 between patients with and without early hyperlactatemia (\>2mmol/L)

Secondary

MeasureTime frameDescription
Evaluation of hypoperfusion parameters as predictors of postoperative oxygen consumption0-24 hours after surgeryHypoperfusion parameters will be evaluated as a predictors of postoperative oxygen consumption (VO2I, ml min-1 m-2 via indirect calorimetry). Blood gas parameters taken preoperatively and at spaced time-points up to 24 hrs after start of surgery: 1\) Central venous oxygen saturation (ScvO2, %, central venous blood gas), 2) Arterial lactate (mmol/L, arterial blood gas), 3) Base excess (BE, mmol/L, arterial blood gas), 4) Venous-to-arterial CO2 difference (ΔPCO2, mmHg, arterial and central venous blood gas) and its ratio with arterial -central venous oxygen content. Clinical variables measured hourly or otherwise specified: 5\) Heart rate (beats/min), 6) Mean arterial pressure (MAP, mmHg), 7) Central venous pressure (CVP, mmHg), 8) Vasopressor or inotrope requirement (Y/N, low-intermediate-high), 9) Urine output (mL/24 hours), and 10) net fluid balance (mL/24 hours). Additional explorative data analyses for hypothesis generating purposes can be performed.
Evaluation of oxygen delivery and consumption during cardiopulmonary bypass as predictors of postoperative oxygen consumption0-4 hours during and after surgeryOxygen delivery (DO2I, ml min-1 m-2) and oxygen consumption (VO2I ml min-1 m-2) will be measured during cardiopulmonary bypass by continuous blood parameter monitoring or calculated by blood oxygen content and pump flow. Both mean levels and repeated measures will be analysed as predictors for postoperative oxygen consumption. Additional explorative data analyses for hypothesis generating purposes can be performed.
Evaluation of organ injury biomarkers as predictors of postoperative oxygen consumptionPreoperative and the day after surgeryOrgan injury markers will be evaluated as predictors for postoperative oxygen consumption. Absolute levels, changes from preoperative values, and above normal predicted value (yes/no) will be used in the analysis. Blood sampling preoperatively and the day after surgery. 1. Renal: Creatinine (mmol L-1), Estimated glomerular filtration rate; eGFR (ml min-1 1.73 m-2): 2. Cardiac: Troponin T; TnT, creatinine kinase-MB; CK-MB, probrain natriuretic peptide; Nt-proBNP (ng L-1) 3. Hepatic: Aspartate aminotransferase; ASAT, alanine aminotransferase; ALAT(mikrokat L-1) 4. Brain: Neurofilament light chain; NFL, Glial fibrillary acidic protein, GFAP (ng L-1) 5. Gut: Medium chain fatty acids; MCFA, Short chain fatty acids; SCFA, conjugated and non-conjugated bile acids (ng ml-1) Additional explorative data analyses for hypothesis generating purposes can be performed.

Countries

Sweden

Contacts

Primary ContactJulia Jakobsson MD PhD
julia.o.jakobsson@akademiska.se+46-18-610 00 00
Backup ContactOlle Lönnemark MD
olle.lonnemark@akademiska.se+46 -18-610 00 00

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026