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Neuroinflammation in Cognitive Decline Post-cardiac Surgery

Neuroinflammation in Cognitive Decline Post-cardiac Surgery: The FOCUS Study

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT04520802
Acronym
FOCUS
Enrollment
15
Registered
2020-08-20
Start date
2019-02-18
Completion date
2022-07-01
Last updated
2023-03-31

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

Conditions

Coronary Artery Disease, Pathophysiology, Postoperative Cognitive Dysfunction

Brief summary

Major cardiovascular surgery is associated with postoperative cognitive decline (POCD), with a deterioration in memory, attention and speed of information processing. A multifactorial pathophysiology is presumed but this study focuses on the role of (neuro)inflammation in the development of POCD after coronary artery bypass grafting (CABG) surgery.

Detailed description

Systemic inflammation can activate the innate immune cells of the brain inducing neuroinflammation, which plays an important role in the pathogenesis of neurodegenerative disease. Major cardiovascular surgery induces a severe systemic inflammatory response.There is growing support that neuroinflammation is a pivotal factor in the development of postoperative cognitive decline (POCD) due to surgery-related systemic inflammation. Although the neuroinflammatory hypothesis is scientifically accepted, in vivo human data supporting the role of neuroinflammation in severe systemic inflammation such as major surgery are still lacking. In the last decades, several nuclear imaging tracers have been developed that can quantitatively measure microglial and astrocytic activation in vivo, by targeting the mitochondrial 18kDa translocator protein (TSPO). The investigators hypothesize that cardiac surgery induces a neuroinflammatory response and that its presence is related to acute and long term brain dysfunction postoperatively. This will be studied by pre- and postoperative PET brain imaging using a 18F-DPA-714 tracer targeting TSPO, combined with longitudinal neuropsychological examinations. Structural changes in the brain will be recorded on MRI prior to and after cardiac surgery to enable us to correct for the potentially confounding effects of neurovascular events on cognitive outcomes after CABG surgery.

Interventions

DIAGNOSTIC_TEST18F-DPA-714 PET/CT neuroimaging

* Pre- and postoperative neuroimaging using 18F-DPA-714 PET/CT and brain MRI. * Longitudinal neuropsychological examinations (up to 6 months postoperatively) * Blood samples are drawn to assess the severity of the systemic inflammatory response

Sponsors

Radboud University Medical Center
Lead SponsorOTHER

Study design

Observational model
OTHER
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
50 Years to No maximum

Inclusion criteria

* Age \> 50 years * Planned for on-pump coronary artery bypass grafting surgery * High-affinity binder or mixed-affinity binders based on rs6971 polymorphism for TSPO * Chronic use of statins (defined as pre-hospital use)

Exclusion criteria

* Previous cardiac surgery. * Pregnancy or wish to become pregnant within 2 weeks after PET-CT scan * Contra-indication to undergo a PET/CT or MRI scan, including claustrophobia. * Low-affinity binder based on rs6971 polymorphism for TSPO, or unable to determine rs6971 polymorphism. * Patients with cognitive disorders that have not recovered enough to be able to understand the study leaflets and information for participation. * Brain or spinal surgery within the last 6 months. * Meningitis or brain infection within the last 6 months. * Pre-existing dementia or neurodegenerative disease or cognitive impairment interfering with the ability to understand informational material about this research project. * Presence of a CSF catheter or shunt. * Patients with known brain tumors. * Patients with brain injury (e.g. acute stroke, or subarachnoid hemorrhage) within the last 6 months. * Severe brain trauma in previous medical history. * Chronic (\>2 weeks) use of immunosuppressive agents (see table 3.3.A). * Concomitant diseases resulting in severe immunosuppression (e.g. HIV). * Auto-immune or auto-inflammatory disease * Active infection \< 2 weeks prior to inclusion (defined as fever \>38.5 or antibiotic treatment) * Kidney failure, defined by a MDRD-GFR\<15 ml/min/1.73m2 * Known contrast allergy for gadolinium * Chronic use of neuroleptics, defined as pre-hospital use. * Patients that do not speak Dutch or have disabilities that prevent accurate delirium diagnosis. * Analphabetic patients. * No written informed consent obtained.

Design outcomes

Primary

MeasureTime frameDescription
Change in TSPO PET tracer uptake at 3-7 days post-surgery3-7 days post-surgery minus preoperative (= day before surgery)18F-DPA-714

Secondary

MeasureTime frameDescription
Whole brain TSPO PET tracer uptake pre- and 3-7 days post-surgerypre- and 3-7 days post-surgery18F-DPA-714
Pro- and anti-inflammatory in vivo cytokine concentrations [in pg/ml]Day before surgery, during surgery (stop extracorporeal circulation (ECC)), after surgery (6 hours after stop ECC, 24 hours after incision, 3-7 days post-surgery and 6 weeks after surgery)TNFa, IL6, IL-1B, IL10, IL-1RA
Ex vivo cytokine production of stimulated monocytes [in ng/10^9 monocytes]Day before surgery, 3-7 days and 6 weeks after surgeryTNFa, IL6, IL1B, MCP1, IL10
Flowcytometry analysis to study the inflammatory phenotype of the cellsDay before surgery, 3-7 days and 6 weeks after surgeryHLA-DR, CCR2, CD11b, CD14, CD16
Occurrence of postoperative cognitive dysfunction (POCD)Baseline (preoperative), postoperative (3-7 days after surgery, 6 weeks and 6 months)POCD diagnosis based on neuropsychological assessments including TMT A&B, Stroop I, II, III, WAIS-IV - digit span, LDST, RAVLT, RCFT, RBMT-3 face recognition, LFT and token test. POCD diagnosis is made when patients are newly impaired in one or more cognitive domains (memory, executive functioning, speed of processing and language), or when the average test rating has declined in more than one domain compared to baseline.
Ex vivo cytokine production of healthy donor monocytes, after exposure to patient serum obtained during CABG surgeryPerioperatively at stop extracorporeal circulation (ECC)Healthy donor monocytes will be exposed to patient serum obtained during surgery, to see whether this changes the ex vivo cytokine producing capacity (TNFa, IL6, IL10)
Number of newly developed (ischemic and hemorrhagic) brain and vascular wall lesionspre- and 3-7 days post-surgery
Delta brain activity in three large scale brain networks involved in stress reactivity on resting-state fMRIpre- and 3-7 days post-surgery
Complete blood countDay before surgery, during surgery (stop extracorporeal circulation (ECC)), after surgery (6 hours after stop ECC, 24 hours after incision, 3-7 days post-surgery and 6 weeks after surgery)including leukocyte differentiation measured on an automated hematology analyzer

Countries

Netherlands

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 15, 2026