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Neutrophil Phenotypic Profiling and Acute Lung Injury in Patients After Cardiopulmonary Bypass (CPB)

Neutrophil Phenotypic Profiling and Acute Lung Injury in Patients After Cardiopulmonary Bypass (CPB)

Status
Recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT04296071
Enrollment
56
Registered
2020-03-05
Start date
2022-10-14
Completion date
2027-12-01
Last updated
2026-05-15

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

Conditions

Cardiopulmonary Bypass, Lung Injury

Brief summary

Acute lung injury (ALI) following cardiopulmonary bypass (CPB) is a serious complication, often prolonging the length of stay in ICU and potentially dealing to mortality. The objective of this study is to assess the mechanism of CPB-mediated acute lung injury in pediatric patients.

Detailed description

Acute lung injury (ALI) is frequently associated with the use of extracorporeal circulation during cardiopulmonary bypass (CPB) surgery and develops postoperatively in 2-3% of cardiac surgical patients. Histological evidence shows that CPB increases pulmonary vascular permeability and extravascular lung water content while diminishing pulmonary compliance. Furthermore, some patients can develop acute respiratory distress syndrome, which has a mortality rate of 50-70%. Recruitment of intrapulmonary neutrophils is a characteristic of ALI following CPB. Blood contact with non-physiological surfaces, cooling and rewarming and mechanical shear stress activate neutrophils. The recruitment of activated neutrophils from blood vessels to local tissue involves a chain of well-coordinated events, including adhesion, tethering, rolling and crawling, followed by trans-endothelial and trans-epithelial migration. Activation of sequestered neutrophils causes the release of specific proteolytic enzymes and oxygen free radicals, which leads to increased alveolar-endothelial permeability and parenchymal damage. During CPB, the lungs are almost completely excluded from the systemic circulation, which causes the blood within them to be almost 'static'. Pulmonary tissue hypoxia and re-oxygenation combined with vascular ischemia and reperfusion induce the generation of chemokines, which contributes to subsequent injury by accumulating and entrapping activated neutrophils. The accumuled and entrapped activated neutrophils in the lungs and the subsequent release of toxic substances render the lungs highly susceptible to this damage. However, the mechanism that drives neutrophil migration to the lungs after CPB is not well studied. This study will delineate the mechanisms of neutrophil migration to the lung and subsequent lung injury after CPB.

Interventions

OTHERResearch study

Blood and tracheal aspirates will be collected

Sponsors

Sophia Koutsogiannaki
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
No minimum to 12 Months
Healthy volunteers
No

Inclusion criteria

* Are \< 12months of age * Scheduled for cardiac surgical needing CPB * Preoperative SpO2 \> 90%

Exclusion criteria

* Lack of parental (or legal guardian's) consent * Preoperative SpO2 \< 90% * Preoperative oxygen therapy

Design outcomes

Primary

MeasureTime frameDescription
Perform neutrophil analysis in blood and tracheal aspirates samples2 yearsWe will analyze neutrophil profiles in the blood and tracheal aspirates

Secondary

MeasureTime frameDescription
Determine chemoattractant levels2 yearsWe will measure the levels of chemoattractants in the blood and tracheal aspirates
Determine neutrophil functions2 yearsWe will measure neutrophil functions from the blood and tracheal aspirates

Countries

United States

Contacts

CONTACTSophia Koutsogiannaki, PhD
sophia.koutsogiannaki@childrens.harvard.edu617-919-4725
CONTACTKoichi Yuki, MD
koichi.yuki@childrens.harvard.edu617-355-6225

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: May 16, 2026