Effect of Pneumatic Tube System vs. Personnel Transport on Hemolysis Index in Emergency Department Blood Samples: A Randomized, Within-Patient Matched Trial
NCT07755007 · Status: NOT_YET_RECRUITING · Phase: NA · Type: INTERVENTIONAL · Enrollment: 166
Last updated 2026-08-10
Summary
Hemolysis is the most common pre-analytical error in emergency department (ED) laboratory specimens and can lead to false elevation of intracellular analytes (potassium, LDH, AST, hemoglobin), resulting in misdiagnosis and unnecessary testing. Blood samples in the ED are transported to the laboratory either by pneumatic tube systems (PTS) or manually by personnel. Although PTS shortens turnaround time, the forces generated during transport may damage erythrocyte membranes and promote hemolysis. Evidence on whether PTS increases hemolysis compared with personnel transport is inconsistent, partly because existing studies use parallel-group designs that cannot control for between-subject biological variability, and partly because findings differ across PTS brands and configurations. The Sumetzberger Power Control PTS installed at Marmara University Pendik Training and Research Hospital (speed 4-5 m/s, 120 m, cushioned capsule) has not been prospectively validated for hemolysis risk. This study uses a randomized, within-patient matched, single-blind design in which two simultaneously drawn yellow-cap tubes from the same patient are randomly allocated-one to PTS and one to personnel transport-thereby eliminating between-patient variability. The primary outcome is the Hemolysis Index (HI) category (ordinal scale 0-5 corresponding to free hemoglobin thresholds of \<50, 50-99, 100-199, 200-299, 300-500, and \>500 mg/dL). Secondary outcomes include the rate of clinically significant hemolysis (HI ≥ 1 / free Hb ≥ 50 mg/dL) and the correlation between transport time and HI.
Conditions
- Hemolysis
- Diagnostic Errors
- Blood Specimen Collection
Interventions
- PROCEDURE
-
Manual Personnel Transport
Blood sample transport performed manually by emergency department staff carrying the tube on foot from the phlebotomy area to the central clinical laboratory. Transport is dispatched simultaneously with the paired pneumatic tube sample.
- PROCEDURE
-
Pneumatic Tube System Transport
Blood sample transport using the Sumetzberger Power Control pneumatic tube system (Sumetzberger, Austria). The system operates at a speed of 4-5 m/s over a distance of approximately 120 meters using cushioned capsules. Transport duration ranges between 50 and 90 seconds.
Sponsors & Collaborators
-
Marmara University Pendik Training and Research Hospital
lead OTHER
Principal Investigators
-
Emir Ünal · Marmara University
Study Design
- Allocation
- RANDOMIZED
- Purpose
- TREATMENT
- Masking
- SINGLE
- Model
- CROSSOVER
Eligibility
- Min Age
- 18 Years
- Sex
- ALL
- Healthy Volunteers
- No
Timeline & Regulatory
- Start
- 2026-08-31
- Primary Completion
- 2026-11-30
- Completion
- 2027-01-31
Countries
- Turkey (Türkiye)
Study Locations
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