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Central venous line-related thrombosis in children: association with central venous line location and insertion
Christoph Male1, Peter Chait, Maureen Andrew
1Children's Hospital, University of Vienna, Austria.
Insights
Central venous line (CVL) placement on the left side, in the subclavian vein, or via percutaneous insertion increases venous thromboembolic event (VTE) risk in children. Right-sided jugular vein placement may reduce VTE incidence.
Area of Science:
- Pediatric Oncology
- Vascular Surgery
- Hematology
Background:
- Central venous lines (CVLs) are crucial for treating children with acute lymphoblastic leukemia (ALL).
- CVLs are associated with an increased risk of venous thromboembolic events (VTEs) in pediatric patients.
- Understanding factors influencing VTE risk is vital for patient safety.
Purpose of the Study:
- To investigate the association between CVL location and insertion technique with VTE incidence in children undergoing chemotherapy.
- To test hypotheses regarding increased VTE risk with left-sided, subclavian, and percutaneously inserted CVLs.
Main Methods:
- Prospective, multicenter cohort study involving children with ALL and upper venous system CVLs.
- Prospective documentation of CVL characteristics.
- Objective radiographic assessment for VTE, including venography, ultrasound, echocardiography, and MRI.
Main Results:
- 29 out of 85 children (34%) developed VTEs.
- Left-sided CVLs (OR 2.5), subclavian vein CVLs (OR 3.1), and percutaneous insertion (OR 3.5) were significantly associated with increased VTE incidence.
- A combination of subclavian vein placement and percutaneous insertion showed the highest VTE incidence (54%).
Conclusions:
- CVL location and insertion technique significantly impact VTE risk in pediatric ALL patients.
- Right-sided jugular vein CVL placement may lower VTE risk.
- Venous cut-down insertion is preferable to percutaneous technique for subclavian vein CVLs to mitigate VTE risk.
Abstract:
Venous thromboembolic events (VTEs) in children are associated with central venous lines (CVLs). The study objective was to assess whether CVL location and insertion technique are associated with the incidence of VTE in children. We hypothesized that VTE would be more frequent with (1). CVL location on the left body side, (2). CVL location in the subclavian vein rather than the jugular vein, and (3). CVL insertion by percutaneous technique rather than venous cut-down. This was a prospective, multicenter cohort study in children with acute lymphoblastic leukemia who had a CVL placed in the upper venous system during induction chemotherapy. Characteristics of CVL were documented prospectively. All children had outcome assessment for VTE by objective radiographic tests, including bilateral venography, ultrasound, echocardiography, and cranial magnetic resonance imaging. Among 85 children, 29 (34%) had VTE; 28 VTEs appeared in the upper venous system, and 1 was sinovenous thrombosis. Left-sided CVL (odds ratio [OR], 2.5; 95% confidence interval, 1.0-6.4; P =.048), subclavian CVL (OR, 3.1; 95% CI, 1.2-8.5; P =.025), and percutaneous CVL insertion (OR, 3.5; 95% CI, 1.3-9.2; P =.011) were associated with an increased incidence of VTE. Interaction occurred between CVL vein location and insertion technique. Subclavian vein CVL inserted percutaneously had an increased incidence (54%) of VTE compared with any other combination (P =.07). For CVL in the upper venous system, CVL placement on the right side and in the jugular vein may reduce the risk for CVL-related VTE. If subclavian vein placement is necessary, CVL insertion by venous cut-down appears preferable over percutaneous insertion.
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