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Updated: Feb 3, 2026

New Thrombectomy Technique for Total Portal Vein Thrombosis in Liver Transplantation
Published on: June 27, 2025
Thrombosis prophylaxis in pediatric liver transplantation: A systematic review
Mirco Nacoti1, Giulia Maria Ruggeri2, Giovanna Colombo2
1Department of Anesthesia and Intensive Care, Pediatric Intensive Care Unit, Papa Giovanni XXIII Hospital, Bergamo 24127, Italy. mnacoti@asst-pg23.it.
Insights
Thrombosis remains a critical complication in pediatric liver transplantation (PLT). Tailored surgical strategies may reduce portal vein thrombosis (PVT) and hepatic artery thrombosis (HAT), but high-quality evidence is lacking.
Area of Science:
- Hepatology
- Transplantation Surgery
- Pediatric Surgery
Background:
- Thrombosis is a significant complication following pediatric liver transplantation (PLT).
- Current literature on thrombosis prophylaxis in PLT is limited, necessitating a review of existing evidence.
- Understanding the incidence and risk factors for thrombosis is crucial for improving patient outcomes.
Purpose of the Study:
- To systematically review the current literature on thrombosis prophylaxis in pediatric liver transplantation.
- To identify effective surgical strategies for reducing the incidence of portal vein thrombosis (PVT) and hepatic artery thrombosis (HAT).
- To highlight the need for prospective studies in this field.
Main Methods:
- A comprehensive electronic search of MEDLINE, EMBASE, and Cochrane Library (CENTRAL) databases was conducted until March 2018.
- References of included studies and relevant systematic reviews were manually screened.
- Nine retrospective studies meeting specific inclusion criteria (e.g., >10 transplants/year, published post-1990) were included.
Main Results:
- The quality of included retrospective studies was generally poor, precluding pooled analysis.
- Incidence of PVT ranged from 2-10% in living donor and 4-33% in deceased donor PLT.
- HAT incidence varied from 0-29%; reduced graft size and specific arterial anastomosis techniques were associated with lower HAT rates.
Conclusions:
- Existing retrospective data suggest tailored surgical approaches may reduce PVT and HAT after PLT.
- No eligible studies evaluating pharmacological thrombosis prevention were found.
- High-quality prospective studies are urgently needed to establish evidence-based prophylaxis strategies.
Aim:
To review current literature of thrombosis prophylaxis in pediatric liver transplantation (PLT) as thrombosis remains a critical complication.
Methods:
Studies were identified by electronic search of MEDLINE, EMBASE and Cochrane Library (CENTRAL) databases until March 2018. The search was supplemented by manually reviewing the references of included studies and the references of the main published systematic reviews on thrombosis and PLT. We excluded from this review case report, small case series, commentaries, conference abstracts, papers which describing less than 10 pediatric liver transplants/year and articles published before 1990. Two reviewers performed study selection independently, with disagreements solved through discussion and by the opinion of a third reviewer when necessary.
Results:
Nine retrospective studies were included in this review. The overall quality of studies was poor. A pooled analysis of results from studies was not possible due to the retrospective design and heterogeneity of included studies. We found an incidence of portal vein thrombosis (PVT) ranging from 2% to 10% in pediatric living donor liver transplantation (LDLT) and from 4% to 33% in pediatric deceased donor liver transplantation (DDLT). Hepatic artery thrombosis (HAT) was observed mostly in mixed LDLT and DDLT pediatric population with an incidence ranging from 0% to 29%. In most of the studies Doppler ultrasonography was used as a first line diagnostic screening for thrombosis. Four different surgical techniques for portal vein anastomosis were reported with similar efficacy in terms of PVT reduction. Reduced size liver transplant was associated with a low risk of both PVT (incidence 4%) and HAT (incidence 0%, P < 0.05). Similarly, aortic arterial anastomosis without graft interposition and microsurgical hepatic arterial reconstruction were associated with a significant reduced HAT incidence (6% and 0%, respectively). According to our inclusion and exclusion criteria, we did not find eligible studies that evaluated pharmacological prevention of thrombosis.
Conclusion:
Poor quality retrospective studies show the use of tailored surgical strategies might be useful to reduce HAT and PVT after PLT; prospective studies are urgently needed.
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