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Fontan venovenous collaterals and hepatic fibrosis
William N Evans1,2, Ruben J Acherman1,2, Gary A Mayman1,2
1Children's Heart Center Nevada, Las Vegas, Nevada.
Insights
Post-Fontan patients with venovenous collaterals show significantly more advanced liver fibrosis. This finding highlights the importance of monitoring liver health in these patients.
Area of Science:
- Cardiology
- Hepatology
- Pediatric Surgery
Background:
- The Fontan procedure is a palliative surgery for single-ventricle congenital heart defects.
- Post-Fontan complications can include hepatic dysfunction and fibrosis.
- Venovenous collaterals may develop after the Fontan procedure, potentially impacting hepatic hemodynamics.
Purpose of the Study:
- To investigate the association between angiographically demonstrated post-Fontan venovenous collaterals and hepatic fibrosis.
- To determine if the presence of collaterals correlates with the severity or progression of liver fibrosis.
Main Methods:
- Retrospective analysis of 164 post-Fontan patients undergoing cardiac catheterization and hepatic biopsy.
- Assessment of venovenous collaterals via innominate vein angiography.
- Evaluation of hepatic fibrosis using total fibrosis score (TFS) and fibrosis progression rate from biopsies.
- Correlation with hepatic ultrasound shear-wave elastography data where available.
Main Results:
- 101 out of 164 patients (62%) had venovenous collaterals.
- Patients with collaterals exhibited significantly higher average TFS (3.2 vs 2.1) and fibrosis progression rates (0.28 vs 0.22) (P < .00001).
- Higher elastography values (13.3 vs 11.2 kPa) were observed in patients with collaterals (P = .006).
- Lower oxygen saturation was noted in patients with collaterals (91% vs 93%, P = .048).
Conclusions:
- Angiographically demonstrated venovenous collaterals in post-Fontan patients are significantly associated with more advanced liver fibrosis.
- The presence of these collaterals may indicate an increased risk or progression of hepatic fibrosis.
- Further research is warranted to explore the clinical implications and management strategies for these findings.
Objective:
We hypothesized that a relationship might exist between angiographically demonstrable, post-Fontan venovenous collaterals, and hepatic fibrosis.
Methods:
We analyzed data from post-Fontan patients that underwent cardiac catheterization and transvenous-hepatic biopsy procedures between March 2012 and March 2020. From innominate vein angiography, we determined those that either had or lacked venovenous collaterals. Additionally, we examined data from post-Fontan patients that underwent hepatic ultrasound, shear-wave elastography between January 2017 and March 2020.
Results:
We identified 164 patients that met inclusion criteria. Of the 164, 101 (62%) had venovenous collaterals. Of the 101 with collaterals, average total fibrosis score (TFS) was 3.2 and the average rate of fibrosis progression was 0.28 vs an average TFS of 2.1 and an average fibrosis progression rate of 0.22 for those without collaterals (P = .00001 and P = .01, respectively). Of the 101 with collaterals, oxygen saturation was 91% ± 4% vs 93% ± 3% (P = .048) without collaterals. Of the 164, 86 (52%) underwent ultrasound shear-wave elastography. Of the 86 patients undergoing elastography, 50 (58%) were performed in those with collaterals, and 36 (42%) in those without collaterals. For the 50 with collaterals, average elastography values were 13.3 vs 11.2 kPa for the 36 without collaterals (P = .006). We found no statistically significant differences for age at biopsy, Fontan duration, Fontan-type, type of functional univentricle, laboratory, clinical, or hemodynamic values between those with or without collaterals.
Conclusions:
The presence of angiographically demonstrated venovenous collaterals was associated with statistically, significantly more advanced liver fibrosis than those without collaterals.
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