Oropharyngeal plasmacytic hyperplasia in a post-liver transplant recipient: morphologic and histologic signs.
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Biomedical subjects
Publications and source records attributed to Beth A Carter.
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BACKGROUND: Orthotopic liver transplantation (OLT) is an effective treatment for fulminant hepatic failure (FHF), but postOLT mortality is higher for patients with FHF than for patients with other indications for OLT. In the current study, a large cohort of patients who underwent OLT for FHF was evaluated to develop and validate a system useful for estimating postOLT patient survival. METHODS: The 1,457 patients who underwent OLT for FHF in the United States between 1988 and 2003 were enrolled through the UNOS database. This group was divided into a modeling group (n=972) and a crossvalidation group (n=486). With a multivariate regression analysis, the modeling group was used to identify clinical parameters that had a significant association with postOLT survival. This regression analysis was used to create a scoring system that was subsequently assessed in the crossvalidation group. RESULTS: Four risk factors were identified with the multivariate analysis: 1) body mass index > or = 30 kg/m2; 2) serum creatinine > 2.0 mg/dL; 3) recipient age > 50 years old; and 4) history of life support. By assigning points based on the number of risk factors present, the scoring system was able to differentiate between low-risk patients (5-year survival, 81%) and high-risk patients (5-year survival, 42%). The relative risk of postOLT mortality increased by approximately 150% for each additional point. CONCLUSION: The scoring system risk-stratified the crossvalidation group and accurately predicted postOLT survival. A scoring system utilizing clinical and demographic information readily available prior to OLT may help predict the probability of survival after OLT for FHF.
The pediatric end-stage liver disease (PELD) model accurately estimates 90-day waitlist mortality for pediatric liver transplant candidates, but it has been unclear if PELD can identify patients who will derive survival benefit from undergoing liver transplantation (LT), if it correlates with posttransplant survival, or if it can identify patients for whom LT would be futile. Pediatric patients who underwent LT between 2001 and 2004 were enrolled through the United Network for Organ Sharing Organ Procurement and Transplant Network database. Survival benefit was measured in terms of life-years gained during the first year after LT. Complete data were available for 1,247 patients: 53% were listed as Status 1 at the time of orthotopic liver transplantation (OLT), while the remaining 47% had PELD scores. Only in patients with a PELD of 17+ or those designated as United Network for Organ Sharing Status 1 derived a survival benefit within 1 year of LT; patients with a PELD score of < or = 16 did not. In addition, a statistically significant association was seen between 1-year post-OLT survival and PELD at LT (P = 0.03). No "threshold" PELD score, beyond which risk of post-LT mortality increased dramatically, was apparent. In conclusion, pediatric patients with a PELD score of 17+ derive survival benefit early after LT, and increasing PELD scores are associated with increasing transplant benefit after liver transplantation. PELD does correlate with posttransplant survival but should not be used as a marker for futility.
Although rare in the pediatric population, the natural history of hepatitis C virus (HCV) recurrence in pediatric patients undergoing orthotopic liver transplantation (OLT) for end-stage liver disease secondary to HCV has not been well described. We performed an analysis of all 67 pediatric patients (< 17 years old) who have undergone OLT for HCV in the United States between 1/1988 and 6/2005. The 67 pediatric patients received a total of 83 OLTs for HCV. Following initial OLTs performed for HCV, the patient and allograft survival rates were 71.6% and 55.0%, respectively, at 5 years. Following retransplantation these rates decreased to 55.0% and 33.8%, respectively, following retransplantation. Recipients were listed for retransplantation after 31.3% of all OLTs, and overall recipients were retransplanted after 19.3% of OLTs. The overwhelming majority of retransplants were performed for HCV recurrence. A mean of 1.2 OLTs were performed per patient for HCV. The median time between OLTs for HCV was 290 days. In conclusion, the risk of HCV recurrence in pediatric OLT recipients is high and is associated with a high rate of retransplantation. Still, OLT represents the only treatment option that may achieve long-term survival in pediatric patients with end-stage liver disease secondary to HCV that is recalcitrant to medical management.
Hepatic hemangioendothelioma (HHE) is a rare vascular tumor in neonates and may cause high-output cardiac failure and coagulopathy, and rarely has been associated with hypothyroidism. Hepatic hemangioendothelioma treatment options consist of corticosteroids, alpha-interferon, surgical resection, and liver transplantation. Herein, we report the case of a 6-week-old female neonate that presented with an HHE that involved all segments of the liver, resulting in respiratory failure and severe hypothyroidism that was recalcitrant to exogenous L-thyroxine therapy. After failure of medical and supportive therapy for the HHE, the patient underwent a cadaveric orthotopic liver transplantation that resulted in successful treatment of the severe hypothyroidism, respiratory failure, and cardiac symptoms. The patient is currently 1-year posttransplantation and disease free with normal thyroid function.
OBJECTIVE: Malnutrition frequently complicates end-stage liver disease and orthotopic liver transplantation (OLT) in pediatric patients. Pretransplant malnutrition has been associated with increased post-OLT mortality and length of stay in adults. The relationship between pre-OLT nutritional status and post-OLT outcomes in pediatric liver transplant recipients, however, is not well studied. METHODS: The records of 65 pediatric patients who underwent OLT at a single institution were reviewed. Univariate analyses were used to investigate the relationship between anthropomorphic data (expressed as z-scores) and post-OLT hospital length-of-stay, hospital costs and clinical outcomes. A multivariate model was then used to identify peri-OLT variables independently correlated with post-OLT length-of-stay. RESULTS: A decreased height z-score was correlated with an increased post-OLT hospital length-of-stay (r = -0.30; P = 0.015) and increased hospital costs (r = -0.49; P = 0.0004). The mean length-of-stay was 20.5 days for patients with a height z-score of <-1.5 and 10.7 days for patients with a height z-score of >1.5 (P = 0.038). Likewise, hospital costs were about $40,000 higher (25% increased) for patients with growth retardation. A weak direct correlation was seen between weight z-score and post-OLT length-of-stay (r = 0.18; P = 0.15). Height z-score, biliary atresia and pre-OLT protime were independently and significantly correlated with post-OLT length-of-stay in a multivariate model. CONCLUSIONS: Height z-score is a better indicator of pretransplant malnutrition than weight z-score. Pretransplant growth retardation is associated with increased post-OLT hospital length-of-stay and increased hospitalization costs.
Propionic acidemia is a rare metabolic disorder that often results in episodic hyperammonemia, basal ganglia infarction, mental retardation, and cardiomyopathy. OLT has been used as a treatment for propionic acidemia, but its benefit in patients with this disease is unclear. The current study was undertaken to clarify the role of OLT in the management of this disease. The medical literature, a national registry of US OLT recipients, and a single institution liver transplant experience were reviewed for cases of OLT for propionic acidemia. Accumulated cases demonstrate that OLT has resulted in clear evidence of clinical improvement in several patients, often obviating the need for dietary restriction or other forms of medical management. OLT appears to halt the decline in neurocognitive function often associated with propionic acidemia. In total, 12 patients with propionic acidemia have undergone a total of 14 OLTs. A quantitative analysis of outcomes shows an overall patient survival rate of 72.2% at one year after OLT. In conclusion, OLT should be considered a treatment option for patients with propionic acidemia who continue to experience episodes of hyperammonemia in spite of maximal medical therapy. Early OLT may limit the development of mental retardation and/or cardiomyopathy.
BACKGROUND: Combined transplantation of the lungs and liver is indicated for patients who would not be expected to survive transplantation of either organ alone. No single center has accumulated a significant experience, and as a result the expectations for this operation in the current era are unknown. METHODS: Patients that have undergone combined lung-liver transplantation in the United States were enrolled through the United Network for Organ Sharing Organ Procurement and Transplantation Network database. In addition, the English-language literature was searched for additional cases of combined lung-liver transplantation. RESULTS: Eleven patients have undergone combined lung and liver transplantation in the United States at different centers. The 1- and 5-year patient survival rates are of 79% and 63%, respectively, and no patient has required retransplantation. These patient survival rates are equivalent to similar a combined lung-liver case series from the United Kingdom (P=0.37, log-rank test) and isolated orthotopic liver transplantation in the United States (P=0.59, log-rank test), and are comparable to patient survival rates following isolated lung transplantation in the United States. CONCLUSIONS: Patient survival of combined lung-liver transplantation is comparable to that of isolated liver and isolated bilateral lung transplantation. This option should be considered for patients with end-stage lung disease and liver disease when transplantation of a single organ transplantation is precluded by severe disease in the other organ system.
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Biliary atresia is the most common indication for orthotopic liver transplantation (OLT) in the pediatric population. The outcomes of liver transplantation for biliary atresia, however, have not been formally examined on a national scale. The objective of this study was to identify pretransplant variables that predict patient survival after primary liver transplantation for biliary atresia. A cohort of 1,976 pediatric patients undergoing primary liver transplantation for biliary atresia between 1/1988 to 12/2003 was enrolled from the United Network for Organ Sharing database after excluding patients with a history of multiorgan transplant or previous liver transplant. Follow-up data up to 16 years post-OLT was available. The 5- and 10-year actuarial survival rates of patients that underwent liver transplantation for biliary atresia in the United States are 87.2% and 85.8%, respectively, and the 5- and 10-year graft actuarial survival rates are 76.2% and 72.7%, respectively. Early deaths (< or =90 days post-OLT) were more often caused by graft failure (P = 0.01), whereas late deaths (>90 days post-OLT) were more often due to malignancy (P < 0.01). An analysis of outcomes over time demonstrated a decrease in post-OLT survival and an increase in the number of OLTs done for biliary atresia at an increasing number of centers. A multivariate analysis revealed that cadaveric partial/reduced liver grafts, a history of life support at the time of OLT, and decreased age were independent predictors of increased post-OLT mortality. In conclusion, OLT is an effective treatment for biliary atresia. Certain pretransplant variables may help predict patient survival following liver transplantation for biliary atresia.
Split-liver transplantation (SLT) increases the pool of organs for pediatric orthotopic liver transplantation (pOLT). With increased collaboration and organ sharing, transplant centers can fully maximize the use of all split donor allografts. Herein, we report the collaborative results between two distant centers involved in a sharing alliance. The current study consists of a retrospective review of 56 pediatric LLS transplants performed at two collaborating centers between 9/1997 and 10/2003. Fifty-three patients (41% Status 1) were transplanted using 56 left lateral segment (LLS) grafts. Sixteen percent of LLS grafts were shared between the two institutions. Overall patient survival at both 1 and 3 years was 90% and 90%, respectively. Overall graft survival at both 1 and 3 years was 82% and 82%, respectively. Shared patient and graft survival was 89% and 89%, respectively. There was an 11% biliary complication and 18% vascular complication rate. Five patients required retransplantation. In conclusion, SLT increases the number of available allografts for pOLT. While SLT is technically demanding, with a significant learning curve, patient and graft survival rates compare favorably with United Network Organ Sharing (UNOS) averages. Sharing of grafts between centers is a safe and effective way to maximize organ usage and should be actively pursued through collaborative networks.
Split liver transplantation (SLT) benefits society by increasing the total number of transplants that can be performed, but it is yet unknown if a decreased post-transplant survival (in comparison to whole liver transplantation) would make participation in SLT less appealing to adult liver transplant candidates. A 20-item questionnaire was administered to 50 adult candidates to assess attitudes toward SLT and organ sharing. The overall attitudes of 60% of participants were classified as utilitarian (maximizing benefit to greatest number of candidates), while 26% were classified as self-preserving (maximizing individual benefit) and 14% were undecided. Ninety percent of participants would be willing to share even if expected survival was less than that of whole liver transplantation, and 69% felt that pediatric candidates should have priority over adult candidates. In conclusion, attitudes toward graft sharing and the possibility of compromised survival benefit are not barriers to SLT for most adult liver transplant candidates.
BACKGROUND: No definitive antiviral therapy exists for adenovirus (ADV) in immunosuppressed hosts. Cidofovir (CDV), a broad spectrum anti-DNA viral agent, has previously been shown to be of therapeutic benefit in life-threatening adenoviral disease in bone marrow stem-cell recipients. METHODS: A 71/2-month-old girl with a history of biliary atresia developed fevers, hematochezia, tachypnea, and laboratory evidence of hepatitis and pancreatitis 12 days after liver transplantation. A stool culture, oropharyngeal culture, blood viral culture, and blood polymerase chain reaction (PCR) confirmed ADV. Cidofovir 1 mg/kg intravenously three times per week was initiated. The patient received intravenous hydration and probenecid with the infusions to reduce the nephrotoxicity of CDV. Immunosuppression was reduced to achieve tacrolimus trough levels of approximately 8 ng/mL and prednisone at 0.1 mg/kg per day. Complete blood cell count, urinalysis, and viral studies were obtained weekly. RESULTS: Detection of ADV DNA by PCR made a transition from positive to negative during CDV therapy. Blood viral cultures became negative after two CDV doses. Alanine aminotransferase normalized by 5 weeks of therapy. CDV was discontinued after 7 weeks secondary to transient acidosis and proteinuria. The patient never developed azotemia, neutropenia, or ocular abnormalities. CONCLUSIONS: CDV was associated with improved clinical status, viral clearance, and minimal transient side effects in a pediatric liver transplant recipient with disseminated adenoviral disease. The current report documents clearance of disseminated ADV infection in a liver transplant recipient receiving CDV infusions.
BACKGROUND: Mild liver dysfunction is common after prolonged use of parenteral nutrition (PN), but end-stage liver failure occurs only rarely. Few treatment options other than combined liver-intestine transplantation exist for patients with liver failure associated with PN use, however. Herein, we report the results of a cohort of patients undergoing isolated orthotopic liver transplantation (OLT) for PN-associated liver injury. METHODS: A retrospective cohort study of 80 patients (73 pediatric patients and 7 adults) who have undergone isolated OLT for PN-associated liver injury as the primary indication for transplantation was performed. RESULTS: At the time of OLT, the mean total serum bilirubin was 19.5 mg/dL and the mean serum albumin level was 2.9 mg/dL. Severe hepatic encephalopathy was seen in 5%, spontaneous bacterial peritonitis was seen in 6.3%, and respiratory failure requiring mechanical ventilation was seen in 14% of patients at the time of OLT. Overall 1- and 5-year survival rates were 72% and 52%, respectively, with infection being the most common cause of death after OLT. Retransplantation was required in 25% of patients, and the 5-year posttransplant patient survival rate only reached 35% in these cases. CONCLUSIONS: Patients with end-stage liver disease associated with PN administration often have very severe liver disease, multiple comorbidities, and poor prognosis by the time they are listed for OLT. Nonetheless, isolated OLT is associated with good long-term survival and should be considered for selected patients with combined intestine-liver failure.