Renal failure after orthotopic liver transplantation (OLT) is a common complication (ranging from 12% to 70%) associated with worse outcomes, particularly when it requires renal replacement therapy (RRT). Renal dysfunction is a common scenario among waiting list patients. It can lead to a worse prognosis after OLT, due to an increased incidence of postoperative renal failure. The aim of this study was to analyze the incidence of renal failure after OLT, its relationship to pretransplant renal dysfunction, and its impact on outcomes. We analyzed data collected prospectively from 152 consecutive OLTs in 139 patients performed by the same team from March 2003 to November 2007. Exclusion criteria for 34 cases included transplantation due to acute liver failure, combined liver-kidney transplantation, retransplantation, and patients who died up to 2 days posttransplantation. Based on creatinine clearance (CCr) calculated at the time of OLT, the 118 patients were classified in two groups: group I, normal pre-OLT renal function (CCr > or = 70 mL/min) versus group II, pre-OLT renal failure (CCr < 70 mL/min). Each group was analyzed according to the development of post-OLT renal failure, being classified as subgroup A (normal renal function post-OLT), subgroup B (mild renal impairment post-OLT-serum creatinine level between 2.0 and 3.0 mg/dL or doubled basal value up to 3.0 mg/dL) versus subgroup C (severe renal impairment post-OLT-serum creatinine level > or = 3.0 mg/dL or utilization of RRT). The overall incidence of post-OLT renal impairment was 41.52% with RRT in 22 patients (18.64%). Group II patients showed a greater incidence of post-OLT renal failure when compared with other patients (P < .05), but without a statistical difference when compared according to RRT requirement. Comparison of average hospital stay was similar between groups I and II, and also among its subgroups (A, B, and C, respectively). There was no statistical difference in early (30-day) and 1-year survival rates between groups I and II. Comparing all subgroups for early and 1-year survival, we observed that patients who developed severe renal failure post-OLT (subgroups I-C and II-C) showed worse outcomes compared with other patients (subgroups I-A, I-B, II-A, and II-B), respectively 95.29% versus 69.69% and 86.95% versus 41.66% for early and 1-year survivals (P < .001). In conclusion, our findings suggested that patients who developed severe renal failure post-OLT, independent of pretransplant renal function, showed worse outcomes.
The treatment of end-stage liver disease includes transplantation as a life-saving procedure although it has serious complications of hepatic artery thrombosis, liver dysfunction, or primary nonfunction, which frequently lead to the need for retransplantation. According to various reports, the incidence of retransplantation is around 10%. Given the critical organ shortage, the chance for a second transplant remains a controversial discussion in medical, ethical, and economic grounds because patient and graft survival rates after retransplantation are lower than those for primary transplantations. We retrospectively reviewed all of the urgent liver retransplants from October 2001 to February 2005 (52 months) by analyzing the number of retransplants, blood group, time between first and second liver transplantation, age, sex, and mortality. Data were obtained from the Transplantation System, State of Sao Paulo Health Secretariat. Among 1252 liver transplants performed during this period, 98 (7.82%) were urgent retransplantations. The primary procedure employed 955 (76.28%) deceased donors and 297 (23.72%) living donors. All 98 retransplants were performed using an organ from the pool of deceased donors. The retransplant rate was acceptable according to the literature, although we observed high rates of early mortality (<60 days), leading to a discussion of which patients had a better chance of survival and the best time to perform the second transplantation to use this scarce and precious resource in the best possible way.
Hydrothorax is a frequent finding in patients with end-stage liver disease. During the hepatectomy phase of liver transplantation, it is often needed to evacuate large pleural effusions. The acute expansion of the collapsed lung can cause reexpansion pulmonary edema with variable clinical significance. However, this complication has rarely been reported after liver transplantation. In conclusion, we report on an overwhelming reexpansion pulmonary edema during a liver transplantation that rapidly led to the patient's demise and speculate if this condition has not been under recognized in the transplantation setting.