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Biomedical subjects

E Andorno

Publications and source records attributed to E Andorno.

At least 19 recordsLinked to original sources

Split liver transplantation in Italy.

The role of split liver transplantation has been well established. The limitation to this technique is the number of potential recipients for a left lateral segment graft. The optimal use of the donor pool is to split the liver to provide 2 grafts suitable for adults obtaining right or left lobe. We explored the potential increase in the number of liver grafts gained from systematically using the technique of splitting on national basis. The crucial factor appeared to be creation of guidelines for the use of optimal livers to optimize organ allocation while minimizing pretransplantation mortality and maximizing post-orthotopic liver transplantation outcome.

Hepatectomy↗

Potential predictive value of the MELD score for short-term mortality after liver transplantation.

In the last years, a model for end-stage liver disease (MELD) was suggested as a disease severity score for patients with end-stage liver disease awaiting liver transplantation. In the early 2002, United Network for Organ Sharing (UNOS) has proposed to replace the current status 2A, 2B, and 3 by a modified version of the original MELD score based upon patient risk for 3-month mortality on the waiting list. In this study UNOS status and MELD score were evaluated retrospectively for postoperative 3-month mortality in patients who underwent liver transplantation from 2000 to 2001. Liver recipients were stratified for UNOS status 2A, 2B, and 3, and the corresponding MELD score was calculated for each patient. A receiver operating characteristic (ROC) analysis was performed for both conventional UNOS status and MELD score by fitting patient deaths within 3 months after liver transplantation. The MELD score revealed a better prediction rate for 3-month mortality after the first LT than conventional UNOS status, although no statistical significance was evident by ROC curve comparison. This preliminary study seems to suggest a potentially better predictive rate for the MELD score than conventional UNOS status concerning short-term mortality after liver transplantation.

Humans↗

Simultaneous liver-kidney transplantation for glycogen storage disease type IA (von Gierke's disease).

INTRODUCTION: Glycogen storage disease type Ia (GSDIa) is due to the deficiency of glucose-6-phosphatase activity in the liver, kidney, and intestine. Although significant progress has been achieved in the management of patients with GSDIa, complications still emerge. The potential for development of liver adenomatosis and kidney failure makes these patients candidates for simultaneous liver-kidney transplantation (SLKT). Herein, we describe such a transplantation in a patient affected by this rare storage disease. METHODS: A 25-year-old female patient with GSDIa developed hepatic adenoma and kidney failure despite dietary therapy. The patient underwent an SLKT from a cadaveric donor. RESULTS: The operative time was 8 hours without hemotransfusion. Only a transitory lactic acidosis was observed. Laboratory results normalized on postoperative day 7. The patient was discharged on postoperative day 9. After 4 months, the patient is in good condition with well-functioning kidney and liver allografts. CONCLUSION: Patients with end-stage renal disease secondary to GSDIa should be considered for SLKT, especially when the disease is in an early stage.

Adult↗

Impact of ischemia/reperfusion on transplanted livers procured from elderly cadaveric donors.

The increasing number of clinical indications for liver transplantation has forced physicians to use livers procured from elderly cadaveric donors to expand the graft pool. However, the degree of ischemia/reperfusion damage in elderly livers remains poorly investigated. In this study, the outcomes of livers procured from a group (I) of young donors (n=12; 38 +/- 12 years; range: 21-58) were compared with a group (II) from elderly donors (n=7; 68 +/- 7 years; range: 62-84) for changes in reduced glutathione, the main hepatic free radical scavenger. Reduced and oxidized glutathione were assayed by high performance liquid chromatography in liver biopsies performed just before cold ischemia and during early reperfusion. A significant decrease in reduced glutathione was observed at the time of reperfusion in both groups I (P=.0195) and II (P=.002). Before cold ischemia and during early reperfusion, no differences between young versus elderly donors were noted in the oxidized/reduced glutathione ratio, in conventional graft function markers or in liver-related hemostatic parameters. Comparable glutathione contents were measured at the time of early reperfusion in livers obtained from young and elderly cadaveric donors, suggesting that livers procured from elderly donors might be adequately protected against ischemia/reperfusion damage.

Adult↗

Portal vein pressure and graft oxygen consumption monitoring during liver transplantation.

UNLABELLED: Abnormal splanchnic circulation (ASC) is often detected too late, when hepatic circulation is already irreversibly compromised. If we could detect surgical or metabolic problems early after graft reperfusion, we might be able to correct them immediately before the damage becomes irreversible. The aim of this study was to determine if ASC can be predicted early after liver transplantation (LT) using portal vein pressure measurements and graft oxygen consumption monitoring. PATIENTS AND METHODS: Twenty-patients (13 men, 7 women of mean age 46 years) undergoing LT with the piggyback technique for hepatitis C virus (HCV)/hepatitis B virus (HBV)-related cirrhosis were retrospectively divided in two groups. Group A (16 patients), in which LT was successful, and group B (4 patients) in which LT was unsuccessful because of primary nonfunction (2 patients), infrahepatic portal vein thrombosis (1 patient), or hepatic vein kinking (1 patient). We then compared the portal blood pressure values and the prehepatic and posthepatic oxygen content difference (p-pDO(2)) before portal clamping; at the end of anhepatic phase; 5, 15, and 25 minutes after portal vein (PV) reperfusion; and 5, 20, 40, and 100 minutes after hepatic artery anastomosis. RESULTS: Early after graft reperfusion; portal pressure decreased to levels lower than that at baseline in group A, but remained high until the end of surgery in group B. At the end of surgery, p-pDO(2) increased more among group B than group A. CONCLUSION: ASC, specifically an increased PV resistance, can be predicted early after LT by portal vein pressure measurements and graft oxygen consumption monitoring.

Adult↗

[Autostatic hepatic retractor in orthotopic liver transplantation].

Liver transplantation (LT) is the treatment of choice for acute and chronic liver failure, for hepatocarcinoma and for same metabolic diseases. The shortage of donors leads to use over 60 tears-old donors and to develop new surgical technique to split the liver in 2 grafts. In our institution we set 2 targets: 1) to improve the number of liver transplantations using in situ split liver grafts and old donors, 2) to simplify the surgical technique. Since 1997 we performed 174 LT: 73 with whole size graft from under 60 years old donors, 42 with whole size graft from over 60 years old donors and 59 with split liver grafts. The autostatic hepatic retractor (AHR) was designed to make easier the hepatic hilar dissection and the vascular and biliar anastomoses. The particular steel plate of AHR lifts the inferior surface of the right and left hepatic lobes laying out the hilum to the porta hepatis; its malleability makes possible prolonged atraumatic use in accordance with the anatomical conformation of the liver. AHR is used in LT during the dissection of the left and right hepatic arteries, the dissection of the main portal trunk and its left and right branches, the isolation of the hepatic bile duct; moreover AHF is employed for portal, arterial and biliar anastomoses. In our experience the use of AHR was easy, safe and useful. AHR can help the surgeon during hepato-biliary surgery whenever hilar dissection is required.

Equipment Design↗

In situ splitting of a liver with middle hepatic vein anomaly.

In situ liver splitting provides a way to expand the graft pool, minimize cold ischemia time, and improve hemostasis at the cut surface of the graft. Vascular anomalies of the liver may make the splitting procedure very difficult or even impossible to perform. The in situ splitting procedure, performed on a liver with a middle hepatic vein (MHV) anomaly, is described here. The MHV drained directly into the segment III vein within the hepatic parenchyma instead of draining into the left hepatic vein to form the common trunk. In situ splitting was performed during multiorgan procurement from a 33-year-old man who died of isolated cerebral trauma. The MHV was reconstructed on the back table to secure right graft venous drainage using an iliac vein graft. The resultant right graft, segments I and IV to VIII, and left graft, segments II and III, were transplanted successfully into an adult and a child, respectively. The 2 transplant recipients are currently alive with normal hepatic function 20 months after transplantation.

Adult↗

Effects of ischemia-reperfusion on hepatic glutathione and plasmatic markers of graft function during in situ split-liver transplantation in adult recipients.

In situ split-liver transplantation is a new surgical technique where the bipartition of a single liver allows procurement of a right graft (segments I, IV, V-VIII) for an adult recipient (75% of the total liver volume), and a left graft (segments II and III) for a child recipient. The present study was designed to assess the effects of ischemia-reperfusion on right grafts obtained by in situ split-liver transplantation. To this aim, hepatic glutathione and conventional plasmatic markers of allograft function (alanine and aspartate aminotransferase, total bilirubin, prothrombin time, lactate dehydrogenase, gamma-glutamyltranspeptidase, and alkaline phosphatase) were evaluated in four adult recipients. At the time of reperfusion, a marked glutathione decrease was found in the segment VI in three cases, whereas the amount of glutathione in segment IV was related to the duration of cold ischemia in all cases. Upon reperfusion, a marked increase in plasmatic alanine aminotransferase, aspartate aminotransferase, and lactate dehydrogenase was found. A recovery in prothrombin time was observed from the first day in three cases. An increasing trend in total bilirubin, gamma-glutamyltranspeptidase, and alkaline phosphatase was noted from the second day after transplant. This preliminary study suggests a possible relationship between the duration of cold ischemia, amount of glutathione in segment IV of the right graft, and the trend in plasmatic markers of allograft damage during in situ split-liver transplantation in adult recipients.

Adult↗

Reperfusion damage to the bile canaliculi in transplanted human liver.

In 19 patients who have undergone orthotopic liver transplantation (OLT), the trend and degree of cholestasis was statistically monitored in terms of plasma levels of L-gamma-glutamyl transferase (GGT) and total bilirubin. In addition, the ultrastructure of the bile canaliculus was examined during the entire OLT procedure, i.e., during explantation, cold ischemia, and after 60 to 90 minutes of organ reperfusion. Cholestasis was evident from the second day after surgery, with a peak after approximately 10 to 16 days. Defined, small changes in the functional state of actin filaments were noted in the bile canalicular area after prolonged ischemia. But the morphological status of the bile canaliculi changed dramatically after reperfusion. In fact, the mean area and perimeter of the canaliculi had increased significantly, and there was a marked loss in the number of bile microvilli per unit of canalicular area. The bile canaliculus appears to be one of the liver structures most susceptible to ischemia-reperfusion damage. A series of biochemical changes occurring during ischemia and after reoxygenation of the transplanted liver, especially, would provide a reason for the observed early morphological damage of the bile canaliculus, which, in turn, would explain the cholestasis of these patients in the first posttransplantation period.

Adenosine Triphosphate↗

Oxidative damage in human liver transplantation.

The aim of this study was to evaluate oxygen-dependent hepatic reperfusion injury in humans following orthotopic liver transplantation. To this end, a number of blood indices of impaired tissue redox balance were monitored in 19 adult patients for 3 weeks after liver transplantation. Both red cell malonaldehyde and plasma lipid peroxides increased significantly soon after organ reperfusion. This finding was consistently accompanied by decreased plasma vitamin E and red cell total glutathione. A peak of oxidative stress, as measured by the parameters monitored, was evident within 24 h after reperfusion, together with a maximum expression of cytolysis, as measured by plasma alanine aminotransferase. The occurrence of redox imbalance after hepatic reperfusion was shown to be linearly related to irreversible cell damage. As regards the low plasma levels of the two antioxidants after reperfusion, only that of vitamin E appeared statistically related to oxidative stress. With the background of an increasing body of proof, mainly from animal models, the involvement of toxic oxygen metabolites in hepatic cytolysis following orthotopic liver transplantation appears likely. The statistical correlation among the markers of redox imbalance monitored indicates their combined use in further investigation.

Adolescent↗

Expression of estrogen receptor mRNA in tumorous and non-tumorous liver tissue as detected by in situ hybridization.

Estrogen receptor mRNA was detected by a non-radioactive in situ hybridization assay in tumor and non-neoplastic liver tissues. A synthetic oligonucleotide complementary to the human estrogen receptor mRNA was 3'-labeled with digoxigenin-deoxyuridine triphosphate (dUTP). Hybrids were revealed by an alkaline phosphatase-conjugated anti-digoxigenin antibody. Fourteen primary hepatocellular carcinoma tissues (and one metastatic) were obtained at surgery from 15 patients. The corresponding non-neoplastic liver tissues were available in 13 cases. The estrogen receptor mRNA was detected in 11 tumorous and 7 non-tumorous liver specimens. The staining was cytoplasmic and involved the majority of transformed hepatocytes, whereas a less widespread and weaker signal was found in normal hepatocytes. Within non-neoplastic tissue, bile duct epithelial cells could also be occasionally stained, whereas other cell types, such as vasal endothelial cells, were negative. Appropriate controls established the specificity of the reaction. Detection of the estrogen receptor protein by immunohistochemistry in these same specimens was invariably negative. This in situ hybridization assay can therefore be used as a complementary tool to evaluate the estrogen receptor expression within liver cancer.

Adolescent↗

[Liver transplantation: role of the radiologic methods in the postoperative period].

Some complications of liver transplantation appear as aspecific clinical and blood test abnormalities; others--e.g., hepatic artery thrombosis in the immediate postoperative period and stenosis of the biliary anastomosis before T-tube removal--require early diagnosis. These considerations justify the need of frequent radiologic examination in both the complicated course and the follow-up. The authors report their experience in 59 adult patients submitted to liver transplantation for irreversible liver disease in advanced stage (49 with cirrhosis, 10 with HCC; 5 with cholestatic hepatopathy; 3 with fulminant hepatitis; 1 with Budd-Chiari syndrome; 1 with metastatic APUDoma). Two hundred and sixty-three radiological examinations were performed (Doppler US, CT, angiography and cholangiography) which showed numerous early and delayed complications: 13 of them were treated with interventional radiology maneuvers (US-or CT-guided percutaneous drainage of fluid collections, biliary drainage, bilioplasty, arterial transcatheter embolization). Our results demonstrate that diagnostic and operative radiology are essential for the success of liver transplantation; integrated imaging is particularly important in the diagnosis of complications, while interventional radiology techniques can be usefully employed in their treatment.

Adult↗