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A Yussim

Publications and source records attributed to A Yussim.

At least 19 recordsLinked to original sources

Single-bolus high-dose ATG for prophylaxis of rejection in renal transplantation--a prospective, randomized study.

Currently, most centers use antithymocyte globulin (ATG) for induction or treatment of acute rejection. In the literature, postponement of introduction of cyclosporine or delay in acute rejection following ATG induction are well documented [1-4]. In contrast, data are very scant on the reduction of incidence of rejection or improvement of graft survival following ATG prophylaxis [5, 6]. The objective of this study was to compare the efficacy and safety of ATG high-dose single-bolus therapy with that of a standard cyclosporine-based protocol in prophylaxis of acute rejection in renal transplantation in an adult population. Rabbit ATG (Fresenius, Oberursel) was administered intraoperatively (before revascularization) to 19 renal transplant recipients as a single intravenous injection in a dose of 9 mg/kg body weight (high dose, single bolus). Treatment results were compared with those of a control group comprising 19 recipients receiving the same cyclosporin-Neoral-based protocol as the study group. In all patients concomitant medication consisted of steroids and azathioprine. The incidence of acute rejection in the high-dose ATG bolus group was 26%, compared with 58% in controls (P < 0.05). In the ATG treated group no grafts were lost to acute rejection in both high- and low-risk recipients, versus compared with a loss of 37% of rejecting grafts in controls. Though the observed difference in 1-year graft survival between study and control groups (84.2% vs 73.6%) did not reach statistical significance, the same trend was also observed in patients (n = 9 and n = 12 respectively) who, at he time of this report, had completed a 2nd post-transplantation year. The bolus and control groups had a similar incidence of complications and comparable renal function. We conclude that a single-bolus high-ATG protocol is efficient and safe in prophylaxis of renal allograft rejection.

Adult↗

Introduction

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Journal Article↗

Hepatic artery thrombosis in pediatric liver transplantation: graft salvage after thrombectomy.

Hepatic artery thrombosis (HAT) is a devastating complication that may occur after orthotopic liver transplantation (OLT). A higher incidence has been reported in children. Salvage of the graft by thrombectomy has been suggested as an alternative to re-transplantation. In this study we report the outcome of three children who underwent thrombectomy for HAT. Between January 1992 and June 1998, 14 children (< 17 yrs of age) underwent liver transplantation. Three developed HAT (one a whole-liver graft recipient, age 17; two living-related graft recipients, ages 4 and 4.5 yr). In the first patient, thrombosis of the hepatic artery was associated with scattered areas of parenchymal necrosis on computed tomography. In the two living-related patients, HAT was found incidentally during re-exploration for bleeding (day 2 and day 10). Thrombectomy was performed in all three patients. At 18-24 months after thrombectomy, all three children had normal graft function. In the first patient, complete regeneration of the liver has been documented by computed tomography and a late asymptomatic recurrent thrombosis is suggested by absence of arterial flow on Doppler examination. The hepatic artery is patent in the two living-related recipients. One of these living-related recipients developed ischemic bile duct stricture and underwent successful percutaneous balloon dilatation. We conclude that long-term normal graft function can be achieved by thrombectomy in pediatric liver recipients with HAT, even in the presence of limited parenchymal damage.

Adolescent↗

Acute cellular rejection of human renal tissue by adoptive transfer of allogeneic human peripheral blood mononuclear cells into chimeric rats: sequential gene expression of cytokines, chemokines and cytolytic effector molecules, and their regulation by CTLA-4-Ig.

T(h)1- and T(h)2-related cytokines (IFN-gamma, IL-2, IL-4, IL-10), beta-chemokines (RANTES, macrophage inflammatory protein-1beta) and their receptor [chemotatic cytokine receptor (CCR) 5], and the cytolytic effector molecule [Fas ligand (FasL)] play an essential role in regulating and co-ordinating acute renal allograft rejection. A chimeric model of acute cellular rejection which involves subcapsular grafting of human renal tissue in the kidneys of immunodeficient rats and subsequent i.p. infusion of allogeneic human peripheral blood mononuclear cells (PBMC) was used to study cellular infiltration patterns and sequential intragraft gene expression of these key inflammatory mediators. We found that while all molecules are expressed within the human renal implant at specific time points following infusion of allogeneic human PBMC, peak mRNA expression of IFN-gamma, IL-2, RANTES and CCR5 is associated with a phase of human mononuclear infiltration and accumulation, prior to graft destruction (induction phase). A short burst of FasL gene expression is found at the end of induction and at the onset of graft deterioration. IL-4 mRNA, which is hardly detectable, and IL-10 mRNA, which appears early and persists throughout follow-up at high levels, both peak after the induction phase with the advent of graft destruction. Furthermore, treatment with CTLA-4-Ig, which hardly affects migration of human effector cells into graft tissue, is associated with a temporary reduction in gene transcript levels for all inflammatory mediators, especially IL-2 and IL-4, reduced apoptosis in the graft and amelioration of tissue injury. Thus, development of acute cellular rejection in our chimeric model involves a co-ordinated pattern of gene expression, in which CTLA-4-Ig promotes its effects by transient inactivation of infiltrating human cells.

Abatacept↗

[Living-related liver transplantation--first experiences at Rabin Medical Center].

Our experience with living-related liver transplantation is described. In 2 boys and 1 girl, aged 4-4.5 years with acute, fulminating hepatitis A, the presence of very severe jaundice (bilirubin levels > 18 mg%) associated with severe coagulopathy (INR > 10) and encephalopathy indicated the need for urgent liver transplantation. In all 3 cases the left lateral hepatic segment of a matched blood type parent was transplanted. None of the donors suffered a serious complication postoperatively and all returned to full activity in 6-16 weeks. The post-transplantation course was uneventful in 1 child, but in the other 2 there was hepatic arterial thrombosis in 1 at 1 day and in the other at 8 days post-transplantation. Early detection of arterial thrombosis by Doppler sonography permitted salvage of the 2 hepatic grafts after thrombectomy and re-anastomosis. In 1 of these 2 children an anastomotic biliary stricture was found 2 months after transplantation. It was corrected at surgery and a percutaneous stent was inserted. All 3 children are alive with normal graft function at 2, 7 and 8 months post-transplantation, respectively. This initial experience indicates that living-related liver transplantation is feasible in Israel. The technique might help to solve our severe organ shortage for children awaiting liver transplantation.

Adult↗

[Liver allografts from donors older than 60: benefits and risks].

With limited organ resources and an increasing number of candidates for liver transplantation, the world-wide trend is towards using liver allografts from donors older than 60 years. This strategy, however, may be hazardous because of the known correlation between advanced donor age and graft dysfunction. Since January 1996, each of 5 patients received a liver allograft from a donor older than 60 years. Preservation time in these cases was shortened as much as possible and liver allografts were used only if there were no other potential risk factors for primary nonfunction. Mean cold ischemic time was significantly shorter in this donor group (7.8 hrs) than for livers from 28 younger donors (10.2 hour; p < 0.01). 3 of the 5 grafts from older donors had normal function immediately. The other 2 initially had biochemical features of preservation injury, but graft function returned to normal within the first week after transplantation. All 5 patients currently have normal graft function, with follow-up ranging from 3-8 months. There was no difference between the 5 recipients of grafts from older donors and 28 adult recipients of grafts from younger donors in extent of preservation injury and in immediate graft function. We conclude that in countries with limited organ resources, such as Israel, liver allografts from older donors can be used within defined limits and minimal preservation time.

Adult↗