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S G Tullius

Publications and source records attributed to S G Tullius.

At least 55 records · Page 3Linked to original sources

ICAM-1 antisense oligodesoxynucleotides prevent reperfusion injury and enhance immediate graft function in renal transplantation.

BACKGROUND: Ischemia-reperfusion injury after organ transplantation is a major cause of delayed graft function. We showed earlier that antisense oligodesoxynucleotides (ODN) for intercellular adhesion molecule-1 (ICAM-1) ameliorate reperfusion injury after acute ischemia. This study tested the hypothesis that antisense ODN for ICAM-1 prevents ischemia-reperfusion injury and facilitates immediate graft function in a rat autotransplantation model. METHODS: Both kidneys were removed from male Lewis rats and re-implanted the left kidney after 30 minutes of cold ischemia time. The warm ischemia time was 60 minutes. Sham operated, uninephrectomized animals served as controls for renal function and histology. ICAM-1 antisense ODN (5 mg/kg), reverse ODN, or saline-vehicle were administered to donor animals i.v. six hours before autotransplantation. Glomerular filtration rate (insulin clearance), and serum creatinine concentrations were measured 24 hours post-transplantation. Tubular necrosis severity was assessed by histological grading scale. ICAM-1 expression was determined by immunohistochemistry and Western blot. RESULTS: Antisense ODN decreased ICAM-1 expression and leukocyte infiltration significant. Antisense ODN-treated animals showed significantly less tubular necrosis, than controls. Serum creatinine of antisense ODN-treated animals (N = 6) was 0.55 +/- 0.02 mg/dl compared to 1.92 +/- 0.07 mg/dl in reverse ODN-treated controls (N = 6; P < 0.01), 24 hours after transplantation. Antisense ODN-treated animals had normal GFR (0.93 +/- 0.07 ml/min/kidney wt) compared to sham-operated animals (0.95 +/- 0.09 ml/min/kidney wt), while autotransplanted animals treated with reverse ODN or saline-vehicle were all anuric. The ischemia-reperfusion-induced up-regulation of MHC class II was totally prevented by antisense ODN. CONCLUSIONS: ICAM-1 inhibition ameliorates ischemia-reperfusion injury and prevents delayed graft function. Antisense ODN-treatment of donors or donor organs for ICAM-1 may be useful for the prevention of reperfusion injury in human renal transplantation.

Animals↗

Inhibition of intercellular adhesion molecule-1 with antisense deoxynucleotides prolongs renal isograft survival in the rat.

BACKGROUND: Delayed graft function from ischemia-reperfusion injury has a negative impact on long-term renal graft survival. We tested the utility of antisense oligodeoxynucleotide (ODN) against intercellular adhesion molecule-1 (ICAM-1) in the pretransplant treatment of renal isografts in improving long-term graft survival. METHODS: Three groups of 16 inbred Lewis rats each underwent unilateral nephrectomy and were then transplanted with a kidney from a Lewis donor rat, which had received antisense ODN, reverse sense ODN, or saline vehicle six hours prior to nephrectomy. The kidneys were subjected to one hour of warm ischemia and 30 minutes of cold ischemia, which when untreated results in delayed graft function. The remaining native kidney was removed 10 days later. Serum creatinine and urinary protein excretion were measured in surviving rats at weeks 2, 4, 6, 8, 12, 16, and 20 after native nephrectomy. RESULTS: A Kaplan-Meier analysis revealed that by week 6 one half of the animals receiving reverse sense ODN and saline vehicle treatment had died, while all but 2 rats in the antisense ODN-treatment group survived to 20 weeks. Serum creatinine concentrations and urine protein excretion of surviving reverse sense and saline vehicle-treated rats were significantly higher than antisense treated rats at every time point. Histology at week 20 revealed marked interstitial fibrosis, focal glomerular sclerosis, vascular intimal and medial thickening and tubular atrophy in reverse sense and saline vehicle-treated kidneys, while antisense ODN-treated kidneys showed only modest changes. Immunohistochemistry showed macrophage and lymphocyte infiltration, as well as substantial up-regulation of MHC class II, in reverse sense and saline vehicle-treated kidneys compared to antisense ODN-treated kidneys. CONCLUSIONS: These results suggest that by ameliorating acute nonimmunological renal isograft injury, the long-term chronic nonimmunologic processes are improved as well. Furthermore, the data suggest that an antisense ODN strategy directed against ICAM-1 may have utility in human kidney transplantation.

Animals↗

Contribution of early acute rejection episodes to chronic rejection in a rat kidney retransplantation model.

Chronic graft rejection represents the single most important risk factor for unsatisfactory long-term results after organ transplantation. In addition to various alloantigen dependent and independent factors, acute rejection episodes have been cited as a major immunological risk factor. However, the effects of acute rejection episodes on long-term graft outcome remains unknown. To examine the influence of a single early rejection event on ultimate graft outcome, acutely rejecting rat kidney grafts were retransplanted sequentially into syngeneic rats and their functional and structural behavior assessed over time. LEWxBNF1 kidney allografts and LEW isografts were removed from their LEW recipients after three, four, five and seven days (N = 12/group/time period) and retransplanted into donor strain hosts. The grafts were followed functionally and harvested four, eight, and 32 weeks later. Urinary protein excretion was measured weekly. Kidneys were examined morphologically and immunohistologically using monoclonal antibodies (mAbs) against macrophages (ED-1), T cells and their subsets (CD5, CD4, CD8), MHC class II expression (OX3) and adhesion molecules (ICAM-1 and LFA-1alpha). The mean standard time +/- SD of non-retransplanted allografts was 14.5 +/- two days; isografts functioned indefinitely. At five and seven days, acutely rejecting allografts showed massive cellular infiltrates associated with extensive necrosis. These changes could not be reversed by retransplantation and the syngeneic recipients later died of renal failure. In contrast, most allografts retransplanted earlier in the process recovered completely when retransplanted after three (12 of 12 allografts) and four (7 of 12 allografts) days. During the subsequent follow-up period, urinary protein excretion was comparable in retransplanted allografts and isografts. The increased mononuclear cell infiltration in non-retransplanted allografts seen at three and four days was only occasionally observed during the follow-up period after retransplantation. Only a few sclerosed glomeruli (approximately 15%), mild arterial changes and minimal cellular infiltrates were observed by 32 weeks, which were similar to that seen in retransplanted isografts. A single acute rejection episode was completely reversible and did not progress to chronic rejection if retransplanted into syngeneic donors when the inflammatory changes are still early. Those results demonstrate the critical effect of alloantigen-dependent events on chronic graft deterioration, and indicate that prompt and aggressive treatment of initial acute rejection episodes are beneficial to protect against late deleterious changes in the graft.

Animals↗

Orthotopic liver transplantation for hepatic associated metabolic disorders.

Hepatic associated metabolic disorders represent 5% of the indications for orthotopic liver transplantation (OLTX) according to the European Liver Transplant Registry. We studied the outcome of this group at our institution after OLTX and combined liver/kidney transplantation. Between September 1988 and January 1997, 837 OLTXs were performed in 735 patients. Patient survival and graft function at 1 yr were 91.3 and 86%, respectively. Thirty-nine OLTXs were performed in 38 patients (15 female/23 male, median age +/- SD: 35 +/- 14 yr, range 4-60 yr) due to liver associated metabolic disorders (4.7%). Indications included Wilson's disease (n = 14), alpha-1-anti-trypsin-deficiency (n = 7), hemochromatosis (n = 4), erythropoetic protoporphyria (n = 4), cystic fibrosis (n = 2), Crigler-Najjar syndrome type I (n = 1), glycogenosis type I (n = 1), ornithine-transcarbomylase-deficiency (n = 1). In addition 4 patients suffering from primary hyperoxaluria type I received combined liver/kidney grafts. Survival rate the 1 yr after OLTX and combined OLTX/NTX was 91.8%. Twenty patients received cyclosporin A (55%) and 17 patients tacrolimus (45%) as primary immunosuppression. The mean follow-up was 28.6 months (range 4-73 months). Two patients with hemochromatosis died 1 and 3 months after OLTX, respectively, from Aspergillus sepsis followed by multiorgan-failure. One patient died of malignant lymphoma 5 months after transplantation. One patient required retransplantation 2 months after OLTX following arterial thrombosis and ischemic type biliary lesion. One year after OLTX, all patients demonstrated good graft function, liver grafts (ALT 17.9 +/- 13.6 IU/L, bilirubin 0.8 +/- 0.3.mg/dl, thromboplastin time 94 +/- 15%), and combined liver/kidney grafts (creatinine 2.4 +/- 1.4 mg/dl). OLTX, respectively combined OLTX/NTX, represent a successful therapy for hepatic associated metabolic disorders. Survival rates and graft function are similar to those in liver graft recipients for established indications at our institution. OLTX seems to be an excellent treatment for hepatic based therapy resistant neurological disorders.

Adolescent↗

Treatment of cyclosporine-related adverse effects by conversion to tacrolimus after liver transplantation.

BACKGROUND: Cyclosporine (CsA)-associated side effects include nephrotoxicity, hypertension, neurological disorders, and hyperlipidemia. A considerable share of early and long-term posttransplant morbidity is likely to be drug related. METHODS: In 31 patients with stable graft function, conversion from CsA to tacrolimus was implemented due to nephrotoxicity (n=19), hypertension (n=9), and neurological disorders (n=8). RESULTS: Three months after conversion, a response was evident in 26 patients (84%), whereas 5 patients (16%) were nonresponsive. In 13 of 19 patients (68%) suffering from nephrotoxicity, serum creatinine levels decreased significantly from 2.0+/-0.5 mg/dl to 1.5+/-0.4 mg/dl (P<0.005), whereas in 6 of 19 patients (32%) no improvement was observed. Antihypertensive therapy was reduced in six of nine patients and neurological disorders improved in six of eight patients. When analyzing all patients, average levels of cholesterol and triglycerides were significantly lower after conversion when compared with at the time of conversion (P<0.05) CONCLUSIONS: Conversion to tacrolimus reduced drug-related side effects in the majority of patients, while graft function remained stable. Conversion to tacrolimus may be considered for CsA-related side effects as a potential beneficial approach.

Adult↗

De novo malignancies after liver transplantation using tacrolimus-based protocols or cyclosporine-based quadruple immunosuppression with an interleukin-2 receptor antibody or antithymocyte globulin.

BACKGROUND: Although conventional immunosuppression after liver transplantation consists of cyclosporine A (CsA), steroids, and azathioprine, recently introduced protocols entail CsA-based quadruple induction protocols or tacrolimus-based combinations. These protocols aim to reduce the rejection rate and the considerable morbidity related to the side effects of additional immunosuppressive treatment, but have not yet been analyzed regarding their long term de novo neoplastic risk. METHODS: From September 1988 to May 1994, 500 liver transplantations were performed in 458 patients. The median follow-up was 50 months (range, 0.3-97 months) for all patients. Conventional triple therapy was implemented in 25 patients, CsA-based quadruple induction therapy using an antilymphocyte globulin preparation (ATG) in 190 patients, an interleukin-2 receptor antibody (BT563) in 141 patients, and tacrolimus-based dual or triple immunosuppression in 102 patients. The different protocols were evaluated in four randomized and two nonrandomized prospective trials. RESULTS: De novo neoplasias were detected in 33 patients (7.2%) and were comprised of lymphomas (n = 7), skin malignancies (n = 8 lesions in 7 patients), intraepithelial neoplasias of the cervix uteri (n = 7), breast carcinoma (n = 3), lung carcinoma (n = 3), and other malignancies (n = 6). The incidence of de novo neoplasias did not differ in the different trial arms. Only a positive T-crossmatch and a low CD4+/CD8+ ratio in patients receiving CsA-based immunosuppression demonstrated a significant correlation with the development of a de novo tumor in a multivariant logistic regression analysis. CONCLUSIONS: The development of de novo neoplastic diseases after liver transplantation with the use of CsA-based quadruple induction protocols or tacrolimus-based regimens for immunosuppresion was assessed over the long term. Recently introduced immunosuppressive protocols did not alter the posttransplant de novo tumor rate. Patients with a low CD4+/CD8+ ratio during CsA-based therapy or a positive T-crossmatch were identified to be at an increased risk for the development of a de novo malignancy.

Antibodies, Monoclonal↗

Chronically rejected rat kidney allografts induce donor-specific tolerance.

Previous studies on pathophysiological mechanisms of chronic graft rejection demonstrated the impact of both alloresponsiveness and nonspecific immunological events on the process. To study the role of alloantigen-specific factors further, we hypothesized an acceleration of chronic graft rejection after presensitization. Chronically rejected renal allografts in the established Fischer 344 --> Lewis rat model were replaced sequentially by native allografts of donor origin. Grafting of second allografts was performed 2, 4, 8, and 12 weeks after the original transplantation and followed long term. Second allografts demonstrated significantly ameliorated functional and structural alterations with few cellular infiltrates. These changes were independent from the time interval between first and second engraftment (2-12 weeks); immunosuppressive treatment after the second engraftment was not influential. The nonresponsiveness was not restricted to the second kidney allografts, as heart allografts of donor origin in these recipients also functioned indefinitely, whereas third-party grafts (Lewis x Brown Norway F1) and Fischer 344 heart grafts in untreated Lewis control rats were acutely rejected. Thus, donor-specific and tissue-nonspecific graft acceptance is achieved by second engraftment of donor-specific allografts in a model of chronic graft rejection. Those observations demonstrate the synergistic effects of alloresponsiveness and of the injured graft itself for the development of chronic graft failure.

Animals↗

Female sex hormone receptor status in advanced hepatocellular carcinoma and outcome after surgical resection.

BACKGROUND: There is a limited amount of data regarding the estrogen receptor (ER) and progesterone receptor (PgR) status of hepatocellular carcinomas (HGCs), and the relationship between receptor status and clinicopathologic features of tumors has not been reported. METHODS: Between April 1992 and December 1993, cancerous tissues for cytosolic preparation and receptor quantification in a monoclonal solid-phase enzyme immunoassay were obtained from 28 patients undergoing resection, three patients with total hepatectomy and subsequent liver transplantation, and two patients suffering from nonresectable HCC. RESULTS: ER and PgR were detected in the HCCs of 13 (39%) and 6 patients (18%), respectively. A lower age was observed among the female patients whose receptor status was negative for ER or PgR or both, as compared with the respective receptor-positive groups. No significant differences with respect to tumor stage and grading could be observed. There was one perioperative death (3%). In patients undergoing curative resection, 1-year survival in the ER(+) group was significantly lower than in the ER(-) group (40% versus 79%, p < 0.05). The 2-year survival rates in the ER(+) and ER(-) groups were 40% and 71%, respectively. A comparable trend did not become evident for PgR(+) and PgR(-) patients. CONCLUSIONS: Our data suggest a negative effect of an ER(+) tumor on patient survival after curative resection of advanced HCC.

Aged↗

Indications for tacrolimus anti-rejection therapy in liver allograft recipients.

We reviewed our experience with conversion to Tacrolimus after 600 liver transplantations, performed from September 1988 to March 1995. Conversion to Tacrolimus as an anti-rejection therapy was implemented in 78 patients because of chronic ductopenic rejection (n = 9), early chronic rejection (n = 5), OKT3-resistant cellular rejection (n = 12), steroid-resistant cellular rejection (n = 30), late-onset cellular rejection (n = 10), cellular rejection in patients suffering from cyclosporin malabsorption (n = 5) and uncomplicated cellular rejection (n = 7). Control of rejection was achieved in 72 of 78 patients (92%); 6 patients (18%) were non-responsive. Patient and graft survival were 82% and 77%, respectively. Fourteen patients died almost exclusively from opportunistic infections. Out of the six patients who did not respond to Tacrolimus treatment, four underwent successful retransplantation and two died from infections associated with a poor graft function. Overall, graft loss with or without patient death occurred in 6 of 9 patients undergoing chronic rejection, in 3 of 12 patients with OKT3-resistant cellular rejection, in 6 of 30 patients suffering from steroid-resistant cellular rejection and in one patient each suffering from late-onset or uncomplicated cellular rejection. In severe steroid-resistant cellular rejection, successful Tacrolimus rescue therapy corresponded to a significantly lower preconversion total serum bilirubin when compared to failures (9.9 +/- 6.8 mg% vs. 22.2 +/- 7.3 mg%, P < 0.05). Conversion to Tacrolimus was a reliable treatment option in liver allograft rejection. However, failures occurred in the OKT3- and steroid-resistant cellular rejection groups, and only in a subgroup of patients suffering from chronic rejection was a permanent benefit observed. Implementation of a conversion early in the course of a rejection episode may result in a further improved outcome. Predictive parameters, e.g. the total serum bilirubin in steroid-resistant cellular rejection, are still needed to select those patients who would profit rather from a retransplantation.

Adult↗

Infection-associated cellular activation accelerates chronic renal allograft rejection in rats.

The etiology of chronic rejection is unknown, although acute rejection, viral infection, and initial graft ischemia have been implicated. To test the effects of infections on the process of chronic rejection, we simulated bacterial infection by the administration of the endotoxin lipopolysaccharide (LPS), a potent activator of various cell types in an established rat model of chronic rejection. Lewis recipients of Fisher 344 kidneys were treated with a single dose of LPS or vehicle 8 weeks following transplantation and grafts were examined at various time points. In the chronically rejecting controls, leukocytic infiltration and the expression of cytokines peaked at 16 weeks. In LPS-treated hosts, leukocyte infiltration and cytokine expression peaked at 12 weeks. By 16 weeks, glomeruli in LPS-treated recipients had become far more sclerotic than those in controls, mimicking the changes observed in controls at 24 weeks. We conclude that infections may play an important role in the development of chronic rejection.

Animals↗

Infections and reduced functioning kidney mass induce chronic rejection in rat kidney allografts.

The etiology of chronic rejection of kidney allografts is unknown, although hyperfiltration, acute rejection, viral infection and initial graft ischemia have been implicated. To test whether endothelial activation may be the link between these factors and chronic rejection, the endotoxin (lipopolysaccharide-LPS), a potent activator of endothelial cells, was evaluated in an established chronic rejection model. Bilaterally nephrectomized Lewis recipients of orthotopically transplanted Fisher 344 kidneys were treated briefly with low dose cyclosporine (1.5 mg/kg/day x 10). Recipients were given a non-lethal dose of LPS (2 mg) i.p. at 8 weeks and compared to allografted controls treated with vehicle. Urine protein was measured every 4 weeks. Rats in the treated group were sacrificed at 12 and 16 weeks, control animals at 12, 16 and 24 weeks (20/group) and examined histologically. In the chronically rejecting control allografts, progressive interstitial and glomerular sclerosis and vascular intimal proliferation had become apparent by 12 weeks. Infiltration of glomeruli, particularly by macrophages (M phi), and the coincident presence of cytokines were prominent, peaking at 16 weeks. LPS treatment accelerated and intensified these changes; proteinuria was more pronounced (16 weeks: 79 mg/24 h vs. 49 mg/24 h, p < 0.05). Numbers of infiltrating M phi peaked at 12 weeks in LPS treated hosts (69 c/FV vs. 27 c/FV in untreated controls, p < 0.01), accompanied by an increased upregulation of MHC class II and cytokine expression, particularly TNF alpha and PDGF around arteries and areas of infiltration. BY 16 weeks, 35 +/- 3% of glomeruli in LPS treated recipients had become sclerotic vs. 15 +/- 6% (p < 0.05) in controls, again associated with increased expression of cytokines (PDGF, TNF alpha, TGF beta), adhesion molecules (ICAM-1) and extracellular matrix proteins. Overall, the extent of chronic rejection of grafts in LPS treated rats at 16 weeks was similar to that developing in non-treated rats at 24 weeks. Activation of graft endothelium and/or host leucocytes increased the pace of graft infiltration and the expression of cytokines and other molecules. These events accelerate the process of chronic rejection.

Analysis of Variance↗

Effects of RS61443 on functional and morphological changes in chronically rejecting rat kidney allografts.

No immunosuppression agent is as yet available that prevents the process of chronic allograft rejection, the most critical cause of late organ allograft loss. RS61443 (mycophenolate mofetil) inhibits de novo DNA synthesis as well as diminishes expression of cell surface molecules and antibody production. As these factors seem important in the pathophysiology of the chronic phenomenon, we investigated the effects of the agent in an established model of chronic rejection of kidney allografts in a F344-to-Lewis rat strain combination. All recipients were treated for the first 10 days after engraftment with low-dose cyclosporine (1.5 mg/kg/day) to reverse an initial acute rejection episode. Since functional and morphological changes do not become manifest in this model until after 12 wk, treatment with RS61443 (15 mg/kg/day, p.o.) was either initiated at the day of grafting (Gp 1) or 8 wks thereafter (Gp 2), and continued throughout the follow-up period. Non-RS61443-treated allografted rats receiving vehicle only (Gp 3) developed progressive proteinuria after 12 wk. Peak cellular infiltration (particularly macrophages in glomeruli and perivascular areas) at 16 wk was associated with densely expressed adhesion molecules (ICAM-1 on endothelium), cytokines and growth factors (TNF-alpha and TGF-beta in glomeruli and PDGF on arterial smooth muscle cells). Interstitial fibrosis, with tubular atrophy, glomerulosclerosis, and varying degrees of intimal proliferation and luminal obliteration of vessels, progressed thereafter. In vitro binding of MNC from naive animals to chronically rejecting allografted kidneys generally confirmed the immunohistological observations, peaking at 12 wk; this binding was significantly inhibited by mAbs against specific adhesion molecules (CD11a, CD18, and ICAM-1). Serum-allospecific IgG and IgM peaked at 1-2 wk after engraftment in the control recipients, decreasing thereafter. Although IgM declined to baseline after 12 wk, low levels of allospecific IgG persisted throughout the follow-up period. In contrast, recipient treatment with RS61443 (both Gp 1 and Gp 2) allowed the allografts to function normally throughout follow-up period. Proteinuria was virtually absent, and morphological and immunohistological manifestations of the chronic process were markedly diminished. In addition, treated recipients developed no significant side effects, including leukopenia, anemia, thrombopenia, nephrotoxicity, and hepatotoxicity. It appears that this agent can safely prevent the changes of chronic rejection of kidney allografts in this rat model.

Animals↗