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S Katznelson

Publications and source records attributed to S Katznelson.

At least 19 recordsLinked to original sources

Fluvastatin in combination with rad significantly reduces graft vascular disease in rat cardiac allografts.

BACKGROUND: RAD is a potent immunosuppressive agent that has been shown to be effective in preventing acute and chronic allograft rejection in animal models. The HMGCoA reductase inhibitors have been found to reduce the incidence of graft vascular disease (GVD) in heart transplant patients and in animal models. This study was designed to investigate the effects of fluvastatin or pravastatin in a rodent model of GVD produced using low doses of RAD to prevent acute rejection. METHODS: Hearts from Fisher 344 rats were heterotopically transplanted to Lewis rat recipients. RAD was administered orally at 0.5 mg/kg per day for days 0 to 14 and then 0.25 mg/kg per day for an additional 85 days to prevent acute rejection but allow for the development of GVD. Pravastatin (20 mg/kg per day) or fluvastatin (2 or 6 mg/kg per day) was added to the RAD treatment. At the end of a 100-day treatment period, the hearts were harvested for morphometric and histopathologic examinations. RESULTS: Rats treated with fluvastatin, at either dose, had a significant (P< or =0.0239) decrease in coronary arterial intimal thickening (GVD) of approximately 43%. Rats treated with pravastatin had a 22% reduction in GVD that did not reach statistical significance. Treatment with fluvastatin, but not pravastatin, decreased the degree of endomyocardial mononuclear cell infiltration seen with RAD administered alone. CONCLUSIONS: Fluvastatin significantly decreased GVD in a rat model produced using low-dose RAD immunosuppression. To a lesser extent, pravastatin also decreased GVD in this model. These data lend further support for the study of fluvastatin, pravastatin, and other HMG-CoA reductase inhibitors for the prevention of GVD in cardiac transplant patients.

Animals↗

Donor cell induced CD69 expression and intracellular IL-2 and IL-4 production by peripheral blood lymphocytes isolated from kidney transplant recipients.

Flow cytometry assays, which measure CD69 activation and intracellular cytokine production, have been used to measure peripheral blood lymphocyte (PBL) responses to in vitro antigen exposure. In the present study, we show that, in healthy individuals and immunosuppressed kidney transplant recipients, CD69 expression and intracellular cytokine production by peripheral blood T cells compare favorably to thymidine uptake as a measure of PBL response to alloantigen in mixed leukocyte culture (MLC). Heparinized whole blood from 23 healthy individuals was incubated for 24-48 h with 3rd party allogeneic monocytes; blood from twelve kidney transplant recipients was incubated with monocytes from their kidney donor and with monocytes from unrelated individuals. The percentage of T cells expressing surface CD69 or intracellular IL-2 or IL-4 was determined by 3-color flow cytometry. We identified 5 donor-specific response patterns in our kidney transplant group. One transplant recipient was hyporesponsive; his cells did not express CD69 or produce IL-2 in response to either donor or 3rd party allogeneic cells. All other transplant recipients expressed CD69 and IL-2 in response to 3rd party allogeneic cells. Two had no response to donor cells (donor-specific hyporesponsiveness), three had donor-specific anergy (CD69 expression without cytokine production in response to donor cells), five had a donor-specific Thl response (CD69 expression and IL-2 production in response to donor cells), and one had a donor-specific Th2 response (CD69 expression and IL-4 but not IL-2 production in response to donor cells). Rapid measures of donor-specific hyporesponsiveness such as CD69 activation antigen expression and intracellular cytokine production may prove valuable in monitoring lymphocyte function and aid in the long-term management of kidney transplant recipients.

Antigens, CD↗

Effect of HMG-CoA reductase inhibitors on chronic allograft rejection.

BACKGROUND: Although chronic rejection is the most important cause of late allograft loss, none of the currently available immunosuppressive agents successfully target this problem. Clinical and laboratory studies suggest that 3-hydroxy-3-methyl-glutaryl co-enzyme A (HMG-CoA) reductase inhibitors (HRIs) may decrease the incidence of and pathophysiologic factors leading to chronic rejection. METHODS: A number of clinical and laboratory investigations have been designed to evaluate the effect of HRIs on chronic rejection. RESULTS: Clinical trials in heart transplant patients suggest that HRIs decrease the incidence of chronic rejection in a manner that may be independent of lipid lowering. Subsequent studies in animal transplant models confirm that HRIs reduce chronic rejection. In further studies to elucidate the possible mechanisms of this effect, it has been observed that HRIs have an inhibitory effect on an number of lymphoid cell lines and vascular smooth muscle cells. HRIs may also prevent chronic rejection by protecting the endothelium from injury and dysfunction, perhaps by up-regulating nitric oxide synthesis. CONCLUSIONS: HRIs may be the first agents to be effective in preventing chronic rejection. Although the mechanism behind this protective effect is unclear, it seems likely that HRIs may affect multiple factors that could lead to chronic rejection.

Animals↗

Sodium butyrate upregulates Kupffer cell PGE2 production and modulates immune function.

The immunosuppressive effect of portal venous blood transfusions in organ transplantation has been well established and may be mediated by increased Kupffer cell production of the immunosuppressive arachidonic acid metabolite prostaglandin E2 (PGE2). In this study, butyrate, a short-chain fatty acid known to enhance gene transcription, is hypothesized to enhance Kupffer cell PGE2 production by altering cyclooxygenase or phospholipase A2 (PLA2) activity, thus augmenting the immunosuppressive effect of portal venous transfusion. Lewis rats were given a portal venous transfusion of Wistar-Firth blood or saline 1 h prior to Kupffer cell harvest. The in vitro effects of butyrate on Kupffer cell PGE2 production, cyclooxygenase, and PLA2 activity were assessed. Kupffer cell tumor necrosis factor-alpha (TNFalpha) production was also assessed due to its sensitivity to PGE2 and its proinflamatory effects. Kupffer cells from portally transfused animals produced significantly more PGE2 than saline-transfused controls. Addition of butyrate to the culture medium further increased PGE2 production by as much as sevenfold in Kupffer cells of portally transfused animals. Other short-chain fatty acids, propionate and hexanoate, did not increase PGE2 production. Butyrate added to Kupffer cells from transfused animals slightly upregulated inducible cyclooxygenase (COX-2) mRNA levels as measured by both Northern blot and reverse-transcriptase polymerase chain reaction and increased PLA2 activity fivefold as measured by Western blot. Kupffer cell immune function was also affected by in vitro butyrate treatment with a significant decrease in the production of TNFalpha. Thus, butyrate may be a useful immunoregulatory agent in organ transplantation protocols which seek to enhance transcription of immunosuppressive molecules.

Animals↗

Kupffer cell-mediated lymphocyte apoptosis: a PGE2-dependent mechanism of portal venous transfusion-induced immunosuppression?

BACKGROUND: Kupffer cells, after exposure to alloantigen via the portal vein, mediate an immunosuppressive effect involving enhanced production of PGE2. We hypothesize that up-regulation of Kupffer cell CoA-independent transacylase (CoA-IT) by portal venous transfusion (PVT) is a possible mechanism of increased PGE2 production. Additionally, enhanced lymphocyte apoptosis, a process known to be macrophage dependent and facilitated by PGE2, is postulated as a possible mechanism of PVT-induced, Kupffer cell-mediated immunosuppression. METHODS: Lewis rat Kupffer cells were isolated after portal venous infusion with 1 ml of Wistar-Firth blood (PVT) or saline (PV sal). Kupffer cell PGE2 production and CoA-IT activity was assessed. Lymphocyte apoptosis after exposure to PVT or PV sal-treated Kupffer cells was also assessed by flow cytometry. RESULTS: PVT-treated Kupffer cells produced significantly more PGE2 and had increased CoA-IT activity when compared to PV sal-treated Kupffer cells. Treatment of Kupffer cells with a selective inhibitor of CoA-IT significantly decreased PVT-induced Kupffer cell PGE2 production. Increased lymphocyte apoptosis was observed after coculture with PVT-treated Kupffer cells compared to PV sal-treated cells. CONCLUSIONS: PVT increases Kupffer cell PGE2 production via increased CoA-IT activity and induces Kupffer cell-mediated lymphocyte apoptosis. Lymphocyte apoptosis facilitated by Kupffer cells within the hepatic sinusoid may be an important mechanism of PVT-induced immunosuppression in organ transplantation.

Acyltransferases↗

Selective targeting of Kupffer cells with liposomal butyrate augments portal venous transfusion-induced immunosuppression.

BACKGROUND: Enhanced Kupffer cell production of the immunosuppressive arachidonic acid metabolite prostaglandin E2 (PGE2) has been shown to be a mechanism of the immunosuppressive effect of portal venous transfusions (PVT). Butyrate, a four-carbon short-chain fatty acid, has received increased attention because of its ability to enhance gene transcription. This study tested the hypothesis that the intrahepatic delivery of butyrate enhances Kupffer cell PGE2 production and thus augments the immunosuppressive effect of PVT. METHODS: Butyrate was incorporated into liposomes and administered intravenously to Lewis rats. Control rats were administered liposomes without butyrate. Twenty-four hours after liposome injection, rats were administered a PVT of 1 ml of Wistar-Furth blood. Kupffer cells were isolated, and PGE2 and tumor necrosis factor-alpha levels were measured in the culture medium after 24 hr. Additionally, Kupffer cells from butyrate-treated and control animals were added to one-way mixed lymphocyte reaction cultures. RESULTS: Intrahepatic delivery of butyrate via liposomes increased Kupffer cell PGE2 (3800+/-1220 vs. 1010+/-119 pg/ml, P<0.05) and decreased tumor necrosis factor-alpha (1670+/-81 vs. 3360+/-415 pg/ml, P<0.01) production as compared with controls. Butyrate also augmented the Kupffer cell-mediated immunosuppression as demonstrated by significant depression of the mixed lymphocyte reaction (690+/-119 vs. 3850+/-148 cpm, P<0.01). CONCLUSION: The results support the hypothesis that intrahepatic delivery of butyrate enhances Kupffer cell PGE2 production, and specific targeting of Kupffer cells with liposomes containing immunomodulating agents such as butyrate may be a useful means of augmenting immunosuppression protocols in organ transplantation.

Animals↗

The inhibitory effects of pravastatin on natural killer cell activity in vivo and on cytotoxic T lymphocyte activity in vitro.

BACKGROUND: We have reported that heart transplant recipients treated with pravastatin demonstrate decreases in the incidence of clinically severe acute rejection episodes, the incidence and progression of transplant coronary vasculopathy, and natural killer cytotoxicity. These patients also exhibited a significant improvement in 1-year allograft survival. Because of these clinical findings suggesting an immunosuppressive effect of pravastatin unique to transplant recipients and the unclear role of natural killer cells in allograft rejection, we postulated that pravastatin may exert its immunomodulatory effect by acting with cyclosporine to alter T lymphocyte function. METHODS: Twenty patients randomized into an ongoing trial of pravastatin after heart transplantation were monitored serially for natural killer cell cytotoxicity. In a separate experiment, lymphocytes isolated from normal volunteers were treated with various combinations of pravastatin and cyclosporine and tested for cytotoxic T lymphocyte toxicity in a one-way mixed lymphocyte reaction. RESULTS: Pravastatin-treated heart transplant recipients exhibited a decrease in natural killer cell cytotoxicity (9.8% mean natural killer cell cytotoxicity vs 22.1% in the control group, p < 0.01). In the one-way mixed lymphocyte reaction with blood obtained from control subjects, there was a synergistic inhibition of cytotoxic T lymphocyte activity when the cells were cultured in a combination of pravastatin and cyclosporine (20.3% mean cytotoxicity of target cells vs 41.4% in the control group, p < 0.01). CONCLUSIONS: Pravastatin exerts an immunosuppressive effect in heart transplant recipients as expressed by a reduction in rejection and natural killer cell cytotoxicity. Pravastatin and cyclosporine act synergistically to reduce cytotoxic T lymphocyte activity. This synergistic effect of pravastatin and cyclosporine may explain why this immunosuppressive effect is unique to transplant recipients.

Adjuvants, Immunologic↗

The great success of Asian kidney transplant recipients.

BACKGROUND: Little has been written about allograft survival in non-African-American minority groups. We examine the success of kidney transplantation in 1900 Asian recipients. METHODS: Data from 42,252 cadaveric and 16,115 live donor kidney transplant recipients were monitored from the United Network for Organ Sharing Scientific Renal Transplant Registry from 1991 through 1996. RESULTS: Asian recipients exhibited the highest cadaveric allograft survival rates (89% 1-year and 83% 3-year survival) and the longest mean allograft half-life (18 years). Asian women had the highest mean graft half-life (23 years). Asians were less likely to be broadly sensitized and had a high incidence of IgA nephropathy causing end-stage renal disease. Although it has been suggested that their low body weights may help explain the excellent allograft outcome, Asians exhibited superior graft survival rates even when compared with low body weight recipients of other races. CONCLUSION: Asian renal allograft recipients, particularly Asian females, have the highest allograft survival rates of all racial groups.

Adult↗

Clinical aspects of sensitization.

1. The incidence of broad sensitization has decreased significantly over the past 8 years, probably due to a decrease in pretransplant blood transfusions. Graft survival rates among broadly sensitized patients have improved over this time period (76% graft survival at 2 years posttransplant for patients transplanted in 1995-1996 compared with 66% for patients transplanted in 1989-1990). This is probably due to an improvement in immunosuppression and a related decrease in the incidence of acute rejection episodes. 2. As has been shown before, blood transfusions, previous pregnancies and failed allografts independently increased the incidence of sensitization. It is clear that certain subgroups of patients are more likely to become sensitized, given antigenic stimulation, as evidenced, for example, by the fact that 52% of patients receiving more than 10 units of blood prior to transplant were relatively unsensitized. Males seem to be less apt than nulliparous females to become broadly sensitized, although this may be due to the lower age of nulliparous females. Asians are the least likely race to become broadly sensitized. Among multiparous Asians who received more than 5 units of blood, 27% were broadly sensitized compared with 35% of comparable Whites and African Americans. 3. The incidence of acute rejection episodes increased with increasing degrees of sensitization. About 46% of first cadaveric allograft recipients with PRA levels greater than 50% had at least one acute rejection episode within 6 months after transplantation compared with 38% of unsensitized individuals. In addition, sensitized individuals were more likely to have an episode of early acute rejection before discharge from the hospital. 4. Induction with antilymphocyte antibody preparation was more commonly used in broadly sensitized patients. However, this therapeutic modality did not reduce the incidence of rejection episodes measured at 6 months posttransplant. In addition, the use of induction therapy for broadly sensitized patients has decreased with the advent of newer immunosuppressive protocols that include Neoral, MMF and FK506. 5. There was an association between the incidence of broad sensitization and delayed graft function. Induction therapy was more commonly used in patients with both delayed graft function and broad sensitization, although the decision to use this therapeutic modality seems to be made based on the presence of broad sensitization rather than the presence of delayed graft function. 6. Choosing the optimal immunosuppressive drug regimen is an important decision in broadly sensitized individuals because of the increase in acute rejections and decrease in overall graft survival in this group. Classic teaching suggests that this group of patients should be administered induction therapy with antilymphocyte antibody preparations. Early data suggests, however, that the combination of Neoral, mycophenolate and prednisone may be the optimal regimen for these individuals with respect to graft survival and that the addition of antibody induction therapy to any of the other commonly used regimens does not improve graft survival (at least up to 3 years after transplantation).

Blood Transfusion↗

The effect of pravastatin on acute rejection after kidney transplantation--a pilot study.

Hyperlipidemia is an important complication of kidney transplantation affecting up to 74% of recipients. HMG-CoA reductase inhibitors are reported to provide safe and effective treatment for this problem. A recent study suggests that pravastatin, an HMG-CoA reductase inhibitor, also decreases the incidence of both clinically severe acute rejection episodes and natural killer cell cytotoxicity after orthotopic heart transplantation. We have performed a prospective randomized pilot study of the effect of pravastatin on these same parameters after cadaveric kidney transplantation. Graft recipients were randomized to receive pravastatin after transplantation or no pravastatin (24 patients in each group) in addition to routine cyclosporine and prednisone immunosuppression. Lipid levels, acute rejection episodes and serial natural killer cell cytotoxicities were followed for 4 months after the transplant. At the end of the study period, pravastatin had successfully controlled mean total cholesterol levels (202.6 +/- 9.3 vs. 236.5 +/- 11.9 mg/dl, P < 0.02), LDL levels (107.9 +/- 6.6 vs.149.6 +/- 10.7 mg/dl, P < 0.002), and triglyceride levels (118.8 +/- 14.2 vs. 157.2 +/- 13.8 mg/dl, P < 0.05). In addition, the pravastatin-treated group experienced a reduction in the incidence of biopsy-proven acute rejection episodes (25% vs. 58%, P = 0.01), the incidence of multiple rejections episodes (P < 0.05), and the use of both pulse methylprednisolone (P = 0.01) and OKT3 (P = 0.02). Mean natural killer cell cytotoxicity was similarly reduced (11.3 +/- 1.6 vs. 20.0 +/- 2.0% lysis of K562 target cells, P < 0.002). These data suggest that pravastatin exerts an additional immunosuppressive effect in kidney transplant recipients treated with cyclosporine-based immunosuppression.

Adult↗

The liver neither protects the kidney from rejection nor improves kidney graft survival after combined liver and kidney transplantation from the same donor.

It has been proposed that the liver protects a simultaneously transplanted kidney from acute rejection. Using the United Network for Organ Sharing database, we compared the kidney allograft data from 248 combined liver and kidney transplants (LKT) with a control group comprising 206 contralateral kidney alone transplants (KAT) from the same donor. The LKT and KAT groups were identical with respect to most baseline parameters, save a greater degree of HLA matching in the KAT group. The overall 3-year graft survival rate was higher in the KAT group compared with the LKT group (80% vs 68%, P < 0.01). When these data were censored to remove death as a cause of graft loss and to minimize the matching effect, the 3-year survival rates were not statistically different (78% for KAT and 81% for LKT, P = NS). We conclude that the liver neither protects the kidney from rejection nor improves kidney allograft function or survival after LKT.

Adult↗