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J F Burdick

Publications and source records attributed to J F Burdick.

At least 37 records · Page 2Linked to original sources

Suppression of dialysis patients' lymphocyte IL-2R expression by glucocorticoids and cyclosporine.

Previous studies have shown interindividual heterogeneity in the suppressive effects of glucocorticoids and cyclosporine (CsA) on the proliferation responses of dialysis patients' peripheral blood mononuclear cells (PBMC). In addition, methylprednisolone (MP) was shown to be significantly more suppressive than prednisolone (P), and PBMC from patients on peritoneal dialysis (PD) were found to be more sensitive to both glucocorticoids than those from patients on haemodialysis (HD). In order to begin to explore the cellular mechanism(s) underlying these observations, the differential suppressive effects of these drugs on lymphocyte interleukin 2 receptor (IL-2R) expression by mitogen-stimulated PBMC from 23 PD and 30 HD were determined. The mean+/-SD concentrations (ng/ml) of steroid causing 50% inhibition (IC50) of cell proliferation was significantly lower for PD than HD PBMC with both P (94+/-93 vs 148+/-105, P<0.05) and MP (21+/-25 vs 35+/-31, P<0.05). MP was significantly (P<0.001) more suppressive than P of IL-2R expression in both PD and HD. PD IL-2R expression was significantly (P<0.05) more suppressed by CsA alone and by 400 ng/ml CsA+10(-7) MP than was HD IL-2R expression. CsA+10(-7) M MP was significantly (P<0.001) more suppressive of IL-2R expression than the other drugs, alone or in combination, in both groups of patients. In conclusion, these results support the notion that at least one mechanism underlying the significantly greater efficacy of MP compared to P in suppressing PBMC proliferation is its significantly greater suppression of lymphocyte IL-2R expression, either alone or in combination with CsA. Thus, use of MP following allograft transplantation may result in more effective immunosuppression for many recipients.

Cells, Cultured↗

Unexpectedly low immunocompetence in transplant patients on ketoconazole.

The P450 inhibitor ketoconazole may be used to decrease the dose, and therefore cost, of cyclosporine (CYA) by greatly decreasing the dose necessary to obtain therapeutic levels. However, the degree of immunosuppression produced using this drug regimen is not certain. We studied the immunocompetence of patients that had been started on ketoconazole to reduce the dose of CYA compared with patients treated conventionally. 95 assays were done in 64 patients including 6 assays in patients receiving low dose CYA plus ketoconazole. Immunocompetence was tested by measuring the mixed lymphocyte response using stimulators either non-depleted (ND) or depleted (D) of antigen presenting cells, based on the finding that CYA inhibits the response against D at a lower dose than against ND. Responses to ND/D ranged from +/+ through +/- to -/-. Normal individuals were always +/+. In conventionally treated patients with CYA the incidence of immunocompetence < or = +/- was 48%, whereas all patients on CYA + ketoconazole had an immunocompetence score < or = +/- (p = 0.03, chi 2). This degree of immunosuppression contrasted strikingly with the chemical levels, which for those on ketoconazole were in the low acceptable area (182.3 +/- 77.1 ng/ml range from 67 to 230 ng/ml). Therefore, patients using low-dose CYA plus ketoconazole to inhibit metabolism were more immunosuppressed than those receiving conventional CYA treatment, in spite of comparable CYA blood levels. If confirmed, this unexpectedly depressed immunocompetence in these patients would warrant caution in general regarding interpretation of trough blood levels in patients receiving CYA that are also being treated with agents that alter P450 activity.

Adult↗

Lymphocyte responsiveness to glucocorticoids, cyclosporine, or both.

The reason why some patients with glomerular diseases respond to steroid treatment and others do not remains obscure, and it is not possible to prospectively evaluate the probability of response in individual patients. One factor that might contribute to the clinical response to treatment could be the relative sensitivity of a patient's immune system to the suppressive effects of steroids or other immunosuppressive agents. To evaluate this possibility, phytohemagglutinin (PHA)-stimulated peripheral blood mononuclear cells (PBMC) from 16 patients with various biopsy-proven glomerulopathies were cultured with prednisolone or methylprednisolone in final concentrations of 10(-5) to 10(-8) mol/L. From the dose-response curves, the concentration of steroid required to cause 50% inhibition (IC50) of the PHA-induced proliferative response was determined. The PBMC from 10 patients also were cultured with 400 ng/mL cyclosporine both alone and with 10(-7) mol/L steroid, and the inhibitory effects were calculated. There was considerable heterogeneity in the sensitivities of individual patients to steroid inhibition, and the mean +/- SEM IC50 was significantly lower for methylprednisolone than for prednisolone. Cyclosporine caused 50% or greater inhibition in 6 of the 10 patients but had < 10% inhibitory effect in 2 patients. In most patients studied, cyclosporine plus steroid was significantly more inhibitory than cyclosporine alone, but the combination was usually no more effective than 10(-7) mol/L methylprednisolone alone. These results are consistent with the hypothesis that differences in the sensitivity of individual patient's immune systems to the immunosuppressive effects of steroids and cyclosporine might contribute to differences in their clinical responsiveness to treatment.

Adult↗

Suppression of lymphocyte interleukin-2 receptor expression by glucocorticoids, cyclosporine, or both.

Although glucocorticoids and cyclosporine are frequently used to treat patients with various types of glomerulopathy, clinical responses to treatment vary considerably. Considerable interindividual heterogeneity in the suppressive effects of glucocorticoids on lymphocyte proliferation in vitro has been previously reported, suggesting that differences in the pharmacodynamic responsiveness of the immune system to these agents might be an important determinant of how well an individual patient responds to treatment. It also has been shown that methylprednisolone is significantly more suppressive than prednisolone. To identify cellular mechanisms by which these drugs act, a study of the suppressive effects of prednisolone, methylprednisolone, and cyclosporine on lymphocyte proliferation and the expression of the cell surface receptor for interleukin-2 (IL-2R) was conducted using phytohemagglutin-stimulated peripheral blood mononuclear cells (PBMCs) from 13 patients with glomerulopathy and 12 control subjects. Heterogeneity among individuals in both parameters of lymphocyte responsiveness to these drugs was again found, and the significantly greater suppressive effect of methylprednisolone was confirmed for both proliferation and IL-2R expression in patients and control subjects. Cyclosporine alone was moderately suppressive. For most individuals, the greatest degree of suppression occurred when cells were exposed to both cyclosporine and glucocorticoid. Further studies are being conducted to determine whether pretreatment assessment of in vitro lymphocyte responsiveness has any predictive value regarding therapeutic efficacy of each drug in individual patients and to identify of those patients likely to require a more intensive or multidrug immunosuppressive regimen.

Adult↗

Differential suppression of dialysis patients' lymphocyte IFN-gamma production by glucocorticoids and cyclosporine.

IFN-gamma is a potent pro-inflammatory cytokine involved in the immunologic rejection of transplanted organs. Having previously demonstrated differential suppressive effects of methylprednisolone (MP), prednisolone (P) and cyclosporine (CsA) on dialysis patients' lymphocyte proliferative responses to phytohaemagglutinin (PHA), we studied the effects of these drugs on dialysis patients' lymphocyte IFN-gamma production during mitogenic and allogeneic (MLR) stimulation. The mean +/- SEM 50% inhibitory concentration (ng/ml) on cell proliferation was significantly lower for MP than P in PHA-stimulated haemodialysis (HD) patients' (35 +/- 7 vs 152 +/- 25, P < 0.001) and peritoneal dialysis (PD) patients' (35 +/- 11 vs 134 +/- 33, P = 0.001) cultures and in HD patients' MLR cultures (15 +/- 3 vs 48 +/- 9, P < 0.001). The mean +/- SEM fractional responses (PHA or MLR + drug/PHA or MLR) in culture supernatant IFN-gamma concentrations were significantly lower with 10(-7) M concentrations of MP than P in HD (0.19 +/- 0.05 vs 0.31 +/- 0.06, P = 0.01) and PD (0.30 +/- 0.11 vs 0.46 +/- 0.11, P < 0.05) PHA cultures and in HD MLR cultures (0.15 +/- 0.04 vs 0.28 +/- 0.07, P = 0.01). CsA (400 ng/ml) alone not only caused less than 50% inhibition of IFN-gamma production in 15/27 HD PHA, 6/14 PD PHA and 4/13 HD MLR cultures, but actually stimulated it in 9 HD and 5 PD PHA cultures. The results suggest that: (1) MP has greater immunosuppressive potential than P for renal transplant recipients; (2) the stimulation of IFN-gamma by CsA in some patients could be harmful in patients with initial allograft dysfunction; and (3) pre-transplant in-vitro assessment of recipients' PBMC responsiveness to glucocorticoids and CsA may help individualize the post-transplant immunosuppressive regimen.

Cyclosporine↗

Prostaglandin E1 administration following orthotopic liver transplantation: a randomized prospective multicenter trial.

BACKGROUND & AIMS: Prostaglandin E1 (PGE1) has been used after orthotopic liver transplantation (OLT) based on limited clinical data suggesting PGE1 infusion improves immediate hepatic allograft function. The aim of this study was to conduct a randomized double-blinded multicenter trial to evaluate the effect of PGE1 on early hepatic and renal function in patients undergoing OLT. METHODS: One hundred eighteen patients were randomized to receive either PGE1 or crystalloid placebo intravenously after allograft revascularization. Primary end points were incidence of primary allograft nonfunction (PNF) or severe renal dysfunction. RESULTS: The incidence of PNF was 6.7% (4 of 60) and 6.9% (4 of 58) in the control and PGE1 groups, respectively. PGE1 infusion was, however, associated with improved early renal function (mean peak creatinine level of 1.4 +/- 1.0 and 2.0 +/- 1.0 in patients treated with PGE1 and placebo, respectively; P < 0.001). Severe renal dysfunction occurred more frequently in the placebo group (26.7%) than in the PGE1 group (13.8%; P = 0.65). Additionally, dialysis treatments were more frequent in the placebo group (0.7 +/- 2.0 per patient) than in the PGE1 group (0.2 +/- 1.0 per patient; P = 0.10). Initial intensive care unit stay was shorter in patients treated with PGE1 (4.0 +/- 3.6 days) compared with controls (10.5 +/- 17.1 days) (P < 0.01). CONCLUSIONS: PGE1 administration after OLT resulted in improved renal function and decreased initial postoperative intensive care unit stay but did not affect the incidence of PNF.

Adult↗

Update on vascular access for hemodialysis.

Dialysis as a therapy has become nearly universally available and the ability to provide dialysis and dialysis access over long periods of time has become well established. Unfortunately, technology has yet to provide the perfect dialysis access conduit, one which will not stenose, thrombose, or be prone to infection. Native cephalic vein remains the superior dialysis conduit even 30 years after it was first described. At present, the emphasis in constructing dialysis access must be to attempt to reserve native vein, both in the arm and centrally. The most important decisions remain the ones made at the initiation of dialysis: avoiding subclavian catheters that may lead to subclavian vein stenosis and loss of that extremity for later access; nephrologists making every effort to shelter one extremity for later access formation in the patient who presents with signs of eventual need for dialysis; and if at all possible constructing a native fistula, either forearm or upper arm, which will serve the patient better in the long term, rather than the simpler course of placing a prosthetic graft. Dialysis access planning may need to look 15 to 20 years into the future for the patient who, if not a potential transplant candidate, may remain on dialysis for a very long time. The ability to keep dialysis access functional has improved markedly with the evolution of radiologic methods for thrombolysis and intervention. However, as in other areas of surgery performing the best operation first and avoiding complications is the path that best serves the patient.

Arteriovenous Fistula↗

Induction of heat-shock gene expression in postischemic pig liver depends on superoxide generation.

BACKGROUND/AIMS: Both hemorrhagic and cardiogenic shock are associated with hepatic shock gene expression at resuscitation. This study investigated the potential role of intravascular superoxide anion as a proximal trigger of heat shock protein gene expression. METHODS: Preanesthetized pigs were subjected to 120 m of total warm hepatic ischemia. The survival model consisted of warm, total hepatic ischemia and reperfusion (with active portal-systemic bypass) followed by reperfusion and survival for 3 days. Serial hepatic biopsy samples were evaluated for the expression of heat shock protein 72 (HSP-72) messenger RNA (mRNA) by Northern and Western analysis and by in situ RNA hybridization. The possible role of intravascular O2- as a mediator of heat shock response was evaluated by its specific inhibition by the intravenous infusion of recombinant human superoxide dismutase (SOD). RESULTS: Ischemia for 120 minutes followed by 60 minutes of reperfusion caused accumulation of HSP-72 mRNA. Transcripts were localized to hepatocytes. HSP-72 mRNA was detected neither following ischemia alone nor when SOD was infused for 15 minutes at reperfusion. Three days later, transcripts were not detectable, but HSP-72 protein accumulated irrespective of SOD administration. CONCLUSIONS: Warm hepatic ischemia induces the hepatocyte expression of HSP-72 at reperfusion by a mechanism that is dependent upon the superoxide anion, probably generated intravascularly. However, the transient dismutation of superoxide is insufficient to suppress subsequent accumulation of HSP-72.

Animals↗

Visceral lipid peroxidation occurs at reperfusion after supraceliac aortic cross-clamping.

PURPOSE: Recently, we have reported that lipid peroxidation specific to oxygen free radical-mediated injury increased immediately after reperfusion of human liver allografts. However, in the human liver transplantation setting it was impossible to disassociate the contributions to lipid peroxidation caused by the warm and cold ischemic phases from those caused by reperfusion. Therefore we now have studied lipid peroxidation at reperfusion after supraceliac aortic cross-clamping in patients with normal livers. METHODS: Ethane, a noninvasive biomaker of lipid peroxidation, was measured in exhaled breath of patients before and during cross-clamping of the thoracic aorta and at sequential time intervals after visceral reperfusion. RESULTS: Approximately a two-fold transient increase in the ethane level was observed at around 15 minutes after reperfusion in those patients whose aortas were cross-clamped for more than 18 minutes. CONCLUSIONS: These results indicate that free radical-mediated lipid peroxidation occurs at reperfusion of warm ischemic viscera in the clinical setting of aortic repair. This observation supports the hypothesis that substantial lipid peroxidation occurs when tissues are subjected to cold or warm ischemia followed by reperfusion.

Aged↗

Morphology of ischemic acute renal failure, normal function, and cyclosporine toxicity in cyclosporine-treated renal allograft recipients.

To characterize morphologic changes in the early post-transplant period in cyclosporine-treated renal allograft recipients, we examined biopsies from three groups of cyclosporine-treated patients: normal function (N = 9), ischemic acute renal failure or "acute tubular necrosis" (N = 12), and cyclosporine toxicity (N = 7). Groups were compared with each other and with previously studied groups of azathioprine-treated patients and native kidney patients. The interstitial infiltrate commonly observed in normally functioning azathioprine-treated grafts was not observed in normally functioning cyclosporine-treated grafts, but two of nine such grafts had a significant venulitis, a change also seen in three of the patients with cyclosporine nephrotoxicity. "Acute tubular necrosis" (ATN) in cyclosporine-treated graft recipients was characterized by focal necrosis of complete tubular cross sections, a finding normally rare in other types of ATN, and by shedding into the tubular lumen of tubular cells with non-pyknotic nuclei, a finding supporting our previous observation of detachment of viable tubular cells in ATN but not in the normal kidney. Hyaline arteriolar thickening was the only morphologic finding on biopsy which distinguished patients with cyclosporine nephrotoxicity from other groups. In summary, the morphologic changes observed in cyclosporine-treated renal allograft recipients with ATN or normal function are quite different from those observed in azathioprine-treated patients. Cyclosporine appears to enhance the tubular injury observed in ATN. Hyaline arteriolar thickening is the main distinguishing feature of cyclosporine nephrotoxicity.

Adult↗

International standardization of criteria for the histologic diagnosis of renal allograft rejection: the Banff working classification of kidney transplant pathology.

A group of renal pathologists, nephrologists, and transplant surgeons met in Banff, Canada on August 2-4, 1991 to develop a schema for international standardization of nomenclature and criteria for the histologic diagnosis of renal allograft rejection. Development continued after the meeting and the schema was validated by the circulation of sets of slides for scoring by participant pathologists. In this schema intimal arteritis and tubulitis are the principal lesions indicative of acute rejection. Glomerular, interstitial, tubular, and vascular lesions of acute rejection and "chronic rejection" are defined and scored 0 to 3+, to produce an acute and/or chronic numerical coding for each biopsy. Arteriolar hyalinosis (an indication of cyclosporine toxicity) is also scored. Principal diagnostic categories, which can be used with or without the quantitative coding, are: (1) normal, (2) hyperacute rejection, (3) borderline changes, (4) acute rejection (grade I to III), (5) chronic allograft nephropathy ("chronic rejection") (grade I to III), and (6) other. The goal is to devise a schema in which a given biopsy grading would imply a prognosis for a therapeutic response or long-term function. While the clinical implications must be proven through further studies, the development of a standardized schema is a critical first step. This standardized classification should promote international uniformity in reporting of renal allograft pathology, facilitate the performance of multicenter trials of new therapies in renal transplantation, and ultimately lead to improvement in the management and care of renal transplant recipients.

Graft Rejection↗