New immunosuppressive agents.
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Biomedical subjects
Publications and source records attributed to S M Katz.
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The transplant team at The University of Texas-Houston has studied sirolimus from preclinical through pivotal Phase III trials to single-center Phase IV trials as we continue to refine algorithms for sirolimus therapy. The sirolimus/CsA combination produces a marked reduction in the occurrence and severity of acute allograft rejection episodes. A recently completed post hoc median effect analysis of drug blood concentrations displayed by patients in the 2 pivotal Phase III trials documented that the combination displays synergistic interactions. Patients in the sirolimus/CsA arms did not display an increased incidence of infectious or malignant complications. However, they did experience a range of nonimmune toxicities, including potentiation of putatively CsA-related adverse reactions, such as renal dysfunction and hypercholesterolemia, which appear to be mitigated by reduction or elimination of CsA. However, thrombocytopenia and to a lesser extent leukopenia and anemia appear to be sirolimus-related side effects. The occurrence and severity of these adverse reactions seem to be avoided or ameliorated in most patients by optimizing sirolimus exposure at concentrations (15 ng/mL or by dose reduction. Sirolimus thus appears to be a potent and unique agent for developing new immunosuppressive strategies in organ transplantation.
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BACKGROUND: Sirolimus, a novel immunosuppressant that inhibits cytokine-driven cell proliferation and maturation, prolongs allograft survival in animal models. After a phase I trial in stable renal transplant recipients documented that cyclosporine and sirolimus have few overlapping toxicities, we conducted an open-label, single-center, phase I/II dose-escalation trial to examine the safety and efficacy of this drug combination. METHODS: Forty mismatched living-donor renal transplant recipients were sequentially assigned to receive escalating initial doses of sirolimus (0.5-7.0 mg/m2/day), in addition to courses of prednisone and a concentration-controlled regimen of cyclosporine. We conducted surveillance for drug-induced side effects among sirolimus-treated patients and compared their incidence of acute rejection episodes as well as mean laboratory values with those of a historical cohort of 65 consecutive, immediately precedent, demographically similar recipients treated with the same concentration-controlled regimen of cyclosporine and tapering doses of prednisone. RESULTS: The addition of sirolimus reduced the overall incidence of acute allograft rejection episodes to 7.5% from 32% in the immediately precedent cyclosporine/prednisone-treated patients. At 18- to 47-month follow-up periods, both treatment groups displayed similar rates of patient and graft survival, as well as morbid complications. Although sirolimus-treated patients displayed comparatively lower platelet and white blood cell counts and higher levels of serum cholesterol and triglycerides, sirolimus did not augment the nephrotoxic or hypertensive proclivities of cyclosporine. The degree of change in the laboratory values was more directly associated with whole blood trough drug concentrations than with doses of sirolimus. CONCLUSIONS: Sirolimus potentiates the immunosuppressive effects of a cyclosporine-based regimen by reducing the rate of acute rejection episodes.
BACKGROUND: Mycophenolate mofetil (MMF) is rapidly hydrolyzed to its active metabolite mycophenolic acid (MPA), which is excreted by the kidney after undergoing glucuronidation to MPAG. MPAG has been shown to accumulate in patients with renal failure. MPA is extensively and avidly bound to human serum albumin. In vitro inhibition of the pharmacologic target, inosine monophosphate dehydrogenase, is dependent on free MPA. It has been demonstrated that high MPAG concentrations decrease MPA protein binding in vitro. In addition, the uremic state is associated with altered protein binding of many drugs. METHODS: We assessed free MPA, total MPA, and MPAG kinetics in a patient with renal failure receiving MMF for a pancreas transplant, who presented with signs of MMF toxicity. MPA, MPAG, and free MPA were measured by high performance liquid chromatography and a validated 14C-MPA ultrafiltration methodology. RESULTS: The MPAG area under the concentration curve (AUC) in this patient was extremely high (5899 microg x hr/ml). The total MPA AUC of 36.8 microg x hr/ml was within the range usually obtained in stable renal patients. The free fraction of MPA and the free MPA AUC were markedly elevated (13.8% and 5.07 microg x hr/ml, respectively). CONCLUSIONS: Patients with severe renal insufficiency may have markedly increased free MPA levels that may not be reflected in total MPA concentrations. These patients may be at increased risk for MMF-related toxicity.
BACKGROUND: Traditionally, elderly donor kidneys have not been widely accepted for transplantation on the assumption of inferior performance. However, the United Network for Organ Sharing reports an increase in the number of elderly donors from less than 2% in 1982 to 24% in 1995. This trend is commensurate with the increase of older dialysis patients and an overall increase in the elderly population in the United States (1). Optimal utilization of these kidneys is essential to overcome the acute organ shortage. METHODS: In this study, we transplanted 25 kidneys from elderly donors (ages 56-72 years) into young adult recipients (ages 20-50 years) (group 1) over a 4-year period. We compared the results with matched recipients of young adult donor kidneys (group 2) with regard to long-term kidney function and graft survival. A pretransplant biopsy of elderly donor kidneys was carried out and a frozen section report was obtained. Only those kidneys showing glomerulosclerosis of less than 20% were accepted for transplantation. All cadaveric kidneys were preserved in University of Wisconsin solution. RESULTS: Pretransplant biopsies of elderly donor kidneys showed structural deficits, which included glomerulosclerosis in 85%, arteriolar and/or mesangial thickening in 75%, and interstitial lymphocyte infiltration in 30%. The mean serum creatinine was 2.4+/-0.74, 2.2+/-0.56, and 2.9+/-0.76 mg/100 ml in group 1 and 1.5+/-0.55, 2.3+/-2.24, and 1.7+/-0.62 in group 2 at 1, 3, and 5 years, respectively. The patient survival was 92%, 92%, and 88% in group 1, and 100%, 100%, and 100% in group 2 at 1, 3, and 5 years, respectively. The graft survival was 80%, 64%, and 56% in group 1 and 100%, 96%, and 88% in group 2 at similar time intervals. The differences in the serum creatinine and graft survival between the two groups were statistically significant (P < 0.05). CONCLUSIONS: Most of the elderly donor kidneys with structural deficits transplanted into young adults provided suboptimal function and inferior long-term graft survival. To maximize the utilization and optimize the survival of elderly donor kidneys, we propose transplantation of these kidneys into age-matched recipients with similar physiological requirements as those of donors, with regard to kidney function.
In Experiments 1-3, we monitored search performance as a function of target eccentricity under display durations that either allowed or precluded eye movements. The display was present either until observers responded, for 104 msec, or for 62 msec. In all three experiments an orientation asymmetry emerged: observers detected a tilted target among vertical distracters more efficiently than a vertical target among vertical distracters. As target eccentricity increased, reaction times and errors augmented, and the set size effect became more pronounced, more so for vertical than tilted targets. In Experiments 4-7, the stimulus spatial properties were manipulated: spatial frequency; size; and orientation. The eccentricity effect was more pronounced for vertical than tilted targets and for high- than low-spatial frequency targets. This effect was eliminated when either the size, the size and orientation, or the size and spatial frequency were magnified (M-cortical factor). By increasing the signal-to-noise ratio, magnification reduced the extent of both asymmetries; it aided more the detection of tilted than vertical and of high- than low-spatial frequency targets. Experiments 4-7 indicate that performance improvement in the magnified conditions was due to the specific pairing of stimulus size with retinal eccentricity and not to the larger stimulus size of the magnified conditions. We conclude that stimulus size, orientation and spatial frequency influence the extent of the eccentricity effect and the efficiency of search performance.
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Explore the source record for details and available documents.
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As the nation's health system moves away from earlier models to one grounded in population health and market-based systems of care, new challenges arise for public health professionals, primary care practitioners, health plan and institutional managers, and community leaders. Among the challenges are the need to develop creative concepts of organization and accountability and to assure that dynamic, system-oriented structures support the new kind of leadership that is required. Developing tomorrow's integrated community health systems will challenge the leadership skills and integrative abilities of public health professionals, primary care practitioners, and managers. These leaders and their new organizations must, in turn, assume increased accountability for improving community health.
The inter- and intrapatient variability in cyclosporine (CsA) pharmacokinetics obfuscates the relationship between therapeutic outcome and administered dose, thereby impeding the development of secure algorithms for CsA therapy. In an attempt to understand these variabilities, we previously performed serial pharmacokinetic profiles on 160 renal transplant recipients during the first 3 posttransplant months. Drug exposure was estimated by the average CsA concentration (Cav), which was defined as a time-corrected (tau, hours) expression of the area under the concentration-time curve (AUC), i.e., Cav = (AUC/tau). Low Cav values correlated with an increased occurrence of acute rejection episodes and 1-year rate of renal transplant loss. The present study examines the results of serial pharmacokinetic profiling of a cohort of 204 patients treated for up to 5 years with CsA doses selected to achieve target Cav values. Multivariate analyses correlated demographic factors, laboratory values, clinical parameters, and CsA pharmacokinetic parameters with the occurrence of chronic rejection. The factors that predisposed to chronic rejection included a previous acute rejection episode, initial acute tubular necrosis, diastolic blood pressure above 85 mmHg, and African-American race. Once regression models were adjusted to account for the impact of these factors, we examined the association between the incidence of chronic rejection and individual pharmacokinetic parameters, including the mean values of the absolute and dose-corrected trough, peak, and Cav concentrations, as well as the percent coefficient of variation of each of these values. Receiver operating characteristic curves documented that 27% of the total risk for the occurrence of chronic rejection was attributable to a greater than 20% coefficient of variation of the dose-corrected Cav, namely, AUC/(tau.mg). This study suggests that variable oral bioavailability of CsA represents a biopharmaceutical risk factor for the occurrence of chronic rejection.
The present study compared the occurrence of rejection episodes during the first twelve posttransplant (Tx) months and the 1-, 2-, and 3-year graft survivals among recipients stratified by the percent panel reactive antibody (% PRA) of pre-Tx sera as detected using either an antihuman globulin determined PRA (AHG-% PRA) or an ELISA methodology detecting IgG reactive against soluble HLA class I antigens (% PRA-STAT). There was a significant correlation between AHG-PRA greater than or equal to 10% and a PRA-STAT greater than or equal to 10% (P<0.001). However, among 200 sera displaying an AHG-PRA greater than or equal to 10% (mean 57 +/- 2l%), only 69% (138/200) displayed a PRA-STAT greater than or equal to 10%. With further study the discrepant finding, of 62 sera that were AHG-PRA greater than or equal to 10% but PRA-STAT <10%, was due to the presence of IgM and/or IgG non-MHC reactivity. In contrast, among 293 sera displaying an AHG-PRA < 100% (mean 3 +/- 2%), 15% (43/293) displayed a PRA-STAT greater than or equal to 10%. There was no correlation between AHG-% PRA and rejection episodes occurring during the first twelve post Tx months. In contrast, however, there was a highly significant correlation between PRA-STAT greater than or equal to 10% and the occurrence of rejection episodes during the first twelve post-Tx months (P < 0.001). Patients with PRA-STAT greater than of equal to 10% experienced a 70% rejection frequency compared with the 35% rejection frequency for patients with PRA-STAT sera < 10% (P<0.001). A significant correlation was observed between the presence of IgG-1 and rejection (P<0.01) but not IgG-subclasses 2, 3, or 4. Of particular interest was the observation in 11 patients that the presence of ELISA-detected IgA anti-HLA class I antigen (ELISA-IgA PRA greater than or equal to 10%) was associated with a significantly reduced rejection risk compared with sera where only PRA-STAT greater than or equal to 10% was present (27% vs. 70% incidence of rejection episodes, P<0.01). Finally, patients displaying pretransplant PRA-STAT results < 10% experienced significantly improved l-, 2-, and 3- year graft survivals of 85% vs. 74%, 82% vs. 70% and 81% vs. 67%, respectively (P<0.01 for each time point), compared with patients displaying PRA-STAT results greater than or equal to 10%. These data suggest that the use of the ELISA methodology to detect IgG reactivity against soluble HLA class I antigens (PRA-STAT) may allow for the determination of a more clinically informative % PRA than the AHG-% PRA. Moreover, the presence of ELISA-detected IgA anti-HLA may act to inhibit rejection mechanisms associated with ELISA-detected IgG anti-HLA greater than or equal to 10%.
We have previously reported the adverse effects of cyclosporine on small intestine transplant physiology. In this study, we report for the first time the effect of tacrolimus (FK) on graft intestinal blood flow and intramural distribution, vascular resistance, and absorptive function. Isogeneic small intestine transplantation was performed in Lewis rats. Animals were grouped based upon the following treatment schedules: no treatment for 1 week in group 1; 0.6 ml/kg/day i.m. polyethylene glycol (PEG) for 1 week in group 2; 2 mg/kg/day i.m. FK for 1 week in group 3; 0.6 ml/kg/day PEG for 1 week and then 0.3 ml/kg/day for 5 weeks in group 4; 2 mg/kg/day FK for 1 week and then 1 mg/kg/day for 5 weeks in group 5. Group 6 was the same as in group 5 but FK was withdrawn for 1 week prior to assessment. Maltose absorption was measured to evaluate graft absorptive function. Blood flow and its intramural distribution to mucosal and serosal/muscularis layers were determined using the radioactive microsphere technique. Perfusion pressure was measured to calculate vascular resistance. One week of FK administration in group 3 did not change graft hemodynamics and absorption significantly. Prolonged FK treatment up to 6 weeks in group 5 resulted in a significant increase in mucosal vascular resistance (71.0 +/- 9.6 versus 47.7 +/- 6.7 U/g, P<0.01) and significant decreases in mucosal blood flow (1.14 +/- O.15 versus 1.69 +/- 0.24 ml/g/min, P<0.01) and maltose absorption (30 min after loading. 155.4 +/- 26.9 versus 216.4 +/- 29.6, P<0.01; 60 min after loading: 172.9 +/- 24.5 versus 229.1 +/- 32.6 glucose mg/dl P<0.01). The serosal/muscularis layer remained relatively unaffected. Withdrawal of FK for 1 week after prolonged treatment in group 6 resulted in restorations of all parameters measured to normal ranges. We conclude that a short course of FK is safe, but prolonged FK administration has harmful effects on the hemodynamics and function of small intestinal transplants. Complete recovery is achieved when FK is discontinued.
This study correlated overall serum IgA levels in pretransplant (preTx) sera with graft survival. IgA levels, determined by nephelometry, were normally distributed, with a mean level of 255 +/- 139 mg/dl and a median of 234 mg/dl in 631 adult primary kidney allograft recipients and a mean level of 213 +/- 123 mg/dl with a median of 196 mg/dl for 100 retransplant recipients. Improved 3-year survival was associated with a high preTx IgA serum level in primary recipients (Kaplan-Meier analysis, P = 0.01), but not in retransplant patients. After stratifying by race, IgA correlated with graft survival in Caucasian, Hispanic, and "other" (Middle Eastern, Indian subcontinent, and Asian) primary recipients (P < or = 0.04), but not in African Americans. Higher survival rates were not associated with IgA in primary recipients stratified for rejection episodes, blood transfusions, or HLA-DR mismatches. Graft survival was improved in patients with > 2 HLA-AB mismatches and serum IgA above the median. PreTx IgA level and IgA alpha-HLA activity were significantly associated in preTx sera of primary renal allograft recipients (chi 2 = 7.145, P = 0.01), although only 9% (12/133) of sera tested displayed IgA anti-HLA class I reactivity. Thus, enhanced graft survival mediated by elevated serum IgA levels may due in part to competition for allograft HLA class I binding with deleterious Ig subclasses or immune effector cells. Elevated serum IgA may also reflect an altered immunoregulatory state. The results suggest that, depending on the racial group, preTx serum IgA levels are a prognostic indicator of graft survival in primary renal allograft recipients.
A cohort of 11 patients receiving de novo CyA-GC was compared to 11 patients receiving CyA-ME immediately following renal transplantation at five-dose intervals in the first 30 postoperative days. Neither group achieved target CyA concentrations during days 0 to 2, suggesting that additional immunosuppression exposure coverage may be needed at that interval. Thereafter, however, recipients of the CyA microemulsion (Neoral) formulation reached target levels earlier as well as required lower doses to reach target levels.
The small intestine (SI) is highly sensitive to oxygen free radical-induced injury. The most common preservation solution, University of Wisconsin (UW) solution, does not adequately prevent free radical-induced injury. Lazaroids, and U74389G in particular, are a new class of compound that are potent inhibitors of superoxide-mediated lipid peroxidation. We studied the added influence of U74389G to 18-hr cold preservation of rat SI in UW solution. Three groups of rats were studied. In group 1, SI was excised and reperfused immediately. In group 2, SI was stored in UW solution at 4 degrees C for 18 hr. In group 3, U74389G was given to the SI graft before storage and again before reperfusion. Blood reperfusion of the grafts was achieved via connection to the superior mesenteric artery and portal vein of support rats. Functional recovery was assessed using a maltose tolerance test. Weight changes were calculated and histologic studies done. After 30 and 60 min of reperfusion, maltose uptake in group 3 was significantly better than that of the group 2, and returned to control levels. Significantly more tissue swelling was noted in group 3 over control, but the magnitude was less than that of group 2. Less transmural necrosis and villous blunting were noted in group 3 versus group 2; the appearance of the mucosa in group 3 approached that of group 1. We conclude that the use of U74389G treatment in addition to cold storage in UW solution improves recovery of graft function and minimizes morphologic damage to the small intestinal mucosa.