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Biomedical subjects

W Weimar

Publications and source records attributed to W Weimar.

At least 145 records · Page 8Linked to original sources

Mycophenolate mofetil and prednisone as maintenance treatment after kidney transplantation.

BACKGROUND: Hemolytic uremic syndrome (HUS) is an infrequent but severe complication of kidney transplantation. Cyclosporine-induced microangiopathy may be the causative factor in allograft recipients with HUS. In transplant recipients with HUS, discontinuation of cyclosporine is generally advised. This often leads to loss of the graft. METHODS: An adult kidney transplant recipient developed HUS in the third week after transplantation. Maintenance immunosuppression was changed to mycophenolate mofetil and prednisone after cyclosporine was discontinued. RESULTS: The change in immunosuppressive therapy led to remission of the HUS and stable graft function. CONCLUSIONS: In transplant recipients receiving cyclosporine who suffer from HUS, the possibility of conversion from cyclosporine to mycophenolate mofetil should be considered. As this case shows, complete remission of HUS and maintenance of the graft are possible.

Female↗

Donor-specific cytokine production by graft-infiltrating lymphocytes induces and maintains graft vascular disease in human cardiac allografts.

BACKGROUND: The development of graft vascular disease (GVD) in the allograft is a major impediment for long-term survival of heart transplant recipients. GVD may be mediated by cellular processes, in response to the transplanted heart, and regulated by cytokines. METHODS: We studied donor-specific cytokine production patterns in graft-infiltrating lymphocyte cultures propagated from endomyocardial biopsies. The biopsies were derived from patients with and without signs of GVD, as diagnosed by angiography at 1 year after heart transplantation. RESULTS: In the first year after transplantation, significantly more T-helper (Th) 1 cytokines (interleukin [IL]-2: P=0.04; interferon-gamma: P=0.01), but not Th2 (IL-4 and IL-6) cytokines, were produced by cultures of patients with GVD compared with patients without GVD. Thereafter, the Th1 cytokine levels in patients with GVD normalized to the levels of patients without GVD. Detectable levels of IL-6 were produced significantly more often (P=0.009) by cultures obtained more than 1 year after transplantation from patients with GVD. CONCLUSIONS: The results suggest that high levels of Th1 cytokines produced by graft-infiltrating lymphocytes early after transplantation may be responsible for activation of vascular endothelium, leading to the migration and proliferation of smooth muscle cells that is characteristic of GVD. IL-6, produced later after transplantation, continues this process by promoting smooth muscle cell proliferation.

Cells, Cultured↗

Kinetics of IL-2 and IL-4 mRNA and protein production by graft-infiltrating lymphocytes responsible for rejection after clinical heart transplantation.

During cardiac rejection we studied the kinetics of IL-2 and IL-4 mRNA and subsequent protein production by in vivo primed graft-infiltrating lymphocytes (GIL), using semiquantitative RT-PCR and ELISA. Following in vitro stimulation with either donor or third-party antigens, mRNA expression of IL-2 and IL-4 were already detectable 1-2 h after stimulation, while their protein production could be measured from 4 h onwards at least until 48 h. At both the mRNA and protein level, we measured a donor-specific signal for IL-2 and for IL-4 production (p = 0.02), while the relative donor-specific IL-2 mRNA level was significantly higher than the relative IL-4 mRNA level (p = 0.002). These observations suggest that after in vitro challenge with donor antigens, GIL obtained from rejecting cardiac allografts predominantly produce IL-2 mRNA and protein.

Biopsy↗

Conversion from cyclosporine A to azathioprine treatment improves LDL oxidation in kidney transplant recipients.

The use of the immuno-suppressant cyclosporine A (CsA) after transplantation has been associated with less favorable plasma lipid profiles, which may contribute to the high incidence of cardiovascular morbidity and mortality in transplant recipients. Recent studies have suggested that oxidative modification of LDL plays an important role in the initiation and progression of atherosclerosis. It has also been demonstrated that CsA may facilitate lipid peroxidation in vitro and in vivo. Therefore, we determined several parameters of LDL oxidizability in renal transplant recipients who were switched from CsA to azathioprine (AZA)-based immunosuppressive treatment. The susceptibility of LDL to in vitro oxidation, LDL particle size, plasma titers of IgG and IgM antibodies against oxidized LDL and plasma LDL subclass patterns in 19 renal transplant recipients were determined during CsA treatment and 16 weeks after these patients were converted to AZA treatment. In addition, mean arterial pressure was recorded, and glomerular filtration rate and renal blood flow were estimated from the clearance of radiolabeled thalamate and hippurate. After conversion, the plasma concentrations of total cholesterol, LDL cholesterol and triglyceride decreased, while plasma HDL cholesterol did not change. During CsA therapy plasma LDL was significantly more susceptible to in vitro oxidation than during AZA, as reflected by a longer lag phase during in vitro oxidation (98.9 +/- 24.3 vs. 114.7 +/- 17.3 min, P = 0.031). In addition, the LDL size increased (236.5 +/- 7.3 vs. 240.7 +/- 6.8 nm, P = 0.00001), and the titers of IgM- and IgG-autoantibodies against oxidized LDL decreased significantly after patients were converted from CsA to AZA. The more atherogenic LDL subclass pattern B was present in 13 out of 19 patients during CsA. In five patients, pattern B changed into pattern A after conversion. The subclass B pattern was maintained in eight patients and subclass A pattern in six patients. In all patients the lag time of in vitro LDL oxidation increased, although the biggest changes were found in those patients in whom the LDL subclass changed from pattern B to pattern A. Mean arterial pressure decreased and renal function improved significantly after conversion. No correlation between parameters of lipid peroxidation and changes in blood pressure or renal function upon conversion, underlying renal disease, time since transplantation, or antihypertensive treatment was found. Our study demonstrates that treatment with CsA increases the susceptibility of LDL to in vitro oxidation, and also enhances the oxidation of LDL in vivo. In addition, conversion to AZA results in a more favorable lipid profile, which in combination with a lower arterial pressure and better renal function may decrease the risk for atherosclerosis. These factors may account for the cardiovascular complications during CsA treatment after organ transplantation, and also when CsA is used for other diseases.

Adolescent↗

The avidity of allospecific cytotoxic T lymphocytes (CTL) determines their cytokine production profile.

Donor-specific CTL present within the cardiac allograft during a rejection episode are distinct from those that populate the cardiac allograft in the absence of rejection. Whereas the former generally have a high avidity for donor cells, the latter mainly have a low avidity for donor cells. This observation made us reason that high-avidity CTL are implicated in transplant rejection, whereas low-avidity CTL are not. In the present study, we analyse whether both CTL subsets were distinct with respect to their IL-2, IL-4, IL-6 and interferon-gamma (IFN-gamma) secretion pattern. CTL clones with either a high or a low avidity for donor antigens were stimulated with donor cells, third party cells, or immobilized anti-CD3 MoAb and the amount of cytokine released was measured. High- and low-avidity CTL clones were found to differ with respect to their IFN-gamma production profile. Stimulation with donor cells resulted in IFN-gamma secretion by high-avidity CTL clones, but not by low-avidity CTL clones. CD3 stimulation, in contrast, led to secretion of equivalent amounts of IFN-gamma by both CTL subsets. These observations indicate that low-avidity CTL are fully capable of producing IFN-gamma, but, in contrast to high avidity CTL, fail to do so when they encounter donor cells. As IFN-gamma favours the occurrence of transplant rejection, this observation emphasizes the relevance of high-avidity CTL in the rejection process. Additionally, the data show that the cytokine production profile of CTL depends on the nature of the stimulus.

Antibodies, Monoclonal↗

Effect of adopting a new histological grading system of acute rejection after heart transplantation.

BACKGROUND: Treatment policy of acute rejection after heart transplantation has been changed after adopting the ISHLT endomyocardial biopsy grading system in 1991. OBJECTIVE: To determine the effect of this policy change on clinical outcome after transplantation. METHODS: The outcome of 147 patients who had a transplant before (early group, median follow up 96 months) and 114 patients who had a transplant after (late group, median follow up 41 months) the introduction of the ISHLT biopsy grading system was studied retrospectively. Initially "moderate rejection" according to Billingham's conventional criteria was treated. From January 1991 grade 3A and higher was considered to require intensification of immunosuppression. RESULTS: There were some differences between the two groups: recipients (50 v 44 years) as well as donors (28 v 24 years) were older in the "late group" and more patients of this group received early anti-T cell prophylaxis (92% v 56%). Despite more extensive use of early prophylaxis more rejection episodes were diagnosed (2.4 v 1.4) and considerably more courses of rejection treatment were instituted in the late compared with the early group (3.2 v 1.5). There were no deaths because of rejection in the late group, however, more infections occurred within the first year (mean 1.8 v 1.4) and more non-skin malignancies within the first 41 months were diagnosed (8 of 57 v 6 of 147, 95% CIs of difference includes 0). The incidence of graft vascular disease in the late group has been comparable to the early group until now. CONCLUSION: The interpretation of the ISHLT grading system resulted in lowering of the threshold for the diagnosis of rejection thereby increasing the number of rejections and subsequently the immunosuppressive load and its complications.

Acute Disease↗

Impact of continuous hemofiltration on cytokines and cytokine inhibitors in oliguric patients suffering from systemic inflammatory response syndrome.

The impact of continuous hemofiltration (CHF) using a polyacrylonitrile membrane on the kinetics of tumor necrosis factor alpha (TNF alpha), interleukin-1 beta (IL-1 beta), and their inhibitors (soluble TNF receptors [sTNFrI, sTNFrII], interleukin-1 receptor antagonist [IL-1Ra]) was assessed in nine oliguric patients suffering from systemic inflammatory response syndrome. Blood and plasma flow (Qb, Qp), sieving coefficient (SC), plasma and ultrafiltrate clearances (Kp, Kuf), and plasma extraction rates (ERp) were calculated at different time points using standard formulas. No significant improvement of hemodynamics or gas exchange was noted following HF but a significant increase in serum bicarbonate occurred after 24 h (P < 0.05). TNF alpha was detected in plasma from all patients (153 +/- 2.3 pg/mL [mean +/- SEM]). None of the patients had detectable IL-1 beta levels. High levels of the TNF receptors (sTNFrI 20.338 +/- 2.431 pg/mL; sTNFrII 17.839 +/- 2.630 pg/mL) and IL-1Ra (19.775 +/- 3.943 pg/mL) were found in all patients. Upon initiation of hemofiltration (HF), the mean individual sTNFrI/TNF alpha ratio amounted to 269 +/- 84.6 and the sTNFrII/TNF alpha ratio to 249 +/- 91.8. Mean ultrafiltrate volume (Vuf) was 11.8 +/- 0.4 L/day. Appreciable sieving of IL-1Ra (SC 0.45 +/- 0.10), but not of the other cytokines, was noted (SC TNF alpha, sTNFrI, sTNFrII < 0.09). Despite minimal Kuf of TNF alpha, sTNFrI, and STNFrII (Kuf < 0.8 mL/min), appreciable Kp was noted, suggesting that membrane adsorption occurs (Kp approximately 8 mL/min). There was a nonsignificant increase of the ratios between both TNF receptors and TNF alpha across the filter (sTNFrI/TNF alpha ratio [pre] 231 +/- 37.9 versus [post] 312 +/- 75.3); sTNFrII/TNF alpha ratio [pre] 211 +/- 42.1 versus [post] 291 +/- 79.3). Appreciable Kp of IL-1Ra was noted (Kp 17.3 +/- 1.61 mL/min), which was only in part due to Kuf (4.0 +/- 0.86 mL/min). There was a significant decrease of IL-1Ra levels across the membrane, both overall ([pre] 20.223 +/- 2.282 versus [post] 16.637 +/- 2.039 pg/mL; P < 0.01) and at different time points (P < 0.01). Only for IL-1Ra was significant extraction from plasma noted (ERp 26 +/- 6.0%). Plasma levels of TNF alpha, sTNFrI, sTNFrII, and IL-1Ra were not altered by 24 h of CHF. In conclusion, both cytokines and cytokine inhibitors can be removed from the circulation, either by convective transport or by membrane adsorption. Using low-volume HF (Vuf approximately 12 L/day), no impact on cytokine plasma levels nor the patients hemodynamics or gas exchange was noted. The appreciable SC of IL-1Ra (0.45), however, suggests that HF with high(er) UF volumes (> 50 L/day) may be able to achieve reductions in plasma levels of some peptide (anti)mediators. However, whether this aspecific elimination of both mediators and antimediators may alter the clinical course in critically ill patients remains to be investigated.

Acrylic Resins↗

Cytotoxicity of graft-derived lymphocytes: specific for donor heart endothelial cells?

BACKGROUND: Previously, we showed that lymphocytes cultured from cardiac allografts can lyse lymphoid cell lines from donor origin. Because endothelial cell form the first allogeneic barrier to be encountered in vivo, the reactivity of graft-infiltrating cells against donor heart-derived endothelial cells (DoHEC) may be more relevant for understanding the clinical course after heart transplantation. METHODS: Endomyocardial biopsies (EMB) were taken at different times after transplantation, both during acute rejection and during quiescence. Lymphocytes cultured from these EMB were assayed for cell-mediated cytotoxicity in a 4-hour chromium 51 release test by use of target panels of different cell types derived from donor or third party. Cell specificity was investigated by addition of a tenfold excess of unlabelled target cells to 51Cr-labeled DoHEC. RESULTS: These experiments show that DoHEC can be lysed by lymphocytes derived from EMB. Antigens that were recognized on DoHEC were often donor human leukocyte antigen class I antigens. Some cultures in addition recognized alloantigens present only on DoHEC and not on donor-derived B cells as suggested by lack of or partial inhibition of DoHEC lysis by addition of excess competitor B cells. Endothelial cell-specific reactivity was unequivocally identified after limiting dilution of EMB-derived cultures. CONCLUSION: We conclude that not only DoHEC-reactive but also DoHEC-specific cells are present among the cardiac graft infiltrating cells.

CD8-Positive T-Lymphocytes↗

The avidity, not the mere presence, of primed cytotoxic T-lymphocytes for donor human leukocyte class II antigens determines their clinical relevance after heart transplantation.

BACKGROUND: To analyze the relevance of CD4-positive cytotoxic T-lymphocytes (CTL) in clinical heart rejection, we studied the frequency and avidity of donor human leukocyte antigen class II-specific CTL present within the graft during a rejection episode and during a period without rejection. METHODS: For this analysis endomyocardial biopsies of heart transplant recipients were cultured to obtain graft-infiltrating lymphocytes (GIL). GIL cultures exhibiting donor class II-directed cytotoxicity were considered for this study. With limiting dilution analysis, the frequency of donor class II-specific CTL that had been primed by donor antigens in vivo (designated cCTL) was determined in GIL cultures established from endomyocardial biopsies taken during a rejection episode (n = 10) or during a period without rejection (n = 11). Addition of anti-CD4 to the limiting dilution analysis revealed the fraction of donor class II-specific cCTL having a high avidity for donor antigen. RESULTS: During a rejection episode, 196 (median) donor class II-specific cCTL/106 GIL were present. In a period without rejection, the frequency of donor class II-specific cCTL was not significantly different (median = 330/10(6); p = 0.1). Addition of anti-CD4, however, revealed that donor class II-specific cCTL with a high avidity for donor antigen are predominant during a rejection episode (median = 100%) but are in minority during a period without rejection (median = 35%; p < 0.0001). CONCLUSIONS: These results suggest that graft-infiltrating CD4+ CTL can mediate heart rejection provided they have a high avidity for donor antigen.

Antibody Affinity↗

Donor-specific anti-human leukocyte antigen class I antibodies after implantation of cardiac valve allografts.

The allospecific humoral immune response was examined in 31 patients in the first year after implantation of cryopreserved human cardiac valves. We determined the percentage antibodies against human leucocyte antigens (HLA) class I in a complement-dependent microlymphocytotoxicity test against a panel of 50 selected donors carrying most of the defined HLA-A and HLA-B specificities (panel-reactive antibodies). In blood samples taken immediately before implantation, no antibodies could be detected. Thereafter, antibodies were present in 23 of 31 (74%) patients (median panel-reactive antibodies: 57%, range 9% to 91%). In 21 patients the HLA-type of the valve donor was available. In four patients no blood samples taken after 4 weeks were available. In 14 of 17 patients (82%) with a follow-up of more than 1 month antibodies were present, and in 12 of these 14 (86%) antibodies were specifically directed against HLA class I of the donor. In conclusion, the formation of donor-specific antibodies is frequently observed after human cardiac valve replacement. It could be one of the factors leading to valve destruction and dysfunction.

Adolescent↗

Progressive accumulation of CTL with high avidity for donor antigens during the development of acute cardiac rejection.

To study the importance of cytotoxic T lymphocytes (CTL) with high avidity for donor antigens (Ag) in the development of acute cardiac allograft rejection, their appearance within the graft in relation to rejection was analyzed. For this study, donor directed CTL propagated from sequentially taken endomyocardial biopsies (EMB) were enumerated by limiting dilution analysis (LDA). Subsequentially, the fraction of these CTL having high avidity for donor Ag was determined by addition of a CD8 monoclonal antibody (mAb) to the cytotoxic phase of the LDA. Analysis of 37 EMB cultures obtained from 11 heart transplant (HTx) patients before, during, or after they experienced rejection, revealed the kinetics of donor specific CTL in relation to rejection for HTx patients in general. For 5 individual recipients, a more detailed analysis was performed. The kinetics found for individual patients confirmed the pattern found for the total group of HTx recipients tested. Frequencies of donor specific precursor CTL (pCTL) as well as of in vivo primed donor reactive CTL (committed CTL or cCTL) increased towards rejection and decreased after successful rejection therapy. More than 2 weeks before rejection was diagnosed, only a small fraction of the graft infiltrating donor specific pCTL and cCTL had high avidity for donor Ag (median = 35% and 11%, respectively). Within 2 weeks preceding rejection, this fraction increased gradually (median = 52% and 55%, respectively) and became dominant during rejection (median = 87% and 78%, respectively). After successful rejection therapy, a decrease to basal levels (median = 18% and 24%, respectively) was observed. Conclusively, intragraft accumulation of high avidity, donor specific pCTL and cCTL may cause transplant rejection.

Acute Disease↗

Human heart endothelial-cell-restricted allorecognition.

We studied the reactivity of cardiac graft-infiltrating cells, cultured from endomyocardial biopsy specimens, toward heart endothelial cells (Hec). In two cases, Hec derived from the specific donor heart or Hec compatible with the donor were lysed, but not the syngeneic B cell line. A vessel-derived endothelial cell line was not lysed. Panel studies suggest that the epitopes recognized are, in one case, a Hec-specific peptide presented in the context of HLA-Bw41 and, in the other case, a Hec-specific peptide presented by a subtype of HLA-B44. In conclusion, we showed that cardiac graft-infiltrating cells cultured from endomyocardial biopsy specimens can exhibit cytotoxic reactivity specifically directed against HLA-peptide complexes on Hec.

Cell Line↗

A randomized trial comparing safety and efficacy of OKT3 and a monoclonal anti-interleukin-2 receptor antibody (BT563) in the prevention of acute rejection after heart transplantation.

In a prospective randomized trial, BT563, a murine IgG, anti-interleukin-2 receptor antibody, was compared with OKT3 for use as an early rejection prophylaxis after heart transplantation. Patients received either BT563 (n=31) or OKT3 (n=29) during the first 7 days after transplantation; cyclosporine was started on day 3. Median follow-up was 34 months. A cytokine release syndrome occurred in the majority of patients of the OKT3-treated group but in none of the BT563 recipients. The mean duration of electrical stimulation of the heart in the BT563 group was longer than in the OKT3 group (5.1 vs. 2.1 days). In both groups, one patient required insertion of a permanent pacemaker. Freedom from acute rejection at 3 months was not significantly different between the two groups (BT563: 5/29, 17%; OKT3: 6/29, 21%). In the BT563 group, however, rejection tended to occur earlier after transplantation. There was no difference in the overall incidence of rejection. The incidence of infectious complications was evenly distributed in both groups. Malignancies occurred in two patients, both in the OKT3 group. In conclusion, the use of this anti-interleukin-2 receptor monoclonal antibody in heart transplant recipients is safe and devoid of the side effects that accompany the use of OKT3. OKT3 and BT563 result in a similar freedom from rejection at 3 and 12 months after heart transplantation.

Adolescent↗