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Biomedical subjects

Ulrich Kunzendorf

Publications and source records attributed to Ulrich Kunzendorf.

15 recordsLinked to original sources

CCL19-IgG prevents allograft rejection by impairment of immune cell trafficking.

An adaptive immune response is initiated in the T cell area of secondary lymphoid organs, where antigen-presenting dendritic cells may induce proliferation and differentiation in co-localized T cells after T cell receptor engagement. The chemokines CCL19 and CCL21 and their receptor CCR7 are essential in establishing dendritic cell and T cell recruitment and co-localization within this unique microenvironment. It is shown that systemic application of a fusion protein that consists of CCL19 fused to the Fc part of human IgG1 induces effects similar to the phenotype of CCR7-/- animals, like disturbed accumulation of T cells and dendritic cells in secondary lymphoid organs. CCL19-IgG further inhibited their co-localization, which resulted in a marked inhibition of antigen-specific T cell proliferation. The immunosuppressive potency of CCL19-IgG was tested in vivo using murine models for TH1-mediated immune responses (delayed-type hypersensitivity) and for transplantation of different solid organs. In allogeneic kidney transplantation as well as heterotopic allogeneic heart transplantation in different strain combinations, allograft rejection was reduced and organ survival was significantly prolonged by treatment with CCL19-IgG compared with controls. This shows that in contrast to only limited prolongation of graft survival in CCR7 knockout models, the therapeutic application of a CCR7 ligand in a wild-type environment provides a benefit in terms of immunosuppression.

Animals↗

Efficacy and safety of tacrolimus compared with cyclosporin A microemulsion in renal transplantation: 2 year follow-up results.

BACKGROUND: Comparison studies of calcineurin inhibitors as cornerstone immunosuppressants in renal transplantation have demonstrated that tacrolimus consistently reduces acute rejection rates and, in some studies, also improves long-term renal outcome in comparison to cyclosporin A (CsA). The aim of the present 2 year follow-up of the European Tacrolimus vs Cyclosporin A Microemulsion Renal Transplantation Study was to investigate long-term clinical outcome in terms of rate of acute rejection, graft and patient survival and graft function. METHODS: The European Tacrolimus vs Cyclosporin A Microemulsion Renal Transplantation Study was a randomized, comparative 6 month trial of the calcineurin inhibitors tacrolimus and CsA in combination with both azathioprine and steroids. The intent-to-treat population (ITT) consisted of 286 patients in the tacrolimus arm and 271 in the CsA microemulsion (CsA-ME) arm. Whereas whole blood level targets were 10-20 and 5-15 ng/ml for tacrolimus and 100-400 and 100-200 ng/ml for CsA during months 0-3 and 4-6, respectively, during the investigator-driven follow-up after termination of the main study (months 7-24) no specific calcineurin inhibitor target levels were required. Follow-up data were collected at 2 years post-transplantation from 237 (82.9% of the ITT population) patients who received tacrolimus and 222 (81.9% of the ITT population) patients who received CsA-ME. RESULTS: Calculated on ITT populations, mortality (2.0% vs 3.3%; P<0.05 in Kaplan-Meier analysis) was lower, but rate of graft loss (9.3% vs 11.2%; P = 0.12 in Kaplan-Meier analysis) was not significantly different after 2 years with tacrolimus- vs CsA-ME-based immunosuppression. Biopsy-proven acute rejection was significantly lower (19.6%) with tacrolimus than with CsA-ME (37.3%) during months 0-6 (P<0.0001), but was not significantly different during months 7-12 and 13-24 of follow-up (1.7% and 0.8% with tacrolimus and 4.7% and 0.9% with CsA-ME, respectively). A composite endpoint consisting of graft loss, patient death and biopsy-proven acute rejection occurred significantly more frequently in CsA-ME patients than in tacrolimus patients (42.8% vs 25.9%; P<0.001) during 24 months follow-up. Renal function 2 years post-transplant, measured by serum creatinine concentrations, was significantly better in tacrolimus-based compared with CsA-ME-based immunosuppression (136.9 vs 161.6 micromol/l; P<0.01). Cornerstone immunosuppression remained unchanged in 82.5% and 66.2% of patients treated with tacrolimus and CsA-ME, respectively. At 2 years, more patients in the tacrolimus arm were off steroids and received calcineurin inhibitor monotherapy, and fewer tacrolimus patients remained on a triple immunosuppressive regimen. The cardiovascular risk profile was affected favourably in the tacrolimus arm, with lower cholesterol and triglyceride concentrations (despite less use of cholesterol-lowering drugs); no significant difference in requirement for antidiabetic medication was noted. CONCLUSIONS: The 2 year study results confirm that tacrolimus is a highly efficacious cornerstone immunosuppressant in kidney transplantation. Tacrolimus-based immunosuppression may induce long-term benefits with regard to graft function and graft survival. The overall side-effect profile is considered to be favourable.

Adolescent↗

Open prospective multicenter study of conversion to tacrolimus therapy in renal transplant patients experiencing ciclosporin-related side-effects.

The hyperlipidemic and hypertensive effects of ciclosporin constitute a cardiovascular risk. Cosmetic side-effects are known to reduce patients' quality of life. This was a 6-month, open, prospective, multicentre study in 296 adult kidney transplant patients to evaluate the conversion from ciclosporin to a tacrolimus-based regimen. Primary indications for conversion were hyperlipidemia (n =77), hypertension (n = 72), hypertrichosis (n = 32) and gingival hyperplasia (n = 115). At month 6, hyperlipidemia and hypertension were at least moderately improved in 59.1% and 63.5% of patients, and strongly or completely resolved in 29% and 25%. Gingival hyperplasia and hypertrichosis were strongly or completely resolved in 73% and 72% of patients. Mean total cholesterol was reduced from 255 to 218 mg/dl. Mean systolic blood pressure (SBP) was reduced from 152.9 to 137.5 mmHg and mean diastolic blood pressure (DBP) from 90.7 to 85.8 mmHg. Ciclosporin-related side-effects resolved or improved after conversion to tacrolimus.

Adult↗

Transduction of the TAT-FLIP fusion protein results in transient resistance to Fas-induced apoptosis in vivo.

Although tightly regulated programmed cell death (apoptosis) possesses great importance for tissue homeostasis, several pathologic processes are associated with organ failure due to adversely activated cell apoptosis. Transient increase in apoptosis has been shown to cause organ damage during fulminant hepatitis B, autoimmune diseases, ischemia-reperfusion injury, sepsis, or allograft rejection. A defined and temporary inhibition of cell apoptosis may therefore be of high clinical relevance. Activation of death receptors results in caspase-8 recruitment to the death-inducing signaling complex, which initiates the apoptotic process through cleavage of caspase-8 and downstream substrates. This initial step may be inhibited by the caspase-8 inhibitor FLIP (FLICE inhibitory protein). To specifically inhibit the initiation of death receptor-mediated apoptosis we constructed a fusion protein containing FLIP fused N-terminally to the human immunodeficiency virus TAT domain. This TAT domain allows the fusion protein to cross the cell membrane and thus makes the FLIP domain able to interfere with the death-inducing signaling complex inside of the cell. We observed that incubation of lymphocytic Jurkat or BJAB cells with TAT-FLIPS proteins significantly inhibits Fas-induced activation of procaspase-8 and downstream caspases, preventing cells from undergoing apoptosis. Systemic application of TAT-FLIPS prolongs survival and reduces multi-organ failure due to Fas-receptor-mediated lethal apoptosis in mice. Therefore, application of cellular FLIPS in the form of a TAT fusion protein may open a promising, easily applicable new tool for providing protection against transient, pathologically increased apoptosis in various diseases.

Apoptosis↗

Low-dose sirolimus in combination with mycophenolate mofetil improves kidney graft function late after renal transplantation and suggests pharmacokinetic interaction of both immunosuppressive drugs.

AIMS: Chronic allograft nephropathy and/or calcineurin inhibitor toxicity are common problems after organ transplantation. The aim of this study was to examine the safety and efficacy of switching from a calcineurin inhibitor-based to a calcineurin inhibitor-free immunosuppressive regimen consisting of sirolimus and mycophenolate mofetil (MMF) late after renal transplantation. METHODS: Kidney biopsies were performed in renal-transplanted patients with increasing serum creatinine levels at least 6 months after transplantation (mean time +/- SD after renal transplantation: 76.4 +/- 50.4 months). Patients with no signs of acute rejection were switched to MMF (500-2,000 mg/day) in combination with a low dose of sirolimus (1 mg/day). Renal function, serum chemistry, blood trough levels of sirolimus and MMF, and blood pressure were monitored. RESULTS: 13 patients were investigated. During our observation period (mean observation time +/- SD: 11.2 +/- 5.9 months), an improvement in renal function was observed in 10/13 patients. In 3/13 patients, renal function deteriorated further and hemodialysis was initiated in 2 patients within the next 6 months. However, a serum creatinine concentration above 3.5 mg/dl was measured in 2 of those 3 patients prior to the switch of the immunosuppressive protocol. Administration of a low dosis of sirolimus (1 mg/day) led to relevant sirolimus (4.16 +/- 1.85 ng/ml) and MMF blood trough levels (month 1: 6.8 +/- 3.46; month 3: 4.67 +/- 1.78 mg/l). The following adverse events were observed: borderline acute rejection (1/11 patients), anemia responding to higher dosage of erythropoietin (3/11), hyperlipidemia (1/11), and urinary tract infections (4/11). CONCLUSIONS: Low-dose sirolimus therapy in combination with concentration-adjusted MMF therapy leads to improvement of organ function late after renal transplantation. The follow-up of those patients should include assessments of blood cell counts, serum lipids and urinalysis to recognize the possible side effects.

Adult↗

Ectopic expression of CCL19 impairs alloimmune response in mice.

Initiation of an antitumour immune response is characterized by a complex process of chemokine-mediated cell migration and cell-cell interactions. Overexpression of chemokine CCL19 in tumour cells has been shown to result in accelerated tumour rejection under certain experimental conditions, suggesting a novel approach in the therapy of neoplastic malignancies. To investigate CCL19-mediated modulations of cellular immune responses in vivo, we generated a chimeric CCL19-immunoglobulin G2b (IgG2b) Fc fusion protein, which binds to the chemokine receptor CCR7 comparable to native CCL19. CCL19-IgG2b possesses a long-lasting potent chemotactic activity as a result of the extended half-life of Fc fusion proteins. Stable overexpression of CCL19-IgG2b in BALB/c-derived J558L tumour cells fails to support tumour cell rejection following transplantation in syngeneic mice. Moreover, overexpression of CCL19-IgG2b hinders tumour rejection in allogeneic C57BL/6 mice. This phenomenon was accompanied by a six-fold increase of dendritic cells (DCs) isolated from CCL19-IgG2b-secreting tumours when compared to the number of DCs isolated from control parental J558L tumours. While mice bearing the allogeneic parental tumour showed an intense hypercellularity in the draining lymph nodes, no such response could be observed in the draining lymph nodes of mice carrying the CCL19-IgG2b-secreting tumour. We could demonstrate that overexpression of CCL19-IgG2b in tumour cells retains antigen-presenting cells in the tumour mass and prevents DCs from migrating into draining lymph nodes to present antigens and to activate T cells, resulting in an impaired immune response against the tumour.

Animals↗

Failure of cyclosporin A to induce transforming growth factor beta (TGF-beta) synthesis in activated peripheral blood lymphocytes.

Induction of transforming growth factor beta (TGF-beta) by the immunosuppressive drug cyclosporin A (CsA) in activated lymphocytes has been claimed to add to the renal pro-fibrotic effects of CsA. The aim of this study was to evaluate CsA-mediated TGF-beta induction in a larger number of lymphocyte preparations from different donors. Peripheral blood lymphocytes (PBL) were obtained from healthy blood donors. The cells were stimulated with phytohemagglutinin E (PHA) and phorbol ester (tetradecanoyl phorbol acetate, TPA) in the presence or absence of CsA. TGF-beta, interleukin-2 (IL-2) and cyclooxygenase-2 (Cox-2) mRNA were detected by Northern blot analysis or by real time reverse transcriptase-polymerase chain reaction (RT-PCR). TGF-beta and IL-2 protein were determined in the cellular supernatants by enzyme-linked immunosorbent assay. TGF-beta mRNA and protein were up-regulated when the cells were stimulated with PHA/TPA. Cyclosporin A at high concentrations (500 ng/mL) caused a transient increase in TGF-beta mRNA which was significant after 2 h. CsA did not induce sustained TGF-beta protein expression (24-72 h) in any of the preparations (n = 14), whereas the up-regulation of IL-2 mRNA and protein was prevented by CsA in the same preparations. Furthermore, up-regulation of Cox-2 mRNA was inhibited by CsA. Taken together, there was no evidence for TGF-beta as a clinically relevant mediator being induced by CsA in activated peripheral blood T-lymphocytes.

Adult↗

Tacrolimus and cerivastatin pharmacokinetics and adverse effects after single and multiple dosing with cerivastatin in renal transplant recipients.

AIMS: In contrast to cyclosporin, only limited information exists on the interaction potential between the immunosuppressive agent tacrolimus and HMG-CoA reductase inhibitors, which are metabolized via the cytochrome P450 system. The aim of this study was to investigate the pharmacokinetics, and adverse effects of cerivastatin combined with tacrolimus in renal transplant patients. METHODS: Ten patients with stable kidney graft functions and LDL-cholesterol serum concentrations > 110 mg dl-1 were included in the study. After an observation period of 3 months, cerivastatin (0.2 mg daily) was administered for an additional 3 months. Tacrolimus steady-state pharmacokinetics and cerivastatin single- and multiple-dose pharmacokinetics were determined. Lipid concentrations, routine laboratory parameters and adverse events were obtained and analysed throughout the study period of 6 months. RESULTS: Blood tacrolimus trough concentrations were not affected by cerivastatin (mean +/- SD 8.6 +/- 2.1 ng ml(-1) before, and 8.7 +/- 2.4 ng ml(-1) at day 90 of cerivastatin dosing, with a 95% confidence interval on the difference = 0.97, 1.08). The mean area under the blood concentration-time curve to 24 h (AUC(0,24 h)) for cerivastatin was 14.5 +/- 2.53 micro g l(-1) h(-1) at day 1 after starting treatment and 19.02 +/- 3.55 micro g l(-1) h(-1) (3 months later), resulting in a 35% higher (AUC(0,24 h)) compared with the first dose. Total cholesterol, LDL-cholesterol and triglyceride concentrations were significantly lowered by cerivastatin whereas no significant effect of cerivastatin on serum creatininkinase concentrations was observed and no adverse effects were documented. CONCLUSIONS: Tacrolimus increased the AUC(0, 24 h) of cerivastatin by a mean of 35% in renal transplant patients. Cerivastatin had no detectable effect on the pharmacokinetics of tacrolimus.

Adult↗

Cutting edge: CCR7+ and CCR7- memory T cells do not differ in immediate effector cell function.

It has been proposed that expression of the chemokine receptor CCR7 represents a defining factor for nonpolarized central (CCR7(+)) and polarized effector memory (CCR7(-)) T cells. In this study, we have tested this hypothesis using in vivo-activated T cells from P14 and SMARTA TCR-transgenic (tg) mice specific for MHC class I- and II-restricted epitopes of the lymphocytic choriomeningitis virus (LCMV) glycoprotein. CCR7 cell surface expression on TCR-tg cells was monitored with a CC chemokine ligand 19-Ig fusion protein. CC chemokine ligand 19-Ig staining separated TCR-tg cells activated by LCMV infection into CCR7(-) and CCR7(+) effector/memory T cell populations. Nonetheless, both T cell populations isolated from spleen and liver produced identical amounts of IFN-gamma after short-term Ag stimulation. Furthermore, CCR7(+) and CCR7(-) CD8 TCR-tg cells from LCMV-infected mice exhibited similar lytic activity against LCMV peptide-coated target cells. These results question the proposed concept of differential effector cell function of CCR7(+) and CCR7(-) memory T cells.

Amino Acid Sequence↗

Duration of donor brain death and its influence on kidney graft function.

Short- and long-term rates of success after cadaveric kidney transplantation are significantly inferior to those from living related or unrelated donors. The major difference between cadaveric and living donation is brain death. In the present study we analyzed the influence of duration of brain death on short- and long-term graft function after cadaveric kidney transplantation. The interval between declaration of donor brain death and the beginning of the cold ischemia time before graft explantation was defined as duration of brain death (DBD). The influence of DBD on incidence of primary graft function and on duration of delayed kidney graft function as well as on kidney graft survival was analyzed in 1106 patients transplanted in one center and confirmed in a validation study of a second series of 752 kidney graft recipients from another transplant center. Kidney grafts harvested from donors with longer DBD (>470 min) exhibited a significantly higher incidence of primary graft function and a significantly better graft survival rate in comparison to kidneys from donors with a shorter DBD (<470 min). The tendency of these results could be confirmed in an independent validation study; however, the differences were not statistically significant. Although the dramatic hemodynamic and immunological changes in brain-dead donors may impair the quality of a potential kidney transplant, a longer duration of donor brain death did not deteriorate early and long-term kidney graft function.

Brain Death↗

An increase in myeloid-related protein serum levels precedes acute renal allograft rejection.

Upon interaction with activated endothelium, monocytes and neutrophils form complexes of myeloid-related protein 8 (MRP8) (S100A8) and MRP14 (S100A9), two members of the calcium-binding S100 family that are secreted during transendothelial migration. In a pilot study of 20 renal transplant recipients and a validation study of 36 renal transplant recipients, MRP8/14 serum levels were measured with an enzyme-linked immunosorbent assay for 28 d, associated with C-reactive protein and creatinine serum levels, and grouped according to biopsy-proven acute rejection. Serum levels of MRP8/14 but not C-reactive protein were significantly increased for several days during the first 2 wk for the acute rejection groups in both studies (P < 0.005, on day 6 after transplantation). As determined by using receiver operating characteristic curves, the optimal cutoff for 100% specificity and high sensitivity (67%) for acute rejection on day 6 after transplantation was calculated to be 4.2 microg/ml for MRP8/14 in the pilot study; this value was confirmed in the validation study. Positive MRP8/14 serum levels preceded acute rejection episodes by a median of 5 d. A 3-d course of intravenous methylprednisolone therapy reduced prerejection MRP8/14 serum levels from 5.7 microg/ml to 3.3 microg/ml (P < 0.05). All MRP8/14 serum levels were below the cutoff during urinary tract infections, delayed graft function, or cytomegalovirus infections, and these values did not differ significantly from control values. It is concluded that the MRP8/14 complex is a very early serum marker suitable for monitoring of acute rejection with high sensitivity and specificity.

Acute Disease↗