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Biomedical subjects

Matthias Girndt

Publications and source records attributed to Matthias Girndt.

10 recordsLinked to original sources

Uremia-associated immune defect: the IL-10-CRP axis.

Unstable atherosclerotic disease is related to systemic inflammation. While this inflammation remains at a subclinical level in otherwise healthy individuals, chronic elevation of pro-inflammatory cytokines is a common feature in patients with end-stage renal disease (ESRD). Current hypotheses on the pathogenetic links between inflammation and atherosclerosis emphasize that cytokine-producing monocytes/macrophages can actively infiltrate atherosclerotic plaques. A high activation level of this cell type may contribute to plaque growth. In the healthy, some 15% to 20% of circulating monocytes may be activated for cytokine production. This percentage is much higher in dialysis patients (50%), which may contribute to the rapid progression of atherosclerosis. Anti-inflammatory mechanisms such as interleukin-10 (IL-10) limit the production of a broad range of pro-inflammatory factors. Animal models, as well as clinical findings, suggest an involvement of this cytokine in the pathogenesis of vascular lesions. In hemodialysis (HD) patients, a protective role of IL-10 against systemic inflammation could be proven. A high interindividual variability in IL-10 production leads to distinct patient groups who can or cannot effectively limit the uremia- and dialysis-induced inflammation. Single nucleotide polymorphisms (SNPs) in the promotor of the IL-10 gene may genetically explain this heterogeneity. The IL-10 genotype strongly influences the range of variation of C-reactive protein (CRP), the most widely used marker of inflammation in dialysis patients. By limiting the inflammatory activation in ESRD patients, the IL-10 genotype is predictive for the risk of cardiovascular disease, meaning that the IL-10 "high-producer" genotype is associated with a lower event rate, and even mortality, than the IL-10 "low-producer" genotype.

C-Reactive Protein↗

Early posttransplantation renal allograft perfusion failure due to dissection: diagnosis and interventional treatment.

OBJECTIVE: The aim of our study was to describe the role of interventional radiology, especially in the use of vascular stents, in early renal perfusion failure after transplantation. CONCLUSION: Angiography revealed intimal dissection of the graft artery and graft venous thrombosis, which were successfully treated with stent angioplasty and thromboaspiration. For early vascular complication after transplantation, timely use of angiography and subsequent intervention should be recognized as potentially effective and safe treatment techniques.

Aged↗

Age-related decrease in adenovirus-specific T cell responses.

Infections with persistent viruses, such as cytomegalovirus (CMV) or adenovirus, are not, in general, clinically apparent but may cause serious complications in the immunocompromised host. As has been shown for CMV, the cellular arm of the immune response is essential in controlling viral replication. However, cellular immunity toward adenoviruses has not been well characterized in humans. The aim of the present study was the quantitative and functional analysis of adenovirus-specific T cell responses from 171 healthy individuals and 59 long-term renal transplant recipients by use of flow-cytometric, as well as standard proliferation and enzyme-linked immunosorbant, assays. Adenovirus-specific immunity is dominated by CD4 T cells with memory/effector phenotype. Of interest, the frequency of adenovirus-specific T cells decreases significantly with age. This age-related decline indicates the eventual elimination of adenoviruses within a lifetime that may explain the well-known clinical observation of a predominant incidence of adenoviral complications in children and young adults, compared with older adults, after transplantation.

Adenoviridae↗

Anti-inflammatory interleukin-10 genotype protects dialysis patients from cardiovascular events.

BACKGROUND: Inflammatory processes play an important role for the progression of atherosclerosis. This can be studied particularly well in patients with chronic renal failure who are on hemodialysis, as they show systemic inflammation due to uremia and dialysis while suffering from premature mortality secondary to rapidly progressing atherosclerosis. Interleukin (IL)-10 is a regulatory cytokine that limits inflammatory processes. The quantitative production of IL-10 is subject to genetic variation based on polymorphisms in the promoter of its gene. We tested the hypothesis that the IL-10 genotype, by influencing the capacity to compensate for dialysis-induced systemic inflammation, determines the risk for cardiovascular complications. METHODS: Three hundred chronic hemodialysis patients were genotyped for the polymorphic bases at positions -1082 and -819 of the IL-10 promoter sequence. They were prospectively followed for a mean of 20.2 +/- 7.3 months. End-points of the study were major events related to cardiac, cerebrovascular or peripheral artery disease. RESULTS: The -1082A* allele, which is associated with low production of the cytokine IL-10 and elevated markers of systemic inflammation such as C reactive protein, was predictive for a higher cardiovascular morbidity (relative risk for cardiovascular events 2.76, 95% confidence interval 1.31 to 4.17, P = 0.004) compared to the -1082G* genotype. CONCLUSION: The IL-10 genotype influences the risk for cardiovascular events in hemodialysis patients and allows the definition of a high risk group. The data provide further evidence for a causal role of systemic inflammation for progressive atherosclerosis in dialysis patients.

Aged↗

A shift in the Th(1)/Th(2) ratio accompanies the clinical remission of systemic lupus erythematosus in patients with end-stage renal disease.

BACKGROUND: Patients suffering from systemic lupus erythematosus (SLE) with renal involvement often show remission of systemic clinical activity after progression to end-stage renal disease (ESRD). SLE is characterized by predominantly humoral, T-helper (Th)(2)-mediated autoimmune responses. Since ESRD induces a state of immunodeficiency that affects the balance of Th cell subsets, we hypothesized that a Th(1) shift induced by ESRD leads to clinical remission of SLE. METHODS: Using single-cell measurement of intracellular cytokines by flow cytometry after polyclonal stimulation with PMA/ionomycin, helper cell profiles were analysed in SLE patients with preserved renal function and in SLE patients with ESRD, from both isolated peripheral blood mononuclear cells (PBMC) and whole blood. RESULTS: Using the whole-blood assay, patients with SLE and preserved renal function showed a predominance of Th(2) cells compared to healthy controls (patients, Th(1)/Th(2) ratio 6.0+/-1.0 vs controls, 9.0+/-1.0; P<0.05). In contrast, SLE patients with ESRD have significantly more Th(1) cells (36.8+/-5.0%) than those without ESRD (23.4+/-3.6%; P<0.05). This results in an enhancement of the Th(1)/Th(2) ratio to 12.1+/-2.6, which is not significantly different from healthy controls. These data were confirmed using a PBMC-based assay. CONCLUSIONS: SLE patients with preserved renal function show a bias in the differentiation of Th cells towards Th(2). Once ESRD occurs, the Th(1)/Th(2) ratio normalizes. This may contribute to the remission of Th(2)-mediated autoimmune diseases such as SLE.

Adult↗

Impact of alloantigens and storage-associated factors on stimulated cytokine response in an in vitro model of blood transfusion.

BACKGROUND: Transfusion of blood may contribute to immunosuppression in major surgery. The authors assessed the impact of alloantigens and storage on function of peripheral blood mononuclear cells cultured in their physiologic environment. METHODS: Blood units (whole blood, packed erythrocytes) were prepared with or without prestorage leukodepletion and stored for 24-26 days. Blood samples were coincubated with allogeneic fresh blood, autologous, or allogeneic stored blood. Endotoxin-stimulated release of tumor necrosis factor-alpha (TNF-alpha) and interleukin 10 (IL-10) was measured after 24 h of culture by enzyme-linked immunosorbent assay. RESULTS: Coincubation with equal amounts of allogeneic fresh blood showed almost no influence on TNF-alpha (-12%, not significant) and IL-10 (+11%, not significant) release. Stored allogeneic whole blood resulted in a significant TNF-alpha depression (-61%) and IL-10 induction (+221%). These effects were diminished but not prevented by prestorage leukodepletion (TNF-alpha -42%, IL-10 +110%) and required the presence of soluble factors (TNF-alpha suppression) and cellular components (IL-10 induction). TNF-alpha decrease and IL-10 increase were in the same order of magnitude (-40%, +134% with, -65%, +314% without leukodepletion) after coincubation with autologous blood. In contrast, allogeneic erythrocytes had only little effects (TNF-alpha -6%, IL-10 +36%) even at this high transfusion equivalent. CONCLUSION: These data suggest that banked whole blood has an immunosuppressive effect that is largely attributable to storage-dependent factors. These factors are partially removed by prestorage leukodepletion, while the contribution of alloantigens is of minor significance. Immunosuppressive effects are least apparent with leukodepleted erythrocytes, suggesting that the presence of plasma during storage is required for the immunosuppressive effect to develop.

Blood Preservation↗

Dominance of virus-specific CD8 T cells in human primary cytomegalovirus infection.

Cellular immune responses are of high importance in initiating and maintaining immunity against virus infections. Whereas the cellular immune response during persistent cytomegalovirus (CMV) infection is well assessable, the individual contribution of CD4 and CD8 T cell responses during primary infection has not been described. A novel whole-blood assay, which relies on the flow-cytometric detection of antigen-induced cytokine expression, was used to characterize CMV-specific CD4 and CD8 T cell responses during primary infection of CMV seronegative recipients of a renal allograft from a CMV seropositive donor. These T cell responses were compared with long-term CMV-positive patients with known history of transplantation-related seroconversion. Results were further correlated to CMV load and serum IgG and IgM. The long-term seroconverted patients consistently showed a dominant CMV-specific CD4 T cell response (median frequencies: CD4, 1.12% [range, 0.35 to 8.10%] versus CD8 0.13% [range, <0.05 to 0.55%]). In contrast, during primary infection, the cellular immune response is strongly dominated by CMV-specific CD8 T cells (median peak frequencies: CD4, 1.24% [range, 0.21 to 1.60%] versus CD8, 2.47% [range, 1.34 to 6.67%]). Upon receipt of ganciclovir, viral load as well as CMV-specific CD8 responses decreased. The frequency of the respective CD4 T cells fluctuated during decrease of CMV load and became dominant over CMV-specific CD8 T cell responses. These results are consistent with the view of an effective direct antiviral activity of CD8 T cells, which is most critical during periods of high viremia. Later on during persistent infection, CD4 T cells dominate the immune response to support the state of antiviral immunity.

Adult↗

Sustained high frequencies of specific CD4 T cells restricted to a single persistent virus.

Replication of cytomegalovirus (CMV) is largely controlled by the cellular arm of the immune response. In this study the CMV-specific CD4 T-cell response was characterized in a cohort of apparently healthy individuals. In 11% of all individuals, extremely high frequencies, between 10 and 40%, were found. High-level frequencies of CMV-specific CD4 T cells persisted over several months and were not the result of an acute infection. Specific T cells were oligoclonal and were phenotypically and functionally characterized as mature effector cells, with both cytokine-secreting and proliferative potential. These high-level frequencies do not seem to compromise the immune response towards heterologous infections, and no signs of immunopathology were observed. Whereas a large temporary expansion of virus-specific T cells is well known to occur during acute infection, we now show that extremely high frequencies of virus-specific T cells may continuously exist in chronic CMV infection without overtly compromising the remaining protective immunity.

Adult↗

Humoral immune responses in uremia and the role of IL-10.

Chronic renal failure severely influences the immune functions of the host. Recent work has shown that uremic intoxication as well as its treatment alters distinct aspects of immunity and that the organism has certain mechanisms to compensate, at least in part, for these influences. Failure of the humoral branch of immune function becomes apparent when vaccinations are applied to the dialysis patient. Severely impaired vaccine responses are common, particularly against hepatitis B, tetanus, or influenza. In contrast, patients with chronic renal failure may develop adequate humoral responses against vaccines such as pneumococcus. The degree of impairment of humoral responses is related to the antigen's dependence on T-helper lymphocyte activation, which is high for hepatitis or influenza, and low for large polysaccharide antigens. T-helper cell activation on the other hand is greatly influenced by inflammatory processes, e.g. the secretion of cytokines such as interleukin (IL-)-1 or IL-6. These inflammatory processes are induced by uremic toxins and contacts between blood and extracorporeal surfaces of the dialysis equipment. They are subject to the body's compensatory mechanisms for inflammation, which are mainly based on the anti- inflammatory cytokine IL-10. Genetically determined differences in the secretion capacity for this compensatory cytokine strongly influence humoral immunity in the patient with chronic renal failure and thus allow the definition of a high-risk group for infection and vaccine nonresponse.

Antibody Formation↗

Hepatitis B virus infection in hemodialysis patients.

Patients with chronic renal failure on hemodialysis suffer from impaired immune defense mechanisms. A defect in costimulatory signalling from antigen-presenting cells (APCs) for the antigen-specific activation of T cells leads to immune incompetence, particularly toward viral infections. The epidemiologic situation of dialysis patients who are treated in centers together with other immunocompromised patients and who need blood access 3 times weekly places them at a high risk for viral hepatitis B. Clinically, the infection shows a mild and subclinical, often anicteric, course, leading to chronic infection in the majority of cases. Typical consequences such as cirrhosis and hepatocellular carcinoma may occur, however, seem to be less frequent than in hepatitis B-infected persons with normal renal function. Protection by vaccination is also hampered by the immune defect. Nevertheless, a high percentage of vaccinated patients is still desirable for infection control. Treatment of hepatitis B in dialysis patients is difficult because interferon-alfa is less effective and frequently leads to side effects. Lamivudine may become a future alternative, however, current experience is limited.

Antiviral Agents↗