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Biomedical subjects

R Oberbauer

Publications and source records attributed to R Oberbauer.

At least 19 recordsLinked to original sources

Gene expression profiles of human proximal tubular epithelial cells in proteinuric nephropathies.

In kidney disease renal proximal tubular epithelial cells (RPTEC) actively contribute to the progression of tubulointerstitial fibrosis by mediating both an inflammatory response and via epithelial-to-mesenchymal transition. Using laser capture microdissection we specifically isolated RPTEC from cryosections of the healthy parts of kidneys removed owing to renal cell carcinoma and from kidney biopsies from patients with proteinuric nephropathies. RNA was extracted and hybridized to complementary DNA microarrays after linear RNA amplification. Statistical analysis identified 168 unique genes with known gene ontology association, which separated patients from controls. Besides distinct alterations in signal-transduction pathways (e.g. Wnt signalling), functional annotation revealed a significant upregulation of genes involved in cell proliferation and cell cycle control (like insulin-like growth factor 1 or cell division cycle 34), cell differentiation (e.g. bone morphogenetic protein 7), immune response, intracellular transport and metabolism in RPTEC from patients. On the contrary we found differential expression of a number of genes responsible for cell adhesion (like BH-protocadherin) with a marked downregulation of most of these transcripts. In summary, our results obtained from RPTEC revealed a differential regulation of genes, which are likely to be involved in either pro-fibrotic or tubulo-protective mechanisms in proteinuric patients at an early stage of kidney disease.

Aged↗

A "weight-listing" paradox for candidates of renal transplantation?

Research suggests that end-stage renal disease patients with elevated body mass index (BMI) have superior outcomes on dialysis. In contrast, low and high BMI patients represent the highest risk cohorts for kidney transplant recipients. The important question remains concerning how to manage transplant candidates given the potentially incommensurate impact of BMI by treatment modality. We conducted a retrospective analysis of waitlisted and transplanted patients in the United States from 1990 to 2003. We constructed Cox models to evaluate the effect of BMI on mortality of waitlisted candidates and identified risk factors for rapid weight change. We then assessed the impact of weight change during waitlisting on transplant outcomes. Decline in BMI on the waiting list was not protective for posttransplant mortality or graft loss across BMI strata. Substantial weight loss pretransplantation was associated with rapid gain posttransplantation. The highest risk for death was among listed patients with low BMI (13-20 kg/m(2), adjusted hazard ratio = 1.47, p < 0.01). Approximately one-third of candidates had a change in BMI category prior to transplantation. While observed declines in BMI may be volitional or markers of disease processes, there is no evidence that candidates have improved transplant outcomes attributable to weight loss. Prospective trials are needed to evaluate the efficacy of weight loss protocols for candidates of kidney transplantation.

Adolescent↗

Developments in clinical islet, liver thoracic, kidney and pancreas transplantation in the last 5 years.

Although organ transplantation has matured into a proven therapy for end-stage organ failure, the many notable developments of the past 5 years speak to the multitude of remaining challenges. Two new procedures, islet transplantation and adult-to-adult living donor liver transplantation, have emerged to enlarge our therapeutic armamentarium for Type 1 diabetes mellitus and end-stage liver disease, respectively. In cardiac transplantation, the acceptance of ventricular assist devices as destination therapy is a notable event in light of critical shortage of deceased donor organs. Both liver and lung allocation policies have made a dramatic paradigm shift away from waiting time toward the survival benefit of transplantation. Finally, primary threats to post-transplant longevity have gained an increasing share of the spotlight. Recognition of the impact of renal insufficiency for all nonrenal transplant recipients, of recurrent hepatitis C virus for liver recipients, and of accelerated vasculopathy for cardiac have identified novel end points for clinical trials.

Graft Survival↗

Diagnosis of renal osteodystrophy.

The idiom renal osteodystrophy (ROD) represents a heterogeneous pattern of bone disturbances caused by chronic renal insufficiency and concomitant diseases. For the clinical decision of therapy it is most important to differentiate between high and low or adynamic turnover ROD because the therapeutically consequences of these two ends of the ROD spectrum are fundamentally different. Bone histology remains the gold standard for the exact classification of ROD. Serological markers of bone metabolism are not suited for the accurate nomenclature of ROD but are useful for the sequential follow up of ROD after a clear diagnosis has been made. Similarly, radiological diagnosis of ROD using dual energy X-ray absorptiometry (DEXA) or quantitative computer tomography scan (q-CT) is inaccurate and thus more suited for the routine follow up of established disease. Besides mineralization, bone strength and the rate of fractures are strongly determined by the architecture of the bone matrix. This information, however, is also only available on bone biopsy sections and cannot be estimated by non-invasive diagnostic methods. In summary, bone biopsy should be used more liberally for correct classification of bone disease. The sequential follow up and guidance of therapy success can be performed by non-invasive procedures such as biochemical bone marker determination in blood. X-ray imaging and densitometry is suitable only for sequential evaluation of osteoporosis.

Acid Phosphatase↗

Protein biomarkers associated with acute renal failure and chronic kidney disease.

Acute renal failure (ARF) as well as chronic kidney disease (CKD) are currently categorized according to serum creatinine concentrations. Serum creatinine, however, has shortcomings because of its low predictive values. The need for novel markers for the early diagnosis and prognosis of renal diseases is imminent, particularly for markers reflecting intrinsic organ injury in stages when glomerular filtration is not impaired. This review summarizes protein markers discussed in the context of ARF as well as CKD, and provides an overview on currently available discovery results following 'omics' techniques. The identified set of candidate marker proteins is discussed in their cellular and functional context. The systematic review of proteomics and genomics studies revealed 56 genes to be associated with acute or chronic kidney disease. Context analysis, i.e. correlation of biological processes and molecular functions of reported kidney markers, revealed that 15 genes on the candidate list were assigned to the most significant ontology groups: immunity and defence. Other significantly enriched groups were cell communication (14 genes), signal transduction (22 genes) and apoptosis (seven genes). Among 24 candidate protein markers, nine proteins were also identified by gene expression studies. Next generation candidate marker proteins with improved diagnostic and prognostic values for kidney diseases will be derived from whole genome scans and protemics approaches. Prospective validation still remains elusive for all proposed candidates.

Acute Kidney Injury↗

Sirolimus allows early cyclosporine withdrawal in renal transplantation resulting in improved renal function and lower blood pressure.

INTRODUCTION: This study evaluated whether cyclosporine (CsA) could be eliminated from a sirolimus (Rapamune, rapamycin, SRL)-CsA-steroid (ST) regimen at 3 months. METHODS: This was an open-label study conducted in Europe, Australia, and Canada. Upon enrollment, 525 primary (90%) or secondary (10%) renal allograft recipients with cadaveric (89%) or living (11%) donors received 2 mg of sirolimus (troughs>5 ng/ml), CsA, and steroids. At 3 months+/-2 weeks, eligible patients were randomized (1:1) to remain on SRL-CsA-ST or to have CsA withdrawn and therapy continued with SRL (troughs 20-30 ng/ml)-ST. RESULTS: At 12 months, overall graft and patient survival were 89.1% and 94.9%, respectively. In the 430 (82%) randomized patients, there was no difference in graft survival (95.8% vs. 97.2%, SRL-CsA-ST vs. SRL-ST) or patient survival (97.2% vs. 98.1%, respectively). The incidence of biopsy-confirmed primary acute rejection was 13.1% during the prerandomization period. After randomization, the acute rejection rates were 4.2% and 9.8% for SRL-CsA-ST and SRL-ST, respectively (P=0.035). Renal function (calculated glomerular filtration rate, 57 vs. 63 ml/min, P<0.001) and blood pressure significantly improved when CsA was withdrawn. Hypertension, CsA nephrotoxicity, hyperuricemia, and Herpes zoster occurred statistically more frequently in patients remaining on CsA, whereas thrombocytopenia, abnormal liver function tests, and hypokalemia were reported more often for SRL-ST therapy. CONCLUSION: Sirolimus, CsA, and steroids for 3 months posttransplant, followed by elimination of CsA, is a safe and effective alternative to continuous therapy with sirolimus, CsA, and steroids that can result in better renal function and lower blood pressure.

Adolescent↗

Serum proteins modified by neutrophil-derived oxidants as mediators of neutrophil stimulation.

Reactive oxygen intermediates (ROI) released during inflammation may act as important mediators of neutrophil effector functions. The objective of this investigation was to evaluate the influence of ROI generation on neutrophil adhesion molecule regulation and degranulation. Induction of the neutrophil oxidative burst via Fcgamma receptor cross-linking was accompanied by up-regulation of neutrophil surface CD11b, CD35, and CD66b only in the presence of selected serum proteins, such as purified human C4, C5, or human serum albumin (HSA). Scavenging of ROI attenuated protein-dependent receptor regulations. Moreover, exogenous hydrogen peroxide was effective to increase neutrophil CD11b expression in a protein-dependent way. HSA exposed to neutrophil-derived ROI displayed signs of oxidative modification in terms of carbonyl formation. Such modified HSA transferred to resting neutrophils bound readily to the cell surface and effected receptor modulation as well as cellular spreading. In contrast, neither native HSA nor HSA protected against oxidation by the tocopherol analog Trolox exhibited agonistic properties. In conclusion, we demonstrate that neutrophil-derived ROI modify selected serum proteins, which, in turn, act as proinflammatory mediators of neutrophil stimulation.

Blood Proteins↗

The long-term effect of simultaneous heart and kidney transplantation on native renal function.

BACKGROUND: It is unclear whether patients with heart failure and renal insufficiency should receive a simultaneous heart and kidney transplant or whether a single heart transplantation is sufficient to restore native renal function. METHODS: We analyzed the renal plasma flow and glomerular filtration of the native and transplant kidneys in eight patients long term after simultaneous heart and kidney transplantation using a dynamic MAG3 radioisotope scan and serum creatinine determinations. All subjects had been hemodialysis dependent before transplantation. Seven patients suffered from an intrinsic renal disease that were diabetic nephropathy in three cases, small fibrotic kidneys of undetermined origin in two cases, one lupus nephritis, and cyclosporine nephrotoxicity in one patient who had a previous heart transplant. In one patient renal insufficiency was considered to be solely due to renal hypoperfusion because no intrinsic renal disease could be detected. RESULTS: All patients were on cyclosporine-based triple immunosuppression, transplanted for 4 to 10 years, exhibited cardiac ejection fractions of more than 50% and had normal serum creatinine values. Radioisotopic scan showed no function of the native kidneys in all seven patients with intrinsic renal disease but exhibited normal function of the native kidneys as well as the renal transplant in the patient without intrinsic kidney disease before transplantation. CONCLUSIONS: These data suggest that a simultaneous heart and kidney transplantation is necessary in patients with cardiomyopathy and renal insufficiency due to primary kidney disease, but not in those with hemodynamically mediated renal failure, even if an immunosuppressive regimen with calcineurin inhibitors is used.

Aged↗

The contribution of adhesion molecule expression in donor kidney biopsies to early allograft dysfunction.

BACKGROUND: Renal allograft rejection is associated with the expression of adhesion molecules on vascular endothelial and tubular epithelial cells. METHODS: To assess whether the number of cell adhesion molecules expressed in donor kidneys can predict early rejection or delayed graft function, kidney biopsies from 20 living and 53 cadaveric kidney donors were obtained before engraftment into the recipients and the expression of the cell adhesion molecules intercellular adhesion molecule 1 (ICAM-1), vascular cell adhesion molecule 1 (VCAM-1), and endothelial leukocyte adhesion molecule (E-selectin) were determined by immunohistochemistry. RESULTS: All biopsies from living donors showed significantly lower expression of ICAM-1 and VCAM-1 compared to biopsies from cadaveric donors. There was no difference in the expression of adhesion molecules on tubular cells between transplants with primary function compared to allografts with early rejection in living donated kidneys (ICAM-1: 2+/-8 vs. 3+/-8%; VCAM-1: 9+/-7 vs. 1+/-1%), as well as in cadaveric kidneys (ICAM-1: 38+/-29 vs. 39+/-38%; VCAM-1: 55+/-27 vs. 48+/-29%). The expression of ICAM-1 molecules on tubular cells was determined to be a predictor for the occurrence of delayed graft function in cadaveric kidneys (ICAM-1: 65+/-24* vs. 38+/-29% delayed graft versus primary graft function). No delayed graft function occurred in recipients of living donated kidneys. CONCLUSIONS: These data suggest that adhesion molecule expression in donor biopsies is not a predictor for early allograft rejection, but can be used as a marker for the development of postischemic acute renal allograft failure.

Adult↗

Complement-dependent acceleration of apoptosis in neutrophils by dialyzer membranes.

Recently, we have shown that cuprophan (CU) causes receptor modulation by a C5-dependent mechanism, which is activated by neutrophil-derived reactive oxygen intermediates. The objective of our study was to evaluate the contribution of dialyzer membranes to the induction of apoptosis in human neutrophils [polymorphonuclear cells (PMNs)]. PMNs harvested from healthy donors were incubated with hollow fibers from a biocompatible membrane polysulfone (PS) and a bioincompatible membrane CU, all in the presence of 25% human serum. After 4, 8, and 12 hours of incubation at 37 degrees C, apoptosis was quantitated by counting the numbers of cells showing features of apoptosis on cytospins by light microscopy and also by flow cytometry using propidium iodide nuclear staining. Compared with PMNs incubated with serum alone, cells cultured with fibers of PS demonstrated a higher percentage of apoptosis. Fibers from CU dialyzers led to a more pronounced induction of apoptosis in PMNs, which was significantly higher compared with PS. This effect was partly mediated by heat-sensitive serum products and depended on the presence of divalent cations. In contrast to the recently described C5-dependent pathway in PMN receptor modulation by CU, this effect seemed to depend on the presence of the complement factor C3. In conclusion, our results indicate that besides the well-known accelerated apoptosis of PMNs in uremia, both biocompatible and bioincompatible dialyzer material itself can accelerate apoptosis in human PMNs.

Apoptosis↗

Regulation of renal tubular cell apoptosis and proliferation after ischemic injury to a solitary kidney.

The time course and regulation of apoptosis and cellular regeneration after 30 minutes of acute ischemic injury to a single kidney was elucidated in rats at five time points over 20 weeks. The fraction of apoptotic cells was most prominent at 1 day after the insult in the distal tubule (8% +/- 4% vs 0% +/- 0%, acute renal failure [ARF] vs sham, respectively) and was still elevated at 7 days (2% +/- 2% vs 0% +/- 0%). At that time, the whole kidney mRNA expression of the apoptosis inhibitory genes bcl-xL and bcl-2, as well as that of the apoptosis promotor bax, was significantly reduced. Immunohistochemistry of kidney specimen showed suppression of bcl-2 in the distal tubule but up-regulation in the proximal tubule, whereas bax protein was more strongly expressed in the distal tubule. Cellular proliferation started at day 1 and continued over the following 20 weeks, leading to severe tubular dilation and kidney failure. These data indicate that differential regulation of bcl-2 family members contributes to the early apoptotic clearance of lethally injured tubular epithelial cells after ischemic injury to a solitary kidney.

Animals↗

Impaired phosphate handling of renal allografts is aggravated under rapamycin-based immunosuppression.

BACKGROUND: Impaired phosphate handling of the renal allograft is a common problem and of multifactorial origin. The aim of the study was to elucidate whether a rapamycin- or a mycophenolate-based immunosuppressive therapy aggravates the renal phosphate leak in kidney transplant recipients. METHODS: Renal phosphate handling was determined in thirty-eight cadaveric allograft recipients, with good renal function at 8, 12, 20 and 28 weeks after transplantation. Nineteen patients (group 1) received triple immunosuppression with rapamycin, cyclosporine and prednisolone, nineteen other transplant recipients received mycophenolate mofetil, cyclosporine and prednisolone immunosuppression (group 2), and six healthy subjects (group 3) served as controls. After 12 weeks of stable graft function, group 1 patients were divided further into two subgroups. Ten patients were kept on their immunosuppressive regimen (group 1A), whereas the remaining nine randomly chosen subjects had their cyclosporine withdrawn; they were thus maintained on a dual immunosuppression regimen with prednisolone and a higher dosage of rapamycin (group 1B). RESULTS: Renal phosphate reabsorption was significantly lower in group 1 at 8 and 12 weeks after transplantation as compared with groups 2 and 3. At 20 weeks after transplantation, patients with rapamycin-based immunosuppression (groups 1A and 1B) continued to exhibit hypophosphataemia and impaired renal phosphate handling. Group 1B had the lowest TmP/ GFR compared with all groups. At 28 weeks, renal phosphate reabsorption and plasma phosphate levels were no longer different between patient groups and controls. CONCLUSION: These data suggest that rapamycin-based immunosuppression prolongs the phosphate leak of the allografted kidney, leading to low serum phosphate levels during the first weeks after transplantation.

Adult↗

Reduction in mean glomerular pore size coincides with the development of large shunt pores in patients with diabetic nephropathy.

The glomerular size selectivity was determined by neutral dextran clearance sieving technique and plasma cystatin C levels in two groups of patients with long-standing type I diabetes mellitus and different stages of albuminuria but normal glomerular filtration rate and in a group of healthy controls. The sieving characteristics of the glomerular filter were determined using a mathematical model of log normal pore size distribution. Patients with albuminuria above 200 microg/min exhibited a significant increase of cystatin c plasma concentrations and a significant reduction in mean glomerular filtration slit size. Only these patients exhibited large, unrestrictive pores in the glomerular filter (shunt). The plasma cystatin c levels correlated significantly with 26-angstrom neutral dextran plasma levels in microalbuminuric patients and in patients with albuminuria above 200 microg/min. We conclude that a reduction in average pore size of the glomerular filter does not occur earlier than the development of large shunt pores. The renal clearance of cystatin c in patients with proteinuric diabetic nephropathy but a normal glomerular filtration rate is reduced due to its molecular size.

Adult↗

Outcome and long-term side effects after synchronous radiochemotherapy for childhood brain stem gliomas.

Between 1993 and 1999, 11 children with histologically confirmed diffuse and exophytic brain stem glioma (BSG) were treated with intensive induction chemotherapy and simultaneous external beam irradiation. Chemotherapy was performed according to the German/Austrian Pediatric Brain Tumor Study HIT '91 and included two cycles of ifosfamide (days 1-3), etoposide (days 4-6), methotrexate (days 15 and 22), cisplatin (days 29-31) and cytarabine (days 29-31), separated by a 3-week interval. Maintenance chemotherapy with carmustine, carboplatin and vincristine (8 cycles over a 1-year period) was given in those patients who responded clinically or radiographically to induction chemotherapy. Six of 11 patients showed an objective reduction in tumor size on magnetic resonance imaging and 4 of 11 are alive in good general condition >22, >22, >90 and >92 months, respectively, after diagnosis without radiographic evidence of tumor progression (1 complete remission, 2 partial remissions, 1 stable disease), but suffer from moderate to severe long-term side effects. Three patients died due to disease progression after having achieved a partial remission which lasted 5, 6 and 18 months, respectively, whereas only short-term stabilization was observed in 4 patients who died within 1 year after diagnosis. Acute hematologic toxicity was severe but manageable. This intensive combined modality treatment was toxic but yielded objective responses in more than 50% and long-term survivors in one third of childhood BSG patients.

Antineoplastic Combined Chemotherapy Protocols↗

[Effect of blood glucose and blood pressure control on progression of diabetic nephropathy].

Although diabetic nephropathy is a slowly progressing, well studied disease, it is the most common cause of end stage renal disease in industrialized countries. Recently the first randomized controlled long term trials about microvascular complications in patients with type 2 diabetes have been published. Only seven years ago the first hallmark papers about metabolic control and ACE inhibition emerged. This review highlights the current status of prevention and therapy of diabetic nephropathy by metabolic and blood pressure control in type 1 and type 2 diabetic patients, depending on their stage of nephropathy (normo-, micro-, or macroalbuminuria). In patients with type 1 diabetes and normo- or microalbuminuria, strict metabolic control has been shown to slow the progression of nephropathy. In macroalbuminuric patients an aggressive antihypertensive treatment, preferably with an ACE inhibitor, is more important than the metabolic control. ACE inhibitor therapy has also been proven beneficial in microalbuminuric patients, but not yet in normotensive, non-albuminuric type 1 patients. Because of the high prevalence of hypertension in patients with type 2 diabetes, a strict antihypertensive treatment is more important than metabolic control for the prevention of progression of microvascular disease. Since most patients need a combination of antihypertensive medications a recommendation for a single substance class can not be given.

Angiotensin-Converting Enzyme Inhibitors↗

[Pathophysiology of acute renal failure at the cellular level].

The influence of inflammation on post-ischemic acute renal failure (ARF) has only recently be appreciated. In this review we therefore discuss the cellular events occurring in ARF with special emphasis on the impact of inflammatory processes on the pathogenesis of ARF. Furthermore, the spectrum of injury leading to sublethal or lethal cell damage and the time course, occurrence and regulation of the two distinct forms of cell death, necrosis and apoptosis will be described extensively. Especially apoptosis and its regulation has been studied only marginally in the setting of ischemic ARF. This overview is mainly focused on tubular cell injury since tubular epithelial cells are the major victims of ischemia whereas cells inside the glomerular tuft show only little pathology. The models of tubular injury described in this paper are ranging from primary cultures of isolated human tubular epithelial cells to experimental ischemic renal failure in rats, and to clinical settings of human ischemic ARF. The cellular events highlighted in this review are the influence of the expression of cellular adhesion molecules on the pathophysiology of ARF, and the regulation and time course of apoptosis. Examples of these processes are being illustrated by figures exhibiting morphology and immunohistochemistry of cell proliferation and cell death regulatory proteins.

Acute Kidney Injury↗

Urinary excretion of apolipoprotein(a) fragments in type 1 diabetes mellitus patients.

High levels of plasma lipoprotein(a) [Lp(a)] represent an independent risk factor for cardiovascular morbidity; however, Lp(a) has not yet been identified as a risk factor for type 1 diabetic patients. Results from the limited number of available studies on plasma Lp(a) levels in relation to renal function in type 1 diabetes mellitus are inconclusive. We hypothesized that only type 1 diabetes mellitus patients with impaired renal function show increased plasma Lp(a) levels, due to decreased urinary apolipoprotein(a) [apo(a)] excretion. We therefore measured urinary apo(a) levels in 52 type 1 diabetes mellitus patients and 52 matched controls, and related the urinary apo(a) concentration to the plasma Lp(a) level, kidney function, and metabolic control. Our findings indicate that patients with incipient diabetic nephropathy as evidenced by microalbuminuria (20 to 200 microg/min) exhibit significantly higher plasma Lp(a) levels (median, 15.6 mg/dL) in comparison to normoalbuminuric patients (median, 10.3 mg/dL) and healthy controls (median, 12.0 mg/dL). Urinary apo(a) normalized to creatinine excretion was significantly elevated in both normoalbuminuric (median, 22.3 microg/dL) and microalbuminuric type 1 diabetic patients (median, 29.1 microg/dL) compared with healthy subjects (median, 16.0 microg/dL) and correlated significantly with Lp(a) plasma levels in both patient and control groups (P < .003). No correlation existed between the Lp(a) plasma level or urinary apo(a) concentration and metabolic control in type 1 diabetes mellitus patients. From these studies, we conclude that urinary apo(a) excretion is significantly increased in type 1 diabetic patients and correlates with plasma Lp(a) levels, and only type 1 diabetic patients with microalbuminuria have higher plasma levels of Lp(a) compared with patients with normoalbuminuria and healthy controls.

Adult↗