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Biomedical subjects

R M Schaefer

Publications and source records attributed to R M Schaefer.

At least 73 records · Page 4Linked to original sources

The aging rat kidney displays low glomerular and tubular proteinase activities.

The present study was conducted to investigate the relationship of age-related changes in renal function and structure with changes in glomerular and tubular proteinase activities in young (3 weeks), mature (3 months), and older (18 months) male Wistar rats. Glomerular filtration rate, expressed per 100 g body weight, remained unchanged during adolescence, but declined significantly (-44%) in aging animals. In parallel, albuminuria, which was barely detectable in young and mature rats, increased almost 10-fold in the aging animals. In comparison to young animals, the kidney weight in aging rats was 10-fold higher, signifying considerable tubular hypertrophy. The glomerular protein to DNA ratio increased by almost 70%, suggesting deposition of mesangial matrix within the glomerulus. These structural changes were associated with significant reductions in glomerular cysteine and metalloproteinase activities in the adolescent and older animals. Similarly, lower activities of both types of proteinases were observed in isolated proximal tubules. This behavior of proteolytic enzyme activities in the aging rat kidney corresponds well to the 10-fold increase in kidney weight (proximal tubular hypertrophy) and to the enhanced deposition of glomerular matrix. This study suggests a causal involvement of renal cysteine proteinases and metalloproteinases in the protein accumulation of the aging rat kidney.

Aging↗

Human chronic kidney allograft rejection is accompanied by increased intraglomerular cathepsin B and L activity.

The major reason for late graft losses is chronic rejection. Recently, a large number of studies have indicated that proteolytic enzymes play an important role as mediators of glomerular injury. The cysteine proteinases cathepsins B and L degrade structural matrix proteins such as type I collagen and laminin. We investigated intraglomerular protease activities in 12 patients after kidney graftectomy because of end-stage renal disease following chronic rejection. A group of 12 patients undergoing nephrectomy because of cancer served as controls using only non-involved parts of the kidney. The activities of cathepsins B and L in homogenates of isolated glomeruli were measured fluorometrically methylcoumarylamide substrates and related to DNA content. In rejected kidney allografts we observed significantly enhanced intraglomerular cathepsin B activity and cathepsin B + L activity.

Adult↗

Effect of metabolic acidosis on tubular proteinase activity.

Metabolic acidosis is a well-known mediator of compensatory renal hypertrophy; however, the underlying mechanism is still poorly understood. The aim of the present study was to investigate whether metabolic acidosis can influence the proteolytic activity in the proximal tubule. Metabolic acidosis was induced in rats by 0.28 M NH4Cl which was mixed to drinking water. The development of metabolic acidosis was documented by a significant increase in urinary pH. After 11 days of 0.28 M NH4Cl treatment, the experimental animals developed mild proteinuria (9.52 +/- 0.99 versus 17.65 +/- 1.63 mg/day). The kidney weight increased significantly (1,653.56 +/- 27.84 versus 1,753.33 +/- 56.11 mg) and tubular proteinase activity, measured at pH 5.4, was markedly reduced (60.3 +/- 1.2 versus 52.2 +/- 2.4 U/mg protein, or 2,105.5 +/- 92.0 versus 1,631.0 +/- 97.2 mU/micrograms DNA). In summary, these results suggest that compensatory renal hypertrophy induced by metabolic acidosis might at least partly be due to the suppression of tubular proteinase activity.

Acidosis, Renal Tubular↗

Urinary excretion of cathepsin B and cystatins as parameters of tubular damage.

The urinary excretion of the lysosomal hydrolases cathepsin B and beta-N-acetylglucosaminidase (beta-NAG) was compared with the tubular activities of these enzymes in remnant kidneys 16 weeks after subtotal nephrectomy (5/6 NX) or unilateral nephrectomy (UNX), as well as in kidneys from diabetic rats. In addition, the urinary excretion of the low-molecular weight protein cystatins, inhibitors of lysosomal cathepsins, was also followed in these animals. The urinary excretion of cathepsin B and beta-NAG was significantly enhanced in all three models of renal disease. The highest excretion rates for these enzymes were found in diabetic animals (cathepsin B: 4-fold; beta-NAG: more than a 10-fold increase over respective controls). In terms of tubular enzyme activities, tissue activities of both hydrolases were reduced in the remnant kidney after 5/6 NX, while in UNX and diabetes only cathepsin B activity was decreased. The urinary excretion of cystatins was enhanced in all three animal models, particularly in 5/6 nephrectomized rats, where a 40-fold increment over control animals was observed. Taken together, these findings indicate that there was severe tubular damage in the remnant kidney after 5/6 NX (reduced tubular enzyme activities, enzymuria and severely compromised tubular protein reabsorption). Furthermore, considerable enzymuria and disturbed protein reabsorption in early diabetes suggest tubular dysfunction before signs of glomerular damage become evident.

Acetylglucosaminidase↗

Anaphylactoid reactions during hemodialysis.

Taken together, with the wide-spread use of ACE-inhibitors within the dialysis population, a novel type of hypersensitivity reaction has been recognized, which may occur not only during hemodialysis but also during other forms of extracorporeal therapy. From the data available today, it seems that such reactions are triggered by negatively charged biomaterials which are capable to activate factor XII, leading among others to the generation of bradykinin. Normally this kinin is rapidly degraded by the serine proteinase kininase II. Thus, in the absence of ACE inhibitors plasma bradykinin levels increase only moderately during dialysis with AN69 membranes and clinically most patients are free of symptoms. However, once kininase II, which is identical with converting enzyme, is blocked by ACE inhibitors, plasma levels may increase more than 100-fold and patients will suffer from severe anaphylaxis. Based on our present knowledge, the consequences for clinical medicine are straightforward. It is mandatory to avoid the combination of negatively charged membranes or other biomaterials with ACE inhibitor therapy. As there are many different membranes available, this should be no unsurmountable problem in the setting of clinical hemodialysis.

Anaphylaxis↗

Effectiveness and safety of recombinant human erythropoietin (r-HuEPO) in the treatment of anemia of chronic renal failure in non dialysis patients. European Multicentre Study Group.

Seventy-five non-dialized patients with chronic renal failure (CRF) and severe renal anemia were enrolled in a study, receiving r-HuEPO subcutaneously thrice weekly for 6 months. In 64 patients (85%) 7 weeks of treatment with a weekly dose of 158 U/kg were required to achieve Hb concentrations within the target range of 10 to 12 g/dl. Of the 11 patients (15%) who failed to achieve the target Hb range, none were considered to be non-responders as they were excluded for unrelated reasons prior to week 16 (8 cases), or were iron deficient (2 cases), or had bleeding complications (1 patient). Maintaining the Hb concentration at a level of 10.5 g/dl required a mean r-HuEPO dose of 92 U/kg per week. Adverse events were generally mild or moderate. The most commonly reported were hypertension (8%), viral infection/including flu-like syndrome (7%), nausea (7%), and dizziness (5%). Statistically significant increases in mean creatinine concentrations observed after 12 and 24 weeks were most likely due to the progression of renal disease. These results confirm that 50 U/kg of r-HuEPO given 3 times per week subcutaneous provide a safe and effective therapy for anemic predialysis patients.

Adolescent↗

Biocompatibility of a new high-permeability modified cellulose membrane for haemodialysis.

The biocompatibility and solute permeability characteristics of a high-permeability modified cellulose membrane (Hemophan-HP) (He-HP) were compared with those of two synthetic membranes (poly(ethylene-co-vinyl alcohol) (EVAL) and poly(acrylonitrile-co-sodium methallyl sulphonate) (AN69)) and Cuprophan in a multicentre, four-way cross-over clinical trial. Cuprophan membranes caused significant complement activation, leukopenia, and granulocyte elastase release. He-HP membranes demonstrated a lesser effect, which was similar to that observed for the EVAL membrane, although less than that seen with the AN69 membrane. A similar order for the four membranes was seen for their effect on platelets. Cuprophan membranes provided superior small-molecule removal to the other three membranes. In contrast, Cuprophan was essentially impermeable to beta 2-microglobulin, whereas He-HP, EVAL, and AN69 allowed the removal of 60-90 mg of beta 2-microglobulin per treatment. However, a decrease in the plasma concentration of beta 2-microglobulin was observed only with the AN69 membrane, most probably as a result of the ability of that membrane to adsorb proteins. Our results demonstrate that high-permeability membranes of comparable biocompatibility to some synthetic membranes can be fabricated from cellulose derivatives.

Adult↗

Role of bradykinin in anaphylactoid reactions during hemodialysis with AN69 dialyzers.

In vitro experiments have related anaphylactoid reactions in patients treated with angiotensin-converting enzyme (ACE) inhibitors during dialysis with AN69 membranes to excessive bradykinin generation using this negatively charged dialysis membrane. In the present clinical trial plasma bradykinin levels were followed during the early phase of dialysis in 10 patients, not being treated with ACE inhibitors, using AN69, cuprophane, and polysulfone membranes. Bradykinin was measured after extraction by radioimmunoassay. During this study one episode of anaphylaxis occurred during dialysis with the AN69 membrane. Blood samples were collected during the first 5 min of the adverse reaction and showed a more than 100-fold increase in the venous effluent of the AN69 dialyzer (baseline 40 +/- 3 vs. 4,900 +/- 130 fmol/ml after 5 min). Even though none of the patients received ACE inhibitors, there were 4 more asymptomatic individuals who displayed a more than two-fold increase in their plasma bradykinin concentrations in the venous effluent of the AN69 dialyzer. When these patients were treated either with cuprophane or with polysulfone dialyzers, no significant bradykinin formation was detected, nor were there any adverse events. Taken together, these findings show that anaphylactoid reactions with the AN69 membrane are due to excessive bradykinin generation which even may occur in the absence of ACE inhibitors.

Acrylic Resins↗

Scanning electron microscopy of 2,8-dihydroxyadenine crystals and stones.

The lack of purine salvage enzyme, adenine phosphoribosyltransferase (APRT), leads to 2,8-dihydroxyadenine stone formation and/or crystalluria because it is insoluble in urine. Urolithiasis composed of 2,8-dihydroxyadenine is not only formed in a complete defect of APRT, but also in a partial deficiency of this enzyme. The defect is inherited as an autosomal recessive trait, the homozygous state is associated with high urinary levels of 2,8-dihydroxyadenine and with crystalluria, calculus formation, and potential nephrotoxicity. Determination of the APRT activity will facilitate quantification of the enzyme deficiency and elucidation of the hereditary history. 2,8-dihydroxyadenine excretion in the 24-hour urine and its circadian rhythm were determined using a new method of high performance liquid chromatography determination. By means of a standard case presentation, we illustrate the analysis of urinary sediments and calculi as well as the scanning electron microscopic images of this kind of stone.

Adenine↗

[Hantavirus infection with acute kidney failure].

Hantavirus infection was confirmed by history, symptoms and biochemical changes, as well as immunofluorescence test in 29 patients (24 men, 5 women; mean age 36.9 +/- 11.5 years) with nontraumatic renal failure (ANF), retrospectively in 15 patients. Cardinal symptoms were acute onset (n = 29), fever (n = 27), pain in the flanks, abdomen or head (n = 27), reduced glomerular filtration rate (n = 29), proteinuria (n = 25) and thrombocytopenia (n = 16). Normal renal function was restored in all patients. Follow-up examination of 15 patients 6-7 years after the acute illness revealed normal blood pressure, normal serum creatinine, absent proteinuria and normal inulin clearance in all, thus confirming the favourable prognosis of the infection in Western Europe. Nonetheless, because Hantavirus infection is by no means rare, it should be included in the differential diagnosis of acute renal failure.

Acute Kidney Injury↗

Effect of beta 2-microglobulin on immunoglobulin production.

Chronic renal failure patients display high serum levels of beta 2-microglobulin (beta 2-M) and a pronounced defect in immunoglobulin production. In this light, the present study was conducted to investigate whether beta 2-M might influence the rate of antibody synthesis. Peripheral blood mononuclear cells (PBMC) from healthy subjects were cultured in the presence of beta 2-M (80 mg/l) for 7 days. Immunoglobulin concentrations were measured by ELISA-techniques in culture supernatants. Basal IgM levels were 390 +/- 10 ng/ml and increased to 940 +/- 216 ng/ml in the presence of beta 2-M. After PWM stimulation, IgM concentrations were 2654 +/- 614 ng/ml without and 3750 +/- 914 ng/ml with beta 2-M. IgG and IgA production by PBMCs was not influenced by beta 2-M in the culture medium. Likewise, the generation of beta 2-M by PBMCs was unchanged in the presence of exogenous beta 2-M in the medium. In terms of clinical relevance, serum beta 2-M levels of 28 uremic patients were correlated with capacity of their PBMCs for immunoglobulin production in vitro. However, there was no apparent correlation between beta 2-M serum levels and immunoglobulin synthesis in vitro. Taken together, beta 2-M seems to have a stimulatory effect on IgM synthesis in vitro. Whether this has some clinical meaning in patients with chronic renal failure remains to be investigated.

Adult↗

Parathyroid hormone modulates the release of atrial natriuretic peptide during acute volume expansion.

In this study we investigated the effect of volume expansion on plasma and atrial concentrations of atrial natriuretic peptide (ANP) in the presence and absence of the parathyroid gland and under normocalcemic and hypocalcemic conditions. After volume expansion ANP concentration in plasma was significantly (p < 0.001) higher in intact (702 +/- 86 pg/ml) than in hypocalcemic parathyroidectomized (PTX) (271 +/- 38 pg/ml) rats. Plasma ANP of PTX rats rendered normocalcemic with oral calcium supplementation increased to 402 +/- 85 pg/ml after volume expansion. Results from this study suggest that parathyroid hormone (PTH) is required for augmented ANP secretion in response to acute volume loading and alterations of extracellular calcium may modulate volume-induced ANP release in PTX rats. We would discuss that a parathyroid gland-cardiac atria interaction exists and that changes in serum level of PTH may play a role in the regulation of fluid homeostasis via ANP secretion.

Animals↗

Intraglomerular proteinase activity in adriamycin-induced nephropathy.

Adriamycin (ADR)-induced nephropathy is characterized by focal and segmental glomerulosclerosis and is supposed to be an ideal model of chronic progressive renal disease. The aim of our study was to investigate whether there might be an altered activity of glomerular proteinases in ADR nephropathy, thereby aggravating glomerular protein accumulation as an important initiating hallmark of glomerulosclerosis. In fact, we could demonstrate significantly enhanced levels of intraglomerular protein and DNA content in the experimental animals at week 7, 12 and 22 after administration of ADR. When relating intraglomerular proteinase activity, which was measured in ultrasonically destroyed isolated glomeruli, obtained by differential sieving techniques, to the intraglomerular protein and DNA content, this enzyme activity was significantly reduced throughout the observation period. Based on these data, we suggest that this relatively decreased proteinase activity in glomeruli exposed to ADR might play a pathogenetic role in the development of glomerular hypertrophy, an important harbinger of glomerulosclerosis.

Animals↗