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Biomedical subjects

J F Wetzels

Publications and source records attributed to J F Wetzels.

At least 19 recordsLinked to original sources

Urinary excretion of complement C3d in patients with renal diseases.

INTRODUCTION: Complement-mediated tubular injury may play an important role in the progression of renal diseases. C3d is a presumed marker of complement activation. Its precursor C3dg has been detected in the urine of patients with membranous nephropathy. However, little is known of the renal handling of C3d or its excretion in other renal diseases. METHODS: We measured the urinary excretion of albumin, IgG, beta2-microglobulin (beta2m), and of complement C3d in patients with tubulo-interstitial nephritis (TIN; n= 8), in patients with membranous nephropathy (n = 35) and in patients with nonmembranous glomerular diseases (23 nonproliferative and 21 proliferative). Fractional excretions (FE) were calculated using creatinine clearance as marker of GFR. RESULTS: C3d was not measurable in the urine of the healthy controls, but was detectable in seven out of eight of the TIN patients (median excretion 0.11 mU min-1, range 0.006-2.4 mU min-1). In these patients the urinary excretion of beta2m was clearly elevated (median 26.6 micro g min-1, range 1.0-103 micro g min-1). The FE of C3d correlated with the FE of beta2microglobulin (r = 0.83, P = 0.01), and their ratio amounted to 0.03 (range 0.003-0.06), a value in agreement with the expected sieving coefficient. Urine C3d was detectable in all but three of the patients with glomerular diseases (median excretion 0.36 mU min-1, range 0.004-7.9 mU min-1); C3d-excretion did not differ between the three subgroups of patients with glomerular diseases. FEC3d correlated with FEIgG (r = 0.88, P < 0.01). The ratio FEC3d/FEbeta2m was 0.78 (range 0.04-9.99). Selected patients with membranous nephropathy were re-analyzed after (partial) remission of proteinuria. Reduction of proteinuria resulted in a decrease of C3d excretion. CONCLUSION: Urinary excretion of C3d is elevated in patients with TIN, most likely as a mere consequence of decreased tubular reabsorption. In patients with glomerular diseases urinary excretion of C3d is increased and related to proteinuria, independent of the underlying glomerular disease. In these patients there is evidence of increased local formation of C3d.

Adult↗

Familial nephropathy differing from minimal change nephropathy and focal glomerulosclerosis.

BACKGROUND: Nephrotic syndrome in childhood is mainly due to minimal change nephropathy. In general, it is characterized by selective proteinuria, by steroid responsiveness, and histologically by podocytic foot process effacement. Familial presentation is rare and mainly restricted to one generation. METHODS: We describe the occurrence of a familial nephropathy in a mother and two daughters. An initial diagnosis of minimal change nephropathy was made, but subsequently unique features became apparent. During follow-up, detailed studies of renal function and urinary protein excretion were performed. Available frozen renal biopsy material was revised and processed for immunofluorescence to detect abnormalities in the expression of heparan sulfate proteoglycans. The latter results were compared with renal biopsies of a control group composed of five adult patients with minimal change nephropathy. RESULTS: The mother and two daughters were proteinuric since their early childhood. The mother revealed a persistent nephrotic syndrome for more than 20 years despite treatment with various immunosuppressive drugs. Likewise, treatment with prednisone was ineffective in the daughters. All three patients retained normal renal function during follow-up. Detailed measurements revealed that the proteinuria was incredibly selective (selectivity index approximately 0.01), and there was no evidence of tubulointerstitial damage, as reflected by a normal excretion of the low-molecular weight proteins beta(2)-microglobulin and alpha1-microglobulin. Renal biopsy performed in the mother and one daughter was thought to be compatible with minimal change nephropathy. However, histologically, two remarkable findings were made. By electron microscopy, there was no evidence of foot process retraction; specifically, the foot process width and slit pore diameter were normal. Furthermore, in contrast to the control patients, the expression of heparan sulfate polysaccharide side chains, as reflected by the staining with monoclonal antibody JM403, was normal. CONCLUSIONS: We propose that this family represents a new familial nephropathy. The molecular basis of the permeability defect remains to be identified.

Adolescent↗

The gelatin-derived plasma substitute Gelofusine causes low-molecular-weight proteinuria by decreasing tubular protein reabsorption.

PURPOSE: Proteinuria is frequently encountered in patients in the intensive care unit, most likely as a result of renal tubular cell injury. It has been reported that gelatin-derived plasma substitutes contribute to an increase in renal protein excretion. The aim of this study was to investigate the magnitude and the mechanism of the proteinuric effect of Gelofusine, a modified gelatin. MATERIALS AND METHODS: In six healthy male subjects, renal hemodynamics and urinary protein excretion were measured before and after infusion of 330 mL of Gelofusine. RESULTS: Gelofusine had a minor effect on blood pressure, glomerular filtration rate, effective renal plasma flow, and on urinary excretion of immunoglobulin, and albumin. In contrast, there was a major increase in the urinary excretion of the low-molecular-weight proteins beta2-microglobulin (from 0.06 +/- 0.04 to 43.52 +/- 11.75 microg/min; P <.01) and alpha1-microglobulin (from 11 +/- 8 to 72 +/- 24 microg/min; P <.01). The urinary excretion of N-acetyl-beta-D-glucosaminidase (beta-NAG) remained unchanged, suggesting that there was no significant renal tubular cell injury. CONCLUSIONS: When analyzing proteinuria in patients in the intensive care unit it should be considered that Gelofusine increases the urinary excretion of proteins, in particular those of low molecular weight. This effect is most likely due to competitive inhibition of tubular protein reabsorption.

Adult↗

Short- and long-term efficacy of oral cyclophosphamide and steroids in patients with membranous nephropathy and renal insufficiency. Study Group.

BACKGROUND: Up to half of the patients with idiopathic membranous nephropathy (iMN) will develop renal failure. Preferably, immunosuppressive treatment should be restricted to patients at risk for the development of end-stage renal disease. However, the evidence that immunosuppressive treatment is effective in patients with iMN and renal insufficiency is weak and based on few studies with short follow-up in a limited number of patients. METHODS: We have analyzed the efficacy of immunosuppressive treatment in a large number of patients with membranous nephropathy and renal insufficiency. Since 1991, we have prospectively treated 39 patients (31 M, 8 F) with membranous nephropathy and evidence of deterioration of renal function. Treatment consisted of oral cyclophosphamide, 1.5-2.0 mg/kg body weight for 12 months, and corticosteroids for 6 months. At regular intervals blood pressure, serum creatinine, serum albumin, and proteinuria were measured. Adverse events were recorded. RESULTS: Average follow-up is 32 months (range 6-104), 18 patients have been followed for more than 3 years. Mean age of the patients was 55 +/- 12 years. In the 6 months before start of therapy, serum creatinine increased from 150 +/- 74 to 226 +/- 108 micromol/l. After start of treatment renal function rapidly improved, serum creatinine at 12 months averaging 143 +/- 62 micromol/l. Proteinuria decreased from 10.3 +/- 4.9 g/10 mmol creatinine at baseline to 2.2 +/- 2.4 g/10 mmol creatinine at month 12. These initial favorable effects have persisted. Overall, 12 patients have developed a complete remission of proteinuria (persistent in 11), and an additional 19 have developed a partial remission of proteinuria (persistent in 15). Thus far, only one treated patient has developed end-stage renal disease. Side effects are a major drawback of the treatment, with 7 patients being admitted, mainly for the treatment of infectious complications. CONCLUSIONS: Cyclophosphamide is effective in the treatment of patients with idiopathic membranous nephropathy and deterioration of renal function. The favorable effects are maintained well beyond the one-year treatment period. Therefore, we propose that in patients with iMN immunosuppressive therapy can be restricted to patients at high risk for end-stage renal disease.

Administration, Oral↗

Favorable outcome of renal transplantation in patients with IgA nephropathy.

BACKGROUND: The outcome of renal transplantation in patients with IgA nephropathy (IgAN) may be affected by recurrence of the original disease. Despite this risk of recurrent glomerulonephritis, graft survival in patients with IgAN is considered good although formal comparisons with graft survival in patients with other renal diseases have given conflicting results. METHODS: We have studied both recurrence rate and outcome after renal transplantation in 79 adult patients with IgAN, all of whom received a first renal graft (55 cadaveric, 24 living-related donor) in our center in the period between 1969 and 1997. Graft survival in patients with IgAN was compared with the outcome in patients with pyelonephritis and adult polycystic kidney disease (group 2) and patients with non-IgA primary glomerulonephritis (group 3). RESULTS: Follow-up averaged 5.6 +/- 4.5 years. Histological evidence of mesangial IgA deposits was present in 17 of 32 available biopsies (53%). Clinically recurrent IgAN was diagnosed only in 7 patients (9% of all recipients), with a higher incidence in recipients of a living-related donor graft (5/24 (20%) vs 2/55 (4%)). These recurrences were diagnosed in biopsies taken 13-145 months after transplantation; and all were characterized by significant proteinuria (> 1 g/day). In only one patient the graft was lost due to the recurrence. For recipients of a cadaveric graft, the 5-year graft survival was significantly better in IgAN patients than in both reference groups (86% vs 67% in group 2; p = 0.012, and 60% in group 3; p = 0.007). This difference remained significant after censoring for death. There was no statistically significant difference in the patient survival between the groups. The rejection rate in the first 3 months was numerically lower in the IgAN patients (37% vs 43% and 49%, respectively). and total immunological failure rate was also lower in the IgAN patients compared to the control groups (13% vs 21% and 23%, respectively); although the differences were not statistically significant. The 5- and 10-year graft survival in recipients of living-related donor grafts was significantly better in IgAN patients than in group 3 (96% and 84% vs 64% and 21%, respectively; p = 0.02), but similar to graft survival in group 2 (87% and 75%). CONCLUSION: A clinical recurrence of IgAN occurred in 4% of patients with a cadaveric donor graft and 20% of patients with a living-related donor graft. The recurrence had negligible influence on 5- and 10-year graft survival. Graft survival after cadaveric transplantation was better in the IgAN patients compared to control groups; possibly due to the lower immunological failure rate in IgAN.

Adult↗

[Intensive treatment of blood pressure in patients with kidney disease and proteinuria].

Blood pressure and proteinuria are important determinants of progressive renal failure in patients with renal diseases. In a 53-year-old man with hypertension and nephrotic-range proteinuria, lowering the blood pressure to a value of 125/75 mmHg resulted in a disappearance of the proteinuria. Recent literature data indicate that the treatment of blood pressure in patients with proteinuria, with emphasis on the benefits of reaching a blood pressure target of 125/75 mmHg and the use of angiotensin-converting enzyme inhibitors, may lead to a serious improvement in their prognosis.

Antihypertensive Agents↗

Type I membranoproliferative glomerulonephritis in a renal allograft: A recurrence induced by a cytomegalovirus infection?

A 40-year-old white woman with end-stage renal disease from idiopathic type I membranoproliferative glomerulonephritis (MPGN) developed proteinuria and renal dysfunction 7 weeks after cadaveric donor renal transplantation. At the same time, a primary cytomegalovirus (CMV) infection was diagnosed. Complement levels were low. A renal biopsy disclosed an acute exudative proliferative glomerulonephritis with influx of polymorphonuclear granulocytes (PMNs), with granular deposits of C3, C1q, IgG, and IgM. The immunofluorescence (IF) and electron microscopy (EM) findings were compatible with an early stage of a type I MPGN. CMV could not be detected in the glomeruli nor elsewhere in the kidney by IF or EM. The patient was treated with ganciclovir. In a renal biopsy 3 weeks later, the exudative lesions had disappeared, and some glomeruli now showed the characteristic lesions of a type I MPGN with an increase of mesangial cells and matrix, and reduplication of the glomerular basement membrane. Over the following period, repeated biopsies were performed. The activity of the glomerular inflammation and immune complex deposits paralleled the waxing and waning of the CMV viral load. After 10.5 months, the graft was removed because of a life-threatening systemic fungal infection. At that time, the CMV infection had cleared, and in the transplantectomy material, the membranoproliferative pattern of injury had disappeared, and in the glomeruli hardly any deposits were found. These data strongly suggest that a primary CMV virus infection can induce an apparent recurrence of type I MPGN.

Adult↗

Atypical presentation of Madurella mycetomatis mycetoma in a renal transplant patient.

A renal transplant patient presented with a swelling on his foot. Fungal hyphae were found in the abscess, and culture demonstrated Madurella mycetomatis, an agent of mycetoma. There were no black grains in the pus and no overlying sinuses. This was an atypical presentation of maduromycosis in a renal transplant patient.

Drug Therapy, Combination↗

The influence of mycophenolate mofetil on the incidence and severity of primary cytomegalovirus infections and disease after renal transplantation.

BACKGROUND: Mycophenolate mofetil (MMF) is increasingly used for immunosuppression after renal transplantation (RTx). The aim of our study was to investigate if the use of MMF has resulted in an increase in the frequency and severity of primary cytomegalovirus (CMV) infections. METHODS: Retrospective study of adult RTx patients who were CMV seronegative and who received a kidney of a CMV seropositive donor in the period 1992-1997 (n=84). Twenty-four of these patients were treated with MMF (in combination with cyclosporin and prednisone; MMF+) and the other 60 were the control group (cyclosporin and prednisone; MMF-). No CMV prophylaxis was given. CMV infection was defined as CMV seroconversion of IgG antibodies. CMV disease was defined as CMV infection and fever in combination with one or more of the following: leukocytopenia, thrombocytopenia, elevated alanine aminotransferase, or histological evidence of tissue invasive disease. RESULTS: The incidence of primary CMV infections was similar in both groups (MMF+, 75%; MMF-, 63%). CMV disease was more frequent in the MMF+ group than in the MMF- group (67 vs 30%, P<0.05). In the patients with CMV disease, the use of MMF did not affect severity of symptoms, frequency of tissue invasive disease, or frequency or duration of treatment with ganciclovir. CONCLUSIONS: Addition of MMF to the immunosuppressive therapy after RTx did not result in an increase of primary CMV infections.However, these CMV infections led more often to CMV disease in patients treated with MMF than in those without MMF.

Adult↗

Dissociation between urine osmolality and urinary excretion of aquaporin-2 in healthy volunteers.

BACKGROUND: It has been suggested that urinary excretion of the vasopressin-dependent water channel of the kidney collecting duct, aquaporin-2 (AQP2), reflects renal vasopressin action and might be used clinically. It is unclear, however, what relation exists between urine osmolality and urinary excretion of AQP2 (UAQP2) and it is unknown whether UAQP2 is influenced by hyperosmolality of urine or tubular flow rates. METHODS: We measured urine osmolality and UAQP2 in healthy volunteers in various conditions: (i) overnight dehydration continued during the day, (ii) after infusion of 700 ml hypertonic saline (NaCl 2.5%), and (iii) after intranasal administration of 40 microg 1-desamino-8-D-arginine vasopressin (DDAVP). The last two tests were performed after water loading. In addition, a DDAVP test was performed, after administration of frusemide. RESULTS: After overnight dehydration, the urine osmolality increased from 888+/-18 to 1004+/-17 mosmol/kg during additional hours of thirsting, whereas UAQP2 doubled from 140+/-45 to 285+/-63 fmol AQP2/micromol creatinine. Infusion of hypertonic saline increased urine osmolality from 70+/-3 to 451+/-68 mosmol/kg, while UAQP2 remained almost zero. Urine osmolality increased from 101+/-17 to 860+/-30 mosmol/kg after administration of DDAVP, with a parallel increase in UAQP2 from 32+/-14 to 394+/-81 fmol AQP2/micromol creatinine. Pre-treatment with frusemide attenuated the increase in urine osmolality, but had no effect on UAQP2 after DDAVP. CONCLUSIONS: Our data demonstrate that a simple relationship between urine osmolality and UAQP2 does not exist. Therefore, random or once-only measurements of UAQP2 as an index of renal vasopressin action are not useful. In contrast, intranasal application of DDAVP resulted in a parallel rise in urine osmolality and UAQP2. Therefore this test might be useful in studying patients with urine concentration defects. The DDAVP-frusemide test revealed that the release of AQP2 into urine is not caused by hypertonicity of tubular fluid.

Adult↗

Urinary excretion of glutathione S transferases alpha and pi in patients with proteinuria: reflection of the site of tubular injury.

In patients with renal diseases, proteinuria is a major determinant of progressive renal failure, probably by causing tubular cell injury. Little is known on extent and site of tubular cell injury in patients with proteinuria. Glutathione S transferases (GST) are cytosolic enzymes. The alpha isoform is present only in proximal tubular cells, whereas the pi isoform is confined to distal tubular cells. We have studied the urinary excretion of both isoenzymes in 56 (38 male and 18 female) patients with glomerular diseases and proteinuria. The mean age was 45 +/- (SD) 16 years, the median creatinine clearance was 80 (range 27-159) ml/min, and the median albuminuria was 4.2 (range 0.7-16.9) g/10 mmol creatinine. The excretions of both GST alpha (median 35.9 ng/10 mmol creatinine) and GST pi (median 24.8 ng/10 mmol creatinine) were elevated as compared with control values (upper limits 10 and 12 ng/10 mmol creatinine, respectively). The urinary excretion of GST pi, but not that of GST alpha, was inversely correlated with the creatinine clearance. The highest levels of GST alpha were found in patients with a well-preserved renal function, whereas highest levels of GST pi were found in patients with renal failure. In a small number of patients we performed immunofluorescent studies of renal tissue. An increased urinary excretion of GST alpha correlated with brush border damage and decreased staining of proximal tubules for that isoenzyme. Our data suggest that in patients with proteinuria initial injury is apparent at the proximal tubules. Measurements of GST alpha and GST pi appear useful to study longitudinal timing and site of proteinuria-induced tubular cell injury.

Acetylglucosaminidase↗

The impact of recurrent glomerulonephritis on graft survival in recipients of human histocompatibility leucocyte antigen-identical living related donor grafts.

BACKGROUND: Graft loss due to rejection is uncommon after human histocompatibility leukocyte antigen-identical living related donor (LRD) transplantation, resulting in an excellent long-term graft survival. Data on the impact of recurrence of the original disease on graft survival after LRD transplantation are scarce. METHODS: We have studied the influence of recurrent glomerulonephritis in adult recipients of a human histocompatibility leukocyte antigen-identical LRD graft transplanted in our center in the period from 1968 to 1996. To that end, the data of 33 patients with proven or suspected primary glomerulonephritis and 27 patients with nonglomerular diseases were analyzed. RESULTS: The patient survival was similar in both groups at 5, 10, and 20 years. The functional graft survival, i.e., graft survival after censoring for death, was, however, significantly worse for patients with glomerulonephritis as underlying disease (P<0.01). At 5 years graft survival was 100% vs. 88%, at 10 years 100% vs. 70%, and at 20 years 100% vs. 63%, respectively. Thus none of the patients with nonglomerular diseases lost a graft, whereas eight grafts were lost in the group of patients with glomerulonephritis. The main cause of graft loss in this patient group was recurrent glomerulonephritis (n=5), whereas chronic vascular rejection caused graft loss in two patients and occlusion of a transplant artery was the cause in one. A clinically significant proteinuria was detected in six more patients in the glomerulonephritis group: a recurrent glomerulonephritis was diagnosed in four patients and in two patients there was no biopsy. The cumulative incidence of recurrence was as high as 45% at 12 years after transplantation. CONCLUSION: Recipients of a human histocompatibility leukocyte antigen-identical LRD kidney have a good prognosis with respect to graft survival. After censoring for death, recurrent glomerulonephritis is the main cause of graft failure in these patients and the impact of recurrent disease on graft survival will become even more prominent with longer follow-up.

Adult↗

The impact of blood pressure measurement methods on the assessment of differences in blood pressure levels between patients with normoalbuminuric type 1 diabetes and healthy controls.

The aim of the study was to investigate the impact of various blood pressure (BP) measurement methods on the assessment of differences in BP levels between patients with normoalbuminuric type 1 diabetes and healthy controls. We measured intra-arterial BP (i.a.), sphygmomanometric BP (sphygmo), 24-h ambulatory blood pressure (ABPM, auscultatory, Profilomat) and oscillometric BP (Dinamap) in 51 patients with normoalbuminuric type 1 diabetes (DP) with a mean diabetes duration of 8.4 years and 42 healthy controls (C). Results are expressed as mean +/- SE. There was no significant difference in i.a. BP between DP and C (systolic/diastolic BP and mean arterial pressure (MAP) 116.2 +/- 1.2/61.7 +/- 0.8 (82.8 +/- 0.9) mm Hg in DP vs 115.6 +/- 1.2/63.2 +/- 0.9 (83.4 +/- 1.1) in C). Sphygmo BP was 117.7 +/- 1.3/69.8 +/- 1.0 mm Hg in DP vs 116.5 +/- 1.5/67.8 +/- 1.3 in C (NS). Also, ABPM was not significantly different between both groups. Daytime BP between 10.00-23.00 h was 120.9 +/- 1.2/84.4 +/- 0.9 mm Hg in DP vs 120.4 +/- 1.5/83.7 +/- 1.0 in C (NS). Night-time BP between 01.00-07.00 h was 102.4 +/- 1.2/69.3 +/- 0.9 mm Hg in DP vs 103.4 +/- 1.5/69.1 +/- 1.3 in C (NS). In contrast, systolic Dinamap BP was higher in DP (118.6 +/- 1.3 in DP vs 113.4 +/- 1.4 mm Hg in C, P = 0.01) as was MAP (85.6 +/- 0.7 in DP vs 83.3 +/- 1.0 mm Hg in C, P = 0.05). Diastolic Dinamap BP was not significantly different (66.6 +/- 0.7 in DP vs 65.0 +/- 1.0 mm Hg in C). We conclude that intra-arterial BP was similar in patients with normoalbuminuric type 1 diabetes and healthy controls. Also, when using auscultatory BP devices there were no apparent differences in blood pressure. In contrast, using the oscillometric method (Dinamap), BP especially systolic, was higher in diabetic patients. Measurements with an oscillometric device (Dinamap) might therefore overestimate BP in patients with normoalbuminuric type 1 diabetes, thus confusing conclusions on the relationship between development of hypertension and microalbuminuria in the early phase of diabetes.

Adult↗

Atrial natriuretic peptide increases albuminuria in type I diabetic patients: evidence for blockade of tubular protein reabsorption.

BACKGROUND: It has been suggested that atrial natriuretic peptide (ANP) contributes to the glomerular hyperfiltration of diabetes mellitus. Infusion of ANP increases the urinary excretion of albumin in patients with type I diabetes mellitus (IDDM). Although the increased albuminuria is attributed to a rise in glomerular pressure, alterations in tubular protein handling might be involved. PATIENTS AND METHODS: We have studied the effects of ANP in nine microalbuminuric IDDM patients. After obtaining baseline parameters, ANP was infused over a 1-h period (bolus 0.05 microgram kg-1, infusion rate 0.01 microgram kg-1 min-1). Renal haemodynamics, sodium and water clearance and tubular protein handling were studied. RESULTS: The glomerular filtration rate (GFR) increased from 116.4 +/- 8.9 to 128.3 +/- 8.8 mL min-1 1.73 m-2, whereas the effective renal plasma flow (ERPF) decreased from 534.3 +/- 44.3 to 484.9 +/- 33.3 mL min-1 1.73 m-2 (P < 0.05). As a result, the filtration fraction was significantly higher during infusion of ANP. ANP attenuated proximal tubular sodium reabsorption. Urinary albumin excretion rose from 87.57 +/- 21.03 to 291.40 +/- 67.86 micrograms min-1 (P < 0.01). Changes in the urinary excretion of beta 2-microglobulin and free kappa light chains were more marked, the excretion of beta 2-microglobulin increasing from 0.28 +/- 0.21 to 51.87 +/- 10.51 micrograms min-1 (P < 0.01), and of free kappa-light chains from 4.73 +/- 1.74 to 46.14 +/- 6.19 micrograms min-1 (P < 0.01). CONCLUSIONS: The observed rise in albuminuria during infusion of ANP does not simply reflect a change in glomerular pressure, but might at least partly result from an attenuation of tubular protein reabsorption.

Adult↗

Induction of albuminuria in mice: synergistic effect of two monoclonal antibodies directed to different domains of aminopeptidase A.

BACKGROUND: Aminopeptidase A is an enzyme that is present on podocytes and is involved in the degradation of angiotensin II. In previous studies in mice, we administered single monoclonal antibodies directed against aminopeptidase A. We observed that only monoclonal antibodies that inhibited aminopeptidase A enzyme activity caused albuminuria. METHODS: In this study, the effects of the combined injections of two monoclonal anti-aminopeptidase A antibodies (mAbs) were studied, using a combination of anti-aminopeptidase A mAbs that were directed against two different domains involved in the aminopeptidase A enzyme activity (ASD-3 or ASD-37) and an anti-aminopeptidase A mAb not related to the enzyme active site (ASD-41). RESULTS: An injection of the combinations ASD-3/37 (total 4 mg, 1:1 ratio) and ASD-37/41 (total 4 mg, 1:1 ratio) in doses that do not cause albuminuria when given alone (4 mg) induced massive albuminuria at day 1 after injection. The combination ASD-3/41 had no effect. This albuminuria was not dependent on systemic immune mediators of inflammation and could not merely be related to a blockade of aminopeptidase A enzyme activity. However, a correlation was observed between the induction of albuminuria and the aggregation of the mAbs injected and aminopeptidase A on the podocytes. An injection of the combinations ASD-3/37 or ASD-37/41 did not cause an increase in systemic blood pressure. The treatment with a combination of enalapril and losartan lowered blood pressure (53 +/- 10 vs. 90 +/- 3 mm Hg in untreated mice) and reduced the acute albuminuria by 55% (11,145 +/- 864 vs. 24,517 +/- 2448 micrograms albumin/18 hr in untreated mice). However, similar effects were observed using triple therapy. Therefore, the reduction of albuminuria by the combined treatment of enalapril/losartan seems to be the consequence of the reduction in the systemic blood pressure. These findings argue against a specific role for angiotensin II in this model. CONCLUSIONS: The combined injection of two mAbs directed against different domains of aminopeptidase A induces a massive albuminuria in mice, which is not merely dependent on angiotensin II. We hypothesize that the direct binding of mAbs to at least two pathogenic domains on aminopeptidase A triggers the podocyte to release mediators that are involved in the observed albuminuria.

Albuminuria↗

Infusion of plasma expanders may lead to unexpected results in urinary protein assays.

Overt proteinuria was detected in the urine of a potential kidney donor, ultimately leading to the refusal of the kidneys for transplantation purposes. Histological examination of the kidneys did not reveal any abnormalities. Searching for substances that could have interfered with the urinary total protein assay, the role of infused, modified gelatin plasma expanders was investigated. We therefore measured the concentration of protein before and after the addition of various artificial plasma expanders to urine. Only when Biuret reagent or Pyrogallol Red dye were used did we find elevated concentrations of protein. Other methods, including the turbidimetric assays, did not detect additional amounts of protein in the spiked urine. We conclude that the infusion of modified gelatin solutions may cause apparent proteinuria. This effect is not observed with starch-based plasma expanders. Clinical chemists and clinicians should be aware of this phenomenon and possibly repeat the analysis with a different technique.

Albumins↗

Acute haemodynamic and proteinuric effects of prednisolone in patients with a nephrotic syndrome.

BACKGROUND: Administration of prednisolone causes an abrupt rise in proteinuria in patients with a nephrotic syndrome. METHODS: To clarify the mechanisms responsible for this increase in proteinuria we have performed a placebo controlled study in 26 patients with a nephrotic syndrome. Systemic and renal haemodynamics and urinary protein excretion were measured after prednisolone and after placebo. RESULTS: After i.v. administration of 125-150 mg prednisolone total proteinuria increased from 6.66+/-4.42 to 9.37+/-6.07 mg/min (P<0.001). By analysing the excretion of proteins with different charge and weight (albumin, transferrin, IgG, IgG4 and beta2-microglobulin) it became apparent that the increase of proteinuria was the result of a change in size selectivity rather than a change in glomerular charge selectivity or tubular protein reabsorption. Glomerular filtration rate rose from 83+/-34 ml to 95+/-43 ml/min (P<0.001) after 5 h, whereas effective renal plasma flow and endogenous creatinine clearance remained unchanged. As a result filtration fraction was increased, compatible with an increased glomerular pressure, which probably contributes to the size selectivity changes. Since corticosteroids affect both the renin-angiotensin system and renal prostaglandins, we have evaluated the effects of prednisolone on proteinuria after pretreatment with 3 months of the angiotensin-converting enzyme inhibitor lisinopril or after 2 weeks of the prostaglandin synthesis inhibitor indomethacin. Neither drug had any effect on prednisolone-induced increases of proteinuria. CONCLUSIONS: Prednisolone increases proteinuria by changing the size selective barrier of the glomerular capillary. Neither the renin-angiotensin axis nor prostaglandins seem to be involved in these effects of prednisolone on proteinuria.

Adolescent↗