ödeme sind definiert durch die isoosmotische Vergrößerung des interstitiellen Raums. Sie sind ein Symptom verschiedener Grundkrankheiten und damit kein eigenes Krankheitsbild. Ab einer Volumenzunahme von 3–5 l werden die Ödeme auch klinisch manifest. Akute Zufuhr von Natriummengen bis zu 12 g pro Tag können innerhalb von 24 h vollständig ausgeschieden werden. Eine höhere Zufuhr führt zu einer Vergrößerung des Extrazellulärraums, einer Zunahme des austauschbaren Natriums, einer Abnahme der Plasma-Renin-Aktivität und der Aldosteronkonzentration im Plasma. Die Wiederherstellung des Ausgangszustands erfolgt anschließend über mehrere Tage.
BACKGROUNDDetermination of glomerular filtration rate (GFR) using plasma disappearance curves requires the injection of a filtration marker and repeated timed blood collections. Gadolinium-containing contrast media are excreted exclusively by glomerular filtration and could provide a novel approach to quantifying GFR using magnetic resonance (MR) imaging. The aim of this study was to demonstrate the feasibility of measuring GFR by the clearance of gadolinium-containing contrast medium in patients with chronic kidney disease (CKD).METHODSInformed consent was obtained from stable CKD patients in stages 1, 2 or 3 (n=16; 5 women, 11 men; median age 54 years). GFR was measured after a bolus injection of gadobutrol (4 mL, approximately 0.05 mmol/kg) and calculated from the washout of the signal intensity obtained over the liver. The obtained MR-GFR was compared with simultaneously measured plasma clearance of inulin and gadobutrol.RESULTSTechnical failure occurred in 2 patients. The mean obtained MR-GFR was 71 ± 25 (SD) mL/min per 1.73 m² and agreed well with the mean inulin-GFR (70 ± 24 mL/min per 1.73 m²). Pearson's correlation coefficient was r=0.91. The mean of the paired differences was 1 ± 10 mL/min per 1.73 m² and not significantly different from zero. GFR obtained from gadobutrol plasma clearance also agreed well with inulin-GFR and MR-GFR (r=0.92 and r=0.75, respectively).CONCLUSIONSWe describe a novel method of determining GFR from MR imaging using a low dose of gadobutrol in patients with reduced GFR that enables the absolute quantification of GFR after routine contrast-enhanced MR imaging.
BACKGROUND Evaluation of potential kidney donors requires the assessment of both kidney anatomy and function. In this prospective study, we sought to expand the diagnostic yield of magnetic resonance (MR) by adding functional measurements of glomerular filtration rate (GFR) and split renal function. METHODS Between 2007 and 2009, all potential kidney donors presenting to our facility underwent a comprehensive single-stop MR study that included an assessment of anatomy, angiography and functional measurements. GFR was measured after a bolus injection of gadobutrol (4 ml, approximately 0.05 mmol/kg) and calculated from the washout of the signal intensity obtained over the liver. Split renal function was calculated from the increase of signal intensity over the renal cortex. Values were compared to renal scintigraphy with (99m)Tc-DTPA from the same day. RESULTS The MR investigation was successfully performed in 21 participants. The GFR derived from MR (MR-GFR) correlated well (r = 0.84) with the GFR derived from scintigraphy (DTPA-GFR). The mean value of the paired differences was 4 +/- 13 [SD] ml/min/1.73 m(2) and was not significantly different from zero. The ratio between right and left kidney function was similar with both techniques (1.01 +/- 0.17 with MR and 1.06 +/- 0.12 with scintigraphy, P = 0.20). CONCLUSIONS We demonstrate an MR-based approach to comprehensively evaluate both kidney anatomy and function in a single investigation, thereby facilitating the evaluation of potential kidney donors.
Background/Aims: Serum- and glucocorticoid-inducible kinase 1 (SGK1) stimulates the epithelial sodium channel (ENaC), renal outer medullary K+ channel 1, Na+/K+-ATPase and presumably the Na+-Cl- cotransporter (NCC). SGK1-deficient mice (sgk(-/-)) show a compensated salt-losing phenotype with secondary hyperaldosteronism. The present experiments explored the role of SGK1 in the response to diuretics. Methods: sgk1(-/-) mice and their wild-type litter-mates (sgk1(+/+)) were treated with the ENaC blocker triamterene (200 mg/l), the Na+-K+-2Cl(-) cotransport inhibitor furosemide (125 mg/l), the NCC blocker hydrochlorothiazide (400 mg/l) and the mineralocorticoid receptor blocker canrenoate (800 mg/l) for 8 days. Renal SGK1 expression was studied using quantitative RT-PCR and immunofluorescence. Results: Diuretic treatment increased SGK1 mRNA and protein expression in the kidney of wild-type sgk1(+/+) mice. The responses to furosemide, hydrochlorothiazide or canrenoate were not different between sgk1(+/+) and sgk1(-/-) mice, and were accompanied by moderate increases in plasma aldosterone and urea concentrations. However, treatment with triamterene in sgk1(-/-) mice (but not in sgk1(+/+) mice) led to severe, eventually lethal, body weight loss as well as increases in plasma aldosterone, urea and K+ concentrations. Conclusions: SGK1 is required for diuretic tolerance to triamterene. The observations confirm the impaired kaliuretic potency of sgk1(-/-) mice and point to a role of SGK1 in renal Na+ reabsorption by mechanisms other than ENaC. Copyright (c) 2009 S. Karger AG, Basel
Two hundred digitalized patients under nine freely practising physicians were investigated. One hundred and ninety-six patients received digoxin or one of its derivatives. Of these, 50% did not have therapeutic serum glycoside concentrations, 48% were in the mostly subtherapeutic range and 2% were in the potentially toxic range. Signs of glycoside intoxication were not found. A substantiated indication for glycoside therapy was found in the final analysis in 55% of the patients. In 128 patients, the methyldigoxin dose calculated (0.16 +/- 0.030 mg/d) was markedly in excess of that actually prescribed (0.13 +/- 0.050 mg/d; p less than 0.001), so that there were indications of a general underdigitalization. In addition, it was not possible to anchor the restrictive kidney function as a reason for reduction of digoxin dosage in the prescription behavior. In the long run, only 36% of the patients with justified indication and therapeutic serum glycoside concentration as well as (with reservations) the 3% with potentially toxic serum glycoside concentration profited from the glycoside therapy.
Hypercalcaemic crisis is a rare endocrine emergency. Often, an acute renal failure develops due to hypercalcaemia-induced polyuria. The molecular causes comprise stimulation of the calcium-sensing receptor in the ascending Henle loop and a reduced aquaporin expression in the collecting ducts. We report on a 54-year-old woman who was admitted for hypercalcaemic crisis and acute renal failure. Immediate rehydratation, bisphosphonate administration, and slow-extended daily dialysis (SLEDD) were initiated leading to a marked reduction of serum calcium. Endocrine work-up revealed primary hyperparathyroidism due to a parathyroid adenoma, which was treated by emergency surgery. Haemodialysis was continued in the first post-operative weeks for prolonged acute renal failure.
The relationship between blood-lipid levels and severity of proteinuria was examined retrospectively in 30 patients (12 males, 18 females; mean age 39 [18-58] years). All patients had histologically confirmed glomerulonephritis (minimal change: n = 7, perimembranous: n = 8, focal sclerosing: n = 6, rapid progressive: n = 3, mesangio-proliferative: n = 4, membrano-proliferative: n = 1, diabetic glomerulosclerosis: n = 1). None was taking lipid-lowering drugs. Patients were classified according to the degree of proteinuria. In group 1 (proteinuria less than 5 g/d, n = 13) the LDL-HDL ratio averaged 4.4; in group 2 (proteinuria 5.0-10.0 g/d, n = 10) the average ratio was 8.8, and in group 3 (proteinuria greater than 10.0 g/d, n = 7) 13.3. Total cholesterol concentration also rose with increasing proteinuria (to 300 +/- 87 mg/dl, 375 +/- 168 mg/dl and 464 +/- 143 mg/d, respectively). The size of the LDL-HDL ratio and the level of total cholesterol did not correlate with the degree of excretory renal failure. These results point to an impressive correlation between the degree of proteinuria and the level of LDL-HDL ratio as a measure of atherogenic risk for a given patient.
HYPOTHESIS:Serum- and Glucocorticoid-inducible Kinase 1 (SGK1) is involved in the regulation of insulin secretion and may represent a candidate gene for the development of type 2 diabetes mellitus in humans.METHODS:Three independent European populations were analyzed for the association of SGK1 gene (SGK) variations and insulin secretion traits. The German TUEF project provided the screening population (N = 725), and four tagging SNPs (rs1763527, rs1743966, rs1057293, rs9402571) were investigated. EUGENE2 (N = 827) served as a replication cohort for the detected associations. Finally, the detected associations were validated in the METSIM study, providing 3798 non-diabetic and 659 diabetic (type 2) individuals.RESULTS:Carriers of the minor G allele in rs9402571 had significantly higher C-peptide levels in the 2 h OGTT (+10.8%, p = 0.04; dominant model) and higher AUC(C-Peptide)/AUC(Glc) ratios (+7.5%, p = 0.04) compared to homozygous wild type TT carriers in the screening population. As interaction analysis for BMIxrs9402571 was significant (p = 0.04) for the endpoint insulin secretion, we stratified the TUEF cohort for BMI, using a cut off point of BMI = 25. The effect on insulin secretion only remained significant in lean TUEF participants (BMI< or =25). This finding was replicated in lean EUGENE2 rs9402571 minor allele carriers, who had a significantly higher AUC(Ins)/AUC(Glc) (TT: 226+/-7, XG: 246+/-9; p = 0.019). Accordingly, the METSIM trial revealed a lower prevalence of type 2 diabetes (OR: 0.85; 95%CI: 0.71-1.01; p = 0.065, dominant model) in rs9402571 minor allele carriers.CONCLUSIONS:The rs9402571 SGK genotype associates with increased insulin secretion in lean non-diabetic TUEF/EUGENE2 participants and with lower diabetes prevalence in METSIM. Our study in three independent European populations supports the conclusion that SGK variability affects diabetes risk.
PPARγ-agonists enhance insulin sensitivity and improve glucose utilization in diabetic patients. Adverse effects of PPARγ-agonists include volume retention and edema formation. Recent observations pointed to the ability of PPARγ agonists to enhance transcription of the serum and glucocorticoid-inducible kinase SGK1, a kinase that is genomically upregulated by mineralocorticoids and stimulates various renal channels and transporters including the renal epithelial Na + channel ENaC. SGK1 has been proposed to mediate the volume retention after treatment with PPARγ agonists. To test this hypothesis, food containing the PPARγ agonist pioglitazone (0.02%, i.e., approximately 25 mg/kg bw/day) was administered to gene-targeted mice lacking SGK1 ( sgk1 −/− , n = 12) and their wild-type littermates ( sgk1 +/+ , n = 12). According to in situ hybridization, quantitative reverse transcriptase-polymerase chain reaction (RT-PCR) and immunofluorescence, treatment with pioglitazone significantly increased renal SGK1 mRNA and protein expression in sgk1 +/+ mice. The treatment increased body weight significantly in both, sgk1 +/+ mice (+2.2 ± 0.3 g) and sgk −/− mice (+1.3 ± 0.2 g), and decreased hematocrit significantly in sgk1 +/+ mice (−6.5 ± 1.0%) and sgk1 −/− mice (−3.1 ± 0.6%). Both effects were significantly ( p < 0.05) more pronounced in sgk1 +/+ mice. According to Evans Blue distribution, pioglitazone increased plasma volume only in sgk1 +/+ mice (from 50.9 ± 3.9 to 63.7 ± 2.5 μl/g bw) but not in sgk −/− mice (from 46.8 ± 3.8 to 48.3 ± 5.2 μl/g bw). Pioglitazone decreased aldosterone plasma levels and blood pressure and increased leptin plasma levels in both genotypes. We conclude that SGK1 contributes to but does not fully account for the volume retention during treatment with the PPARγ agonist pioglitazone.
Several studies have implicated a remarkable dysfunctional apoptotic state and/or response in ESRD patients. Previously published studies are controversial with respect to acute effects of haemodialysis (HD) treatment on up- or downregulation of apoptotic genes. Twenty-eight chronic HD patients were haemodialysed for 4 hours with a 4008 dialyser using high-flux membranes. For subgroup analysis, patients were separated into a low (up to 0.5 mg/dl) and a high (0.5 to 5.0 mg/dl) CRP group. Blood was drawn prior to HD and 240 min after initiation of HD. Acute changes of transcript levels encoding pro- or anti-apoptotic genes were analyzed in RNA immediately isolated from blood leukocytes using quantitative real-time PCR. In the present study, we detected a significant elevation of the death receptor CD95/Fas (induction factor (IF) 1.55 +/- 0.16), the death receptor 5 (DR5) (IF 1.17 +/- 0.08), and caspase 8 (IF 1.37 +/- 0.14) gene expression during HD. mRNA levels of the respective ligands (CD95L, TRAIL), of the caspase 5 and anti-apoptotic Bcl-2 family members such as Bcl-2 and Bcl2l2 were slightly, but not significantly, increased after HD treatment. An additional anti-apoptotic molecule, BAG3, was found to be slightly, but significantly, induced after HD (IF 1.16 +/- 0.07). In addition to being an activator of immune cells, CD40L has been shown to be strongly induced after HD treatment (IF 1.70 +/- 0.20). Subgroup analysis revealed no significant differences between low vs. high CRP patient groups or diabetic vs. non-diabetic patients. These results indicate a marked influence of routine haemodialysis treatment on the transcription of pro- and anti-apoptotic molecules and the involvement of the extrinsic pathway for apoptosis through the activation of death receptors and the initiator caspase 8. Furthermore, following dialysis, lymphocytes seem to be activated by CD40L, which represents an early T-cell activation marker.
Angiotensin II has previously been shown to trigger fibrosis, an effect involving connective tissue growth factor (CTGF). The signaling pathways linking angiotensin II to CTGF formation are, however, incompletely understood. A gene highly expressed in fibrosing tissue is the serum- and glucocorticoid-inducible kinase SGK1. The present study explored whether SGK1 is transcriptionally regulated by angiotensin II and participates in the angiotensin II-dependent regulation of CTGF expression. To this end, experiments have been performed in human kidney fibroblasts and mouse lung fibroblasts from gene-targeted mice lacking SGK1 (sgk1–/–) and their wild-type littermates (sgk1+/+). In human renal fibroblasts, SGK1 and CTGF protein expression were enhanced by angiotensin II (10 nM) within 4 h. In sgk1+/+ mouse fibroblasts, SGK1 transcript levels were significantly increased after 4 h of angiotensin II treatment. Angiotensin II stimulated both transcript and protein abundance of CTGF in fibroblasts from sgk1+/+ mice, effects significantly blunted in fibroblasts of sgk1–/– mice. In conclusion, angiotensin II stimulates the expression of SGK1, which is in turn required for the stimulating effect of angiotensin II on the expression of CTGF. Thus, SGK1 presumably contributes to the profibrotic effect of angiotensin II.
BackgroundCorticosteroids remain the mainstay of treatment in idiopathic nephrotic syndrome, including focal and segmental glomerulosclerosis (FSGS). However, only about 20% of patients with FSGS experience a partial or complete remission of nephrotic syndrome despite treatment.ObjectivesTo assess the effects of different immunomodulatory and immunosuppressive regimes in adults with FSGS.Search strategyWe searched MEDLINE, EMBASE and CENTRAL and handsearched congress reports of the American Society of Nephrology and the European Dialysis and Transplantation Association. Date of search: 31 January 2007.Selection criteriaRandomised controlled trials (RCTs) and quasi-RCTs which examined the effects of different doses, dose strategies and duration of treatment of steroids, alkylating agents, cyclosporin A and antimetabolites in the treatment of FSGS in adults, where included.Data collection and analysisAt least two authors independently assessed abstracts and/or full text articles to determine which studies satisfied the inclusion criteria. Information was entered onto a separate data sheet for each identified study. Data relevant to outcomes (complete or partial remission of nephrotic syndrome, doubling of serum creatinine, adverse effects) from identified studies were included. Results were expressed as risk ratios (RR) with 95% confidence intervals (CI).Main resultsFour studies (108 participants) were included. Three studies investigated cyclosporin A (CSA) with or without prednisone versus prednisone or no treatment and one compared chlorambucil plus prednisone versus no treatment. Outcome data was only available for complete or partial remission and doubling of serum creatinine. There was a significant increase in the number of participants who obtained complete or partial remission with CSA plus low dose prednisone versus prednisone alone (one study, 49 participants: RR 8.85, 95% CI 1.22 to 63.92). Pooled analyses were not performed due to the heterogeneity of the data.Authors' conclusionsAdult patients treated with CSA at an initial dose of 3.5-5 mg/kg/d in two divided doses perhaps in combination with oral prednisolone 0.15 mg/kg/d are more likely to achieve a partial remission of the nephrotic syndrome compared with symptomatic treatment or prednisolone alone. However, there is a probability of deterioration of kidney function due to the nephrotoxic effect of CSA in the long term. For CSA, a larger controlled trial with longer follow-up should be performed to prove the benefit of this regimen not only on proteinuria but also on the preservation of kidney function. Present available data do not support the general use of alkylating substances for the treatment of FSGS in adults.
Drug Prescribing for Patients with Chronic Kidney Disease in General Practice: a Cross-Sectional Study
BACKGROUND:The endothelial nitric oxide (NO) system plays a central role in regulating vascular tone. Endothelial dysfunction has been closely linked to reduced activity in the NO system. Tetrahydrobiopterin (BH4) is an essential cofactor of all NO synthase isoforms. METHODS:We examined the effects of BH4 on the NO system assessed by measurement of serum cGMP levels and NO breakdown products (NOx) in 12 healthy volunteers. RESULTS:Application of a total of 19 mg/kg BH4 intravenously (i.v.) over 3 hours led to a dose-dependent increase in serum cGMP concentrations from a median 3.3 nM (interquartile range [IQR] 1.1-5.6) to 5.7 nM (IQR 2.4-13.3, p=0.008) and NOx from a median 49.3 microM (IQR 39.8-56.6) to 59.7 microM (39.6-85.5) (p=0.058). Systemic and renal hemodynamics measured by inulin and p-aminohippuric acid (PAH) clearance remained unchanged. Plasma renin activity was significantly increased (2.0 [IQR 1.0-2.8] to 2.3 ng AngI/mL per hour [IQR 1.7-4.0], p=0.045), whereas aldosterone, erythropoietin and B-type natriuretic peptide levels did not change. In a second study, oral BH4 given over 3 days (800 mg/day) similarly increased serum cGMP and ameliorated the depressive effects of the NO synthase inhibitor L-NAME (1.5 mg/kg i.v.) on the glomerular filtration rate. CONCLUSIONS:Application of BH4 in high doses is safe and enhances formation of cGMP, pointing to increased bioavailability of NO.
Doxorubicin-induced nephropathy leads to epithelial sodium channel (ENaC)-dependent volume retention and renal fibrosis. The aldosterone-sensitive serum- and glucocorticoid-inducible kinase SGK1 has been shown to participate in the stimulation of ENaC and to mediate renal fibrosis following mineralocorticoid and salt excess. The present study was performed to elucidate the role of SGK1 in the volume retention and fibrosis during nephrotic syndrome. To this end, doxorubicin (15 mug/g body wt) was injected intravenously into gene-targeted mice lacking SGK1 (sgk1(-/-)) and their wild-type littermates (sgk1(+/+)). Doxorubicin treatment resulted in heavy proteinuria (>100 mg protein/mg crea) in 15/44 of sgk1(+/+) and 15/44 of sgk1(-/-) mice leading to severe nephrotic syndrome with ascites, lipidemia, and hypoalbuminemia in both genotypes. Plasma aldosterone levels increased in nephrotic mice of both genotypes and was followed by increased SGK1 protein expression in sgk1(+/+) mice. Urinary sodium excretion reached signficantly lower values in sgk1(+/+) mice (15 +/- 5 mumol/mg crea) than in sgk1(-/-) mice (35 +/- 5 mumol/mg crea) and was associated with a significantly higher body weight gain in sgk1(+/+) compared with sgk1(-/-) mice (+6.6 +/- 0.7 vs. +4.1 +/- 0.8 g). During the course of nephrotic syndrome, serum urea concentrations increased significantly faster in sgk1(-/-) mice than in sgk1(+/+) mice leading to uremia and a reduced median survival in sgk1(-/-) mice (29 vs. 40 days in sgk1(+/+) mice). In conclusion, gene-targeted mice lacking SGK1 showed blunted volume retention, yet were not protected against renal fibrosis during experimental nephrotic syndrome.
Renal fibrosis is characterized by excessive accumulation of extracellular matrix proteins. Recent findings show that transforming growth factor-beta (TGF-beta) induces a rapid but transient expression of early growth response gene-1 (Egr-1) by skin fibroblasts. The present study aims to define the role of Egr-1 in mineralocorticoid-induced renal fibrosis. Therefore, we transiently transfected immortalized human renal fibroblasts (TK188) with recombinant Egr-1 and analysed the transcription of several pro-fibrotic genes (Coll1A1, Coll1A2, osteopontin, TIMP-1, and CTGF). We also examined Egr-1 expression and the regulation of pro-fibrotic genes in DOCA- (deoxycorticosterone acetate) and TGF-beta-treated renal fibroblasts. Finally, we compared Egr-1 gene expression in DOCA/high salt-induced fibrotic kidneys and untreated mice. Egr-1 transfection of TK188 fibroblasts induced the expression of TIMP-1 and osteopontin mRNA. Similar results were obtained after DOCA-activation of TK188 cells. Stimulation of TK188 with TGF-beta, but not with DOCA, resulted in elevated Coll1A1/Coll1A2 and CTGF levels. Co-stimulation with DOCA and TGF-beta was followed by enhanced Egr-1, Coll1A1, TIMP-1, and CTGF transcription. In conclusion, both DOCA and TGF-beta alone or in combination synergistically induced Egr-1 expression by human renal fibroblasts. DOCA induction of TIMP-1/osteopontin is Egr-1 dependent, whereas TGF-beta appears to induce Coll1A1 and CTGF by an Egr-1 independent pathway. In vivo analyses revealed significantly higher Egr-1 transcript levels in DOCA/high salt-induced fibrotic kidneys compared to untreated mice. Thus, we show for the first time that Egr-1 might participate in DOCA-induced renal fibrosis.
An ultrasound investigation was undertaken of the neck region of 42 patients with normal neck anatomy in order to determine whether the results of ultrasound-gained topographical data provided pointers to the choice of entry site to the internal jugular vein (IJV). In addition, the IJV was punctured under ultrasound control in 23 patients in an intensive care unit in whom there was a problem of increased bleeding tendency, anatomical difficulty or previously failed "blind" puncture. In all of them a central venous catheter was placed without complication by the Seldinger technique via the primary chosen point for puncture. An approach through the sternocleidomastoid muscle, between the cricoid level and the "central" place of puncture between the two bellies of the sternocleidomastoid muscle proved to be the most satisfactory compromise between easy application of the ultrasound head, large vein diameter and reduction of any risk of mistakenly puncturing artery or pleura. This approach has to be varied according to the ultrasound findings. It is concluded from this experience that ultrasound is suitable for the placement of central venous catheters. But since the equipment is bulky it cannot be used in an emergency.