Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UNIPROT:P01034 (cystatin C)
3,397 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

A controversy presently exists concerning the ability of albumin to inhibit the tubular reabsorption of low-molecular-weight (M(r)) proteins in experimental renal diseases leading to massive proteinuria. We have examined the urinary excretion of albumin and of 2 low-M(r) proteins, beta 2-microglobulin and cystatin C, in rats treated with toxins affecting primarily the glomerulus (puromycin amino-nucleoside and Adriamycin) or the tubule (mercuric chloride and maleic acid). Above a threshold of 100 mg/24 h, albuminuria induced by puromycin aminonucleoside (50 mg/kg) and Adriamycin (5 mg/kg) was associated with a marked increase in the urinary excretion of beta 2-microglobulin and cystatin C peaking at more than 100-fold the baseline levels. These glomerulotoxins did not affect the urinary excretion of the tubular enzyme N-acetyl-beta-D-glucosaminidase. This pattern of effects was completely different from that induced by mercuric chloride (2 mg/kg) and maleic acid (400 mg/kg) which increased the excretion of both N-acetyl-beta-D-glucosaminidase and low-M(r) proteins in rats with albuminuria values below 100 mg/24 h. These results strongly support the hypothesis that at high filtered loads, albumin decreases the tubular uptake of low-M(r) proteins most likely by competition for a common transport mechanism.
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PMID:Competition between albumin and low-molecular-weight proteins for renal tubular uptake in experimental nephropathies. 801 51

Urinary excretion of five low molecular weight proteins (LMWP) [beta 2-microglobulin (beta 2m), cystatin C (cyst C), Clara cell protein (CC16), retinol-binding protein (RBP) and alpha 1-microglobulin (alpha 1m)], albumin and N-acetyl-beta-D-glucosaminidase (NAG) were quantified in 16 patients who followed a weight reduction program which included Chinese herbs, which have been incriminated in the genesis of Chinese herbs nephropathy (CHN). An additional group of four patients transplanted for CHN were investigated. Urinary data were obtained for comparison purpose in five groups of proteinuric patients: two groups with normal serum creatinine (SCr) and glomerular albuminura [12 patients with diabetes mellitus and microalbuminuria (DN), 10 patients with primary nephrotic syndrome (NS)]; two groups with normal SCr and toxic nephropathy [6 patients with analgesic (AN), 9 patients with cadmium nephropathy (CdN)]; and one group of seven patients with glomerular diseases and increased SCr (GN). Patients were classified according to serum level S beta 2m to take into account the possibility of overflow proteinuria at S beta 2m > or = 5 mg/liter. Three patients (CHN0) with a S beta 2m < 5 mg/liter, had a normal urinary protein pattern including NAG and a normal S beta 2m. Eight patients (CHN1) with a S beta 2m < 5 mg/liter had various abnormalities of their urinary protein pattern. In four of them (CHN1a) only beta 2m, RBP and CC16 were increased while total proteinuria and SCr were normal. In the other four (CHN1b and c) albumin, cyst C, alpha 1m and NAG were also elevated, while total proteinuria and SCr were moderately raised. Five patients (CHN2) with a S beta 2m > or = 5 mg/liter had a markedly increased excretion of all LMWP, albumin and NAG (CHN1 vs. CHN2, P < 0.05) as well as a further increase in total proteinuria and SCr. The urinary LMWP/albumin concentration ratio was strikingly higher in CHN patients than in patients with glomerular albuminuria (CHN1 vs. DN and NS, P < 0.01) or moderate renal failure with elevated S beta 2m level (CHN2 vs. GN, P < 0.01), confirming the existence of a tubular proteinuria independent of glomerular albuminuria or overflow proteinuria. A similar proteinuria pattern was present in the two toxic nephropathies (CdN and AN). This pattern was no longer recognizable after transplantation. In conclusion, CHN exhibits various profiles of tubular proteinuria which are the hallmarks of the disease. This pattern is still detectable in patients with renal failure and/or glomerular albuminuria. It is identical to that observed in cadmium and analgesic nephropathies. It does not recur after transplantation. Its most sensitive and reliable marker is a raised urinary level of CC16 or RBP.
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PMID:Low molecular weight proteinuria in Chinese herbs nephropathy. 854 16

To determine whether human immunodeficiency virus (HIV) infection is associated with incipient tubular or glomerular defects, we determined the urinary excretion of four low molecular weight proteins (LMWP); beta2-microglobulin (U-beta2-m), cystatin C (U-cyst C), Clara cell protein (U-CC16), and retinol-binding protein (U-RBP), the markers of tubular dysfunction, the excretion of albumin (U-Alb), a marker of glomerular defect, and the excretion of N-acetyl-beta-D-glucosaminidase (U-NAG), a marker of structural damage of the proximal tubular epithelium. Their determinants have been assessed by stepwise regression analysis using as possible predictors age, sex, serum-beta2-m (S-beta2-m), CD4 lymphocyte count, or HIV infection stage and therapy. The study involved 76 HIV-infected patients without renal disease, 56 with S-beta2-m < 5 mg/L (Group B1), 20 with S-beta2-m > or = 5 mg/L (Group B2), and 30 HIV-negative controls. Fourteen patients (18.4%) had no abnormal urinary protein loss, and 62 (81.6%) had elevated urinary excretion of at least one protein (Alb, LMWP, or NAG). A single urinary protein was abnormal in 21 patients (U-beta2-m, n = 9; U-RBP, n = 2; U-CC16, n = 4; and U-Alb, n = 6). At least two LMWP were abnormal without increased U-Alb in 23 patients (12 with increased and 11 with normal U-NAG). Ten patients had an increased urinary excretion of at least one LMWP together with U-Alb (5 with increased and 5 with normal U-NAG). An increased urinary excretion of all proteins was observed in the last 8 patients. The average urinary excretion of all proteins (except cyst C) was significantly higher in HIV than in the control group. As expected, U-beta2-m and the prevalence of abnormal U-beta2-m values were higher in the B2 than in the B1 group (P = 0.0001), whereas the average urinary excretion and the prevalence of elevated values of Alb, LMWP (except beta2-m) or NAG were the same in both HIV groups. By stepwise regression analysis, age emerged as a significant determinant of urinary excretion of beta2-m and CC16, whereas male sex was associated with increased U-CC16. S-beta2-m, CD4-lymphocyte count, or HIV infection stage emerged as significant determinants only for U-beta2-m as a consequence of a close correlation between S-beta2-m and either HIV infection stage (r = -0.52, P = 0.0001), or CD4 count (r = -0.45, P = 0.0002). Over 80% of HIV-infected patients without overt renal disease have evidence of glomerular permeability defects or tubular dysfunction, whatever the stage of the disease. U-Alb, RBP, and CC16 appear as the most sensitive and reliable early markers of these abnormalities. Their cause and prognostic value remain to be determined.
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PMID:Low molecular weight proteinuria in human immunodeficiency virus-infected patients. 865 Dec 44

We determined plasma concentrations of cystatin C, beta2-microglobulin - beta2-MG (low molecular mass protein markers of glomerular filtration rate - GFR), creatinine (marker of GFR) and urinary N-acetyl-beta-D-glucosaminidase (NAG) excretion (marker of glomerular and tubular dysfunction) in 41 non-insulin-dependent diabetic patients. A significant increase of all the measured parameters (p<0.001, p<0.05, p<0.05 and p<0.001, respectively) in comparison to the control group, was observed. In the patients with microalbuminuria, only plasma cystatin C concentration and urinary NAG excretion increased significantly in comparison to patients with normoalbuminuria. At a cut-off level of 1.74 mg/l for cystatin C and 1.81 U/g creatinine for NAG (95% percentile of the normoalbuminuric group), the sensitivity of the tests for detecting microalbuminuria was 82% for cystatin C and 86% for NAG. The specificities were 88 and 92%, respectively. The present study demonstrated that determination of plasma cystatin C might be useful in the detection of incipient diabetic nephropathy and is a potentially better marker than creatinine or beta2-MG. No correlation between parameters measured in plasma or urine and glycated hemoglobin was found.
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PMID:Plasma cystatin C concentration in non-insulin-dependent diabetes mellitus: relation with nephropathy. 1060 39

In this follow-up study, 526 persons were followed for almost 5 years to assess the reversibility and predictive value of four kidney biomarkers in a field epidemiology setting. This study examined (a) whether elevations in urinary albumin, N-acetyl-beta-D-glucosaminidase, retinol-binding protein, and alanine aminopeptidase remained elevated at follow-up and (b) whether these initial elevations were predictive of kidney disease (as measured by markers of kidney dysfunction: serum creatinine, serum cystatin C, creatinine clearance, and urine osmolality) at follow-up. Study participants were 8-76 years of age at baseline and were followed for an average of 4.5 years. Approximately 50% of adults who had an elevated biomarker did not have an elevation at followup. Youths with elevated biomarkers at baseline, but who completed adolescence by the time of the follow-up, no longer had any elevations in biomarkers at follow-up. Adult participants who had elevated biomarkers and selected health conditions at baseline (diabetes and, to a lesser extent, heart disease, hypertension, gout, and urinary tract disease) were more likely to show early indicators of kidney impairment at follow-up. Participants with these health conditions and normal kidney biomarker values at baseline had kidney test results at follow-up that were similar to results of study participants who did not have these health conditions at baseline. The presence or absence of elevated biomarkers at baseline among generally healthy participants was not associated with the development of early indicators of kidney impairment at follow-up. This longitudinal study confirmed the utility of these four kidney biomarker tests as markers of preclinical organ dysfunction among adults with certain preexisting medical conditions.
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PMID:Confirming the utility of four kidney biomarker tests in a longitudinal follow-up study. 1457 88

Progressive renal failure is one of the main complications in HbS/beta-thalassemia (HbS/beta-thal). Early identification of patients at high risk of developing renal failure is of great importance as it may allow specific measures to delay the progression of renal damage and thus reduce the incidence of end-stage renal failure and mortality. Early predictors of renal impairment in HbS/beta-thal remain to explore. Within this context, we studied 87 compound HbS/beta-thal patients (36 males/51 females; median age 39 years) and 30 healthy controls. In addition to conventional renal biochemistries we measured serum cystatin-C (Cys-C), urine N-acetyl-beta-D-glucosaminidase (NAG) excretion and serum and urinary beta(2)-microglobulin (beta(2)-M). Cystatin-C, NAG and serum beta(2)-M levels were higher in patients than controls. The incidence of patients with high levels of Cys-C, NAG, and beta(2)-M was 32.1, 74.7, and 70.1% respectively, while only 6.8% of patients had increased serum creatinine levels. Cystatin-C and serum beta(2)-M showed a strong correlation with creatinine clearance and age, while NAG positively correlated with proteinuria. An inverse correlation was also shown between hemoglobin and beta(2)-M, NAG, and Cys-C levels. Seven patients with proteinuria received therapy with angiotensin-converting enzyme (ACE) inhibitors. Changes of poteinuria positively correlated with NAG levels. These results indicate that Cys-C is an accurate marker of renal dysfunction, and urinary NAG excretion can be considered as a reliable index of the tubular toxicity, and possible predictor of proteinuria and eventual renal impairment in HbS/beta-thal patients. Furthermore, NAG measurement may be used for monitoring ACE-inhibitors therapy in HbS/beta-thal patients with proteinuria.
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PMID:Early markers of renal dysfunction in patients with sickle cell/beta-thalassemia. 1672 88

The current analyses evaluated the effect of atorvastatin on biomarkers of renal function. Serum creatinine level and markers of tubular and glomerular function, including cystatin C, urine N-acetyl-beta-D-glucosaminidase, urine and serum beta2-microglobulin, and urine albumin, were assessed in osteopenic postmenopausal women with mild dyslipidemia who received atorvastatin 20 mg, atorvastatin 80 mg, or placebo for 1 year. During the study, changes in serum creatinine levels were the same in all 3 treatment groups. Cystatin C levels remained unchanged in all groups at all time points. For the additional markers of renal function, median values at baseline and weeks 26 and 52 in both of the atorvastatin and the placebo groups were similar. Neither moderate- nor high-dose atorvastatin treatment for 1 year altered markers of glomerular and renal tubular function compared with placebo. These data indicate that in this patient population, atorvastatin, even at a high dose, does not interfere with renal tubular reabsorption of protein, induce renal tubular dysfunction, or alter glomerular filtration rate in humans.
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PMID:Atorvastatin does not induce glomerular or tubular dysfunction even at high doses. 1778 79

This study investigates the association between serum cystatin C, serum creatinine concentrations, N-acetyl-beta-D-glucosaminidase (NAG enzymuria), urine alpha1-microglobulin (alpha1-MG) and beta2-microglobulin (beta2-MG) levels in subjects with type 2 diabetes (n=40, 20M/20F, age range 25-65 years; duration of diabetes 8-10 years) and age- and gender-matched healthy controls (n= 20). Exclusion criteria were absence of gross proteinuria, hypertension, dyslipidaemia or cardiovascular disease. Fasting blood samples and mid-stream specimen of urine (MSSU) were collected and serum creatinine, cystatin C, urine creatinine, NAG enzymuria, alpha1-MG and beta2-MG were measured. Diabetic subjects were separated into two groups based on albumin:creatinine concentration ratio. Group A: <3.5 (mg/mmol creatinine), group B: 3.5-35 (mg/mmol creatinine). While serum creatinine concentrations remained within the laboratory reference range for all groups, serum cystatin C concentration (mg/L) was significantly increased in group B (1.79 +/- 0.42 [mean +/- SD] compared to both control [0.81 +/- 0.10] and group A values [0.95 +/- 0.10]; both P<0.001). NAG enzymuria (units/mmol creatinine) was increased in both diabetic groups compared to control values (group B: 122 +/- 7, group A: 70 +/- 5, controls 27 +/- 2, all P<0.001). alpha1-microglobulin (microg/mmol creatinine) concentrations, similar in both the control group and group A diabetics at 1.10 +/- 0.10 and 1.11 +/- 0.21, respectively, were significantly elevated in group B at 2.10 +/- 0.41 (both P<0.01). Similarly, elevated beta2-MG (microg/mmol creatinine) levels were also observed in group B compared to both group A and control values (3.20 +/- 0.21 vs. 1.80 +/- 0.51 and 0.91 +/- 0.11, respectively; both P<0.001). In addition, group B levels were significantly higher than group A (P<0.001). These observations suggest that serum cystatin C is a more appropriate and effective biomarker for the overall estimation of GFR than serum creatinine values. In addition, increased serum cystatin C values were also associated with early renal tubular insult in subjects with type 2 diabetes, as characterised by increased NAG enzymuria, alpha1- and beta2-microglobulin excretion.
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PMID:Serum cystatin C, enzymuria, tubular proteinuria and early renal insult in type 2 diabetes. 1791 Feb 81

The diagnosis of acute kidney injury (AKI) is usually based on changes in serum creatinine, but such measurements are a poor marker of acute deterioration in kidney function. We performed a systematic review of publications that evaluated the accuracy and reliability of serum and urinary biomarkers in human subjects when used for the diagnosis of established AKI or early AKI, or to risk stratify patients with AKI. Two reviewers independently searched the MEDLINE and EMBASE databases (January 2000-March 2007) for studies pertaining to biomarkers for AKI. Studies were assessed for methodologic quality. In total, 31 studies evaluated 21 unique serum and urine biomarkers. Twenty-five of the 31 studies were scored as having 'good' quality. The results of the studies indicated that serum cystatin C, urine interleukin-18 (IL-18), and urine kidney injury molecule-1 (KIM-1) performed best for the differential diagnosis of established AKI. Serum cystatin C and urine neutrophil gelatinase-associated lipocalin, IL-18, glutathione-S-transferase-pi, and gamma-glutathione-S-transferase performed best for early diagnosis of AKI. Urine N-acetyl-beta-D-glucosaminidase, KIM-1, and IL-18 performed the best for mortality risk prediction after AKI. In conclusion, published data from studies of serum and urinary biomarkers suggest that biomarkers may have great potential to advance the fields of nephrology and critical care. These biomarkers need validation in larger studies, and the generalizability of biomarkers to different types of AKI as well as the incremental prognostic value over traditional clinical variables needs to be determined.
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PMID:Biomarkers for the diagnosis and risk stratification of acute kidney injury: a systematic review. 1903 5

Acute kidney injury (AKI) is associated with high morbidity and mortality. The lack of sensitive and specific injury biomarkers has greatly impeded the development of therapeutic strategies to improve outcomes of AKI.The unique objective of this study was to evaluate the diagnostic performance of nine urinary biomarkers of AKI-kidney injury molecule-1 (KIM-1), neutrophil gelatinase associated lipocalin (NGAL), interleukin-18 (IL-18), hepatocyte growth factor (HGF), cystatin C (Cys), N-acetyl-beta-D-glucosaminidase (NAG), vascular endothelial growth factor (VEGF), chemokine interferon-inducible protein 10 (IP-10; CXCL10), and total protein-in a cross-sectional comparison of 204 patients with or without AKI.Median urinary concentrations of each biomarker were significantly higher in patients with AKI than in those without AKI (p < 0.001). The area under the receiver operating characteristics curve (AUC-ROC) for the combination of biomarkers using a logic regression model [risk score of 2.93*(NGAL > 5.72 and HGF > 0.17) + 2.93*(PROTEIN > 0.22) -2*(KIM < 0.58)] was greater (0.94) than individual biomarker AUC-ROCs. Age-adjusted levels of urinary KIM-1, NAG, HGF, VEGF, and total protein were significantly higher in patients who died or required renal replacement therapy (RRT) when compared to those who survived and did not require RRT.Our results demonstrate the comparative value of multiple biomarkers in the diagnosis and prognosis of AKI.
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PMID:Urinary biomarkers for sensitive and specific detection of acute kidney injury in humans. 1921 47


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