PubMed Health⌕ Search

Biomedical subjects

A Mutti

Publications and source records attributed to A Mutti.

At least 55 records · Page 3Linked to original sources

Microdialysis as a tool to assess interstitial norepinephrine levels in adipose tissue of spontaneously hypertensive rats.

The microdialysis technique was applied to the study of norepinephrine (NE) metabolism in white adipose tissue of spontaneously hypertensive (SHR, n = 6) and normotensive Wistar-Kyoto (WKY, n = 6) rats. Mean concentrations of interstitial NE were much higher in SHR as compared to WKY (mean +/- SEM: 980.9 +/- 125.6 pg/ml vs 520.7 +/- 96.1 pg/ml; p = 0.01) over the 180 min experimental period. These results are consistent with the hypothesis that sustained outflow from nerve endings of the peripheral sympathetic system may play a role in the maintenance of arterial hypertension. Owing to its low invasiveness, the microdialysis technique allows to continuously monitor NE extracellular levels in conscious and freely-moving animals.

Adipose Tissue↗

Protracted high-dose interferon gamma therapy for chronic experimental nephropathy.

This study focused on the utility of interferon gamma (IFN gamma) as an anti-fibrotic drug in renal experimental fibrosis; the nephropathy was induced by two doses of Adriamycin (ADR) in 20 Sprague Dawley rats, 10 of which were randomly assigned to receive IFN gamma (45,000 UI) on alternate day for 16 weeks. At the end of the follow up, ADR rats treated with IFN gamma developed massive proteinuria, slight renal insufficiency, and presented diffuse glomerulosclerosis, tubulo interstitial infiltration and fibrosis. No difference was found in the composition of tubulo-interstitial infiltrates, mainly consisting in CD4+T lymphocytes with a minor component of CD8+T cells, in comparison with rats treated with ADR alone. These observations demonstrate the inefficacy of a protracted high-dose treatment with IFN gamma in chronic experimental nephropathy with interstitial fibrosis.

Animals↗

Flumazenil effects on growth hormone response to gamma-hydroxybutyric acid.

Gamma-hydroxybutyric acid (GHBA) has been recently introduced for alcohol detoxication but few data are available concerning the central mechanism of action of this gamma-aminobutyric acid (GABA) catabolite. GHBA ability to stimulate growth hormone (GH) and prolactin (PRL) secretion has been reported: the involvement of GABA, dopamine or serotonin systems acting on pituitary hormones has been hypothesized. In the present study we investigated GH and PRL responses to GHBA with or without flumazenil (a benzodiazepine receptor antagonist) i.v. pretreatment. Our study included nine male healthy volunteers (aged 23.2 +/- 2.5 years) who were submitted to three tests in random order: (1) oral GHB administration; (2) oral GHBA and i.v. flumazenil administration; (3) oral placebo and i.v. saline administration. Blood samples for GH and PRL assays were collected during the three tests at -15, 0, 15, 30, 45, 60 and 90 min. GHBA induced a significant increase in GH plasma levels; flumazenil pretreatment antagonized GHBA action on GH secretion. No changes were obtained with placebo and saline administration. A subpopulation of GABA receptors or GHBA-specific receptors seems to be involved in GHBA action. The benzodiazepine receptor antagonist flumazenil was able to influence the sensitivity and the neuroendocrine consequences of GHBA binding site stimulation.

Administration, Oral↗

Alpha-1- and 2-adrenoceptor subsensitivity in siblings of opioid addicts with personality disorders and depression.

Noradrenergic receptor sensitivity of 16 healthy male siblings of heroin addicts and of 8 age and sex-matched controls was examined by administering a clonidine stimulation test and by measuring the resulting growth hormone (GH) (alpha-2-adrenoceptors) and beta-endorphin (beta-endorphin) (alpha-1-adrenoceptors) responses. Siblings were divided into two groups: A = siblings of heroin addicts with personality disorders and high aggressivity and B = siblings of heroin addicts without mental disorders. The GH and beta-endorphin responses to clonidine were blunted in group A subjects compared with controls and normal in group B.

Adult↗

Urinary N-acetyl-beta-D-glucosaminidase activity in workers exposed to inorganic lead.

Urinary N-acetyl-beta-D-glucosaminidase (NAG) had been shown to be a useful early marker of renal injury. In workers exposed to lead it seems to be the only early marker but the dose response and dose effect relations are weak. Furthermore, the significance and underlying mechanism of increased urinary NAG activity is far from clear. By studying the isoenzyme profiles of urinary NAG, the significance and underlying mechanism may be further clarified. The heat labile (NAG-A) and heat stable (NAG-B) isoenzyme profiles of 128 workers exposed to lead from a lead stabiliser factory were analysed. NAG activity was expressed as total NAG, NAG-A, and NAG-B activity as well as ratios (NAG-B/total NAG and NAG-B/NAG-A). Exposure indices included the recent concentration of blood lead (BPb), a cumulative blood lead index (TBPb), and the recent change in concentration of blood lead (CBPb). The NAG indices correlated best with CBPb. Nearly 50% of the variation in NAG-B activity could be explained by the combination of all three exposure indices but only the CBPb was highly significant. When these exposure indices were entered separately into the regression equation, CBPb accounted for 36.3% of the variation in NAG-B activity, 5.7% was accounted for by TBPb and 2.7% by BPb. There was also no dose-effect or dose-response relation between the NAG variables and BPb or TBPb groups. With CBPb, there were dose-effect and dose-response relations. With CBPb, there was an increase in NAG variables in the group with more than 25% increase in blood lead over the past six months. The increase in NAG activity in this study is likely to be due to a recent increase in concentration of blood lead and hence presumably a recent rise in renal burden of inorganic lead. This suggests that the increase in urinary NAG activity is a form of acute response to a sharp increase in renal burden of lead, rather than to a cumulative dose. Heat stable NAG is part of the lysosomal membrane and is present in the urine when there is breakdown of lysosomes. Our data therefore contradict suggestions that the increase in urinary NAG activity is due to exocytosis.

Adult↗

Renal effects of nifedipine and captopril in patients with essential hypertension and reduced renal reserve.

In this study we investigated the short-term effects of calcium channel blockers and angiotensin-converting enzyme inhibitors on renal hemodynamics and the urinary excretion of proteins with different relative mass in subjects with mild to moderate essential hypertension and apparently normal glomerular filtration rate but reduced renal functional reserve. Sixteen subjects underwent the following four treatments: (1) low-protein meal (0.2 g protein/kg body wt), (2) high-protein meal (1.3 g protein/kg body wt), (3) high-protein meal plus oral nifedipine (20 mg), and (4) high-protein meal plus oral captopril (50 mg). Two urine samples were obtained after meals. Blood samples were drawn at the midpoint of each 120-minute urine collection period. Urine and serum were tested for total protein, immunoglobulin G, albumin, alpha 1-microglobulin, retinol binding protein, and beta 2-microglobulin. Glomerular filtration rate and renal plasma flow were assessed by iothalamate and p-aminohippuric clearance, respectively. Compared with the high-protein meal alone, nifedipine elicited a clear-cut increase in the urinary excretion of total protein (+60%, P < .01), immunoglobulin G (+58%, P < .01), albumin (+25%, P < .05), retinol binding protein (+47%, P < .05), and beta 2-microglobulin (+52%, P < .05); captopril decreased the urinary excretion rate of immunoglobulin G (-26%, P < .05), albumin (-22%, P < .05), and beta 2-microglobulin (-34%, P < .05). The ratio between the clearances of immunoglobulin G and albumin was higher after nifedipine (+21%, P < .01) and unchanged after captopril (-9%, P = NS) compared with the high-protein meal alone.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Nephron target sites in chronic exposure to lead.

With established urinary markers of kidney integrity the early renal effects of lead have previously been considered to be mainly tubular or tubulointerstitial. In a cross-sectional study on 81 male lead-exposed workers and 45 age-matched controls (median blood lead concentrations 2.03 and 0.34 mumol/l respectively) not only well-established but also new urinary markers of renal integrity preferentially or exclusively located along the different nephron segments were analysed. Markers related to the glomerulus were 6-keto-prostaglandin 1 alpha, thromboxane B2, mainly produced in the glomerulus, and the extracellular matrix protein fibronectin. Markers of the proximal tubule were the brush-border antigens BBA, BB50, and HF5 and the intestinal alkaline phosphatase. Prostaglandin E2 and F2 alpha, preferentially synthesized in the collecting duct and medullary interstitial cells, served as markers of these more distal nephron segments. In contrast to previous studies on the early phase of lead nephrotoxicity, not only tubular but also glomerular involvement could be shown in the study presented here by increases in the median values of 6-keto-prostaglandin 1 alpha and decreases in fibronectin. The proximal tubular markers intestinal alkaline phosphatase and BBA confirmed that this particular segment of the nephron is affected by lead. Effects on the collecting tubule or medullary interstitial cells could also be observed. It is concluded that lead affects both the glomerulus and the tubular apparatus and that combinations of new and established markers could be valuable for a better definition and early detection of lead nephropathy.

Adult↗

Urinary excretion of tubular brush-border antigens among lead exposed workers.

The brush-border of the human renal proximal tubule is extremely sensitive to toxic, ischaemic and inflammatory insults. A monoclonal antibody to a brush-border antigen (BB-50) had been shown to identify increased urinary excretion of BB-50 (UBB-50) among workers exposed to heavy metals and hydrocarbons as well as patients on cisplatin and patients with early diabetic nephropathy. This study describes the use of this antibody to quantify UBB-50 among lead exposed workers. The study population consisted of 154 workers from a factory manufacturing lead stabilisers. Of these 91 workers had less than 6 months of exposure and formed the control group. The remaining 63 workers with a median exposure of 3 years formed the exposed group. Several blood lead (PbB) indices were used as exposure indices. These include the most recent PbB (PbBrec), a time-integrated blood lead index (PbBint), an absolute change in recent PbB (PbB delta), a relative change in PbB (PbB delta%), as well as the number of times the PbB measurements were above 40, 50 and 60 micrograms/100 ml (PbB40, PbB50, PbB60 respectively). Urinary levels of beta-2-microglobulin (U beta 2m), alpha-1-microglobulin (U alpha 1m), retinol binding protein (URBP), albumin (UAlb), activity of total N-acetyl-D-beta-glucosaminidase (NAG-T) and heat stable NAG isoenzyme (NAG-B) were measured along with the serum beta 2m (S beta 2m). Through stepwise analysis, UBB-50 was best correlated with PbBint, PbB40 and PbB delta% (r2, 0.271). Of these, PbBint and PbB40 had about twice the contribution to the variation in UBB-50.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Multiple interferences on catecholamine metabolism by tetrahydroisoquinolines (TIQs).

TIQs are thought to be formed by condensation between dopamine and certain metabolites of ethanol, organic solvents and anesthetic gases. Described here are experiments aimed at evaluating TIQs interference with catecholamine synthesis. Rat adrenal pheochromocytoma (PC12) cell lysates were exposed to benzyl-TIQ and phenyl-TIQ. The activities of tyrosine hydroxylase (TH) and dopamine beta-hydroxylase (DBH) were measured by HPLC-based methods following exposure to variable concentrations of TIQs. The effects of TIQs on DBH activity were also assessed in human serum. Dixon plot analyses revealed that TIQs act on TH as competitive inhibitors with different affinity. Ki for benzyl- and phenyl-TIQ were 5 and 3 microM respectively. DBH activity in serum exposed to benzyl- and phenyl-TIQ ranging from 0.2 to 20 microM rose respectively by 12.5% to 58% for benzyl- and by 7.8% to 26% for phenyl-TIQ. Such TIQs interferences with catecholamine metabolism seem to account for dopamine (DA) depletion observed in parallel in vitro experiments on PC12 cells. The dose-dependent inhibition of TH and the increased activity of DBH together with the relatively low effective doses of TIQs suggest this mechanism as a possible explanation of the selective toxicity of styrene and other solvents to dopaminergic systems observed in rabbits following experimental exposure and suspected to occur in occupationally-exposed workers.

Animals↗

The renin-aldosterone system and renal function in kidney transplantation.

Six renal transplant recipients, six uninephrectomized patients and six normal subjects were subjected to the physiological manoeuvre of head-out water immersion (WI), in order to compare changes in electrolyte and humoral responses known to occur in healthy individuals with those arising as a result of renal denervation in the transplant recipients. The denervated, transplanted kidneys of the six patients were able to maintain a sodium excretory response to WI identical to that obtained in the controls (from 121 +/- 18 to 236 +/- 29 mumol/min, p < 0.005 vs 113 +/- 17 to 213 +/- 18 mumol/min, p < 0.005, respectively). Kidney transplant patients were also characterized by a preserved suppression of renin-aldosterone system (from 1.2 +/- 0.2 to 0.5 +/- 0.1 ng/ml/h, p < 0.03 and 12 +/- 1.0 to 7.0 +/- 1.0 ng/dl, p < 0.005, respectively) and stimulation of atrial natriuretic peptide (from 84 +/- 15 to 153 +/- 25 pg/ml, p < 0.05) to central hypervolemia by water immersion. The present study, while confirming the ability of the denervated kidney to handle sodium normally, also suggests that atrial natriuretic peptide could assume a crucial role in regulating renin secretion.

Adult↗

Significance of albuminuria in the follow-up of acute poststreptococcal glomerulonephritis.

The present study was aimed at assessing the diagnostic value of urinary albumin (uA) excretion rate in the long-term follow-up of patients suffering from acute post-streptococcal glomerulonephritis (APSGN). 26 patients, who had presented primarily with nephritic syndrome and showing increased uA without a concomitant rise in total proteinuria (uTP) were followed-up for 131 months on average (range 36-288). At the last check, 14 patients did not show urinary abnormalities, 9 had a persistent increase in uA, 1 increased uTP and 2 renal insufficiency. Urinary and clinical signs of the disease were not seen during observation periods prolonged for 79 months on average (range 20-156) after normalization of uA. No pathological findings were remarked in biopsy specimens obtained in 3 patients when uA was normalized; in contrast, when both uTP and uA (12 cases) or when isolated uA (14 cases) were increased a pattern of diffuse mesangial proliferative glomerulonephritis was constantly observed. These results indicate that the abnormal uA excretion rate during long-term follow-up of APSGN allows to identify a subset of patients with persistent renal disease; conversely, the occurrence of normal uA seems to point to a good diagnostic and prognostic significance.

Acute Disease↗

On the need of a sampling strategy in biological monitoring: the example of hexane exposure.

Ambient and biological monitoring of hexane exposure were repeatedly carried out in 14 female shoe makers. Airborne hexane (Ci-H) was measured in 4-h samples collected by a diffusive method. Urinary spot samples were collected before, during (at noon), and at the end of a work shift. 2,5-Hexanedione (2,5HD) in urine collected at noon was poorly related to morning Ci-H. End-of-shift 2,5HD were also poorly related to afternoon air samples. The correlation was still relatively low when end-of-shift 2,5HD was related to 8-h TWA Ci-H (r = 0.44; P < 0.01 on a linear scale, and r = 0.58, P < 0.01 on a log-log scale). End-of-shift 2,5HD levels estimated on the basis of pre-shift values using a mathematical model were much higher (2.3 times on average) than those experimentally measured during the study period. Owing to its relatively long half-time, 2,5HD seems to be influenced not only by current exposure, but also by hexane absorbed during the day(s) preceding sampling. The lack of a sampling strategy may account not only for inconsistencies between environmental and biological data, but also for a possible misuse of biological monitoring when utilized for risk assessment. Despite sometimes poor correlations with Ci-H, 2,5HD may still be preferred to other indicators as a marker of effective internal dose. A sampling strategy should ensure that measured values are representative of the individual risk for adverse effects.

Adult↗

Markers of early renal changes induced by industrial pollutants. I. Application to workers exposed to mercury vapour.

Several markers of renal changes have been measured in a cohort of 50 workers exposed to elemental mercury (Hg) and in 50 control workers. After application of selection criteria 44 exposed and 49 control workers were retained for the final statistical analysis. Exposed workers excreted on average 22 micrograms Hg/g creatinine and their mean duration of exposure was 11 years. Three types of renal markers were studied--namely, functional markers (creatinine and beta 2-microglobulin in serum, urinary proteins of low or high molecular weight); cytotoxicity markers (tubular antigens and enzymes in urine), and biochemical markers (eicosanoids, thromboxane, fibronectin, kallikrein, sialic acid, glycosaminoglycans in urine, red blood cell membrane negative charges). Several bloodborne indicators of polyclonal activation were also measured to test the hypothesis that an immune mechanism might be involved in the renal toxicity of elemental Hg. The main renal changes associated with exposure to Hg were indicative of tubular cytotoxicity (increased leakage of tubular antigens and enzymes in urine) and biochemical alterations (decreased urinary excretion of some eicosanoids and glycosaminoglycans and lowering of urinary pH). The concentrations of anti-DNA antibodies and total immunoglobulin E in serum were also positively associated with the concentration of Hg in urine and in blood respectively. The renal effects were mainly found in workers excreting more than 50 micrograms Hg/g creatinine, which corroborates our previous estimate of the biological threshold of Hg in urine. As these effects, however, were unrelated to the duration of exposure and not accompanied by functional changes (for example, microproteinuria), they may not necessarily represent clinically significant alterations of renal function.

Adult↗

Markers of early renal changes induced by industrial pollutants. II. Application to workers exposed to lead.

The present study has been carried out in the framework of a collaborative research project on the development of new markers of nephrotoxicity. A battery of more than 20 potential indicators of renal changes has been applied to 50 workers exposed to lead (Pb) and 50 control subjects. After application of selection criteria 41 exposed and 41 control workers were eventually retained for the final statistical analysis. The average blood Pb concentration of exposed workers was 480 micrograms/l and their mean duration of exposure was 14 years. The battery of tests included parameters capable of detecting functional deficits (for example, urinary proteins of low or high molecular weight), biochemical alterations (for example, urinary eicosanoids, glycosaminoglycans, sialic acid) or cell damage (for example, urinary tubular antigens or enzymes) at different sites of the nephron or the kidney. The most outstanding effect found in workers exposed to Pb was an interference with the renal synthesis of eicosanoids, resulting in lower urinary excretion of 6-keto-PGF1 alpha and an enhanced excretion of thromboxane (TXB2). The health significance of these biochemical alterations, detectable at low exposure to Pb is unknown. As they were not associated with any sign of renal dysfunction, they may represent reversible biochemical effects or only contribute to the degradation of the renal function from the onset of clinical Pb nephropathy. The urinary excretion of some tubular antigens was also positively associated with duration of exposure to Pb. Another effect of Pb that might deserve further study is a significant increase in urinary sialic acid concentration.

Adult↗

Markers of early renal changes induced by industrial pollutants. III. Application to workers exposed to cadmium.

Cadmium (Cd) was the third heavy metal investigated in the European collaborative research project on the development and validation of new markers of nephrotoxicity. Fifty workers exposed to Cd and 50 control workers were examined. After application of selection criteria 37 workers (mean age 43) exposed to Cd for an average of 11.3 years; and 43 age matched referents were retained for final analysis. The average concentrations of Cd in blood (Cd-B) and urine (Cd-U) of exposed workers were 5.5 micrograms Cd/l and 5.4 micrograms Cd/g creatinine respectively. By contrast with lead and mercury, Cd had a broad spectrum of effects on the kidney, producing significant alterations in amounts of almost all potential indicators of nephrotoxicity that were measured in urine--namely, low and high molecular weight proteins, kidney derived antigens or enzymes, prostanoids, and various other biochemical indices such as glycosaminoglycans and sialic acid. An increase in beta 2-microglobulin and a decrease of sialic acid concentration were found in serum. Dose-effect/response relations could be established between most of these markers and Cd-U or Cd-B. The thresholds of Cd-U associated with a significantly higher probability of change in these indicators were estimated by logistic regression analysis. Three main groups of thresholds could be identified: one around 2 micrograms Cd/g creatinine mainly associated with biochemical alterations, a second around 4 micrograms Cd/g creatinine for high molecular weight proteins and some tubular antigens or enzymes, and a third one around 10 micrograms Cd/g creatinine for low molecular weight proteins and other indicators. The recent recommendation by the American Conference of Governmental Industrial Hygienists (ACGIH) of 5 micrograms Cd/g creatinine in urine as the biological exposure limit for occupational exposure to Cd appears thus justified, although for most of the effects occurring around this threshold the link with the subsequent development of overt Cd nephropathy is not established. In that respect, the very early interference with production of some prostanoids (threshold 2 micrograms Cd/g creatinine) deserves further investigation; although this effect might contribute to protect the filtration capacity of the kidneys, it might also play a part in the toxicity of Cd on bone.

Adult↗

Progression of chronic adriamycin nephropathy in leukopenic rats.

In this study, we examined the progression of chronic Adriamycin (ADR) nephropathy in mild leukopenic rats and tried to define the possible relationship between tubulointerstitial lesions and proteinuria in this model. Chronic ADR nephropathy was induced by 2 doses of ADR (2 mg/kg) in 32 Sprague-Dawley rats. Eight of these were randomly assigned to cyclophosphamide treatment (50 mg/kg), given intravenously every week, to keep the blood leukocyte count constantly lower than 5,000/mm3. Serial parameters were followed for 16 weeks including clearance studies with iothalamate and p-aminohippurate and the analysis of urinary protein composition by: (a) an enzymatic assay for beta-glucosidase; (b) specific ELISA using antibodies against rat albumin and RBP, and finally (c) two-dimensional electrophoresis. ADR-treated rats rapidly (within 2 weeks) developed massive proteinuria which was in constant increment throughout the disease evolution in each single component (i.e., high and low molecular weight proteinuria, enzymuria) and developed renal insufficiency. At week 8, in ADR rats, glomerulosclerosis was mild whereas tubulointerstitial infiltrates predominated, characterized mainly by CD4+ T lymphocytes while CD8+ T lymphocytes were inconspicuous, and macrophages were only occasionally present. All such alterations had worsened after 16 weeks when the tubulointerstitial infiltration was associated with marked interstitial fibrosis and tubular atrophy. Leukopenia induced by cyclophosphamide was in all cases associated with a net amelioration of renal histopathology reducing tubulointerstitial infiltrates (by 40%) and glomerulosclerosis (33 +/- 5 vs. 52.2 +/- 7.5% sclerotic glomeruli) and also ameliorated glomerular filtration indexes (Cl 780 +/- 40 vs. 447 +/- 66 microliters/min/kg-1). In spite of these differences, albuminuria and urinary-retinol-binding protein were comparable at weeks 4, 8 and 16 in this group, while urinary beta-glucosidase was decreased at week 16 (p < 0.001) in cyclophosphamide-treated rats. No other qualitative changes in urinary proteins were detectable by 2-dimensional electrophoresis during the disease development. We concluded that chronic leukopenia prevents interstitial cellular infiltration by lymphocytes, interstitial fibrosis and slows down the decline of renal function typical of chronic ADR nephropathy. Glomerulosclerosis is also reduced in leukopenic rats without any appreciable changes in the urinary excretion of high molecular weight proteins deriving from the glomerulus. Finally, the improvement in tubulointerstitial alteration is associated with the reduction in urinary lysosomal enzymes. Tubulointerstitial alterations are implicated with a prominent role in the progression towards renal failure in chronic ADR glomerulopathy.

Animals↗