Search PubMed⌕ Search

Biomedical subjects

L Rossi

Publications and source records attributed to L Rossi.

At least 325 records · Page 18Linked to original sources

[The nephrotoxicity of ionic and nonionic contrast media in urography. An evaluation with immunoenzyme technics and monoclonal antibodies].

The nephrotoxicity of ionic and nonionic contrast media (cm) was evaluated in 52 patients undergoing pyelography. The contrast media were i.v. injected in 30'. Urine samples were collected before, 2 and 48 hours after the injection. Urinary albumin (alb) and retinol binding protein (RBP) excretion was evaluated by immunoenzymatic methods; alb and RBP were considered as indicators of glomerular permeability and of tubular reabsorption, respectively. The urinary excretion of brush-border antigen of proximal tubule (BBA) was also measured, as an indicator of microtissue damage, by a sensitive double-antibody ELISA with monoclonal antibodies. The results demonstrate ionic cm to have greater functional effects than nonionic ones, as suggested by the increased urinary excretion of both alb and RBP. However, tubular damage seemed to be more severe with nonionic agents, as suggested by BBA excretion. Although toxic damage had little significance for the patients' health, long-term effects are not to be excluded.

Adult↗

Ex novo episodes of acute glomerulonephritis and Guillain-Barré syndrome: a case report.

A nine-year-old girl had several ex novo episodes of acute glomerulonephritis with clinical evidence of rapid progression in two of them. Guillain-Barré syndrome was diagnosed 10 days after the second episode of acute glomerulonephritis. Two renal biopsies (performed at about a four-year interval) gave morphological evidence of new episodes of acute glomerulonephritis. To our knowledge this is the first report of an association between ex novo episodes of acute glomerulonephritis and Guillain-Barré syndrome.

Acute Disease↗

[Several properties of human red cells subjected to hypotonic dialysis and resealing to use them as vehicles for bioreactors].

The morphological and metabolic properties of red blood cells submitted to the procedure of loading by hypotonic hemolysis and isotonic resealing were compared with the controls. No appreciable differences could be detected concerning glycolytic ability, the amount of glucose metabolized in the hexose monophosphate pathway and the concentrations of glycolytic intermediates of ATP and of 2,3-DPG. Instead the concentration of reduced glutathione and the MCV were slightly reduced. These manipulated erythrocytes can be used as potential bioreactors or as carriers of exogenous substances.

Drug Carriers↗

Improved stability of 2,3-bisphosphoglycerate during storage of hexokinase-overloaded erythrocytes.

Human red blood cells were overloaded with homogeneous human hexokinase using a procedure of encapsulation based on hypotonic hemolysis and isotonic resealing and reannealing to achieve a final activity that was 15 times higher than that in control cells. Storage for 5 weeks at 4 degrees C of hexokinase-overloaded erythrocytes shows that these cells undergo small K+ leakage and mean cell volume increase compared with control cells. Furthermore, after these 5 weeks of storage the 2,3-bisphosphoglycerate content was normal while the ATP concentration was slightly reduced. These results and other properties suggest that encapsulation of key glycolytic enzymes in erythrocytes can provide a new way to maintain in vitro functionally active red blood cells for at least 5 weeks.

2,3-Diphosphoglycerate↗

On the pathogenesis of angina pectoris and its silence.

Recent interest in silent angina deals in a sense with a double unknown since the pathogenesis of angina pectoris remains unexplained. In this report, we present evidence from two human postmortem studies and from experiments conducted in eleven awake dogs which supports a hypothesis that angina pectoris may be mediated by an intracardiac chemoreceptor receiving its primary blood supply from the proximal coronary circulation. The clinical events and the postmortem findings in both human subjects supported the hypothesis. The somatic responses observed in the awake dogs resembled those of humans with angina pectoris. Because the cardiogenic hypertensive chemoreflex in dogs is maximally elicited by serotonin normally carried by the platelets and released during their aggregation, angina pectoris as well as numerous other clinical events observed during acute myocardial ischemic episodes could be similarly explained as consequences of the activation of a coronary chemoreceptor in man. Thus, at least some and possibly most examples of angina pectoris may be mediated via the coronary chemoreceptor and vagal afferents to the brain, and injury or destruction of this chemoreceptor could interdict the perception of anginal pain.

Adult↗

Improved metabolic properties of hexokinase-overloaded human erythrocytes.

Human erythrocytes were loaded with homogeneous hexokinase purified from human placenta (an enzyme species apparently identical to the erythrocyte enzyme), using a procedure of encapsulation based on hypotonic hemolysis, isotonic resealing and reannealing. The hexokinase-overloaded erythrocytes contained 4.77 +/- 0.75 IU of hexokinase activity per ml of packed erythrocytes, a value 15-times higher than that of corresponding unloaded or native red cells. The hexokinase-loaded erythrocytes were found to metabolize twice the amount of glucose consumed by the unloaded cells through a nearly doubled glycolytic activity, while the activity of the hexose monophosphate shunt pathway was unmodified. Estimates of glycolytic intermediates showed increased levels of most metabolites with respect to the unloaded erythrocytes, while the intracellular concentrations of adenine nucleotides and 2,3-bisphosphoglycerate were unaffected by entrapment of hexokinase. The new steady-state condition characterized by improved glycolytic function was demonstrated to be directly related to enhanced levels of hexokinase activity and not to the use of a rejuvenation solution during the procedure of entrapment. These results are consistent with suggestions by several investigators that glucose metabolism in human erythrocytes is regulated by hexokinase, and they open new perspectives for manipulating erythrocytes with the ultimate aim of improving their survival under different storage conditions.

Adenine Nucleotides↗

Role of hexokinase in the regulation of erythrocyte hexose monophosphate pathway under oxidative stress.

Human erythrocytes overloaded with homogeneous human hexokinase (up to 15-times the activity of normal RBC) show almost unmodified rates of glucose metabolized in the HMP, however hexokinase-loaded RBC are able to metabolize 1.5 fold more glucose than controls through the HMP when an oxidizing agent like methylene blue (5 to 100 microM) is present. Similarly, RBC loaded with inactivating anti-hexokinase IgG (12 +/- 3% residual hexokinase activity) show HMP rates unchanged under resting conditions, but only 12% of the HMP rate found in normal controls under oxidative stress. These data provide clear evidence that the HMP rate under conditions of oxidative stress is controlled by hexokinase activity and suggest that RBC from patients with hexokinase deficiency are not able to increase the HMP rate under oxidative stress like erythrocytes from individuals with G6PD deficiency.

Erythrocytes↗

Skin papillomas and other neoplasms induced by murine sarcoma viruses in mid-gestation-infected mice.

During extensive investigations on the effects of oncogenic retroviruses in developing rodents, the ability of MSV to mount a neoplastic response in CD-I Swiss mouse embryos was determined. By infecting the animals directly in utero at selected stages of post-implantation development, we detected a peculiar reaction of the embryonal tissues to certain MSVs: when mice were exposed to KiMSV at mid-gestation, the newborn developed characteristic tumors, in addition to mesenchymal cell sarcomas, not induced in fetuses and neonates. These included pulmonary alveologenic tumors and skin papillomas and were seen in mice infected on days 8 and 10 of pregnancy, roughly corresponding to 15 and 35 somites, respectively. To determine the specificity of these events, other 8- and 10-day-old embryos were infected with retroviruses of the same or different families. HaMSV and MoMSV also induced mesenchymomas and a low incidence of skin papillomas (10% and 15% compared to 40% in the KiMSV group) but not pulmonary tumors. In contrast, FBRMSV was inactive in this respect and only osteogenic sarcomas were detected in the offspring. Infecting the embryos on day 7 of pregnancy produced no tumors. Later infections (in 15-day-old fetuses and neonates) mainly induced mesenchymal sarcomas. No congenital malformations were detected in the embryos exposed to MSV during organogenesis, although some abortions and resorptions were seen.

Animals↗

Nitrofurantoin-mediated oxidative stress cytotoxicity in isolated rat hepatocytes.

Freshly isolated rat hepatocytes were used to study the mechanism(s) of toxicity of the antimicrobial drug nitrofurantoin. This 5-nitrofuran derivative stimulated hepatocyte oxygen uptake in the presence of the mitochondrial respiration inhibitors KCN or antimycin A. This could indicate the formation of O2- and H2O2, following intracellular nitrofurantoin reduction. Addition of nitrofurantoin to suspensions of isolated rat hepatocytes produced a dose- and time-dependent decrease of cell viability. H2O2 probably plays a significant role in the cytotoxic effects of nitrofurantoin as the catalase inhibitors azide or aminotriazole markedly enhanced cytotoxicity. The loss of cell viability was preceded by glutathione (GSH) depletion and a concomitant and nearly stoichiometric formation of oxidised glutathione (GSSG) that did not occur in hepatocytes lacking glutathione peroxidase activity isolated from rats fed a low-selenium diet. This indicates that H2O2 and the seleno-enzyme glutathione peroxidase are responsible for GSH oxidation. Furthermore, addition of nitrofurantoin to isolated rat hepatocytes produced a reversible inactivation of hepatocyte glutathione reductase activity and explains the maintenance of high GSSG levels. The compromised hepatocytes were also highly susceptible to H2O2. The hepatocyte toxicity of nitrofurantoin may, therefore, be attributed to oxidative stress caused by redox-cycling mediated oxygen activation.

Animals↗

Right ventricular cardiomyopathy and sudden death in young people.

From 1979 to 1986, we conducted postmortem studies of 60 persons under 35 years of age who had died suddenly in the Veneto Region of northeastern Italy. Unexpectedly, we found that 12 subjects--7 males and 5 females ranging in age from 13 to 30 years--had morphologic features of right ventricular cardiomyopathy. This disorder had not been diagnosed or suspected before the subjects died. In five cases, sudden death was the first sign of disease; the remaining seven subjects had a history of palpitation, syncopal episodes, or both, and in five of those seven, ventricular arrhythmias had previously been recorded on electrocardiographic examination. Ten of the subjects had died during exertion. At autopsy, the subjects' heart weights were normal or moderately increased. Two main histologic patterns were identified--a lipomatous transformation or a fibrolipomatous transformation of the right ventricular free wall (6 cases each); in all cases, the left ventricle was substantially spared. Signs of myocardial degeneration and necrosis, with or without inflammatory infiltrates, were occasionally observed. These findings indicate that right ventricular cardiomyopathy, the cause of which is still unknown, may be more frequent than previously thought. At least in this area of Italy, it may represent an important cause of sudden death among young people.

Adolescent↗

Effect of phenylhydrazine on red blood cell metabolism.

In addition to the well known effect of phenylhydrazine on red blood cells (methaemoglobin and Heinz body formation, autologous IgG binding, lipid peroxidation, etc.) an increased glucose utilization was observed. Measurement of 14CO2 formation from [1-14C]-glucose showed a maximum value at 2mM phenylhydrazine followed by a progressive inhibition on increasing the drug concentration to 16 mM. Concomitantly we found a reduction in the reduced glutathione concentration but not a corresponding increase in the level of oxidized glutathione. Phenylhydrazine also causes ATP depletion. The ATP is in part dephosphorylated to ADP and AMP and in part converted to inosine monophosphate and hypoxanthine. Measurement of the cell content of reduced and oxidized pyridine nucleotides was also performed and showed a progressive increase in the reduced forms of these coenzymes. Thus phenylhydrazine promotes cellular ATP depletion followed by adenine nucleotide catabolism that is not efficiently counteracted by an increase in glucose utilization. The relevance of these data to the mechanism of phenylhydrazine-induced anemia is discussed.

Adenine Nucleotides↗

Angiographic morphology and response to therapy in unstable angina.

The coronary anatomy of 69 patients with unstable angina, subgrouped according to response to medical therapy, was investigated. All patients received oral treatment with nitrates, calcium antagonists, and beta-blocking agents. When combined oral treatment was not effective, an intravenous infusion of nitrates (10-100 micrograms/min) was subsequently administered. Coronary arteriography was performed within hours (14 +/- 9 h) from the last episode of chest pain in 28 patients refractory to medical treatment, while in 41 patients who became asymptomatic during medical therapy, angiography was performed after an observation period of several days (8 +/- 6 days). On angiography, the nonresponder group was characterized by a prevalence of eccentric and multiple lesions, and by a 46% incidence of thrombi (p less than 0.001). Recurrent symptoms requiring emergency bypass operation were common in this group. In patients responsive to medical treatment, a high percentage of concentric lesions (37%) and totally occluded (34%) coronary arteries was found (p less than 0.05). No infarcts and low rate of recurrent angina were noted in these patients during hospitalization. In conclusion, the finding of intracoronary thrombotic material and eccentric or multiple lesions can be an accurate markers of the active phase of the disease, while "silent" occlusion of the involved vessel may be accompanied by relief of symptoms during medical therapy.

Adrenergic beta-Antagonists↗

Effect of age on some properties of mice erythrocytes.

The hematological parameters of young (2-month-old) and old (2-year-old) mice were compared. No differences could be detected with the exception of an increased percentage of reticulocytes in the old animals suggesting that anemia in senescent mice does not occur. Red blood cell mean half-life in old mice was 8 +/- 0.8 days compared to 12 +/- 1 days in young mice. This reduced survival of red blood cell is not due to a different rate of cell phagocytosis in the reticulohistiocytic system of young and old animals since erythrocytes from young mice have the same mean half-life when injected both in young and old animals and vice versa. Thus, the old mice have a reduced red cell life-span but the same hematocrit of the young, suggesting that old animals possess a chronologically younger population of erythrocytes than do young animals. This has been confirmed by measuring the specific activities of some red blood cell age-dependent enzymes (hexokinase, glucose-6-phosphate dehydrogenase, pyruvate kinase) that were found to be higher in the older animals, and by the separation of erythrocytes into different density (age) groups by Percoll/albumin density gradient centrifugation. However, the erythrocytes osmotic fragility, and the cellular contents of adenine and pyridine nucleotides, as well as the content of 2,3-diphosphoglycerate and reduced glutathione, show that circulating erythrocytes in old animals constitute an heterogeneous cell population whose properties cannot be explained on the basis of a chronologically younger erythrocyte population. Furthermore, evaluation of cell components in hemopoietic tissues have shown an increased porportion of erythroid precursor cells in old animals confirming that old mice compensate for reduced red cell survival with an increased erythropoiesis.

Aging↗

A new method to reveal the genotoxic effects of N-nitrosodimethylamine in pregnant mice.

DNA damage and repair in kidney and liver of mouse fetuses exposed to selected doses of N-nitrosodimethylamine (NDMA) (CAS No. 62.75.9) were studied using the alkaline elution technique. CD1 female mice (15 days pregnant) were treated i.p. with 2 and 10 mg/kg b.w. of NDMA; a slight increase in DNA damage was observed in their fetuses compared to untreated controls. A 2-fold higher extent of DNA damage was induced when mice were treated by intrafetal injections of a rat S9 activating fraction (S9) immediately before exposure to the same dose of NDMA by transplacental means. The DNA-strand breaks disappeared as a function of time in animals treated with NDMA alone. In contrast, a significant persistence of DNA damage was detected in the liver and lung of fetuses which were treated with S9 and NDMA in sequence. These experiments demonstrate the metabolic immaturity of unborn mice as far as the carcinogenic activation of NDMA is concerned and show the high susceptibility of fetal tissues to DNA-damaging agents. The alkaline elution applied in vivo by the transplacental route combined with the intrafetal injection of an exogenous activating microsomal fraction allow to extend our knowledge on the interaction of metabolism-dependent chemicals with fetal tissues.

Animals↗

Colonic mass movements in idiopathic chronic constipation.

As relatively little is known of human colonic motor activity either in health, or in pathological conditions, we investigated mass movements in 14 chronically constipated patients and 18 healthy volunteers. Mass movements were recorded from proximal and distal colon during 24 h (12 noon-12 noon) by a colonoscopically positioned multilumen manometric probe and low compliance infusion system. Patients and controls differed significantly in the number (mean 2.6 (0.7) v 6.1 (0.9) (SE), p = 0.02) and duration (mean 8.2 (1.6) v 14.1 (0.8) s, p = 0.04) of mass movements. The data suggest that one pathophysiological mechanism of constipation may be decreased propulsive activity. A circadian pattern, with a significant difference between day and night distribution, was documented in both groups. The patients reported decreased defecatory stimulus concomitant with the mass movements.

Adult↗