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Biomedical subjects

A Morelli

Publications and source records attributed to A Morelli.

At least 235 records · Page 13Linked to original sources

Changes in pulmonary surfactant composition following MACC chemotherapy for lung carcinoma.

Many antineoplastic drugs can derange lung structures, cause necrosis of type I pneumocytes, abnormal proliferation of type II alveolar epithelial cells, and, occasionally, accumulation of inflammatory and immune effector cells. Since type II cells secrete lung surfactant, treatment may alter surfactant composition. In 8 patients with nonresectable lung cancer, we performed bronchoalveolar lavage before and after MACC polychemotherapy (methotrexate, doxorubicin HCl, cyclophosphamide and lomustine). Before treatment, cellular composition and the phospholipid and fatty acid constituents of lavage surfactant were similar to those found in control subjects. After MACC polychemotherapy there was, in all patients, a mild decrease in the number of immune effector cells, without changes in the relative proportion of cell types. In addition, MACC therapy resulted in a significant decrease of phosphatidylcholine levels, and increased levels of phosphatidylglycerol, whereas the levels of palmitic lavage surfactant were decreased. These MACC treatment abnormalities of the phospholipid and fatty acid composition of lung surfactant may reflect preclinical pulmonary toxicity. The decrease in the numbers of bronchoalveolar cells suggests that the changes in surfactant composition may be chemically induced rather than immune mediated.

Adult↗

Favism: impairment of proteolytic systems in red blood cells.

Red blood cells (RBC) from favic patients are characterized by (a) severe oxidative damage (contributed by autoxidation of divicine and isouramil, two pyrimidine aglycones present in fava beans) and (b) greatly increased calcium levels. In vitro, both autoxidation of divicine and calcium loading produced marked alterations of proteolytic systems in intact RBC. Specifically, autoxidizing divicine inactivated procalpain, the proenzyme species of calcium-activated cytosolic neutral proteinase, or calpain. Inactivation was much greater with glucose-6-phosphate dehydrogenase (G6PD)-deficient RBC than with normal RBC. On the other hand, loading of normal and G6PD-deficient RBC with calcium resulted in conversion of procalpain to calpain and eventual autoproteolytic inactivation of calpain itself, and extensive release of acid endopeptidase activity from the membranes into the cytosol. Damaged RBC from favic patients had significantly lowered procalpain activity and an abnormal subcellular distribution of acid proteinase activity that was found mostly in the cytosol. When purified calpain was incubated with membranes from acetylphenylhydrazine (APH)-treated RBC, significant proteolysis was observed affecting mostly band 3 and hemoglobin chains, ie, the two proteins involved in the onset of aggregation of Heinz bodies. Moreover, exposure of intact RBC to 20 mmol/L APH induced depletion of procalpain activity for which the time course was inversely related to formation of Heinz bodies. These findings support the role of procalpain in protecting G6PD-deficient RBC from oxidant-induced Heinz body formation and imply that exhaustion of the procalpain-calpain system is an important step in the mechanisms of RBC damage and destruction in favism.

Calcium↗

Alterations of red blood cell proteolysis in favism.

Damaged RBC drawn from favic patients during acute hemolysis showed marked alterations in their two major proteolytic systems. Cytosolic procalpain (i.e., the proenzyme species of Ca2+-activated neutral proteinase, or calpain) had considerably lower activity than in matched RBC from asymptomatic G6PD-deficient subjects. The total RBC activity of the three acid endopeptidases that are normally membrane-bound was not reduced in favism, but its subcellular distribution was mostly cytosolic, suggesting quantitative release from membranes. Changes in procalpain activity are the result of both autoxidation of divicine and of the intracellular elevation of Ca2+ that is found in favism. Changes in acid endopeptidase activity are the consequence of perturbed Ca2+ homeostasis. Overall, the picture shows a marked impairment of the RBC proteolytic machinery that in turn may worsen cellular damage.

Calcium↗

Oxidative inactivation of the calcium-stimulated neutral proteinase from human red blood cells by divicine and intracellular protection by reduced glutathione.

Calpain, the micromolar Ca2+-requiring form of Ca2+-stimulated neutral proteinase purified from human red cells, is remarkably inactivated during autoxidation of divicine (2,6-diamino-4,5-dihydroxypyrimidine), an aglycone implicated in the pathogenesis of favism. Inactivation of purified calpain is produced, in decreasing order of efficiency, by transient, probably semiquinonic species arising from autoxidation of divicine, by the H2O2 that is formed upon autoxidation itself, and by quinonic divicine, respectively. Purified procalpain, the millimolar Ca2+-requiring form that can be converted to the fully active calpain form by a variety of mechanisms, is less susceptible than calpain itself to inactivation by the same by-products of divicine autoxidation. When intact red cells are exposed to autoxidizing divicine, procalpain undergoes a significant loss of activity. At 1 mM divicine, intracellular inactivation is observed with procalpain only, while the activity of a number of red cell enzymes is unaffected. Inactivation of procalpain is consistently greater in red cells from glucose-6-phosphate dehydrogenase-deficient subjects than in normal cells. Restoration of normal levels of glucose-6-phosphate dehydrogenase activity by means of entrapment of homogeneous human glucose-6-phosphate dehydrogenase in the deficient red cells results in normal stability of intracellular reduced glutathione; decreased susceptibility of procalpain to inactivation by autoxidizing divicine. These findings suggest that in the glucose-6-phosphate dehydrogenase-deficient red cells the procalpain-calpain system is a major target of divicine cytotoxicity.

Calpain↗

Calcium-induced alterations in the levels and subcellular distribution of proteolytic enzymes in human red blood cells.

Human red cells were treated with 100 microM Ca2+ and ionophore A 23187. This treatment induces remarkable changes in the activities of the two major proteolytic systems of red cells, i.e. Ca2+-dependent neutral proteinase and acid endopeptidases. Ca2+-dependent neutral proteinase undergoes intracellularly preliminary activation of the inactive proenzyme species, followed by eventual inactivation through self-proteolysis. Transient activation is shown by selective degradation of cytoskeletal proteins known to be targets of this enzyme system. Concomitantly, acid endopeptidase activity is substantially released from the membrane into the cytosol. Preliminary inactivation of the Ca2+-dependent neutral proteinase by exposure of Glucose 6-phosphate dehydrogenase-deficient red cells to auto-oxidizing divicine prevents alterations induced by Ca2+ loading on cytoskeletal membrane proteins, while leaving solubilization of acid endopeptidase activity unaffected. The two events, although dependent on Ca2+ loading, are therefore unrelated to each other.

Calcimycin↗

Colonic motility and gastric emptying in patients with irritable bowel syndrome. Effect of pretreatment with octylonium bromide.

This study was undertaken to evaluate (1) the colonic response to eating for a prolonged time in healthy subjects and patients with the irritable bowel syndrome (IBS); (2) the effect of octylonium bromide, a new smooth muscle relaxant acting by interfering with calcium ion mobilization, on the postprandial colonic motility; and (3) whether chronic gastric stasis could be responsible for both the dyspeptic symptoms often complained of by IBS patients and the faulty colonic response to eating. The colonic response to a 1000-kcal mixed meal in ten healthy subjects was characterized by two transient (from 0 to 60 and from 120 to 150 min postprandially, respectively) increases in colonic motor activity; ten IBS patients showed a continuous postprandial increase in colonic motor activity that was not terminated 180 min after eating. Treatment of IBS patients with octylonium bromide (80 mg, qid, per os) for 5-7 days reduced their colonic response to eating to a very short increase in colonic motor activity limited to the first 30 min. Finally, gastric emptying was not different in the two groups.

Adult↗

pH measurements in ultranarrow immobilized pH gradients.

It is possible to measure pH values in immobilized pH gradients (IPG) when the polyacrylamide matrix is made to contain an additional, carrier ampholyte-generated pH gradient. After an IPG run, 5 mm gel segments, along the separation axis, are cut and eluted in 300 microliter of 10 mM KCl and the pH read with a standard pH meter. When using ultranarrow pH gradients, larger gel segments (ca. 265 microliter) are eluted in 900 microliter of 100 mM KCl and the pH assessed with a differential pH meter. In the latter case, either internal or external standards are used as a reference, or starting point, to convert delta pH values into an actual pH curve. The reproducibility of the system is better than +/- 0.05 pH units, with a ca. 15% error over a 0.3 pH unit span. In ultranarrow pH gradients, it is imperative to use mixtures of all commercially available carrier ampholytes, so as to smoothen conductivity and buffering capacity gaps. By the present method, it is also possible to convert a wide (2-3 pH unit) carrier ampholyte interval into a narrow (0.2-0.3 pH unit) one.

Hydrogen-Ion Concentration↗

Direct recovery of proteins into a free-liquid phase after preparative isoelectric focusing in immobilized pH gradients.

A new method for electrophoretic retrieval of protein zones from Immobiline matrices is described, based on elution directly in a free liquid phase, rather than in ion-exchange beads or molecular sieves, as previously described. The chopped Immobiline gel is loaded on top of a 5% T stacking gel, 6-10 mm in height, and forced to transverse it and collect into a chamber, filled with 20% sucrose solution, closed on its anodic side by a dialysis sac. The transfer is practically quantitative, for most proteins, after 30-60 min of zone electrophoresis at 10 W (300 V potential differential). Recovery of protein mass is in general better than 90%, while for enzyme activity is in the range of 60-80%. For preserving enzyme integrity, the following precautions are recommended: short electrophoretic times; avoidance of anodic oxidation; chilling of the buffer in the anodic chamber; and use of low levels (2-5 mM) of the specific enzyme substrate throughout the entire electrophoretic system (cathode, anode and gel plug).

Enzymes↗

Effect of nerve growth factor on glucose utilization and nucleotide content of pheochromocytoma cells (clone PC12).

The effect of nerve growth factor (NGF) on the utilization and fate of uniformly labeled 14C glucose and on the content of several pyridine and purine nucleotides has been tested in the clonal cell line PC12. After incubation for 72 h with NGF, PC12 cells exhibit a 2.7-fold increase in glucose utilization and a 4.7-fold increase in CO2 release. During the same incubation period, all the nucleotides tested (NAD+, AMP, GMP, UDP-glucose, UDP-galactose, UDP, ADP, GDP, UTP, CTP, ATP, and GTP) underwent significant increments, varying from a minimum of 27% for ADP to a maximum of 90-120% for AMP, GMP, UDP-glucose, and UDP-galactose. These findings are discussed in connection with the trophic and differentiative effects of NGF in PC12 cells, which, in the presence of this factor, shifted from a neoplastic to a neuronal-like cell population.

Adenosine Monophosphate↗

Functional dyspepsia and chronic idiopathic gastric stasis. Role of endogenous opiates.

Chronic idiopathic gastric stasis can be responsible for unexplained dyspepsia. Because exogenous opiates inhibit gastric emptying and endogenouslike substances are present in the gastrointestinal tract, we tested the hypothesis that increased endogenous opiate activity may be responsible for chronic idiopathic gastric stasis. Eighteen patients with chronic idiopathic gastric stasis and ten healthy volunteers were studied by gastrointestinal manometry. Scintigraphic technique also was used, during which either intravenous saline or naloxone hydrochloride were infused. Manometry showed gastric hypomotility in ten patients and duodenal hyperdyskinesia in the remaining eight patients. Naloxone did not alter gastric emptying in healthy subjects or corrected gastric stasis in patients with gastric hypomotility, while it normalized gastric emptying in patients with duodenal dyskinesia. It seems that either gastroparesis or duodenal dyskinesia can promote gastric stasis and chronic dyspepsia, and endogenous opiates participate in the pathogenesis of gastric stasis in patients with duodenal dyskinesia.

Adult↗

Type III procollagen peptide and PZ-peptidase serum levels in pre-cirrhotic liver diseases.

To obtain a dynamic and non-invasive picture of hepatic fibrosis in pre-cirrhotic liver diseases we measured both the concentration of the N-terminal peptide of procollagen III, as a marker of collagen synthesis, and the activity of PZ-peptidase, an enzyme involved in collagen degradation, in the serum of alcoholic or chronic viral hepatitis patients. Peptide serum levels were similar in chronic persistent hepatitis and controls, but significantly higher in chronic active hepatitis. Chronic persistent hepatitis patients had PZ-peptidase levels higher than controls, but similar to chronic active hepatitis. The increase in collagen synthesis without a parallel increase in collagen degradation seen in chronic active hepatitis could be regarded as a sign of impending cirrhosis, whereas the unbalanced rise in PZ-peptidase observed in chronic persistent hepatitis is consistent with the non-progressive character of this disorder. In alcoholic hepatitis both peptide concentration and PZ-peptidase activity were elevated, thus suggesting that both collagen synthesis and degradation are activated. However, the greater increase in PZ-peptidase than in peptide serum levels seen in some patients seems to indicate a minor tendency to progressive fibrosis or a trend towards resolution. Unlike liver disease patients, normal peptide and PZ-peptidase levels were found in patients with pancreatic fibrosis. Since circulating inhibitors and activators of the PZ-peptidase activity can be excluded, as proved by this study, joint peptide and PZ-peptidase serum measurements would seem to offer a simple reliable non-invasive method for differentiating and monitoring progressive and non-progressive forms of hepatic fibrosis.

Adult↗

Identification of muscarinic receptor subtype mediating colonic response to eating.

The colonic motor response to eating requires cholinergic transmission. Recent studies have identified two subclasses of muscarinic receptor, the M1 and the M2 subtype. The aim of this study was to evaluate the muscarinic receptor subtype responsible for mediating the gastrocolonic response. Spike potential (SP) activity and intraluminal pressure were recorded, during fasting and after eating a 1000-kcal mixed meal, from the distal colon of 10 healthy volunteers. In each subject three paired studies were carried out: either atropine (a nonselective antimuscarinic, 1 mg), pirenzepine (a selective M1 antimuscarinic, 10 mg), or saline were infused intravenously before eating, using a double-blind crossover design. The meal significantly increased colonic spike potential activity (17.6 +/- 3.9, SP/30 min) above fasting values (2.7 +/- 0.6, P less than 0.01) in the control study. There was no postprandial increase in spike potential activity (3.3 +/- 0.9, SP/30 min) after atropine. The meal also significantly increased spike potential activity (15.4 +/- 3.3 SP/30 min, P less than 0.01) above fasting levels and equal to that of the controls, in the pirenzepine study. These data suggest that the colonic motor response to eating is mediated through the M2 but not the M1 subtype of muscarinic receptors.

Adult↗

In vivo effects of N-acetylcysteine on glutathione metabolism and on the biotransformation of carcinogenic and/or mutagenic compounds.

N-acetylcysteine (NAC) was administered to rats in various combinations with an enzyme inducer (Aroclor 1254) and with depletors of reduced glutathione (GSH), i.e., diethyl maleate (DEM) and buthionine sulfoximine (BSO). NAC increased intracellular glutathione levels in erythrocytes and in liver and lung cells, and replenished its stores following depletion. It did not affect the concentrations nor the spectral properties of cytochromes P-450 in hepatic and pulmonary microsomes, whereas it stimulated, especially in Aroclor-pre-treated animals, cytosolic enzyme activities involved in NADP reduction (glucose 6-phosphate dehydrogenase and 6-phosphogluconate dehydrogenase), in glutathione reduction (GSSG-reductase) and in the reductive detoxication of xenobiotics by-passing formation of reactive oxygen species (DT-diaphorase). In vivo treatment with the drug enhanced detoxication by liver and lung S-12 fractions of direct-acting mutagens (ICR 191, epichlorohydrin, 4-nitroquinolino-N-oxide and dichromate) and counteracted opposite effects triggered by administration of GSH depletors. The metabolic activation of procarcinogens (aflatoxin B1, 2-aminofluorene, cyclophosphamide, benzo[a]pyrene, a tryptophan pyrolysate product and cigarette smoke condensate) was inhibited by NAC in uninduced rats, while it was further stimulated in Aroclor-pre-treated animals. Additional assays, performed also with other enzyme inducers (phenobarbital and 3-methylcholanthrene) suggested that the effect of NAC on the metabolic activation of procarcinogens depends on the balance between an increased production of mutagenic metabolites (prevailing in induced animals) and their binding by intracellular thiols (prevailing under normal conditions). Thus, due to its dual role as a nucleophile and as a SH donor, NAC appears to exert protective effects by modulating glutathione metabolism and the biotransformation of mutagenic/carcinogenic compounds. This may have clinical relevance, since NAC is administered to individuals, such as cigarette smokers, who are more heavily exposed to GSH depletors and to carcinogenic agents.

Acetylcysteine↗

Entrapment of normal and mutant glucose 6-phosphate dehydrogenase (G6PD) within G6PD deficient erythrocytes.

G6PD-deficient erythrocytes (Mediterranean type of this enzyme disorder) were loaded with a) normal G6PD purified to homogeneity from human erythrocytes, b) G6PD Mediterranean purified from deficient granulocytes. The first set of experiments led to complete normalization of biochemical properties of erythrocytes, as assessed by evaluating their metabolic competence under steady state conditions and under oxidative stress as well. The second type of experiment allowed us to conclude that mutant G6PD is not appreciably destroyed within the affected erythrocytes.

Erythrocytes↗