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Biomedical subjects

C Balduini

Publications and source records attributed to C Balduini.

At least 19 recordsLinked to original sources

Effect of oxygen tension and lactate concentration on keratan sulphate and chondroitin sulphate biosynthesis in bovine cornea.

Calf cornea slices were incubated with [U-14C]glucose, in varying pO2 or lactate concentrations. Acid glycosaminoglycans were separated by ion-exchange chromatography after papain digestion. The percentage radioactivity incorporated into keratan sulphate increased markedly with decreased oxygen tension, whereas a concomitant relative decrease of the biosynthesis of glycosaminoglycuronans occurred. Similar results were obtained with increased lactate concentration. Our findings support the idea that keratan sulphate is a functional substitute for chondroitin sulphate in conditions of oxygen lack (Scott, J.E. and Haigh, M. (1988) J. Anat. 158, 95-108).

Animals

Stimulation of human platelets with concanavalin A involves phospholipase C activation.

In response to concanavalin A, cytoplasmic calcium movement was observed in human platelets, both in the presence of 1 mM Ca2+ or 1 mM EGTA in the medium. Concanavalin A also caused the activation of inositide turnover and the production of inositol phosphates, suggesting that activation of phospholipase C occurs. The mechanism by which concanavalin A stimulates phospholipase C does not depend on GTP-binding transducers, because it was not inhibited by GDP beta S, while experiments performed in the presence of cytochalasin B suggested a role for membrane glycoprotein IIb-IIIa-cytoskeleton interaction in this process. Ca(2+)-proteases and Na+/H+ antiport also seemed to be related to concanavalin A-induced phospholipase C activation, as suggested by experiments performed in the presence of leupeptin and amiloride.

Biological Transport

Platelet glycoprotein IIb-IIIa is associated with 21-kDa GTP-binding protein.

Platelet membrane glycoprotein IIb-IIIa has been widely studied in the last years because of its role as an activation-dependent, adhesive protein receptor. Recently we demonstrated that occupancy of glycoprotein IIb-IIIa-receptor sites by specific ligands exerts an inhibitory effect on platelet responses induced by mild stimulation, leading us to suppose that this event may interact with activation pathways. Although the mechanisms of signal transduction in human platelets are not completely elucidated, the hypothesis that GTP-binding proteins are involved is generally accepted. Our results demonstrate that platelet ConA receptors, known to be located mainly on GP IIb-IIIa, are able to bind [35S]GTP gamma S; the GTP-binding activity is specific and is due to the association with the receptors of two G-proteins, with apparent molecular masses of 25 and 21 kDa, respectively. After the purification of GP IIb-IIIa, a glycoprotein complex electrophoretically pure was obtained that was still associated with a GTP-binding activity, migrating in SDS-polyacrylamide gel electrophoresis as a narrow band of about 21 kDa.

Autoradiography

An atypical myeloproliferative disorder with high thrombotic risk and slow disease progression.

Among 761 consecutive patients with chronic myeloproliferative disorders (CMD), it was found that 18 (nine men and nine women) did not fulfill at presentation the established diagnostic criteria for the typical forms. In seven patients, the diagnosis of CMD was made on the basis of an intense and persistent thrombocytosis that complicated splenectomy. The other 11 patients had various combinations of the following signs suggesting CMD: splenomegaly, bone marrow myeloid hyperplasia and/or slight myelofibrosis, mild thrombocytosis and/or leukocytosis, and rare immature myeloid cells in the peripheral blood. All patients were younger than 46 years of age (median age, 31.5 years; range, 20 to 45 years). A major thrombotic event was the most frequent presenting feature (eight of 18 cases), and thrombotic complications supervened in seven of the eight splenectomized patients (six in the portal system), raising the overall rate of patients with thrombotic events in their history to 11 of 18. At a median follow-up of 50 months (range, 24 to 241 months), three patients had died of thrombotic complications (two after splenectomy). The 15 surviving patients had stable disease, and 12 of them were not receiving cytoreductive therapy. Spontaneous growth of circulating burst-forming units erythroid was demonstrated in one patient, and erythroid responsiveness to erythropoietin appeared higher than in the normal controls in four. Spontaneous in vitro platelet aggregation in whole blood and/or platelet-rich plasma was seen in five of seven patients. It was concluded that a difficult to identify, slowly progressive form of CMD occurs in young people, that it carries a high risk of thrombosis, and that splenectomy is a high risk procedure in these cases.

Adult

Evidence for membrane protein oxidation during in vivo aging of human erythrocytes.

Oxidative lesions to membrane proteins were studied in human erythrocytes of different age and were evaluated on ghost membrane preparations by assaying thiol and methionine sulphoxide groups, and in situ on intact cells, after treating erythrocytes with the fluorochrome N-(7-dimethyl-amino-4-methyl-coumarinyl) maleimide (DACM). DACM reacts with thiol groups and the amount of this reagent bound by membrane proteins was quantified after SDS-PAGE separation. Results obtained show that during aging of normal cells the oxidative state of membrane proteins increases: this was better shown by the assay of methionine sulphoxide residues rather than by the thiol titration, when studies were carried out on ghost membranes. After separation of individual membrane proteins by SDS-PAGE, decreased accessibility of DACM to thiol groups of band 3 and of the main proteins of the membrane skeleton was evident in senescent erythrocytes. These results show that during aging, band 3 and membrane skeleton proteins undergo conformational changes and/or oxidation. Similar results were obtained when thiol distribution was studied in membrane proteins separated by SDS-PAGE in both reducing and non-reducing conditions.

Electrophoresis, Polyacrylamide Gel

Oxidative lesion to membrane proteins in senescent erythrocytes.

The oxidative lesion undergone by membrane proteins in senescent human erythrocytes was evaluated by assaying their MetSO and thiol group content in ghosts and the amount of a coumarinyl derivative of maleimide, the DACM, bound by individual membrane proteins after treatment of erythrocytes of different age with this reagent. Quantitation of MetSO content of ghost membranes indicates an increase of the oxidative state of membrane proteins from young to mature and senescent erythrocytes, while thiol group assay does not show significant differences among erythrocytes of different age. Quantitation of DACM bound in intact cells by individual membrane proteins shows a decreased accessibility of thiol groups of band 3 protein and of the main proteins of the membrane skeleton in senescent erythrocytes, and this could be partly due to oxidation. The decreased reactivity to DACM of senescent erythrocyte band 3 seems to concern thiols located on the cytoplasmic domain of this protein, since the anion channel binds the same amount of the anion transport inhibitor EM, in mature and senescent erythrocytes.

Cytoplasm

Membrane abnormalities of pyruvate kinase deficient red cells.

Two experimental systems have been applied to the study of PK-deficient red cells in an attempt to reveal possible membrane abnormalities of these erythrocytes: (1) the glycoprotein self-digestion of intact erythrocytes during in vitro incubation at 37 degrees C; (2) the red cell sensitivity to the lytic action of mouse macrophages. PK-deficient erythrocytes display a more precocious than normal membrane glycoprotein self-digestion and are much more susceptible than normal to the cytotoxic activity of mouse macrophages. This latter effect is more pronounced in young than in old PK-deficient red cells. These observations indicate the existence of membrane abnormality in PK-deficient red cells other than those so far suspected.

Adenosine Triphosphate

Interactions between different corneal proteoglycans.

Proteoglycans were extracted from bovine cornea with 4M-guanidinium chloride and purified by CsCl-density-gradient centrifugation. Under associative conditions two fractions were found: one capable of forming assemblies of high molecular weight and another lacking this property. The heavier fraction (density 1.59 g/ml) was eluted as a single retarded peak from Sepharose 2B, but on DEAE-Sephadex chromatography, gave two peaks: the first (eluted with 0.75 M-NaCl) contained mainly proteochondroitin sulphate and the second (eluted with 1.25 M-NaCl) mainly proteokeratan sulphate. Each of these proteoglycans was more retarded on Sepharose 2B than was the original sample from density-gradient centrifugation. Re-aggregation was obtained by recombination of the two fractions. The lighter fraction (density 1.44 g/ml), containing predominantly keratan sulphate chains, was eluted from DEAE-Sephadex as a single peak with 1.25 M-NaCl and was retarded on Sepharose 2B: this fraction was not able to form aggregates with proteochondroitin sulphate. Chemical analyses of the carbohydrate and protein moieties of the proteoglycans from DEAE-Sephadex confirmed that, in the cornea, different subunits are present with characteristic aggregation properties and hydrodynamic volumes.

Animals

Behaviour of young and old desialylated rabbit erythrocytes in vivo.

Young and old rabbit erythrocytes, separated by density gradient centrifugation, were desialylated by neuraminidase treatment and reinjected into the animal after 51Cr labelling. Both red cell populations are quickly removed from the circulation and trapped by the liver; then a large percentage of the young cells reappear in the peripheral blood and behaves like untreated erythrocytes; old cells, on the contrary, do not return to the blood stream and are probably lysed in the liver. These results suggest that a sialic acid repair can occur on the membrane of young erythrocytes and confirm that the loss of this molecule is not by itself sufficient to determine the death of the cell.

Animals

Self-digestion of human erythrocyte membranes. Role of adenosine triphosphate and glutathione.

Intact human erythrocytes incubated at 37 degrees C, pH7.4, release a sialoglycopeptide similar in its chemical composition, immunological and aggregation properties to the glycopeptide released by isolated 'ghost' membranes. The presence of ATP or reduced glutathione at physiological concentrations in the incubation medium of 'ghost' membranes inhibits this self-digestion process.

Adenosine Triphosphate

In vivo behaviour of neuraminidase-treated rabbit erythrocytes and reticulocytes.

51Cr rabbit erythrocytes were treated with different amount of neuraminidase and reinjected into the animal. The survival curves after the removal of more than 50% membrane sialic acid show a characteristic behaviour: after a rapid decrease, blood radioactivity increases again reaching a maximum level 50-80 h after reinjection, then tends to decrease with a slope similar to that of control curves. Liver radioactivity determined before the rise of blood radioactivity is evidently higher than the value determined after radioactivity elevation. Similar results were obtained with phenylhydrazine-induced young erythrocytes.

Animals

Membrane sialic acid and behaviour in vivo of rabbit "stress" macroreticulocytes.

Membranes of rabbit reticulocytes obtained by phenylhydrazine stimulation have a chemical composition different from that of normal erythrocytes; sialic acid/protein and cholesterol/protein ratios are in fact lower than normal. In vivo study of 51Cr-labelled reticulocytes show that these cells are quickly removed from blood and, after a short "homing" in liver, return to peripheral blood. During "homing" in the liver, the sialic acid/protein ratio seems to increase.

Animals

Experimental arthrosis from intra-articular vitamin A injection in the rabbit. Morphological and biochemical study: considerations on the pathogenesis of human arthrosis in relation to the experimental model.

The key to the pathogenesis of arthrosis lies in the mechanism responsible for the initial lesions. In this experimental work the possibility of producing arthrosic changes is demonstrated by activating lysosomal chondrocytic enzymes by the intra-articular injection of Vitamin A in rabbits. On the basis of the experimental results the authors discuss the possible role that activation of the lysosomal hydrolytic enzymes might play in producing primary and secondary arthrosis in humans. They advance the hypothesis that this mechanism may be the common final step in the degradation of the articular cartilage, whatever the aetiological factor.

Acid Phosphatase

Identification of a sialoglycopeptide released by self-digestion from human erythrocyte membranes.

Membranes from human O Rhesus-positive erythrocyte 'ghosts' were tested in vitro for their ability to digest their own glycoproteins. 'Ghost' membranes incubated in Tris/HCl buffer, pH 7.4, release a sialoglycopeptide, which contains glucosamine, galactosamine, galactose and mainly polar amino acids. Chemical composition, molecular size and aggregation properties suggest that this glycopeptide may be a fragment of glycophorin.

Chromatography, Gel