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Biomedical subjects

A Piga

Publications and source records attributed to A Piga.

At least 91 records · Page 5Linked to original sources

Mechanisms of deoxyadenosine toxicity in human lymphoid cells in vitro: relevance to the therapeutic use of inhibitors of adenosine deaminase.

Deoxyadenosine (AdR) appears to be central to the molecular events mediating immunodeficiency in children born with adenosine deaminase (ADA) deficiency but it is still uncertain whether lymphotoxicity is due to AdR directly inhibiting transmethylation reactions in which S-adenosylmethionine is the methyl group donor, or is due to phosphorylation of AdR to deoxyadenosine triphosphate (dATP) which then inhibits ribonucleotide reductase or is due to other mechanisms. Using AdR and the ADA inhibitor deoxycoformycin (dCF) and assessing cell viability, nucleoside incorporation into RNA and DNA, as well as measuring deoxyribonucleoside triphosphate (dNTP) concentrations and S-adenosylhomocysteine (SAH) hydrolase activity, we have studied various types of human lymphoid cells and demonstrated in them the relative importance of the above two mechanisms of AdR toxicity. Treatment of normal resting peripheral blood lymphocytes in culture with AdR and dCF resulted in impaired viability. Although elevated dATP levels as well as decreased SAH hydrolase activities were both observed, the failure of a known inhibitor of ribonucleotide reductase (hydroxyurea) to produce toxicity, and the inability of deoxycytidine (CdR) to achieve a rescue effect, point to another mechanism, possibly inhibition of trans-methylation or ATP depletion being the more likely causes of toxicity in resting lymphocytes. The same mechanism may well account for the rapid and severe lymphopenia in patients treated with dCF. On the other hand, in cultured lymphoblasts in the exponential phase of growth. AdR and dCF produced marked inhibition of growth and cell death both in a Thy-ALL line and in a c-ALL line, in the absence of significant inhibition of SAH hydrolase, but with a substantial elevation in dATP concentrations and depressed levels of the other dNTP. Minor toxicity occurred in a proliferating B lymphoblast line despite almost complete inactivation of SAH hydrolase. These observations indicate inhibition of ribonucleotide reductase as the more likely mechanism of toxicity in rapidly proliferating lymphocytes. Other T-cells actively synthesizing DNA, such as PHA-stimulated or MLC activated lymphocytes and T-lymphoid colony forming cells, are also likely to be affected by the same mechanism. Indeed in PHA-stimulated lymphocytes, deoxycytidine caused significant although incomplete rescue from toxicity due to dCF and AdR. In patients with ADA deficiency or treated with ADA inhibitors, both mechanisms could be operative. These observations are also relevant to the possible use of dCF and AdR as immunosuppressive agents and for the removal of T-cells or residual Thy-ALL blasts from bone marr

Adenosine Deaminase Inhibitors↗

Cirrhosis associated with multiple transfusions in thalassaemia.

The study of surgical liver biopsy specimens obtained during splenectomy in 86 children with thalassaemia indicated that such patients may develop liver disease that evolves into cirrhosis. Histological characteristics suggest that it is post-necrotic cirrhosis. Onset of cirrhosis in some patients may occur as early as 7-8 years old, and at age about 15-16 years most children with thalassaemia show features of cirrhosis. In addition to fibrosis, hepatitis, or even aggressive hepatitis may develop as has also been observed in patients without thalassaemia who have undergone multiple transfusions. This study presents the current probable evolution of liver disease in patients with thalassaemia and may thus serve as a reference from which to evaluate any future progress in the treatment and care of patients with Cooley's disease.

Adolescent↗

Plasma beta-2-microglobulin and fibronectin levels in beta-thalassaemia.

The plasma beta 2-microglobulin (beta 2-MG) levels in 118 children with thalassaemia were investigated. The mean level was higher than in healthy children. A significant increase of beta 2-MG was associated with hypersplenism (3.14 +/- 0.6 mg/l). The beta 2-MG levels appeared to reflect reticuloendothelial system activity but were not related to iron overload. Fibronectin levels were generally lower than in healthy adults; profound chronic fibronectin depletion was not accompanied by an increased liability to infection.

Adolescent↗

The effect of deoxycoformycin and deoxyadenosine on deoxyribonucleotide concentrations in leukaemic cells.

Intracellular deoxynucleoside triphosphate pools of normal bone marrow, thymocytes and cells from patients with ALL and AML were measured after 2 h incubation with deoxycoformycin (dCF) 10(-5) M and deoxyadenosine (AdR) 10(-4) M in vitro and after another 30 min incubation in the absence of dCF and AdR ('chase' experiment). Incubation with dCF and AdR resulted in a significant rise of dATP concentrations in all groups (the highest rises occurring in the leukaemic groups particularly in AML and Thy-ALL). The concentrations of the other three deoxyribonucleoside triphosphates fell in all groups. The dATP level fell during the 'chase' period but in Thy-ALL and thymocytes this fall was insignificant and slower than in the other groups. This suggests that not only intracellular build-up of dATP but also the capacity of the cell to degrade dATP is important for in vivo cytotoxicity of dCF treatment. These results help to explain the differences in response to dCF of the different leukaemias.

Bone Marrow↗

Nucleoside incorporation into DNA and RNA in acute leukaemia: differences between the various leukaemia sub-types.

The incorporation of the labelled deoxyribonucleosides 3H-deoxythymidine (3H-TdR), H3-deoxycytidine (3H-CdR), 3H-deoxyadenosine (3H-AdR), 3H-deoxyguanosine (3G-GdR), 3H-deoxyuridine (3H-UdR) and of labelled uridine (3H-UR) into DNA and RNA was studied in bone marrow (BM) and peripheral blood (PB) cells from 10 normal donors and 11 patients with acute myeloblastic leukaemia, 13 with acute non-T non-B common ALL (c-ALL) and seven with thymic acute lymphoblastic leukaemia. 3H-TdR incorporation was highest into the DNA of normal BM cells, 3H-CdR into DNA in Thy-All and 3H-UdR into DNA of c-ALL cells. Purine deoxynucleoside (3H-AdR and 3H-GdR) incorporation was highest in AML cells and they were incorporated mainly into RNA indicating that before utilization they are partially degraded from the deoxyribose to the corresponding ribose form. In all but three leukaemia samples, the 3H-UdR/3H-TdR incorporation ratio was above the range found in normal bone marrow, suggesting the leukaemic cells are more dependent than a normal mixed marrow cell population on the de novo pathway of thymidylate synthesis. The incorporation of nucleosides by peripheral blood cells was usually much lower than by the corresponding bone marrow cells, irrespective of blast percentage.

Blood Cells↗

Early iron overload in beta-thalassaemia major: when to start chelation therapy?

Twenty-eight children with beta-thalassaemia major aged between 11 and 48 months were given intensive transfusions. Serum iron, transferrin saturation, serum ferritin, non-transferrin iron, and subcutaneous desferrioxamine-induced urinary iron excretion were measured. The results showed that even children with a limited number of transfusions had severe iron overload as indicated, in particular, by the raised serum ferritin levels and the high excretion rates after subcutaneous infusion of desferrioxamine. The desferrioxamine test was useful, even in very young children, in assessing response to chelation therapy thus enabling such treatment to be started early to prevent harm from iron overload.

Child, Preschool↗

Haemoglobin levels and blood requirement in thalassaemia.

The relationship between blood requirement and the mean level of maintained haemoglobin was examined in 392 patients with homozygous beta-thalassaemia. Pre- and post-transfusional haemoglobin levels and the amounts of blood transfused were measured during a 1-year period. No significant differences were noted in the blood requirements of patients (splenectomised or not) irrespective of the haemoglobin level. It may be supposed that if the mean haemoglobin level is high the haematopoietic activity is inhibited, and hence the bone marrow mass and total blood volume are reduced. High haemoglobin levels may thus be obtained with no increase in blood intake.

Adolescent↗

Erythrocyte cation content, globin chain synthesis and glucose metabolism in dysmyelopoietic syndromes.

Red blood cells (RBC) from 13 patients suffering from dysmyelopoietic syndromes (DMPS) have been studied. About half of these subjects showed an abnormal Na+ and K+ leakage of their RBC, which were incubated at 37 degrees C for 24 h. The mean rate of the glycolytic pathway increased significantly and the glycolysis values correlated well with the Na+ gain. Moreover, 9 out of the 13 patients showed an abnormal biosynthetic ratio of haemoglobin chains in their reticulocytes. Since the multiple defects in DMPS erythrocytes do not seem clearly linked by cause-effect relationships, they probably derive from several cooperating factors in pathological erythroid precursors, leading to RBC membrane damage.

Aged↗

Therapeutic selectivity of and predication of response to 2'-deoxycoformycin in acute leukaemia.

Seventeen patients with acute leukaemia refractory to conventional chemotherapeutic agents were treated with the adenosine deaminase inhibitor, 2'-deoxycoformycin (dCF). Of the twelve patients with acute lymphoblastic leukaemia of the thymic phenotype (Thy-ALL), seven went into complete remission after one or two courses of therapy. Two other (Thy-ALL) patients showed good partial response, and three were resistant to dCF. The five patients with acute leukaemia of other phenotypes had progression of disease despite treatment with dCF. Response to dCF can be predicted from the pattern of change in cellular nucleotide levels in blood and/or bone marrow blasts which have been treated in vitro with dCF and deoxyadenosine. The main adverse effects of dCF therapy were renal and liver dysfunction, conjunctivitis, and haemolysis.

Acute Disease↗

DNA synthesis in thymic-acute lymphoblastic leukaemia.

Deoxyribonucleoside triphosphate (dNTP) concentrations were measured in bone marrow and peripheral blood leucocytes from seven patients with acute Thy-lymphoblastic leukaemia (Thy-ALL), 12 patients with acute myeloblastic leukaemia and 15 patients with acute non-T, non-B lymphoblastic leukaemia (c-ALL), and in thymocytes from patients with myasthenia gravis. Labelled thymidine and deoxycytidine incorporation into DNA was also studied. In Thy-ALL, dNTP concentrations were markedly increased compared with those in the other acute leukaemias. The dNTP concentrations in thymocytes were, however, similar to those in Thy-ALL. 3H-nucleoside incorporation studies showed a marked difference in labelled deoxycytidine incorporation and particularly in the deoxycytidine/thymidine DNA labelling ratio between Thy-ALL and the other cell types. We conclude that the pathways of DNA synthesis in Thy-ALL blasts are different from those in the cells from acute acute leukaemias and some but not all these differences may correspond to differences between normal cortical thymocytes and bone marrow cells.

Bone Marrow↗

Studies on the biochemical sequelae of therapy in Thy-acute lymphoblastic leukaemia with the adenosine deaminase inhibitor 2' deoxycoformycin.

In four patients with Thy-acute lymphoblastic leukaemia changes in blast cell deoxynucleoside triphosphate concentrations and, in three, changes in blast cell S-adenosyl homocysteine hydrolase activity were measured during treatment with 2' deoxycoformycin, a potent inhibitor of adenosine deaminase. These studies were aimed at identifying the molecular basis of cell killing by this drug. In three patients an increase in blast deoxyadenosine triphosphate (dATP) concentration occurred which was found to be temporally related to cell killing and was accompanied by decreased concentrations of the other three deoxyribonucleoside triphosphates. In the one patient with Thy-ALL who responded poorly to treatment, the increase in dATP concentration was delayed and was not accompanied by a fall in the concentrations of the other deoxyribonucleoside triphosphates. Progressive inactivation of blast cell S-adenosyl homocysteine hydrolase was found to occur in the three patients tested but was maximal only after a substantial reduction of peripheral blast cell count. These results show that 2' deoxycoformycin has a potent cytoreductive effect in Thy-ALL and suggest that the molecular basis of this toxicity is related both to the intracellular accumulation of dATP with inhibition of ribonucleotide reductase. Inactivation of S-adenosyl homocysteine hydrolase may be of importance as an additional mechanism.

Adenosine Deaminase↗

[The use of betamethasone in polychemotherapy of lymphoproliferative diseases].

In recent years very encouraging results have been obtained in the treatment of lymphoproliferative disorders with the use of combination chemotherapy regimens. We have treated with protocols including betamethasone 29 patients with Hodgkin's disease, 33 affected by non-Hodgkin's lymphomas, 29 with chronic lymphocytic leukemia, 7 with acute lymphoblastic leukemia and 9 patients affected by multiple myeloma. Results have been very satisfactory in patients with advanced stage Hodgkin's disease (67% complete remission), in high malignancy non Hodgkin's lymphomas (47% complete remission) and in acute lymphoblastic leukemia (100% of patients in complete remission). Our results suggest that the use of betamethasone as a part of combination chemotherapy regimens may be very useful in the treatment of lymphoproliferative disorders.

Adolescent↗

Behaviour of myeloid precursors in homozygous beta thalassaemia.

Maintaining a high haemoglobin level, through a high transfusion regime, is the best method for treating thalassaemia. Not much is known about the effect of this treatment on medullary or extramedullary haemopoiesis, particularly on the extent of erythropoietic inhibition and on the behaviour of myelopoiesis. In order to analyse some aspects of the problem, we studied the myeloid stem cells (CFU-c) in the bone marrow and in the peripheral blood of children with homozygous thalassaemia, using the agar culture technique. The number of circulating CFU-c observed in 68 patients was higher than in normal subjects. This number was significantly increased after splenectomy. A positive correlation was demonstrated between the number of circulating CFU-c and the time elapsed since the last transfusion. Patients with a high Hb level displayed a marked reduction in the number of CFU-c in their peripheral blood. In 10 patients, before the beginning of transfusions, bone marrow CFU-c were lower than in normal subjects; their number increased after therapy. Most circulating CFU-c were proliferating as shown by the thymidine suicide technique.

Adolescent↗

Correlation between transfusion requirement, blood volume and haemoglobin level in homozygous beta-thalassaemia.

We examined the relationship between blood volume, mean haemoglobin maintained and transfusion requirement in an extensive series (166 cases) of uniformly treated patients with homozygous beta-thalassaemia. The blood volume is increased in all the subjects and this increase appears inversely proportional to the mean haemoglobin level maintained. When this is above 12 g/dl, the blood volume is nearly normal. The transfusion requirement of patients kept between 10 and 14 g/dl is constant. Maintenance of a high haemoglobin level in thalassaemic patients inhibits erythropoiesis to a considerable degree with a reduction of the haemopoietic tissue and hence of the total blood volume.

Adolescent↗

Neonatal erythrocyte glutathione peroxidase deficiency as a consequence of selenium imbalance during pregnancy.

The red blood cell (RBC) glutathione peroxidase (GSH-Px) activity and routine haematological parameters were measured in 38 healthy north Italian full-term pregnant women and in their newborn infants. In 31 pairs the serum selenium concentration was also measured. Data were compared with those of 20 normal adult controls (10 males and 10 females). Newborn infants exhibited significantly lower RBC GSH-Px activity and serum selenium concentrations than adult controls. Pregnant women had serum selenium values intermediate between those of adult female controls and their newborn infants. In both the pregnant women and newborns the RBC GSH-Px activity correlated with the level of selenium in serum which suggests that the neonatal RBC GSH-Px deficiency may be partially due to insufficient availability of selenium during pregancy. Factors other than selenium concentration, e.g. hormonal and genetic, might also affect the RBC GSH-Px activity as suggested by sex differences and mother/child concordances in enzyme activity found in our cases.

Adolescent↗

In vivo and in vitro variations of human erythrocyte glutathione peroxidase activity as result of cells ageing, selenium availability and peroxide activation.

Cases showing erythrocyte glutathione peroxidase (GSH-Px) defects have been previously described. Our experiments demonstrate that a number of non genetic factors may influence the GSH-Px activity in human erythrocytes. Selenium administration in vivo was followed in four subjects by elevation in erythrocyte GSH-Px activity ranging from 30% to 1400%. Selenium operates mainly in the bone marrow erythroblasts by facilitating the synthesis of active GSH-Px molecules; experiments in vivo demonstrate that, in the youngest erythrocytes, selenium can raise the enzyme activity, but by a different mechanism. The reticulocyte GSH-Px activity appears to depend on selenium availability and may vary over a wide range. In some normal and iron deficient subjects the GSH-Px activity in the youngest erythrocyte fraction was equal or lower than that previously found in whole erythrocytes of patients affected by haemolytic anaemia. During erythrocyte life, GSH-Px activity may either diminish or increase, and these variations are inversely related to the initial GSH-Px activity in youngest cells. In vitro experiments with the addition of acetyl-phynyl-hydrazine strongly suggest that elevation of GSH-Px activity may be due to allosteric enzyme activation by activated oxygen.

Anemia, Hypochromic↗

[Clinical and pathological staging of 85 patients with Hodgkin's disease: a clinical contribution (author's transl)].

This is a retrospective study of 85 patients with Hodgkin's disease undergoing studies of clinical staging. Of these, 28 were investigated by laparotomic splenectomy, which revealed evidence of disease progress not otherwise detectable in 10 cases (36%). The authors also note that cases with an unfavorable histotype are associated with a higher incidence of spleen involvement and a more advanced stage of disease.

Adult↗