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Biomedical subjects

G Forteleoni

Publications and source records attributed to G Forteleoni.

At least 19 recordsLinked to original sources

Plaque removal with variable instrumentation.

The purpose of this study was to evaluate dental plaque removal in a normal healthy mouth, during routine oral hygiene appointments using different techniques and without the use of any disclosing agents. 12 dental hygienists, randomly selected from a continuing education course, were asked to perform oral hygiene on the same patient to remove all the supra-gingival plaque without any time restriction and without the use of a disclosing agents. The plaque index score (O'Leary) was assessed before and after each session with the use of fluorescine and UV light source by an independent examiner. 3 groups of instruments were utilized: group A: ultrasonic scalers + prophy cups; group B: ultrasonic scalers + prophy cups + dental floss; group C: Gracey curettes + prophy cups. While no group was able to remove all the plaque, groups B and C performed significantly better.

Adult

Mechanisms of perturbation of erythrocyte calcium homeostasis in favism.

Favism is an acute hemolytic anemia triggered by ingestion of fava beans in genetically susceptible subjects with severe deficiency of glucose-6-phosphate dehydrogenase (G6PD) activity. Erythrocytes from 10 favic patients had constantly and markedly increased calcium levels, as compared with values detected in 4 asymptomatic G6PD-deficient controls. Correspondingly, the calcium permeability of erythrocytes, estimated as the fraction of intracellular calcium exchangeable with externally added 45Ca2+, was invariably enhanced in favism and returned to normal patterns after several months from the acute hemolytic crisis. In favic patients, the levels of erythrocyte calcium ATPase activities showed wide variability, ranging from 2.0-12.9 mumol Pi/ml RBC/h, while control values in asymptomatic G6PD-deficient subjects were 10.62 +/- 2.03 mumol Pi/ml RBC/h. Analysis of the calcium ATPase in situ in erythrocyte membranes from favic patients showed the same molecular mass of 134 kD as observed in the control subjects. Exposure of G6PD-deficient erythrocytes in vitro to autoxidizing divicine, a pyrimidine aglycone strongly implicated in the pathogenesis of favism which leads to late accumulation of intracellular calcium, caused: (i) a marked inactivation of calcium ATPase, without changes in the molecular mass of 134 kD; and (ii) the concomitant loss of spectrin, band 3 and band 4.1, all known substrates of the calcium activated procalpain-calpain proteolytic system. Thus, the increased intraerythrocytic calcium apparently results in the degradation of calcium ATPase observed in some favic patients. It is proposed that both enhanced calcium permeability and a calcium-stimulated degradation of the calcium pump are the mechanisms responsible for the perturbation of erythrocyte calcium homeostasis in favism.

Calcimycin

Molecular analysis of clonality in plasma cell dyscrasias.

It has been suggested that multiple myeloma, generally considered a neoplastic disorder of mature plasma cells, may arise from a pluripotent haemopoietic stem cell. The possibility that circulating lymphocytes derive from the same neoplastic progenitor has been tested in a large number of studies in the past few years, as proof of the interest that this subject is raising among scientists, and also of its elusiveness. We studied a group of 29 patients with plasma cell dyscrasias in order to evaluate clonality of haemopoietic cell populations. The X-linked markers hypoxantine phosphoribosyltransferase (HPRT) and phosphoglycerate kinase (PGK) disclosed no monoclonal component in seven heterozygous women. Analysis of immunoglobulin gene rearrangement with four probes showed a germline configuration in samples from 25/29 patients. Only four bone marrow samples from subjects with aggressive disease had rearranged C mu sequence; one had rearrangement of JH and C mu.

Adult

Marked decline of favism after neonatal glucose-6-phosphate dehydrogenase screening and health education: the northern Sardinian experience.

Favism is a potentially fatal manifestation of glucose-6-phosphate dehydrogenase (G6PD) deficiency, and it is therefore a public health problem in areas where this genetic abnormality is common. In the district of Sassari (northern Sardinia), the frequency of G6PD male hemizygotes is approximately 7.5%, and therefore all newborns since 1971 have been screened for G6PD deficiency. We have analyzed the incidence of favism in this community in two 10-year periods: (1) 1961-1970; and (2) 1981-1990. In period 1, there were 508 cases of favism, of which 76% occurred in boys. In period (2) there were 144 cases of favism, of which only 52% in boys. Thus, between the two periods there was an overall decrease in the incidence of favism of 75%, whereas the proportion of girls affected has approximately doubled. These data suggest that neonatal screening and health education programs can produce a substantial decrease in the number of cases of favism, and that the relative increase in favism in girls is possibly due to failure of the screening method used to detect all the heterozygotes for G6PD deficiency.

Child

A further polymorphism of the Gd locus for glucose-6-phosphate dehydrogenase present among blacks (Nigerians) and apparently absent among Caucasoids: the quantitative isoelectrophoretic variation of the Gd+ allele.

A structural but isoelectrophoretic moderate variation of glucose-6-phosphate dehydrogenase (G6PD) activity is common among Nigerians (a black population exposed to a long-lasting intense Plasmodium falciparum malarial endemia). It had never even been searched for among Caucasoids and Mongoloids. In the present work, we attempted to ascertain whether this polymorphism exists among Caucasoids. With this purpose, two Caucasoid male populations were studied: Sardinians and Romans, who respectively did and did not experience an evolutionarily effective exposure to P. falciparum. The approach adopted here consisted in comparing the variations of G6PD activity observed between brothers who certainly received their Gd gene from the same grandparent (hence Gd genes identical by descent) with those between brothers who received it (in the Roman series) or may have received it (in the Sardinian series) from different grandparents. No evidence for common moderate G6PD activity variations segregating with the Gd gene was found either in Romans or Sardinians, who have both been studied with much larger samples and more sensitive approaches than those which detected such type of polymorphism among Nigerians. The upper 95% confidence limit of such zero estimates for the frequency of the isoelectrophoretic quantitative Gd variant alleles were about 0.04 and 0.025 for Romans and Sardinians, respectively. This is the first example of a genetic region (the Gd gene with its flanking sequences) apparently monomorphic in a major race and with several (four) polymorphic sites in another major race.

Adolescent

Increased prevalence of glucose-6-phosphate dehydrogenase deficiency in patients with cholelithiasis.

The glucose-6-phosphate dehydrogenase (G6PD) enzyme activity was determined in 299 Northern Sardinian patients with cholelithiasis. Sixteen (12.80%) of the 125 male patients studied were G6PD deficient; 33 (18.96%) of the 174 females were heterozygous and 1 (0.57%) homozygous. Thus, the prevalence of G6PD deficiency in male subjects with cholelithiasis is about 35% higher (p less than 0.02) than that of a normal male control group (7.29%). As regards female patients, the incidence of the GdMed allele was also significantly different (p less than 0.05). Thus, G6PD-deficient subjects may have a predisposition to develop gallstones, even in the absence of clinical signs of chronic hemolysis.

Adult

Glucose 6-phosphate dehydrogenase deficiency and cataract of patients in northern Sardinia.

We determined the activity level of glucose 6-phosphate dehydrogenase in 467 patients with cataract from northern Sardinia. Of 226 men, 18 (8%) had glucose 6-phosphate dehydrogenase deficiency. Of 241 women, 30 (12%) were heterozygous and two (1%) were homozygous for glucose 6-phosphate dehydrogenase deficiency. These prevalences were not significantly different from those expected in the general population. We concluded that patients with glucose 6-phosphate dehydrogenase deficiency do not have a higher risk of developing cataract.

Adult

Aspirin-induced acute haemolytic anaemia in glucose-6-phosphate dehydrogenase-deficient children with systemic arthritis.

In a 4-year 7-month-old boy with glucose-6-phosphate dehydrogenase deficiency and systemic arthritis a severe haemolytic anaemia occurred after the administration of acetylsalicylic acid. Erythrocyte fragmentation, with haemoglobin condensation zones next to clear zones, was observed on peripheral blood smears. Since viral or bacterial infections were excluded on the basis of the laboratory data, the anaemia was ascribed to aspirin.

Anemia, Hemolytic

G6PD deficiency and breast cancer.

A study of the relative 2dG6P utilization in mononuclear cells from a group of 150 women with breast cancer was undertaken to evaluate a possible negative correlation between G6PD deficiency and cancer, as suggested by some authors. Twenty-one women (14.00%) were heterozygotes and 2 were homozygotes (1.33%). The prevalence found was not different from that expected. It would therefore seem that the G6PD Mediterranean allele does not play a protective role against the development of breast cancer.

Adult

Glucose 6-phosphate dehydrogenase deficiency and incidence of hematologic malignancy.

We have evaluated the hypothesis of a negative association between glucose 6-phosphate dehydrogenase (G6PD) deficiency and cancer in a cohort of 481 Sardinian males with hematological malignancies. The frequency of G6PD deficiency in the patients was not different from the incidence in a group of 16,219 controls. The same conclusion resulted from the comparison of the frequency of expression of the GdB gene in 23 heterozygous women having a clonal hematologic disease and a control group of 37 healthy heterozygotes. Therefore at present there is no evidence that G6PD deficiency has a protective effect against development of hematologic neoplasms.

Disease Susceptibility

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

A case of ataxia telangiectasia with unbalanced glucose 6-phosphate dehydrogenase mosaicism in the granulocytic/monocytic lineages.

Ataxia telangiectasia is a genetically determined disease with multi-system abnormalities and a high incidence of neoplasia. In order to define the nature of the association between ataxia telangiectasia and malignancy, we investigated a patient with the disease and heterozygote for the Mediterranean variant of the X-linked marker glucose 6-phosphate dehydrogenase. Enzymatic mosaicism in hemopoietic and nonhemopoietic cells was evaluated with the 2-deoxy glucose 6-phosphate technique. While erythrocytes, platelets, and lymphocytes expressed the same double-enzyme phenotype as tissues of nonhemopoietic origin, granulocytes and monocytes expressed almost exclusively the Mediterranean-type enzyme. We suggest that, as the result of genetic instability at the hemopoietic stem-cell level, the granulocytic/monocytic progeny enjoyed a proliferative advantage and became the predominant clone.

Ataxia Telangiectasia