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Biomedical subjects

M Cattaneo

Publications and source records attributed to M Cattaneo.

At least 19 recordsLinked to original sources

Cloning and functional analysis of SEL1L promoter region, a pancreas-specific gene.

We examined the promoter activity of SEL1L, the human ortholog of the C. elegans gene sel-1, a negative regulator of LIN-12/NOTCH receptor proteins. To understand the relation in SEL1L transcription pattern observed in different epithelial cells, we determined the transcription start site and sequenced the 5' flanking region. Sequence analysis revealed the presence of consensus promoter elements--GC boxes and a CAAT box--but the absence of a TATA motif. Potential binding sites for transcription factors that are involved in tissue-specific gene expression were identified, including: activator protein-2 (AP-2), hepatocyte nuclear factor-3 (HNF3 beta), homeobox Nkx2-5 and GATA-1. Transcription activity of the TATA-less SEL1L promoter was analyzed by transient transfection using luciferase reporter gene constructs. A core basal promoter of 302 bp was sufficient for constitutive promoter activity in all the cell types studied. This genomic fragment contains a CAAT and several GC boxes. The activity of the SEL1L promoter was considerably higher in mouse pancreatic beta cells (beta TC3) than in several human pancreatic neoplastic cell lines; an even greater reduction of its activity was observed in cells of nonpancreatic origin. These results suggest that SEL1L promoter may be a useful tool in gene therapy applications for pancreatic pathologies.

Animals↗

Multicenter study of homocysteine measurement--performance characteristics of different methods, influence of standards on interlaboratory agreement of results.

After the demonstration that moderate hyperhomocysteinemia is associated with thrombosis, many hematological labs are becoming interested in total homocysteine (tHcy) measurement. This prompted us to organize a collaborative study to investigate the performance of methods used in this setting and to assess the between-lab comparability of results. Two pairs of pooled plasma (A1-A2 and B1-B2) were prepared at the coordinating Center. tHcy levels were normal in A1-A2 and moderately high in B1-B2. Within each pair tHcy levels were similar but not identical. Aliquots were taken from each pool to prepare sets of 100 samples (coded from 1 to 100). Each set consisted of 25 replicates for each pool. Samples were frozen and shipped in dry ice to 16 labs with a common frozen aqueous standard. Labs were asked to measure (in blind) tHcy with their methods and standards. Results were sent to the coordinating Center both as raw readings and as tHcy levels. The following methods were used: High Pressure Liquid Chromatography (HPLC) in 12 labs (home-made in 10 and commercial in 2); Enzyme Immuno Assays (EIA) in 2; Fluorescence Polarization Immunoassay (FPIA) in 2 and Capillary Electrophoresis (CE) in one. Results for paired pools (A1-A2 and B1-B2) were analyzed by the Student t test to assess for the ability to discriminate between similar but not identical tHcy levels. Results for each pool were used to assess within-lab reproducibility and between-lab comparability. Within-lab reproducibility expressed as median CV ranged from 12.6 to 13.9% (home-made HPLC); from 9.2 to 11.4% (commercial HPLC); from 21.8 to 24.2% (EIA); from 2.7 to 3.3% (FPIA) and from 11.2 to 22.0% (CE). All labs, except one using CE and 2 using home-made HPLC, were able to discriminate between similar tHcy levels in the normal range (pools A1-A2). Ten labs (4 using home-made HPLC, 2 commercial HPLC, 2 FPIA, one EIA and one CE) were able to discriminate between similar moderately high tHcy levels (pools B1-B2). Between-lab comparability expressed as CV was 14.0% 13.9%, 15.6% and 14.5% for pools A1, A2, B1, and B2. These values were considerably lower (CV values < 5.2%) when a common plasma standard was used for calculation of tHcy levels, while the use of a common aqueous standard failed to achieve the necessary harmonization. In conclusion, performance characteristics of the FPIA method compare favorably with the well-established HPLC methods. It is simpler and more suitable to be used by general hematological labs. Between-lab comparability of results is still a problem. The establishment of an international plasma standard would be of help to harmonize tHcy measurement across laboratories.

Chromatography, High Pressure Liquid↗

SEL1L, the human homolog of C. elegans sel-1: refined physical mapping, gene structure and identification of polymorphic markers.

We have cloned the human full-length cDNA SEL1L, which is highly similar to the C. elegans sel-1 gene, an important negative regulator of the "notch" pathway which acts as a key regulator of the cellular proliferation and specification processes in both vertebrates and invertebrates. The SEL1L gene maps to 14q24.3-31 and here we report its fine localization by HAPPY mapping, which determines its molecular distance to microsatellite markers isolated in the region. We have found two new polymorphic (CA)n microsatellites located in the gene, and have identified the exon-intron boundaries. The gene is composed of 21 exons spanning 70 kb of genomic DNA. Human SEL1L protein exhibits a high degree of similarity compared to the mouse and nematode homologs.

Amino Acid Sequence↗

Alterations of haemostatic and fibrinolytic markers in adult patients with growth hormone deficiency and with acromegaly.

Alterations of coagulation and fibrinolytic systems might contribute to the increased cardiovascular and cerebrovascular mortality observed in patients with both chronic growth hormone (GH) excess (acromegaly) and deficiency (GHD). However, contrasting results have been so far reported. To assess the importance of GH in modulating haemostatic system, several haemostatic variables in patients with GHD and acromegaly were measured. Twenty-four adult patients with GHD (8 childhood- and 16 adult-onset; age: 41+/-12 years, insulin like growth factor-I, IGF-I: 6.7+/-4 nmol/L), 10 non-diabetic acromegalic patients (age: 39+/-15 years; IGF-I: 109+/-37 nmol/L) and 64 healthy volunteers age- and sex-matched with cases were studied. The plasma levels of tissue-type plasminogen activator antigen (t-PA), prothrombin fragment 1+2 (F1+2) and thrombin-antithrombin complex (TAT) were measured by ELISA. Plasminogen activator inhibitor type I (PAI-1) was measured by an immunoactivity assay and fibrinogen by von Clauss method. GH levels were measured by IFMA and IGF-I by RIA. GHD patients had higher PAI-1 (12.7+/-16.7 vs 4.8+/-5.3 U/ml, p<0.01), fibrinogen (363+/-104 vs 291+/-71 mg/dL, p< 0.05) and TAT levels (6.8+/-9 vs 3.6+/-2.8 ng/ml, p<0.05) than controls. Taking the 95th pecentile of the normal distribution in the control group as the cut-off point for normal plasma levels of the haemostatic variables, high PAI levels were found in 25% of patients with GHD (P<0.01), while high fibrinogen and TAT levels were observed in 21% (P<0.05). The alterations were mostly present in patients with adult-onset GHD, with the exception of hyperfibrinogenaemia which was equally present in adult- and childhood-onset patients. Acromegalic patients had higher mean fibrinogen levels than controls (398+/-111 vs 291+/-71 mg/dL, p< 0.05), 40% having hyperfibrinogenaemia (P<0.01, vs controls). They also had t-PA levels lower than controls and GHD. No correlations between hormonal and haemostatic variables were found. Body mass index and waist to hip ratio correlated positively with PAI-1 levels in GHD patients only. In conclusion, this study shows that several abnormalities of coagulation variables (increased PAI-1. fibrinogen and TAT levels) are present in patients with GHD, while only hyperfibrinogenaemia is found in patients with acromegaly. These changes do not appear to be directly related to IGF-I levels or to the degree of GH deficiency/excess. However, these abnormalities may be an additional trigger for the development of coronary heart disease and thromboembolic complications mostly in patients with GHD.

Acromegaly↗

Melanoma antigen genes 1 and 2 are differentially expressed in human gastric and cardial carcinomas.

BACKGROUND: MAGE genes encode for tumor-rejection antigens and are expressed in tumors of different histologic types but not in normal tissues, with the exception of testis and placenta. The aim of this study was to evaluate the frequency of MAGE-1 and -2 expression in gastric and in cardial carcinomas; these conditions have been described as two distinct diseases, having different etiologies, epidemiologic patterns, and gene mutations. METHODS: Two groups of patients were studied: patients with distal gastric carcinoma and patients with carcinoma of the cardia. A group of patients with intestinal metaplasia in the gastric mucosa and controls were also included. All of them underwent upper GI endoscopy. Paired biopsy specimens were taken for routine histology and for RNA extraction, to study the expression of MAGE-1 and -2 genes. RESULTS: None of the intestinal metaplastic samples or controls expressed MAGE-1 and -2 at detectable levels. Whereas 40% of the gastric cancer patients expressed either MAGE-1 or -2, 26.6% transcribed both. In the cardial cancer group, 20% of the cases expressed at least one MAGE, and only 6.6% expressed both genes. These results might reinforce the concept that cancer of the cardia is a distinct neoplastic disease with regard to esophageal and gastric (distal) carcinomas. CONCLUSIONS: Here we show that MAGE gene expression occurs in advanced stages of gastric and cardial cancer and therefore appears to be a late event. This might point to a reconsideration of their potential role in cancer immunotherapy.

Adult↗

Platelets from a patient heterozygous for the defect of P2CYC receptors for ADP have a secretion defect despite normal thromboxane A2 production and normal granule stores: further evidence that some cases of platelet 'primary secretion defect' are heterozygous for a defect of P2CYC receptors.

Two unrelated patients with a congenital bleeding diathesis associated with a severe defect of the platelet ADP receptor coupled to adenylate cyclase (P2(CYC)) have been described so far. In one of them, platelet secretion was shown to be abnormal. We recently showed that platelets with the primary secretion defect (PSD; characterized by abnormal secretion but normal granule stores, thromboxane A(2) production, and ADP-induced primary wave of aggregation) have a moderate defect of P2(CYC). Therefore, the interaction of ADP with the full complement of its receptors seems to be essential for normal platelet secretion, and PSD patients may be heterozygotes for the congenital severe defect of P2(CYC). In this study, we describe 2 new related patients with a severe defect of P2(CYC) and the son of one of them, who is to be considered an obligate heterozygote for the defect. The 2 patients with the severe defect had lifelong histories of abnormal bleeding, prolonged bleeding times, abnormalities of platelet aggregation and secretion, lack of inhibition of adenylate cyclase by ADP, and a deficiency of platelet-binding sites for [(33)P]2 MeS-ADP (240 and 225 sites per platelet; normal range, 530 to 1102). The son of one of them had a mildly prolonged bleeding time and abnormalities of platelet aggregation and secretion similar to those found in patients with PSD. In addition, his platelets showed a moderate defect of binding sites for [(33)P]2 MeS-ADP (430 sites per platelet) and of adenylate cyclase inhibition by ADP. This study of a family with the platelet disorder characterized by a defect of the platelet P2(CYC) receptor supports our hypothesis that the full complement of the platelet ADP receptors is essential for normal platelet secretion and that some patients with the common, ill-defined diagnosis of PSD are actually heterozygous for the defect.

Adenosine Diphosphate↗

Hyperhomocysteinaemia and atherothrombosis.

Homocysteine (Hcy) is a sulfhydryl amino acid derived from the metabolic conversion of methionine that is dependent on vitamins (folic acid, B12 and B6) as cofactors or cosubstrates. In 1969, McCully first reported the presence of severe atherosclerotic lesions in patients with severe hyperhomocysteinaemia and hypothesized the existence of a pathogenic link between hyperhomocysteinaemia and atherogenesis. Several case-control and cross-sectional studies confirmed the initial hypothesis of McCully, showing that also moderate hyperhomocysteinaemia is associated with a heightened risk of occlusive arterial disease. Less consistent results have been reported by prospective cohort studies of subjects who were healthy at the time of their enrollment, whereas prospective cohort studies of patients with overt coronary artery disease or other risk conditions consistently confirmed the association between moderate hyperhomocysteinaemia and the risk of cardiovascular morbidity and mortality. More recently, an association between moderate hyperhomocysteinaemia and heightened risk of venous thromboembolism has been documented, suggesting that hyperhomocysteinaemia might be involved not only in atherogenesis, but also in thrombogenesis. The mechanisms by which hyperhomocysteinaemia might contribute to atherogenesis and thrombogenesis are incompletely understood. The mainstay of treatment of hyperhomocysteinaemia is folic acid, alone or in combination with vitamins B12 and B6. Although it is quite clear that vitamins effectively reduce the plasma levels of total Hcy, we do not yet know whether they will decrease the risk of vascular disease. The results of ongoing randomized, placebo-controlled, double-blinded trials on the effects of vitamins on thrombotic risk will help in defining whether the relationship between hyperhomocysteinaemia and thrombosis is causal, and will potentially have a dramatic impact on the prevention of thromboembolic events.

Causality↗

Evaluation of platelet function with the PFA-100 system in patients with congenital defects of platelet secretion.

The template bleeding time is still the screening test for defects of platelet function, although it is an invasive and poorly reproducible technique. The PFA-100 measures platelet function at high shear. Whole blood is aspirated through a capillary to an aperture of a membrane coated with platelet agonists. The system measures the time required to obtain occlusion of the aperture by a platelet plug (closure time). We measured the closure times in the PFA-100 system and the bleeding time in seven patients with delta-storage pool deficiency, 10 patients with "primary secretion defect" (not due to abnormalities of platelet granules or the arachidonate pathway), and 40 controls. Measurements were repeated I and 4 hours after intravenous infusion of desmopressin in six delta-storage pool deficiency and eight primary secretion defect patients. Baseline bleeding time and closure times with the collagen/epinephrine cartridge were longer in delta-storage pool deficiency and primary secretion defect patients than in controls. In contrast, closure times with the collagen/adenosine diphosphate cartridge were normal in both delta-storage pool deficiency and primary secretion defect patients. Treatment with desmopressin increased the plasma von Willebrand Factor levels, shortened the prolonged bleeding time, shortened the closure times with the collagen/adenosine diphosphate cartridge, and normalized the closure times with the collagen/ epinephrine cartridge. Therefore, the PFA-100 test may be a less invasive alternative to the bleeding time in the diagnosis and therapeutic monitoring of patients with platelet secretion defects. The collagen/epinephrine cartridge is more sensitive than the collagen/adenosine diphosphate cartridge to defects of platelet secretion.

Adult↗

The G20210A mutation of the prothrombin gene in patients with previous first episodes of deep-vein thrombosis: prevalence and association with factor V G1691A, methylenetetrahydrofolate reductase C677T and plasma prothrombin levels.

A common G to A transition at nucleotide 20210 of the prothrombin gene is associated with an increased risk for deep-vein thrombosis (DVT) and high plasma levels of prothrombin. We calculated the prevalences of prothrombin G20210A, factor V G1691A (also associated with high risk for DVT) and homozygous methylenetetrahydrofolate reductase (MTHFR) C677T (associated with increased susceptibility to develop hyperhomocysteinemia) in 118 patients with a first episode of DVT and in 416 healthy controls. 15.9% of the patients and 2.3% of the controls had prothrombin G20210A (odds ratio [OR]: 8.7, 95% C.I.: 3.8-21.4); 21.1% of the patients and 3.2% of the controls had factor V G1691A (OR 7.8, 3.9-17.1); 20.5% of the patients and 21% of the controls had homozygous MTHFR C677T (OR: 1.0, 0.7-1.2). Exclusion of patients with other hereditary risk factors for DVT did not substantially modify the results. Mutant factor V and prothrombin coexisted in three patients but in no control. The concomitant presence of the MTHFR mutation did not increase the thrombotic risk associated with prothrombin G20210A. 63.2% of individuals with prothrombin G20210A had plasma levels of prothrombin in the upper quartile of distribution. After adjustment for age and sex, subjects with prothrombin levels in the upper quartile carried a slightly higher risk for thrombosis than those with lower prothrombin concentrations (OR: 1.9, 1.1-3.2). In conclusion, we found that prothrombin G20210A is relatively common in Italy and is associated with high prothrombin levels and an 8.7-fold increase in the risk for DVT. Such risk is independent of the coexistence of other known inherited risk factors for thrombosis and increases in patients with associated mutant factor V. Whether it is due to the associated increase in plasma prothrombin levels remains to be established.

Adolescent↗

ADP receptors and clinical bleeding disorders.

ADP plays a key role in hemostasis and thrombosis. Despite its early identification in 1961 as the first known aggregating agent, the molecular basis of ADP-induced platelet activation is only beginning to be understood. The present review proposes a model of 3 purinergic receptors contributing separately to the complex process of ADP-induced platelet aggregation: the P2X(1) ionotropic receptor, responsible for rapid influx of ionized calcium into the cytosol; the P2Y(1) metabotropic receptor, responsible for mobilization of ionized calcium from internal stores, which initiates aggregation; and an as-yet-unidentified P2Y receptor coupled to G(alphai2), which is essential for the full aggregation response to ADP. It is probable that this as-yet-unidentified receptor is the molecular target of the ADP-selective antiaggregating drugs ticlopidine and clopidogrel. In addition, it is probably defective in patients with a bleeding diathesis that is characterized by selective impairment of platelet responses to ADP.

Blood Coagulation Disorders↗

Hyperhomocysteinemia, atherosclerosis and thrombosis.

High plasma levels of homocysteine are the results of the interplay between congenital and environmental factors. In the last two decades, a growing amount of interest has focused on mild-to-moderate hyperhomocysteinemia as a risk factor of thromboembolic diseases. Case-control and cross-sectional studies clearly indicated that mild-to-moderate hyperhomocysteinemia is associated with heightened risk of both arterial and venous thrombosis. On the other hand, prospective studies did not unequivocally show that hyperhomocysteinemia is associated with a high thrombotic risk. Therefore, additional studies are needed to define whether hyperhomocysteinemia is a risk factor for thrombosis, especially of the venous circulation. Among these, prospective cohort studies will clarify better the temporal relationship between high homocysteine levels and the thrombotic event. Most importantly, however, randomized, placebo-controlled, double-blind trials of the effects of homocysteine-lowering vitamins on the thrombotic risk are urgently needed. Not only will they help in defining whether the relationship between hyperhomocysteinemia and thrombosis is causal, they will also have a potential dramatic impact in the prevention of thromboembolic events.

Adult↗

[A hyperhomocysteinemia study in a population with a familial factor for acute myocardial infarct and sudden cardiac death at a young age].

The alterations of the metabolism of methionine determining an accumulation of homocysteine in blood (hyperhomocysteinemia) recognize a multifactorial etiology, hereditary as well as acquired. To date several case-control studies have documented that the condition of hyperhomocysteinemia can be considered an independent risk factor of coronary disease and its noxious effects are dose-dependent. It exerts its effect by different mechanisms both prothrombotic and endothelial. In our study we started from an initial cohort of 2227 subjects (1210 males, 1017 females) aged between 45 and 64 years among which we selected 22 persons with at least 2 first-degree relatives below age 50 who had had either a major cardiovascular event (acute myocardial infarction or sudden death) or angiographically documented cardiac disease. We reconstructed the proper pedigrees obtaining 22 families in whom we identified four main subgroups to carry out analyses and comparisons: case-control, composed respectively of all the subjects who survived a major cardiovascular event or a coronary disease documented angiographically and clinically healthy subjects; affected line and non affected line, composed respectively of members belonging to the family line of the proband and members of collateral family line. Each of the subjects involved in the study underwent a complete history regarding job and sports activities, a standardized physical examination, 12-lead digital ECG according to the European Standard Communication Protocol. A blood sample was taken in fasting conditions to determine total cholesterol, HDL and LDL cholesterol, triglycerides, glycemia, fibrinogen, plasma homocysteine. The results indicate how among the cases there were more subjects with homocysteine higher than the 95 degrees percentile in males alone (p = 0.03), the estimated odds ratio calculated from Fisher's test was 8.34 (95% confidence interval 1.32-52.7). Despite the fact that mean age was significantly lower (p = 0.01) in males of the affected line compared to those of the non affected line, the results show much higher homocysteine values in the affected family line in both males and females: a difference quite evident in the distribution especially as regards the 95 degrees percentile. These results obtained in the subjects belonging to the same families emphasize that familial aggregation, which influences the sharing of the genetic patrimony, socio-cultural environment and food habits can induce a differential risk for homocysteinemia. The study of mutations of genes coding for the key enzymes of the metabolism of homocysteine, methylenetetrahydrofolate reductase and cystathionine beta-synthase, which we prepared, will enable use to evaluate the relative influence feeding habits and genetic factors have in the development of hyperhomocysteinemia.

Adult↗

The P2Y1 receptor is normal in a patient presenting a severe deficiency of ADP-induced platelet aggregation.

ADP is a key stimulus inducing platelet shape change and aggregation, a rise in internal calcium and inhibition of adenylyl cyclase. These signaling pathways are thought to be activated by three independent receptors, but to date only the P2Y1 receptor responsible for calcium mobilization and the ionotropic P2X1 receptor have been identified. We report here the characteristics of the P2Y1 receptor in a patient presenting a selective deficiency of ADP-induced aggregation. Cloning of the P2Y1 gene revealed that the patient's DNA and mRNA were normal. Pharmacological studies showed that the P2Y1 receptor was expressed and functional in patient's platelets. Hence, the P2Y, receptor is not the cause of the impaired ADP-induced platelet aggregation in this patient. The P2X1 mRNA was also found to be present and normal. These findings add evidence to previous observations suggesting that a third P2 receptor coupled to adenylyl cyclase may be involved in ADP-induced platelet aggregation.

Adenosine Diphosphate↗

Evaluation of the PFA-100 system in the diagnosis and therapeutic monitoring of patients with von Willebrand disease.

We have evaluated platelet function at high shear with the PFA-100 system in different subtypes of von Willebrand disease (vWD), before and after the intravenous infusions of desmopressin or a factor-VIII/von Willebrand factor (vWF) concentrate. Closure times with the PFA-100 system were determined for both the collagen/ADP and the collagen/epinephrine cartridges in 52 patients with vWD (9 type 1 "platelet normal", 5 type 1 "platelet-discordant", 8 type 1 "platelet-low", 6 type 2A, 9 type 2B, 6 type 2M Vicenza. 6 type 3 and 3 acquired vWD) and 40 controls. Measurements were repeated 1 and 4 h after the i.v. infusion of desmopressin (0.3 microg/Kg) in 26 patients with types 1, type 2M Vicenza or type 2A vWD, or of a factorVIII/vWF concentrate (Alphanate HT, 60 U/Kg) in 4 patients with type 3 vWD. At all time points, vWF plasma levels and the bleeding time (Symplate II) were also determined. Baseline closure times were longer in vWD patients than in controls with both the collagen/ADP and the collagen/ epinephrine cartridges. The sensitivity of the PFA-100 system (88% and 87% with the two cartridges) was higher than that of the bleeding time (65%). Treatment with desmopressin normalized the closure times in patients with type 1 "platelet-normal" or type 2M Vicenza vWD, had no significant effects in patients with type 1 "platelet-low", type 1 "platelet-discordant" or type 2A vWD. Infusion of a factorVIII/vWF concentrate in patients with type 3 vWD slightly shortened their prolonged closure times. In general, changes in PFA-100 were paralleled by shortenings of the bleeding times and increases in plasma vWF levels. The PFA-100 test reflects vWF-dependent platelet function under high shear stress and could be useful in the diagnosis and therapeutic monitoring of patients with vWD.

Blood Platelets↗